96 research outputs found

    Livestock genetic resources and production systems: a mediterranean overview

    Get PDF
    The Mediterranean Region is one of the oldest and historically one of the most prosperous cradles of agriculture. Throughout the centuries, cycles of prosperity and rural decline have been linked to the economic situation of society. From an agricultural point of view, the eco-environmental concept is flanked to that of the single geopolitical one, which includes major social-economic factors; on this basis, it would be possible to define the zone around the Mediterranean Sea as a relatively homogenous. This zone corresponds to a rich and complex historic and cultural system in which agriculture has always been carried out in difficult natural conditions: irregular seasons and rainfall, soil erosion, and pronounced reliefs, as an association of certain traditional dryland plants like the olive tree, the vine and the palm with cereals and dry pulses. The cow and sow have always been the main animal resources of Central and Northern Europe, as the ewe and goat have been of the Mediterranean, traditionally raised for the production of milk which was then transformed into typical local products. Even today, in this zone, products from small ruminants are more appreciated than the derivatives of obtained cow’s milk. In particular, products from multiple purpose breeds of the small ruminant species present, are largely characteristic of the animal types that have accompanied man during the last 100 centuries. These breeds supplied food (milk and meat), clothes (wool and leather) and fertilizer from dung. The existence of sheep and goats in ancient European and civilizations of the Near East, was already evident in the third millennium BC when animal images began to appear in paintings, incisions, scriptures and artistic representations. Improvement of agricultural and livestock production methods can best be obtained through the balanced utilization of traditional systems and more advanced technologies, without underestimating the possible damage and immediate impact which application of the very modern plant and animal techniques could rapidly have on the quality of the environment. The evolution of traditional extensive systems towards more intensive ones, should not be introduced by force nor by too much planning; in many cases, this violates the principle and role of the traditional raising of livestock which has survived for centuries with satisfactory results

    The potential to control Haemonchus contortus in indigenous South African goats with copper oxide wire particles

    Get PDF
    The high prevalence of resistance of Haemonchus contortus to all major anthelmintic groups has prompted investigations into alternative control methods in South Africa, including the use of copper oxide wire particle (COWP) boluses. To assess the efficacy of COWP against H. contortus in indigenous South African goats, 18 male faecal egg-count-negative goats were each given ca.1200 infective larvae of H. contortus three times per week during weeks 1 and 2 of the experiment. These animals made up an “established” infection group (ESTGRP). At the start of week 7, six goats were each given a 2-g COWP bolus orally; six goats received a 4-g COWP bolus each and six animals were not treated. A further 20 goats constituted a “developing” infection group (DEVGRP). At the beginning of week 1, seven of the DEVGRP goats were given a 2-g COWP bolus each; seven goats were treated with a 4-g COWP bolus each and no bolus was given to a further six animals. During weeks 1–6, each of these DEVGRP goats was given ca. 400 H. contortus larvae three times per week. All 38 goats were euthanized for worm recovery from the abomasa and small intestines in week 11. In the ESTGRP, the 2-g and 4-g COWP boluses reduced the worm burdens by 95% and 93%, respectively compared to controls (mean burden ± standard deviation, SD: 23 ± 33, 30 ± 56 and 442 ± 518 worms, P = 0.02). However, in the DEVGRP goats, both the 2-g and 4-g COWP treatments were ineffective in reducing the worm burdens relative to the controls (mean burdens ± SD: 1102 ± 841, 649 ± 855, 1051 ± 661 worms, P = 0.16). Mean liver copper levels did not differ between the ESTGRP goats treated with 2-g COWP, 4-g COWP or no COWP (mean ± standard error of the mean, SEM, in ppm: 93.7 ± 8.3; 101.5 ± 8.3; 71.8 ± 8.3, P = 0.07) nor did they differ between the DEVGRP goats (mean ± SEM, in ppm: 74.1 ± 9.1; 75.4 ± 9.1; 74.9 ± 10.0, P > 0.99). The copper values were considered adequate, but not high, for goats. The COWP boluses have the potential to be used in the place of conventional anthelmintics for the control of established H. contortus infections in indigenous South African goats, but their use as part of an integrated approach to control H. contortus in the field must be fully investigated

    Persistence of the efficacy of copper oxide wire particles against Haemonchus contortus in grazing South African goats

    Get PDF
    A study was conducted to examine the duration of anthelmintic effect of copper oxide wire particles (COWP) in grazing goats, as data for the persistence of efficacy of COWP in this host species is limited. Forty-eight indigenous male goats were infected naturally by grazing them on Haemonchus contortus-infected pasture. When the faecal egg count (FEC) in the goats was 3179 ± 540 eggs per gram of faeces (mean ± standard error), half the animals were treated with 4 g COWP (day 0; mean live weight = 25.5 ± 0.8 kg). Eight treated (COWP) and eight non-treated (CONTROL) goats were removed from the pasture on each of days 7, 28 and 56, maintained for 27 or 29 days in concrete pens and then humanely slaughtered for nematode recovery. Mean liver copper levels were in the high range in the goats removed from pasture at day 7 (treated: 191 ± 19.7 ppm; untreated: 120 ± 19.7 ppm; P = 0.022), but had dropped to normal levels at days 28 and 56. The mean H. contortus burdens of the treated versus the non-treated goats were, respectively, 184 ± 48 and 645 ± 152 for the goats removed from pasture at day 7 (71% reduction; P = 0.004), 207 ± 42 and 331 ± 156 at day 28 (37% reduction; P = 0.945) and 336 ± 89 and 225 ± 53 at day 56 (−49% reduction; P = 0.665). Weekly monitoring of FECs after treatment until slaughter indicated that the COWP-treated goats had lower FECs than the controls, the treatment main effect being significant at days 7, 28 and 56 (P < 0.01). The day main effect and the treatment × day interaction were only significant for the goats removed from pasture at day 28 (P ≤ 0.001). Packed cell volumes increased during the course of the experiment (day, P < 0.001), but the treatment main effect was significant only for the goats removed from pasture at day 28 (CONTROL 28 d, 28.65 ± 0.52% < COWP 28 d, 31.31 ± 0.52%; P < 0.001). No differences in live weight between groups were considered to be of any practical significance. The study indicated that persistence of efficacy of COWP is limited in goats, extending at most to 28 days after treatment. However, repeated COWP administration at three-month intervals may be safe, given that liver copper levels return to normal two to three months after COWP treatment
    corecore