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首页> 外文期刊>Animal Production Science >Influence of stocking rate and mixed grazing of Angora goats and Merino sheep on animal and pasture production in southern Australia. 3. Mohair and wool production and quality
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Influence of stocking rate and mixed grazing of Angora goats and Merino sheep on animal and pasture production in southern Australia. 3. Mohair and wool production and quality

机译:安哥拉山羊和美利奴绵羊的放养率和混合放牧对澳大利亚南部动物和牧场生产的影响。 3.马海毛和羊毛的生产和质量

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摘要

The effects of animal species (AS; Angora goats, Merino sheep, mixed-grazed goats and sheep at the ratio of 1 : 1) and stocking rate (SR; 7.5, 10 and 12.5 animals/ha) on fibre production and quality were determined in a replicated experiment on improved annual temperate pastures in southern Australia from 1981 to 1984. Separately grazed sheep produced the most total clean fibre/ha at each SR. Mixed-grazed treatments produced amounts of clean fibre/ha similar to the arithmetic mean of sheep and goat treatments at 7.5/ha (21.9 versus 21.3 kg/ha), 10% more at 10/ha (28.3 versus 25.3 kg/ha, P < 0.05) and 7% more at 12.5/ha (31.6 versus 29.6 kg/ha, P < 0.10). Clean wool production/head was affected by AS and SR but not year. Clean mohair production was affected by SR and year but not AS. Variation in mean fibre diameter (MFD) accounted for 67 and 71%, respectively, of the variation in clean wool and clean mohair production/head. There was an AS × SR interaction for clean fibre production/t pasture. Growth rate of mohair was highest in autumn and least in summer. In each season, an increase in the SR reduced the clean mohair growth rate. Growth rate of wool was highest in spring and least in summer. Wool and mohair MFD were affected by an AS × SR interaction. Mohair MFD was also affected by year and season. At 10/ha, wool from mixed-grazed sheep had a greater MFD than wool from separately grazed sheep (20.2 versus 18.9 μm) and mixed-grazed goats grew mohair 1 μm coarser than separately grazed goats. At 12.5/ha mixed-grazed goats grew mohair 1.9 μm finer than separately grazed goats. Mohair MFD was predicted by a multiple regression that included average liveweight for the period of fleece growth, season of growth (summer 1 µm finer than winter) and year (range 1.27 µm). Mohair MFD increased 4.7 µm/10 kg increase in average fleece-free liveweight (P = 6.4 × 10–14). Fleece-free liveweight alone accounted for 76.4% of the variation in mohair MFD. There was an AS × SR interaction for the incidence of kemp and medullated fibres; under severe grazing pressure their incidence was suppressed. This experiment indicated that the principles associated with the effects of SR on wool production on annual temperate pastures apply to mohair production. Mixed grazing of Merino sheep and Angora goats produced complementary and competitive effects depending on the SR. Angora goats should not be grazed alone or mixed-grazed with sheep on annual temperate pastures at SR greater than that recommended for Merino sheep.
机译:确定了动物种类(AS;安哥拉山羊,美利奴羊,混合磨皮的山羊和绵羊,比例为1:1)和放养率(SR; 7.5、10和12.5动物/公顷)对纤维产量和质量的影响一项从1981年至1984年在澳大利亚南部改良的年度温带草场的重复实验。在每个SR上,单独放牧的绵羊生产的总清洁纤维/公顷最多。混合放牧处理产生的清洁纤维/公顷数量类似于绵羊和山羊处理的算术平均值,为7.5 /公顷(21.9比21.3千克/公顷),10 /公顷更多(28.3比25.3千克/公顷,P) <0.05)和以12.5 /公顷的比例增加7%(31.6比29.6千克/公顷,P <0.10)。清洁羊毛产量/头数受AS和SR的影响,但不受年份的影响。干净的马海毛产量受SR和年份影响,但不受AS影响。平均纤维直径(MFD)的变化分别占清洁羊毛和马海毛产量/头的变化的67%和71%。清洁纤维生产/吨牧场存在AS×SR相互作用。马海毛的生长率秋季最高,夏季最低。在每个季节中,SR的增加都会降低清洁马海毛的生长速度。春季的羊毛生长速率最高,而夏季则最小。羊毛和马海毛MFD受AS×SR相互作用的影响。马海毛MFD也受到年份和季节的影响。在10 / ha时,混种绵羊的羊毛比单独放牧的绵羊的羊毛具有更高的MFD(20.2对18.9μm),而混种山羊的马海毛比单独放牧的山羊粗1μm。在12.5 / ha的水平上,混牧山羊的马海毛比单独放牧的山羊细1.9μm。通过多重回归预测马海毛MFD,包括羊毛生长时期的平均活重,生长季节(比冬天细1 µm)和年份(1.27 µm)。马海毛MFD平均无羊毛活重增加4.7 µm / 10 kg(P = 6.4×10–14)。无羊毛活重仅占马海毛MFD变化的76.4%。肯普纤维和髓质纤维的发生率存在AS×SR相互作用。在严重的放牧压力下,它们的发病率得到了抑制。该实验表明,与SR对年度温带牧场上羊毛生产的影响有关的原理适用于马海毛生产。根据SR,美利奴羊和安哥拉山羊的混合放牧可产生互补和竞争作用。安哥拉山羊不应该在SR上超过美利奴羊推荐的温度的一年生温和牧场上单独放牧或与绵羊混合放牧。

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  • 来源
    《Animal Production Science》 |2010年第3期|p.168-176|共9页
  • 作者

    B. A. McGregor;

  • 作者单位

    Livestock Production Sciences, Future Farming Systems Research Division, Department of Primary Industries, Werribee, Vic. 3030, Australia. Present address: Centre for Material and Fibre Innovation, Deakin University, Geelong, Vic. 3217, Australia. Email: bruce.mcgregor@deakin.edu.au;

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