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Effects of stocking rate in spring on liveweight and wool production of sheep grazing annual pastures

机译:春季放牧率对放牧年草羊活重和羊毛产量的影响

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Two experiments examined the effects of different stocking rates in spring, and hence the availability of annual pastures, on changes in liveweight and wool production in Merino wethers (Experiments 1 and 2 respectively: age 5 and 2+-year-old; liveweight 63.8 ¦ 0.64 (s.e.m.) kg and 43.8 ¦ 0.34 kg; condition score 3.9% 0.14 and 3.l ¦ 0-08). In Experiment 1, stocking rates were 8, 16, 24, 32 and 40 sheep/ha from 8 August, 1989 f9r 122 days; Experiment 2 involved an additional stocking rate of 48 sheep/ha from 23 August, 1990 for 98 days. Feed on offer (FOO kg DM/ha) declined (P < 0.01) linearly as stocking rate increased. Stocking rate and initial FOO (ranging between 1100 and 7000 kg DM/ha) had no significant effects on pasture growth rate (PGR) through most of spring. Late in spring, increased stocking rates resulted in greater (P < 0.05) PGR. The total amount of pasture produced in the grazing period was not significantly affected by stocking rate (Expt 1, 7530 to 8200 kg DM/ha; Expt 2, 6390 to 6860 kg DM/ha). The relationships between liveweight change (LWC) or wool growth rates (WGR) and FO, during the period until pasture wilting at the lowest stocking rate (83 days in Expt 1; 76 days in Expt 2), were described by Mitscherlich equations. More than 74% of the variation in LWC or WGR was explained by differences in green FOO. In Expts 1 and 2 respectively, more than 90% of the maximum liveweight gain (66 and 192 g/day) was achieved at a FOO of 4000 or 3000 kg DM/ha, and sheep maintained weight at 2000 or 1000 kg DM/ha. More than 90% of the maximum WGR (22.3 and 19.0 g/day) was achieved at a FOO of 3000 or 2000 kg DM/ha. More than 70% of the variation in WGR was explained by LWC in both experiments. The slopes of the linear relationships were 0.047 g wool/g LWC in Expt 1, and 0.024 g wool/g LWC in Expt 2. At liveweight maintenance, sheep produced 15% less (Expt 1) or 25% less (Expt 2) wool than those grazed under conditions which allowed maximum rates of liveweight gain. Fibre diameter (FD) and length of wool grown were affected in the same manner as WGR by increases in FOO and hence LWC. In Expts 1 and 2 respectively, total clean wool weights were reduced by 17 and 9 g, mean FD by 0.05 and 0.02 microns and staple length by 0.35 and 0.13 mm, for each increase of one sheep/ha during the spring treatment periods. The effects of stocking rate in spring on annual wool production, mean FD and staple length were described by linear (P < 0.05 to P < 0.01) relationships. Standard deviation of midside FD (Expt 2), staple strength and position of break (both experiments) did not change significantly with stocking rate. These results indicate that grazing to a lower FOO during spring can be used to manipulate the amount and characteristics of wool produced by Merino wethers grazing annual pastures in Mediterranean climates with 600-700 mm rainfall.
机译:两项实验考察了春季不同放养率以及年牧场的可利用性对美利奴绵羊的活重和羊毛产量变化的影响(实验1和2:年龄分别为5岁和2+岁;活体重63.8 ¦ 0.64(sem)公斤和43.8×0.34公斤;状况得分3.9%0.14和3.l×0-08)。在实验1中,自1989年8月8日起,放牧率为8、16、24、32和40绵羊/公顷,f9r 122天;从1990年8月23日开始,实验2涉及98头羊/公顷的额外放养率。供应量(FOO kg DM / ha)随着放养率的增加而线性下降(P <0.01)。整个春季大部分时间内,放牧率和初始FOO(介于1100至7000 kg DM / ha之间)对牧场生长率(PGR)均无显着影响。春季末期,库存量增加导致PGR较高(P <0.05)。放牧率对放牧期牧场的总产量没有显着影响(Expt 1,7530至8200 kg DM / ha; Expt 2,6390至6860 kg DM / ha)。用Mitscherlich方程描述了直到牧草以最低放养率枯萎之前的活重变化(LWC)或羊毛生长率(WGR)与FO之间的关系(Expt 1中为83天; Expt 2中为76天)。 LWC或WGR差异的74%以上由绿色FOO的差异解释。在实验1和实验2中,当FOO为4000或3000 kg DM / ha时,达到90%的最大活体增重(66和192 g /天),而绵羊的体重保持在2000或1000 kg DM / ha 。当FOO为3000或2000 kg DM / ha时,可达到最大WGR的90%以上(22.3和19.0 g /天)。在两个实验中,LWC都解释了超过70%的WGR变化。线性关系的斜率在Expt 1中为0.047 g羊毛/ g LWC,在Expt 2中为0.024 g羊毛/ g LWC。在维持体重的情况下,绵羊的羊毛减少了15%(Expt 1)或25%(Expt 2)羊毛。比那些在允许最大体重增加率的条件下放牧的牧羊犬。 FOO和LWC的增加会以与WGR相同的方式影响纤维直径(FD)和生长的羊毛长度。在春季处理期间,每增加一头绵羊/公顷,分别在Expts 1和Exps 2中,清洁羊毛的总重量减少了17和9 g,平均FD减少了0.05和0.02微米,短纤长度减少了0.35和0.13 mm。春季的库存率对年羊毛产量,平均FD和短纤维长度的影响通过线性(P <0.05至P <0.01)关系来描述。中间FD的标准偏差(实验2),订书钉强度和折断位置(两个实验)都没有随着放养率的变化而显着变化。这些结果表明,春季放牧至较低的FOO值可用于控制在600-700 mm降水量的地中海气候下,一年生牧场的美利奴绵羊放牧的羊毛的数量和特性。

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