Feline Bartonella can be transmitted to humans through cat scratches or bites, and between cats, by the flea Ctenocephalides felis. The study was carried out in order to investigate the occurrence of Bartonella DNA in cats living in shelters and their ectoparasites and the relationship between the infection status of cats and ectoparasites they host. Bartonella DNA was detected in 47.8% of the cat blood samples, 18.3% of C. felis fleas, 13.3% of flea egg pools and 12.5% of lice pools. B. henselae and B. clarridgeiae DNA were detected in cat fleas, while B. henselae, B. clarridgeiae and B. koehlerae were found in blood samples from bacteremic cats. Cats infested by positive ectoparasites showed approximately twice the odds of being infected. Our results indicate that shelter cats have high prevalence of Bartonella species that are known to be human pathogens. This highlights the importance of controlling infestations by ectoparasites to avoid cat and human infection.
Menadione (MND) is known to induce oxidative stress in fungal cells. Here, we explore how exposure to this molecule alters conidial enzyme activities, fungal efficacy against Rhipicephalus microplus, and mycelial secretion (secretome) of an isolate of Metarhizium anisopliae sensu lato. First, the fungus was exposed to different MND concentrations in potato-dextrose-agar (PDA) to determine the LC50 by evaluating conidia germination (38 mu M). To ensure high cell integrity, a sublethal dose of MND (half of LC50) was added to solid (PDA MND) and liquid media (MS MND). Changes in colony growth, a slight reduction in conidia production, decreases in conidial surface Pr1 and Pr2 activities as well as improvements in proteolytic and antioxidant (catalase, superoxide dismutase, and peroxidase) conidial intracellular activities were observed for PDA MND conidia. Additionally, PDA MND conidia had the best results for killing tick larvae, with the highest mortality rates until 15 days after treatment, which reduces both LC50 and LT50, particularly at 108 conidia mL-1. The diversity of secreted proteins after growth in liquid medium + R. microplus cuticle (supplemented or not with half of MND LC50), was evaluated by mass spectrometry-based proteomics. A total of 654 proteins were identified, 31 of which were differentially regulated (up or down) and mainly related to antioxidant activity (catalase), pathogenicity (Pr1B, Pr1D, and Pr1K), cell repair, and morphogenesis. In the exclusively MS MND profile, 48 proteins, mostly associated with cellular signaling, nutrition, and antioxidant functions, were distinguished. Finally, enzymatic assays were performed to validate some of these proteins. Overall, supplementation with MND in the solid medium made conidia more efficient at controlling R. microplus larvae, especially by increasing, inside the conidia, the activity of some infection-related enzymes. In the liquid medium (a consolidated study model that mimics some infection conditions), proteins were up- and/or exclusively-regulated in the presence of MND, which opens a spectrum of new targets for further study to improve biological control of ticks using Metarhizium species.
Dopamine (DA) is a biogenic monoamine reported to modulate insect hemocytes. Although the immune functions of DA are known in insects, there is a lack of knowledge of DA’s role in the immune system of ticks. The use of Metarhizium anisopliae has been considered for tick control, driving studies on the immune response of these arthropods challenged with fungi. The present study evaluated the effect of DA on the cellular immune response and survival of Rhipicephalus microplus inoculated with M. anisopliae blastospores. Exogenous DA increased both ticks’ survival 72 h after M. anisopliae inoculation and the number of circulating hemocytes compared to the control group, 24 h after the treatment. The phagocytic index of tick hemocytes challenged with M. anisopliae did not change upon injection of exogenous DA. Phenoloxidase activity in the hemolymph of ticks injected with DA and the fungus or exclusively with DA was higher than in untreated ticks or ticks inoculated with the fungus alone, 72 h after treatment. DA was detected in the hemocytes of fungus-treated and untreated ticks. Unveiling the cellular immune response in ticks challenged with entomopathogenic fungi is important to improve strategies for the biological control of these ectoparasites.
The effects of two different products - Metarril® SP Organic (dry conidia) and Metarril® SC Organic (emulsifiable concentrated conidia in vegetable oil) - on eggs, larvae and Rhipicephalus microplus engorged females were here explored. Three concentrations (108, 107, and 106 conidia mL-1) for both products were prepared in water + 0.1% Tween® 80 (v/v); afterward, bioassays were carried out for all R. microplus stages by immersion in suspensions (Metarril® SP) or formulations (Metarril® SC). Metarril® SP suspensions showed low efficacy and did not affect biological parameters of treated engorged females; for eggs and larvae, only slight decreases in hatchability and larvae population were observed. Despite a delay in germination, Metarril® SC presented better results; for females, reductions in Egg Mass Weight (EMW) and Egg Production Index (EPI) were reported. On eggs, 108 conidia mL-1 increased Incubation Period (IP), shortened Hatching Period (HP) and decreased hatchability by up to 61%; for larvae, 107 and 108 conidia mL-1 reached 99.6 and 100% larval mortality respectively, 10 days after fungal exposure. Thus, further studies involving the use of oil-based formulations for ticks such as Metarril® SC need to be performed, especially to control the most susceptible stages (eggs and larvae).
The bovine tick, Rhipicephalus microplus, is the main ectoparasite of cattle and causes loss of billions of dollars worldwide in lost meat, milk, and leather production, as well as control expenses. In addition to systemically impacting the host during the parasitic act, this parasite is also an important disease vector. Traditionally, the main commercial control of the tick is achieved through application of chemical acaricides, which can leave residues in the meat and milk. Moreover, ticks can become resistant to these chemicals due to their massive and incorrect use. Many alternative methods have been tested including vaccines and natural products from plant origin. However, the efficacy of these treatments is variable and limited, especially when used alone. Arthropod-pathogenic fungi, such as Metarhizium anisopliae, are among the natural microbial agents with promising potential to be used alone or in association with other products, for example with chemical acaricides. This article discusses several aspects of bovine tick control related to the use of M. anisopliae, which is one of the most studied and viable alternative tools for effective tick control.
Metarhizium is an insect pathogenic fungus and a plant root symbiont. Here the root association patterns (rhizoplane or endophytic colonization) were analyzed in common beans (Phaseolus vulgaris) and sweet corn (Zea mays) using M. robertsii and M. brunneum under various vermiculite treatments (control, with sucrose, with an insect) at two time points of plant growth (10 and 20 days). We observed that M. brunneum and M. robertsii preferentially endophytically colonized the hypocotyl, however, greater rhizoplane colonization was observed at the regions proximal to the hypocotyl in both plants. Vermiculite amended with an infected insect resulted in greater endophytic and rhizoplane colonization at 20 days compared to 10 days, for both plants as well as for both Metarhizium species. Regardless of the vermiculite treatment, corn was preferentially colonized compared to bean. Sucrose amendment in the vermiculite and infected insect amended vermiculite only showed differences in rhizoplane colonization. The greatest root association occurred with M. brunneum with an infected insect and that in corn after 20 days.
Metarhizium is an entomopathogenic fungus widely employed in the biological control of arthropods. Hemocytes present in the hemolymph of invertebrates are the cells involved in the immune response of arthropods. Despite this, knowledge about Rhipicephalus microplus hemocytes morphological aspects as well as their role in response to the fungal infection is scarce. The present study aimed to analyze the hemocytes of R. microplus females after Metarhizium robertsii infection, using light and electron microscopy approaches associated with the cytotoxicity evaluation. Five types of hemocytes (prohemocytes, spherulocytes, plasmatocytes, granulocytes, and oenocytoids) were described in the hemolymph of uninfected ticks, while only prohemocytes, granulocytes, and plasmatocytes were observed in fungus-infected tick females. Twenty-four hours after the fungal infection, only granulocytes and plasmatocytes were detected in the transmission electron microscopy analysis. Hemocytes from fungus-infected tick females showed several cytoplasmic vacuoles with different electron densities, and lipid droplets in close contact to low electron density vacuoles, as well as the formation of autophagosomes and subcellular material in different stages of degradation could also be observed. M. robertsii propagules were more toxic to tick hemocytes in the highest concentration tested (1.0 × 108 conidia mL-1). Interestingly, the lowest fungus concentration did not affect significantly the cell viability. Microanalysis showed that cells granules from fungus-infected and uninfected ticks had similar composition. This study addressed the first report of fungal cytotoxicity analyzing ultrastructural effects on hemocytes of R. microplus infected with entomopathogenic fungi. These results open new perspectives for the comprehension of ticks physiology and pathology, allowing the identification of new targets for the biological control.
Hemocytes, cells present in the hemocoel, are involved in the immune response of arthropods challenged with entomopathogens. The present study established the best methodology for harvesting hemocytes from Rhipicephalus microplus and evaluated the number of hemocytes in addition to histological analysis from ovaries of fungus-infected females and tested the virulence of GFP-fungi transformants. Different centrifugation protocols were tested, and the one in which presented fewer disrupted cells and higher cell recovery was applied for evaluating the effect of Metarhizium spp. on hemocytes against R. microplus. After processing, protocol number 1 (i.e., hemolymph samples were centrifuged at 500×g for 3 min at 4 °C) was considered more efficient, with two isolates used (Metarhizium robertsii ARSEF 2575 and Metarhizium anisopliae ARSEF 549), both wild types and GFP, to assess their virulence. In the biological assays, the GFP-fungi were as virulent as wild types, showing no significant differences. Subsequently, hemocyte quantifications were performed after inoculation, which exhibited notable changes in the number of hemocytes, reducing by approximately 80% in females previously treated with Metarhizium isolates in comparison to non-treated females. Complementarily, 48 h after inoculation, in which hemolymph could not be obtained, histological analysis showed the high competence of these fungi to colonize ovary from ticks. Here, for the first time, the best protocol (i.e., very low cell disruption and high cell recovery) for R. microplus hemocyte obtaining was established aiming to guide directions to other studies that involves cellular responses from ticks to fungi infection.
Beauveria bassiana is widely studied as an alternative to chemical acaricides in controlling the cattle tick Rhipicephalus microplus. Although its biocontrol efficiency has been proved in laboratory and field scales, there is a need to a better understanding of host interaction process at molecular level related to biocontrol activity. In this work, applying a proteomic technique multidimensional protein identification technology (MudPIT), the differential secretome of B. bassiana induced by the host R. microplus cuticle was evaluated. The use of the host cuticle in a culture medium, mimicking an infection condition, is an established experimental model that triggers the secretion of inducible enzymes. From a total of 236 proteins, 50 proteins were identified exclusively in infection condition, assigned to different aspects of infection like host adhesion, cuticle penetration and fungal defense, and stress. Other 32 proteins were considered up- or down-regulated. In order to get a meaningful global view of the secretome, several bioinformatic analyses were performed. Regarding molecular function classification, the highest number of proteins in the differential secretome was assigned in to hydrolase activity, enzyme class of all cuticle-degrading enzymes like lipases and proteases. These activities were also further validated through enzymatic assays. The results presented here reveal dozens of specific proteins and different processes potentially implicated in cattle tick infection improving the understanding of molecular basis of biocontrol of B. bassiana against R. microplus.
The present study aimed to evaluate the in vitro pathogenicity of the Metarhizium anisopliae s.l. CG 112, CG 347, CG 32, CG 148 and CG 629 isolates formulated in vegetable or mineral oil against Rhipicephalus microplus. The bioassays were performed with R. microplus engorged females. The ticks were immersed for three minutes in oil-based formulations containing 10% oil (mineral or vegetable). The effects of the different fungal isolates were evaluated analyzing the females' reproductive parameters (the total weight of the egg mass, hatching percentage, egg production index and nutritional index). The present study showed that all of the tested isolates and both oil formulations (vegetable or mineral oil) changed the biological parameters of the R. microplus females. However, the mineral oil formulation was more effective than the vegetable oil formulation, as the former showed a higher tick control percentage. It was concluded that there was variation in the virulence among the different M. anisopliae s.l. isolates and between the different types of oil. Moreover, that either of the isolates GC 148 and GC 629 formulated in oil confers the good potential for controlling R. microplus engorged females.
ABSTRACT. de Paulo J.F., Ferreira J.R.T., Marciano A.F., de Freitas, M.C. Coutinho-Rodrigues C.J.B., Camargo M.G., Angelo I.daC. Bittencourt V.R.E.P., Gôlo P.S. [Association between Metarhizium anisopliae sensu lato and cypermethrin to control Rhipicephalus microplus.] Associação de Metarhizium anisopliae sensu lato e cipermetrina para o controle de Rhipicephalus microplus. Revista Brasileira de Medicina Veterinária, 38(supl. 3):66-74, 2016. Departamento de Parasitologia Animal, Anexo 1, Instituto de Veterinária, Universidade Federal Rural Rio de Janeiro, BR 465 Km 47, Seropédica, RJ 23890-000, Brasil. E-mail: patriciagolo@gmail.com Rhipicephalus microplus is responsible for large economic losses in Brazilian livestock. In order to control this arthropod, the indiscriminate use of chemical products may be widely used, leading to damages to the environment, animals and humans, besides contributing to the appearance of resistant tick populations. The use of chemicals associated with biological entomopathogens drives an alternative to increase the effectiveness of tick control and reduce de damage caused by the inappropriate use of chemicals. Accordingly, the aim of the present study was to evaluate the efficiency of Metarhizium anisopliae and cypermethrin association on immature stages of R. microplus ticks. The groups were exposed by immersing the egg mass and larvae in 1 ml of fungal aqueous suspension, cypermethrin solution, cypermethrin associated to the fungal suspension and Tween 80 0.1% (v/v) (control). The biological parameters evaluated were: larval hatching percentage and larval mortality percentage. It was observed that both the fungus in a low concentration (106 conidia mL-1) or cypermethrin in a low concentration (25 ppm) were not able to change the biological parameters in comparison to the control group. Despite this, when associated the fungus at 106 conidia mL-1 with cypermethrin in a low concentration, together they were able to reduce larval hatching percentage and increase mortality in comparison to the single use of fungus or cypermethrin. Accordingly, it is concluded that the association of M. anisopliae with cypermethrin is a promising alternative to control of immature stages of R. microplus.
Metarril SP Organic is a product based on the fungus Metarhizium anisopliae, which was developed for controlling agricultural pests. The present study evaluated the effect of Metarril SP Organic plus 10% mineral oil, for controlling Rhipicephalus microplus under field conditions. Three groups were formed: Control group, which received no treatment; Oil control group, which was bathed only with water, Tween 80 and mineral oil; and Metarril group, bathed in the oil-based formulation Metarril SP Organic. Two treatments per group were performed and to verify the effect of the treatments, all R. microplus ticks between 4.5 and 8.0mm in length on the left side of the cattle were counted on days +7, +14 and +21 after each treatment, and a sample of engorged females was collected for evaluation of biological parameters. The Metarril SP Organic oil formulation showed efficacy ranging from 8.53 to 90.53%. The average efficacy of the oil-based formulation of Metarril SP Organic was 75.09 and 46.59% compared with the groups Control and Oil control, respectively. There were no significant changes in biological parameters of engorged R. microplus females collected from animals. Although there was no significant difference in the amount of ticks between the Oil control and Metarril groups, it is believed that the association of mineral oil with Metarril SP Organic product is effective in R. microplus tick control in field. Thus, this association has potential to be used in strategic control programs of cattle tick.
Metarril SP Organic is a product based on the fungus Metarhizium anisopliae, which was developed for controlling agricultural pests. The present study evaluated the effect of Metarril SP Organic plus 10% mineral oil, for controlling Rhipicephalus microplus under field conditions. Three groups were formed: Control group, which received no treatment; Oil control group, which was bathed only with water, Tween 80 and mineral oil; and Metarril group, bathed in the oil-based formulation Metarril SP Organic. Two treatments per group were performed and to verify the effect of the treatments, all R. microplus ticks between 4.5 and 8.0 mm in length on the left side of the cattle were counted on days +7, +14 and +21 after each treatment, and a sample of engorged females was collected for evaluation of biological parameters. The Metarril SP Organic oil formulation showed efficacy ranging from 8.53 to 90.53%. The average efficacy of the oil-based formulation of Metarril SP Organic was 75.09 and 46.59% compared with the groups Control and Oil control, respectively. There were no significant changes in biological parameters of engorged R. microplus females collected from animals. Although there was no significant difference in the amount of ticks between the Oil control and Metarril groups, it is believed that the association of mineral oil with Metarril SP Organic product is effective in R. microplus tick control in field. Thus, this association has potential to be used in strategic control programs of cattle tick. © 2016 Published by Elsevier B.V.
Rhipicephalus microplus é responsável por grandes perdas econômicas na pecuária brasileira. Com o intuito de controlar esse artrópode, o uso indiscriminado de produtos químicos é amplamente empregado, acarretando em prejuízos ao meio ambiente, aos animais e humanos, além de contribuir para o aparecimento de cepas de carrapatos resistentes. Assim, o emprego de produtos químicos associados a entomopatógenos surge como uma alternativa para aumentar a eficácia do controle de carrapato e reduzir os danos causados pelo uso inapropriado de produtos químicos. Desta forma, o objetivo do presente estudo foi de avaliar a eficiência da associação de Metarhizium anisopliae e cipermetrina sobre estágios imaturos de R. microplus. O tratamento dos grupos foi realizado através da imersão de ovos e larvas em 1mL de suspensão aquosa do fungo, solução de cipermetrina, suspenção fúngica associada à cipermetrina e um grupo controle. Os parâmetros biológicos avaliados foram o percentual de eclosão e o percentual de mortalidade das larvas. Observou se que o fungo quando utilizado sozinho em menor concentração (106 conídios mL-1) ou a cipermetrina também em menor concentração (25 ppm) não foram capazes de alterar os parâmetros biológicos quando comparados ao grupo controle. No entanto, a associação do fungo a 106 conídios mL-1 com cipermetrina em menor concentração, foi capaz de reduzir o percentual de eclosão pela metade e causar o dobro de mortalidade quando comparado ao uso do fungo e cipermetrina isoladamente. Desta forma, conclui se que a associação de M. anisopliae com cipermetrina é eficaz no controle de estágios imaturos de R. microplus.
Beauveria bassiana s. l. is a cosmopolitan fungus used in the control of different species of arthropods. The current study explored the virulence for ticks, proteolytic and lipolytic activities of 10 Brazilian B. bassiana s. l. isolates. For this purpose, Rhipicephalus microplus biological parameters was evaluated after immersion of the engorged females in fungal suspension (10(8) conidia mL(-1)) and the enzymatic activities were performed posteriorly the fungal growth in minimal medium. After the biological assays, five isolates changed all parameters analysed with highest efficacy of approximately 61% (CG 206) and 66% (CG 481). However, we observed that the most virulent isolates did not show the highest enzymatic activities. Interestingly, CG 500, considered an isolate of intermediate efficacy, demonstrated higher enzymatic activities than the other isolates in four of five analyses (total protease, Pr1, Pr2 and lipase; p <.05). Based on these data, it seems reasonable to suggest that these enzymatic activities should not be used as markers of virulence for these fungal isolates. It is noteworthy that complementary studies regarding chitinase analyses, gene expression, production of toxins and hydrophobicity of conidia can be used in the selection of pathogenic isolates.
Beauveria bassiana é um fungo artropodopatogênico cosmopolita que possui o carrapato dos bovinos Rhipicephalus microplus como hospedeiro. Neste cenário, estudos morfológicos e de produtividade conidial em meio de cultura podem indicar isolados que possuam potencial para produção em larga escala. O presente trabalho avaliou a macromorfologia e micromorfologia, além da produção conidial de dez isolados de B. bassiana antes e após uma passagem (ciclo de desenvolvimento) sobre R. microplus. Macroscopicamente, variações de diâmetro, aparência, aspecto de colônia, exsudação e cor de reverso foram observadas após o reisolamento. Por outro lado, o processo não alterou parâmetros como desenvolvimento dos conidióforos, formato e tamanho de conídios. Em relação à produção conidial, seis isolados aumentaram significativamente o número de conídios contados por área. Como destaque, o isolado Bb 02, que possui o carrapato como hospedeiro original de isolamento, apresentou aumento da pulverulência e produção conidial após apenas uma única passagem. Assim, acredita-se que para avaliações futuras com cunho comercial, estudos que envolvam mais passagens em hospedeiros em potencial, bem como sua associação a análises de patogenicidade e atividade enzimática, podem expressar resultados mais relevantes para o controle biológico.
ABSTRACT. Freitas M.C., Coutinho-Rodrigues C.J.B., Perinotto W.M.S., Nogueira M.R.S., Chagas T.T., Marciano A.F., Camargo M.G., Quinelato S., Golo P.S., Sa F.A. & Bittencourt V.R.E.P.[Hemocytes quantification in Rhipicephalus microplus engorged females infected by Beauveria bassiana s.l.] Quantifica- cao de hemocitos em femeas ingurgitadas de Rhipicephalus microplus infectadas por Beauveria bassiana s.l. Revista Brasileira de Medicina Veterinaria, 37(Supl.1):63- 70, 2015. Departamento de Parasitologia Animal, Instituto de Veterinaria, Anexo 1, Universidade Federal Rural do Rio de Janeiro, Campus Seropedica, BR 465 Km 7, Seropedica, RJ 23897-970, Brasil. E-mail: vaniabit@ufrrj.br Rhipicephalus microplus tick is an ectoparasite with a great negative impact for veterinary medicine. Under massive infestations cattle may present severe anemia; besides that, ticks can transmit pathogenic agents causing host death. Among the methods used to alternatively control ticks is the use of the arthropodpathogenic fungus Beauveria bassiana s.l. that has been considered promising due to the fungus capacity of penetration of full cuticle in all tick developmental stages, colonizing them and causing tick death. Arthropod immune response is basically composed of humoral and cellular components. Several cell types that actively work against microbial infection are present within the hemolymph. The aim of the present study was to evaluate the amount and identify hemocytes present in the hemolymph of R. microplus engorged females artificially inoculated with B. bassiana senso latu (s.l.) conidia (isolate CG 206). Fungal suspension (1 × 108 conidia/mL) or Tween 0.01% (control group) were inoculated in R. microplus engorged females. Hemolymph collections were made through the female dorsal region (for quantitative analysis) and the distal section of the legs (for qualitative analysis) 24, 48 and 72 hours after fungal inoculation. Hemocytes quantification was performed using a Neubauer chamber. Qualitative analysis was carried out by a smear of hemolymph on slides. Data were submitted to Mann-Whitney test for comparison of averages on a significance level of 5% (p <0.05). Comparison between unexposed females and females exposed to B. bassiana s.l. showed that hemolymph from the fungus treated group presented significant reduced amount of hemocytes 24 hours after fungal inoculation. Total amount of hemocytes 48 hours after fungal inoculation was 49.5 times lower in comparison with the amount observed 24 after fungal exposure. The following hemocytes were identified in tick females’ hemolymph: prohemocytes, granulocytes, plasmatocytes, spherulocytes and possible oenocytoids. Based on these results, it is concluded that inoculation of B. bassiana s.l. isolate CG 206 caused cellular alteration in the hemolymph of R. microplus females showing reduction of total amount of hemocytes 48 hours after fungal inoculation.
ABSTRACT. Marciano A.F., Coutinho-Rodrigues C.J.B., Perinotto W.M.S., Camargo M.G., Gôlo P.S., Sá F.A., Quinelato S., Freitas M.C., Angelo I.C., Nogueira M.R.S. & Bittencourt V.R.E.P. [Metarhizium anisopliae: influence of pH on enzyme activity and control of Rhipicephalus microplus ticks.] Metarhizium anisopliae: influência do pH na atividade enzimática e no controle de Rhipicephalus microplus. Revista Brasileira de Medicina Veterinária, 37(Supl.1):85-90, 2015. Departamento de Parasitologia Animal, Universidade Federal Rural do Rio de Janeiro, BR 465, Km 47, Seropédica, RJ 23897-970, Brasil. E-mail: vaniabit@ufrrj.br Rhipicephalus microplus ticks are one of the major agents causing substantial losses to livestock worldwide. In the search for alternative control strategies, both in vitro and in vivo use of the arthropodpathogenic fungus Metarhizium anisopliae has shown promising results against this ectoparasite. During host colonization, protease production by M. anisopliae is considered one important virulence factor once it is directly related to the active penetration process carried by the fungus on the full host cuticle. Nevertheless, limitations as environmental pH may modulate the proteases production and/or activity, as well as, the fungal virulence. The current study aimed evaluate the virulence and total protease activity of M. anisopliae CG 148 sensu lato (s.l.). Fungal aqueous suspensions or 5% mineral oil formulations were used in different pH ranges (5, 7, or 9). Suspensions and formulations were prepared using a pH meter and adjusted to 108 spores mL-1. In the bioassay, four groups were formed for each pH range: the aqueous fungal suspension, the oil-based fungal formulation and their respective controls (aqueous and oil-based), totaling 12 groups. Engorged females were immersed for 3 minutes and maintained under optimal conditions for evaluation of biological parameters. Total protease activity of the artificial medium (after filtration of mycelia) was assessed by azocasein hydrolysis at 72 hours of incubation in minimal medium supplemented with 1% R. microplus cuticle. Oil-based formulations did not yield significant alterations in the fungal virulence or enzyme activity. Nevertheless, the alkaline pH at aqueous suspensions reduced total protease activity and negatively influenced fungal virulence, reducing 1.5 times tick control percent. Based on these results, it is suggested that excessive alkalinity in strictly aqueous media may potentially interfere in the in vitro arthropodpathogenic fungal virulence.
ABSTRACT. Freitas M.C., Coutinho-Rodrigues C.J.B., Perinotto W.M.S., Nogueira M.R.S., Chagas T.T., Marciano A.F., Camargo M.G., Quinelato S., Gôlo P.S., Sá F.A. & Bittencourt V.R.E.P.[Hemocytes quantification in Rhipicephalus microplus engorged females infected by Beauveria bassiana s.l.] Quantifica- ção de hemócitos em fêmeas ingurgitadas de Rhipicephalus microplus infectadas por Beauveria bassiana s.l. Revista Brasileira de Medicina Veterinária, 37(Supl.1):63- 70, 2015. Departamento de Parasitologia Animal, Instituto de Veterinária, Anexo 1, Universidade Federal Rural do Rio de Janeiro, Campus Seropédica, BR 465 Km 7, Seropédica, RJ 23897-970, Brasil. E-mail: vaniabit@ufrrj.br Rhipicephalus microplus tick is an ectoparasite with a great negative impact for veterinary medicine. Under massive infestations cattle may present severe anemia; besides that, ticks can transmit pathogenic agents causing host death. Among the methods used to alternatively control ticks is the use of the arthropodpathogenic fungus Beauveria bassiana s.l. that has been considered promising due to the fungus capacity of penetration of full cuticle in all tick developmental stages, colonizing them and causing tick death. Arthropod immune response is basically composed of humoral and cellular components. Several cell types that actively work against microbial infection are present within the hemolymph. The aim of the present study was to evaluate the amount and identify hemocytes present in the hemolymph of R. microplus engorged females artificially inoculated with B. bassiana senso latu (s.l.) conidia (isolate CG 206). Fungal suspension (1 × 108 conidia/mL) or Tween 0.01% (control group) were inoculated in R. microplus engorged females. Hemolymph collections were made through the female dorsal region (for quantitative analysis) and the distal section of the legs (for qualitative analysis) 24, 48 and 72 hours after fungal inoculation. Hemocytes quantification was performed using a Neubauer chamber. Qualitative analysis was carried out by a smear of hemolymph on slides. Data were submitted to Mann-Whitney test for comparison of averages on a significance level of 5% (p <0.05). Comparison between unexposed females and females exposed to B. bassiana s.l. showed that hemolymph from the fungus treated group presented significant reduced amount of hemocytes 24 hours after fungal inoculation. Total amount of hemocytes 48 hours after fungal inoculation was 49.5 times lower in comparison with the amount observed 24 after fungal exposure. The following hemocytes were identified in tick females’ hemolymph: prohemocytes, granulocytes, plasmatocytes, spherulocytes and possible oenocytoids. Based on these results, it is concluded that inoculation of B. bassiana s.l. isolate CG 206 caused cellular alteration in the hemolymph of R. microplus females showing reduction of total amount of hemocytes 48 hours after fungal inoculation.
ABSTRACT. Marciano A.F., Coutinho-Rodrigues C.J.B., Perinotto W.M.S., Camargo M.G., Golo P.S., Sa F.A., Quinelato S., Freitas M.C., Angelo I.C., Nogueira M.R.S. & Bittencourt V.R.E.P. [Metarhizium anisopliae: influence of pH on enzyme activity and control of Rhipicephalus microplus ticks.] Metarhizium anisopliae: influencia do pH na atividade enzimatica e no controle de Rhipicephalus microplus. Revista Brasileira de Medicina Veterinaria, 37(Supl.1):85-90, 2015. Departamento de Parasitologia Animal, Universidade Federal Rural do Rio de Janeiro, BR 465, Km 47, Seropedica, RJ 23897-970, Brasil. E-mail: vaniabit@ufrrj.br Rhipicephalus microplus ticks are one of the major agents causing substantial losses to livestock worldwide. In the search for alternative control strategies, both in vitro and in vivo use of the arthropodpathogenic fungus Metarhizium anisopliae has shown promising results against this ectoparasite. During host colonization, protease production by M. anisopliae is considered one important virulence factor once it is directly related to the active penetration process carried by the fungus on the full host cuticle. Nevertheless, limitations as environmental pH may modulate the proteases production and/or activity, as well as, the fungal virulence. The current study aimed evaluate the virulence and total protease activity of M. anisopliae CG 148 sensu lato (s.l.). Fungal aqueous suspensions or 5% mineral oil formulations were used in different pH ranges (5, 7, or 9). Suspensions and formulations were prepared using a pH meter and adjusted to 108 spores mL-1. In the bioassay, four groups were formed for each pH range: the aqueous fungal suspension, the oil-based fungal formulation and their respective controls (aqueous and oil-based), totaling 12 groups. Engorged females were immersed for 3 minutes and maintained under optimal conditions for evaluation of biological parameters. Total protease activity of the artificial medium (after filtration of mycelia) was assessed by azocasein hydrolysis at 72 hours of incubation in minimal medium supplemented with 1% R. microplus cuticle. Oil-based formulations did not yield significant alterations in the fungal virulence or enzyme activity. Nevertheless, the alkaline pH at aqueous suspensions reduced total protease activity and negatively influenced fungal virulence, reducing 1.5 times tick control percent. Based on these results, it is suggested that excessive alkalinity in strictly aqueous media may potentially interfere in the in vitro arthropodpathogenic fungal virulence.