Field investigations on the control of Galba truncatula by Zonitoides nitidus were carried out over the past 30 years in the different types of lymnaeid habitats located in central France. When a layer of mowed vegetation was used to cover G. truncatula habitats at the end of June, the introduction of adult Z. nitidus (20/m2) eliminated lymnaeid populations after 2 years of control in habitats located in swampy meadows, around the heads of intermittent springs, in areas trampled by cattle, and along river or pond banks. In the case of wild watercress beds, 3 years were necessary. The best results (elimination of G. truncatula after a single year of control) were obtained using an association of snails (Z. nitidus+Oxychilus draparnaudi), or a mixed control (a first application of 0.1mg/l CuCl2, followed 3 months later by the introduction of Z. nitidus). Recolonization of treated habitats by G. truncatula coming from downstream populations was noted 3 years following the last application of biological control. Apart from the regular introduction of Z. nitidus in several watercress beds, the use of this snail to control G. truncatula has not become generalized in cattle- and sheep-breeding farms. The reasons for this situation are probably the complexity of applying this control in the field by nonspecialists and the difficulty of selecting the period of snail control at the end of June due to frequent local rainfall at this time.
Experimental investigations in eight open drainage ditches and furrows from central France were carried out to analyse the dispersal of floating metacercariae of two digenean species by running water and to determine the outcome of larvae which settled on Nasturtium officinale (watercress). The frequencies of larvae found after their transport by water ranged from 33% to 49.7%, thus indicating that more than half of the metacercariae used in this experiment had fallen to the bottom of the water during this transport. The nature of the site (furrow, or ditch supplied by a spring) had a significant effect on the distribution of floating larvae, while the digenean species had no effect. Low percentages of metacercariae on watercress were noted in furrows (3.5-4.3% of larvae) and ditches (0.8-1.3%). When the watercress grew, most larvae that had settled on leaves and stems died but there were always several living metacercariae on this plant (0.7-1.5% of larvae for Fasciola hepatica and 0.2-0.5% for Paramphistomum daubneyi). The weak buoyancy of these floating cysts on running water limited their dispersal and, consequently, led to a real diminution of risks incurred by definitive hosts towards these metacercariae.
The use of anthelmintics is strongly limited in organic farming. This may induce a change in the intensity (no of worms) and diversity (proportions of species) of helminth infection. Helminths remain a major preoccupation in organic sheep farming: high levels of infection have been recorded on several farms and helminth diversity is always higher. The helminth infection in milk cattle of northern Europe is controlled and diversity is higher in organic farms, as recorded in sheep. The role of helminth diversity on intensity is still unclear. Grazing management is one of the means to controlling helminths. The use of safe pastures for calves and sheep after weaning is one of the major components of control. The use of alternate or mixed grazing is common for cattle in northern countries but is uncommon for sheep in France. Grazing management is not sufficient to controlling infection in sheep and conventional anthelmintic treatments are performed. Additionally, alternative treatments are used. The alternative therapies based on phytotherapy or homeopathy are largely recommended in organic farming but do not have any demonstrated efficacy. More research is needed to evaluate such therapies.
A retrospective study was carried out over a 10- to 12-year period to analyse the changes in prevalences of natural fasciolosis and paramphistomosis among cattle and snails in central France, and to determine the causes which had induced these changes. The prevalences of natural fasciolosis in cattle increased from 1990 to 1993 (13.6% to 25.2%) and diminished afterwards up to 1999 (at 12.6%). Those of natural paramphistomosis showed a progressive increase between 1990 and 1999 (from 5.2 to 44.7%). The prevalences of natural infections and the numbers of free rediae counted in the snails (Lymnaea truncatula) infected with F. hepatica did not show any significant variations over time. By contrast, the prevalences of natural paramphistomosis in snails significantly increased from 1989 to 1996 and remained afterwards in the same range of values (3.7-5.3%), while the number of free rediae significantly increased up to 2000 (from a mean of 6.5 to 13.8 rediae per infected snail, respectively). Three hypotheses may explain the increase of paramphistomosis in cattle and snails: a better quality of diagnosis for the detection of P. daubneyi eggs in veterinary analysis laboratories, the use of specific molecules in the treatment of cattle fasciolosis since 1993, and the lack of an effective treatment up to now against cattle paramphistomosis. Since the objective of most farmers in central France is to obtain the highest antiparasitic efficiency with a single treatment of cattle per year, it is reasonable to assume that the prevalence of bovine paramphistomosis will continue to increase in the future.
A helminthological study was undertaken at five sheep meat organic farms in the centre of France. The data obtained were compared with two extensive (contemporary of present study) or semi-intensive (literature data) conventional sheep meat farms. The nematode fauna of the region could be characterised by the presence of Trichostrongylus axei alongside with the dominant species recorded in other areas (Teladorsagia circumcincta and Trichostrongylus colubriformis with few Haemonchus contortus). The average intensity of infection was slightly less than 7000 worms in the digestive-tract; infection was on average higher in organic farms, although one organic farm had very low infection. This high intensity could be due to the lower frequency of anthelmintic treatments in these farms. Species/genera diversity was much higher in organic farms. Diversity was positively correlated to the area of pastures available and to the reduction of the number of treatment of ewes.
The pharmacokinetics and mammary excretion of eprinomectin were determined in cattle following topical administration at a dose rate of 0.5 mg kg(-1). The kinetics of plasma and milk concentrations were analysed using a one-compartment model. The maximum plasma concentration of 43.76 ng ml(-1)occurred 2.02 days post administration, and the mean residence time was 4.16 days. Eprinomection was detected in the milk at the first sampling time and thereafter for at least 15 days. Comparison of the milk and plasma data demonstrated the parallel disposition of the drug in the milk and plasma with a milk / plasma concentration ratio of 0. 102+/-0.048. The amount of drug recovered in the milk during this period was 0.109% +/- 0.038 of the total administered dose. This very low extent of mammary excretion resulted in low concentrations of eprinomectin in milk. This supports the permitted use in lactating cattle, as the maximum level of residue in milk did not exceed the maximum acceptable limit of 30 ng ml(-1).
Fasciola hepatica infections of Lymnaea truncatula (2 miracidia/snail) were performed to study metacercaria production in relation to the snail confinement in petri dishes (1 or 2 snails/dish). Snails originated from two populations living at 500 and 750 m in altitude, and were fed on lettuce steeped by a 5-day immersion in spring water. The prevalence of infection was 82 % in the snails from Courcelles 1 (1 snail/dish), 63 % in those from Courcelles2 (2 snails/dish), and only 45 % in those form Saint-Ours (1/dish). The total number of metacercariae per cercaria-shedding snail was 107.0, 56.2, and 56.5, respectively. The mean number of metacercariae recorded in the Courcelles2 group until the day 8 of the shedding period was significantly higher than those noted in the two other groups. The method for L. truncatula breeding using steeped lettuce give a good production of parasites (more than 42,000 metacercariae originating from 581 cercaria-shedding snails over 3 weeks). In contrast, the confinement of 2 snails in each petri dish was unfavorable on metacercaria production and must be avoided, even though cercaria exit from snails was stimulated during the first 8 days of the shedding period.