The LOCAL project, 'Biodiversity and enhancement of local sheep and goat genotypes with a predominant aptitude for milk production', was developed in the Apulia region of Southern Italy. It adopted a multidisciplinary scientific approach to address the conservation of native sheep and goat breeds, and it aimed to engage a wide and diverse audience to contribute to the development of the territory. This work outlines some of the project's objectives and, in particular, the activities relating to the historical documentation, census and morphological characteristics of four breeds: the Gentile di Puglia sheep and the Grigia del Subappennino Dauno, Capestrano Pugliese and Antica Murgiana goat breeds. The project's results enabled the four breeds to be registered in the Regional Register of Animal Genetic Resources, paving the way for further initiatives aimed at implementing in situ and ex situ conservation of the breeds' genetic heritage. Furthermore, the paper presents actions aimed at raising awareness of the importance of animal biodiversity and native populations, with a particular focus on education, tourism, and productive services.
The interconnection between biodiversity loss, food system and climate change is a complex issue with profound implications for global sustainability. Small ruminant farming is a crucial part of addressing these challenges as it contributes to environmental, social, and economic resilience. In Italy, sheep and goat farming is most common in marginal areas with a prevalence of pastoral systems and low mechanization levels. In the Apulia region of Southern Italy, autochthonous small ruminant breeds are at high risk of extinction, due to changing agricultural practices and market pressures. Autochthonous breeds represent valuable genetic resources, adapted to the local environment and capable of producing high-quality products. Apulia boasts an ancient dairy tradition, producing a variety of cheeses from small ruminants, such as Canestrato Pugliese, a Protected Designation of Origin, and four cheeses (Cacioricotta, Pecorino Foggiano, Scamorza di Pecora, and Caprino) recognized as Traditional Agri-Food Products by the Italian Ministry of Agriculture, Food Sovereignty and Forests. These products represent an essential element for biodiversity conservation, encompassing ecosystems, autochthonous breeds, microbial diversity, traditional farming practices, and production systems. This review surveys the main small ruminant native breeds of Apulia region, highlighting their historical significance, distinctive traits, and traditional productions, to help shape strategies for animal biodiversity conservation.
Immune competence is a critical aspect of protecting animals from the negative consequences of disease. The activation of the immune response from inflammation is part of adaptive homeostasis that serves to eliminate danger, induce tissue repair, and restore tissue homeostasis. Therefore, the main goal for the organism is to control both the induction and suppression of inflammation and resist the onset of disease. In this condition, modulators of inflammatory responses are produced, including small proteins called cytokines, which exert a pro- or anti-inflammatory action in a context-dependent manner. Indeed, the cytokine profile could be considered a useful biomarker to determine the pathophysiology of certain diseases, such as mastitis, endometritis, change-induced heat stress, and zoonoses. Recently, buffalo breeding has attracted the interest of the research communities due to their high resilience; however, little is known about the immune mechanism activated under specific stressors. This review describes the complex immune competence of the buffalo in the presence of the most common infectious and non-infectious stressors. In addition, a brief description of methods for early diagnosis of disease using cytokine quantification will be introduced.
This study investigated the effect of increasing levels of farming intensification on some health-promoting compounds present in the meat of the Mediterranean mussel Mytilus galloprovincialis in the Northern Coastal Area of Gargano, Italy, during the spring season. The studied farming systems were: extensive dropper ropes farming (EDR: 70 m distance between backbones, 90 cm distance between dropper ropes); semi-intensive dropper ropes farming (SIDR: 70 m distance between backbones, 50/60 cm distance between dropper ropes) and intensive dropper ropes farming (IDR: 30 m distance between backbones, 60/70 cm distance between dropper ropes). Mussels’ vitamins content (B1, B2, B3, B6 and C), fatty acids fractions, and angiotensin I converting enzyme (ACE) and 2,2-diphenyl-1-picrylhydrazyl radical (DPPH) scavenging activities were investigated to assess the nutritional profile of mussels meat. The farming system affected the vitamin B2 content, with the EDR and IDR farming sites showing greater content than SIDR. Mussels from EDR site showed a percentage of n3 fatty acids always higher than 50 % across the sampling months. However, the average n3 value in mussels from EDR and SIDR was higher compared to IDR farming site. Mussels from EDR and SIDR evidenced lower values of Atherogenic and Thrombogenic indexes compared to mussels reared under intensive conditions. Mussels collected from the SIDR farming site exhibited higher antioxidant and ACE-inhibitory activities than those collected from IDR farming site. This study suggests that lower stocking density offers better farming conditions able to modulate the nutritional composition and health benefits of mussels reared in the Northern Coastal Area of Gargano.
Animal feeding has a great impact on the management of beef farms, also affecting the nutritional properties of the meat. Therefore, in this study, the following two forage-to-concentrate ratios were tested on twenty farmed Podolian young bulls: high forage-to-concentrate (HF:C) ratio of 65:35 vs. low forage-to-concentrate (LF:C) ratio of 45:55. The fatty acid profile, bioactive compounds, α-tocopherol content, and oxidative stability were evaluated on Longissimus thoracis muscle vacuum-packaged and aged at 2 °C for 11 and 18 days, respectively. Feeding the highest forage-to-concentrate ratio improved the fatty acid profile by decreasing the saturated fatty acids (p < 0.01) and increasing the monounsaturated (p < 0.05) and n-3 polyunsaturated fatty acids (p < 0.001). In particular, the percentages of linolenic acid (C18:3n-3), eicosapentaenoic acid (EPA-C20:5n-3), DPA (C22:5n-3), and docosahexaenoic acid (DHA-C22:6n3) were significantly higher (p < 0.01) in the HF:C group than the LF:C group. The highest forage-to-concentrate ratio also increased the contents of bioactive compounds, such as creatine (p < 0.001), carnosine (p < 0.01), and anserine (p < 0.05). This study suggests that a diet composed of 65% forage may be a feasible strategy to enrich meat with healthy bioactive compounds.
The aim of the study was to evaluate β-CN variants and their effects on milk nutritional composition and protein profile in Podolian cattle breeds reared in Gargano Promontory (Southern Italy). Individual milk samples of Podolian and Holstein Friesian (HF) cattle were analyzed for β-CN allele and genotype frequencies, chemical composition, and protein fractions of milk. In both populations, the most common allelic variant was A2, followed by A1, whereas alleles B and I had frequencies lower than 10% in both populations. A total of 6 genotypes in Podolian population (A1A2, A1B, A2B, A1I, A2I, A2A2), and 7 genotypes (A1A1, A1A2, A1B, A2B, A1I, A2I, A2A2) in HF were detected. Milk protein, lactose, and casein percentages were affected by β-CN allele in both breeds. In particular, alleles A1 and A2 resulted in higher levels of both protein and casein in HF, whereas in Podolian, allele I showed the highest, alleles A1 and A2 intermediate, and B the lowest levels of the mentioned parameters. Protein fractions were influenced by β-CN alleles, and the most abundant protein fractions were β- and αs1-CN in both breeds, although with different percentage distribution. In Podolian milk, regardless of the detected allele, a similar behavior was observed for β- and κ-CN, and opposite to that observed for αs2-CN. The study of the genetic variability of milk proteins offers the opportunity to valorize the nutritional, technological, and functional features of Podolian cattle dairy productions as a strategy to sustain the economic value of this ancient breed which is well adapted to the farming systems in marginal areas.
The objective of this study was to investigate the nutritional characteristics of Mytilus galloprovincialis cultivated in three sites of the Northern Coastal Area of Gargano. The mussel farms were characterized by different distances of dropper ropes (extensive dropper ropes: EDR; intensive dropper ropes: IDR; semi-intensive dropper ropes: SIDR). Mussels’ chemical composition, fatty acids, and amino acids profiles were investigated at monthly intervals, from April to June. The fat content of mussels from EDR and SIDR sites was lower than values observed for mussels of the IDR in both the April and June sampling months. An increase in the main saturated fatty acids (C15:0; C16:0; C17:0 and C18:0; p < 0.001) and polyunsaturated fatty acids (C18:2c9c12, C18:3n3, C20:2n6, C20:4n6, and C22:6n3; p < 0.001) was found in the mussels collected in June from all farms analyzed. In terms of farming systems, mussels from the EDR and SIDR sites exhibited the greatest content of beneficial molecules like conjugated linoleic acids isomers (p < 0.001), glutamic acid (p < 0.05), serine (p < 0.05), tryptophan (p < 0.001), hydroxyproline (p < 0.05) and proline (p < 0.01). This study revealed that the farming system can affect the nutritional composition of mussels and evidenced that EDR and SIDR are the most effective cultured farming methods in the Gargano area.
The fatty acids profile of meat can be influenced by the amount and type of the lipid supplemented in animal feeding with a modulation of the rumen biohydrogenation of dietary polyunsaturated fatty acids (P UFA). Therefore, the aim of the present study was to assess the nutritional and sensory quality of bovine meat as affected by different oilseeds supplementations. Thirty two Podolian x Limousine young bulls were randomly allocated into four experimental treatments: control diet (CO) with no supplemental fat, linseed diet (LS) with a supplementation of 10% whole linseed; sunflower diet (SS) with supplementation of 10% of sunflower seeds; LS+SS diet: with supplementation of linseeds (5%) and sunflowers (5%). After finishing period (140 days), all animals were slaughtered and fatty acids profile and sensory proprieties were evaluated on meat. The results showed that dietary supplementation with linseed or/and sunflower seeds in the diet decreased the percentage of saturated fatty acids (P<0.001) and increased monounsatured (P<0.05) and polyunsaturated fatty acids (P<0.05). Feeding diets containing linseeds as respect with sunflower seeds increased the amount of total n-3 P UFA (P<0.01) and, in particular, of linolenic (P<0.01), eicosapentaenoic (P<0.001), docosapentaenoic (P<0.01) and docosaeasoenoic (P<0.05) acids. An improvement in tenderness, juiciness, chewiness and flavour intensity was observed in beef from animals supplemented with oilseeds. This study suggests that linseed alone or in combination with sunflower seeds is an effective strategy to enrich meat with beneficial fatty acids and to improve some sensory attributes appreciated by consumers.
In the context of climate change, there has been an increased interest in improving management practices for animals genetically adapted to extreme environmental conditions, such as buffaloes. The temperature–humidity index (THI) is used to determine the severity of heat stress in livestock. This study aimed to evaluate the cytokine profile, oxidative staus, differential somatic cell count (DCC), and the surface expression and activity of myeloperoxidase (MPO) in the somatic cells (SCs) of buffalo. Milk samples (n = 216) were collected from the spring to summer season under three different THI classes (THI < 72; ≤72 THI < 76, and THI ≥ 76). The cytokine profile was determined using ELISA, and the expression of DSCC and MPO was determined by flow cytometry. MPO activity was performed on SC extracts using a specific ELISA kit. Oxidative status was determined by the antioxidant/oxidant balance combining the free radical scavenging activity levels, and reactive oxygen and nitrogenous species. The results on the cytokine profile showed that at the THI ≥ 76 the levels of both IL-10 and IFN-γ were highest. IL-1β secretion was lower at the THI < 72 than at the THI values ranging from ≤72 THI < 76. Higher levels of both TNF-α and IL-12 were registered in both THI < 72 and THI ≥ 76 classes. The level of IL-4 was higher in the THI ≥ 76 class than in the ≤72 to <76 range. Data on DCC showed a decrease in the percentage of macrophages and lymphocytes as the THI increased from the ≤72 to <76 range to THI ≥ 76. Furthermore, the highest percentage of polymorphonuclear leukocyte (PMNLs) was registered in both ≤72 to <76 and THI ≥ 76 classes. The MPO activity and surface expression on SC were lower at a THI above 76, which could be associated with an absence of inflammation. A condition of oxidative imbalance was registered as demonstrated by the lower levels of antioxidant/oxidant balance along with increasing THI. Present data demonstrated that buffaloes were able to modulate the alteration of immune response activated by heat stress throughout a series of cross-linked mechanisms involving cytokine networks, different somatic cell distribution, and oxidative status.
Milk and its derivatives are included in a balanced diet of humans as excellent sources of proteins, vitamins, and essential minerals that are functional nutrients. Knowledge about the nutritional benefits or harms due to milk consumption has been expanding in recent years. We previously explored, in rodent models, the metabolic effects of isoenergetic intake of milk derived from cows, donkeys, or humans, while the impact of goat’s milk intake has remained unexplored. The aim of this work was to investigate, in an animal model, the effects of dietary supplementation with goat’s milk on energy homeostasis and inflammatory state, focusing on the modulation of mitochondrial functions in most metabolically active organs, such as skeletal muscle and the liver. In addition, we highlighted a link between nutrient intake, substrate metabolism, and the orexinergic system. Our results indicate that goat milk improves mitochondrial oxidative capacity and reduces inflammation and oxidative stress in both organs. Notably, goat milk lowers the circulating levels of Orexin-A, a neuropeptide that plays a crucial role in regulating peripheral energy balance and central nervous system mechanisms. These data provide the first evidence that the anti-inflammatory and antioxidant effects of goat milk are mediated by the modulation of mitochondrial functions and orexinergic signaling.
In this study, the effect of hazelnut skin dietary supplementation on antioxidant status and cytokine profile was evaluated in growing lambs. A total of 22 male lambs at the age of 2 months, balanced for their initial live weight (15.33 ± SD 1.79 kg), were selected and allocated into two experimental groups: the control group (CON) receiving a maize-barley-based concentrated diet, and the hazelnut group (HS) receiving supplementation with hazelnut skin (150 g/kg on the dry matter) as a maize substitute for the concentrate diet. The experiment lasted for 56 days. Peripheral blood was collected at 7, 35, and 56 days of the experiment. The free radical scavenging activity using 1,1-diphenyl-2-picrylhydrazyl (DPPH) radical scavenging assay, the total antioxidant capacity assay (TAC), the reactive oxygen species (ROS), and reactive nitrogen species (RNS) were determined in plasma. The secretion of IL-1β, IL-6, and IL-10 cytokines was also determined by ELISA. The DPPH was affected by the interaction between feeding strategy and time of sampling (p = 0.039) with a higher level of DPPH at 7 days in the HS group than the CON group. The time of sampling affected the levels of plasma TAC (p = 0.016), while the ROS/RNS levels showed a higher value in the HS group (p < 0.001), on average. The antioxidant/oxidant index, which combines the TAC and the ROS/RNS levels, was not affected by the inclusion of hazelnut skin in the diet (p = 0.394). The cytokine profile showed a lower IL-6 secretion at both 35 and 56 days than at 7 days, on average. Furthermore, the feeding treatment affected the IL-1β level, showing a lower level in the HS group than in the CON group on average. Lambs from the HS group had higher IL-10 plasma levels than the CON group at 7 days of the experiment. The present data highlight an antioxidant effect and a modulatory role in the cytokine profile of HS supplementation in growing lambs.
The impact of flaxseed and Ascophyllum nodosum supplementation in ewes during the summer season on the fatty acid and sensory profile and consumer preference for cheese was evaluated. Comisana ewes (n = 32) were divided into four groups: a control (CON) group fed (30 days) with pelleted concentrate, a flaxseed (FS) group fed with whole flaxseed supplementation (250 g/ewe per day), an A. nodosum (AN) group fed with 5% of A. nodosum (into 1 kg/ewe of pelleted concentrate), and an FS + AN group fed with a combination of algae and flaxseed. Pecorino cheeses were analysed after 1 day (curd) and after 45 days (cheese) of ripening. Curd from the FS and FS + AN groups registered higher contents of MUFA, n-3, and n-3/n-6, and lower levels of atherogenic and thrombogenic indexes than curd from the CON and AN groups, as well as a higher content of C18:3n-3, C18:2t9t12, and CLA9c11t, and n-3 and n-3/n-6 fatty acids. Consumers attributed the lowest scores for appearance attributes to AN Pecorino cheese; while Pecorino cheese from FS and FS + AN was judged to have a high-strength flavour attribute and a low rancid, mouldy, and piquant flavour, in comparison with cheese from AN. Flaxseed supplementation could be an effective strategy to improve the nutritional quality of the lipid fraction of cheese without having a detrimental impact on its sensory attributes, especially during the summer season.
The gut microbiota plays a key role in health and disease, but it could be affected by various factors (diet, lifestyle, environment, genetics, etc.). Focusing on diet, while the role of the different styles and choices (Mediterranean vs. Western diet, vegan or vegetarian diets) has been extensively studied, there are a few comprehensive papers on the effects of additives and food processing. Therefore, the main goal of this manuscript is to propose an overview of the link between ultra-processed foods and the gut microbiota based on papers and data available in the literature. The literature search was performed on PubMed and Clinicaltrials.gov, and after the selection of the most relevant articles, the paper proposes a synopsis of the effects of some classes of additives (sweeteners, preservatives, emulsifiers, glutamate, etc.), as well as of some treatments, on the gut microbiota and some pathological conditions.
This study investigated the effect of hazelnut skin by-products supplementation on lamb myofibrillar proteome changes during post-mortem storage (0, 4, and 7 days). Gel-based proteomics and bioinformatics approaches were applied to reveal the underlying biochemical pathways and their importance in lamb meat texture development. Twenty-two Valle del Belice male lambs were randomly assigned to two dietary treatments: control (C) for lambs fed with maize-barley diet, and hazelnut skin (H) for lambs fed hazelnut skin by-product as maize partial replacer in the concentrate diet (150 g/kg DM basis). A greater myofibrillar fragmentation index (MFI) was found in meat from the C group at day 0 of storage (91.33 vs 98.38 in H and C groups, respectively). Conversely, starting from 4 days of storage, higher MFI values were observed in meat from lambs fed hazelnut skin (113.74 and 116.1 vs 99.28 and 107.26 in H and C groups at 4 and 7 days, respectively). Myofibrillar proteome changes estimated by SDS-PAGE and immunoblotting revealed a degradation of desmin (P<0.01) and troponin T (P<0.001) intact proteins, and an increase in the abundance of the appearing 30 kDa fragment (P<0.001) after 4 days of storage in meat from H than the C group. In-depth proteomics and bioinformatics revealed 44 proteoforms (26 unique proteins), mainly involved in actin filament-based process/cytoskeleton organization, energy metabolism, and heat shock proteins, as the major interconnected pathways impacted by hazelnut by-product feeding strategy on lamb meat quality. Twelve proteins were proposed in this trial as potential biomarkers of lamb meat texture as a consequence of hazelnut skin by-products supplementation.
Essential oils are bioactive compounds, originating from the secondary metabolism of plants, recognized for their ability to modify rumen fermentation, gut health, and to function as antioxidant molecules in small ruminants. Indeed, small ruminant-derived products, such as milk, dairy, and meat can benefit from the utilization of essential oils, that have demonstrated antimicrobial, antioxidant and anti-inflammatory affects, in the animals’ diet. This review reports on the findings that demonstrates the possible role of essential oils in controlling greenhouse gas emissions from ruminants through the modulation of ruminal microbial populations, in sustaining animal health and welfare by affecting the gut microbiota, and in ameliorating animals’ products through enhancement of their nutritional composition from a human diet perspective. However, the current review highlighting the inconclusive findings related to the use of essential oils in small ruminant nutrition, supports the need of further studies to better understand the administration of how essential oils and to explore their specific actions at the molecular level.
Nonconventional technologies, such as high-intensity ultrasound (HIUS), have been studied as alternatives for conventional thermal processes, mainly in dairy industries, resulting in products with higher nutritional value, improved sensory properties, increased functional activity, and better rheological characteristics. HIUS applications have been investigated in dairy products, but studies involving cheeses are still scarce. This review aimed to present the main effects of ultrasound technology applied to different processing steps of cheese manufacturing on cheese characteristics and milk constituents' preservation. Studies reported microbial inactivation, increased yield, positive effects on nutritional value (higher concentration of bioactive peptides, antioxidant activity, and inhibition of α-amylase, α-glucosidase, and angiotensin-converting enzymes), shorter processing times, positive changes in texture (lower hardness and higher elasticity), and improved sensory-related characteristics (flavor compounds, lighter color).
Goat husbandry is widespread due to high adaptability of goat to different and extreme environments. Goat milk is valuable from a nutritional point of view in terms of both protein and lipid fraction. The complex polymorphism of its casein fractions as well as the peculiar fatty acid profile makes goat milk interesting for its high potential in exploitation for human health. Genetic polymorphisms of milk proteins play an important role both in eliciting different allergic reaction and for derived peptides with functional properties. The purpose of the present chapter is to report information on the possible impact of goat milk protein and lipid fractions on cow’s milk protein allergy, and on some infant diseases as generalized epilepsy and metabolic disorders.