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31.
32.
温度对动物生殖机能具有重要的影响,本文分别阐述热应激对雌性动物发情、受胎率、胚胎成活率、产仔数以及对雄性动物繁殖性能的影响,并提出了热应激对动物生殖机能影响的可能作用机理。 相似文献
33.
变截面构件的剪应力计算 总被引:1,自引:0,他引:1
变截面构件的弯曲变形是实际构件常见变形之一,现行钢筋混凝土设计规范提供的和实际设计计算应用的剪应力计算公式未考虑截面变化的影响,有较大的误差。本文用材料力学方法推出考虑变截面影响的剪应力计算公式,以便在实际设计计算应用。 相似文献
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35.
橡胶树低温伤害的生理反应 总被引:4,自引:1,他引:3
在人工零上低温下,巴西橡胶树(Hevea brasiliensis)叶质膜透性随低温处理时间的延长而持续上升,抗冷品系的上升速率比不抗冷品系慢。呼吸强度和ATP含量均随处理时间的延长而持续下降,抗冷品系下降速率比不抗冷品系慢。叶绿体Mg~(++)—ATPase活性也表现出明显抗性差异。可见,低温下叶组织的质膜透性、呼吸强度、ATP含量以及Mg~(++)—ATPase活性的变化与品系抗冷性有关。低温下呼吸强度、ATP含量与质膜透性变化呈负相关,质膜透性的变化与供能有关。 相似文献
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Co-mingling weaned pigs often results in aggressive behavior which can result in injury and reduced performance. This experiment examined the effect of Acclimate™, a product reported to reduce equine aggression, on weaned pig aggression and growth performance. Weanling pigs (n=214, avg. wt.=5.93 kg) were blocked by weight, sex and litter (n=25) and randomly assigned to either Acclimate™ treatment or a control group. Acclimate™ treated pigs were marked on the nose, face and neck. Pigs were individually identified and videotaped to determine frequency of aggressive sequence (FAS) and duration of aggression (DOA) on an individual pig basis. Pig weights and feed consumption were used to determine feed intake, total weight gain (TWG), average daily gain (ADG) and feed to gain ratio (F/G). Differences between litter, sex and treatment for FAS, DOA, F/G and ADG were tested using GLM, SAS. Neither Acclimate™ treatment or sex had a significant effect on FAS, TWG or F/G. However, there was a trend towards reduced duration and intensity of aggression in Acclimate™ treated pigs (p=0.1). There was a significant effect of litter (p<0.01) and TWG (p<0.001) on FAS at both 1 and 3 weeks. Acclimate™ treatment of weaned pigs does not decrease FAS, but may decrease the intensity and duration of aggression without negatively effecting growth. 相似文献
38.
水稻旱作对其生长量和经济产量的影响 总被引:11,自引:0,他引:11
1998~1999年,研究了水稻旱作条件下,不同生育时期受水分胁迫后对作物生长量的影响。结果表明:不同指标对水分胁迫时期的敏感性不一,植株高度对抽穗期水分胁迫最敏感;单株绿叶面积和单株地上部干重对幼穗分化后期水分胁迫最敏感;根系干重和根冠比对幼穗分化前期水分胁迫最敏感;幼穗分化后期水分胁迫对经济产量影响程度最大,无效分蘖期水分胁迫对产量影响程度最小。 相似文献
39.
Variation in the development of secondary dormancy in oilseed rape genotypes under conditions of stress 总被引:6,自引:0,他引:6
Summary A substantial amount of seed is left in the fields before and during harvest of oilseed rape. Although this crop exhibits little or no primary dormancy, the absence of certain environmental cues that promote germination of imbibed seeds induces secondary dormancy. The work reported investigated the extent to which environmental stress conditions, including osmotic stress, low oxygen stress and anaerobiosis, induce secondary dormancy in oilseed rape, and examined the variation in development of secondary dormancy between and within genotypes. Osmotic stress was most effective in inducing dormancy. Anaerobic treatment produced very few dormant seeds, as did an atmosphere low in oxygen and high in nitrogen. The development of secondary dormancy under osmotic stress varied considerably between and within genotypes. Dormancy ranged from almost zero to about 60% for winter genotypes and about 85% for spring types. Within genotypes, variations occurred between seed lots and years of harvest. Temperature variations affected the percentage of dormant seeds. More dormant seeds were likely to be produced with incubation under water stress at 20 °C than at 12 °C. In winter genotypes, fewer dormant seeds were produced when incubation temperature and germination test temperatures differed. Thus, incubating at 20 °C and 12 °C, followed by germination tests at 20 °C and 12 °C, respectively, produced most dormant seeds. Also, in the winter genotypes, the potential development of secondary dormancy was positively correlated with the pattern and speed of germination of untreated seeds. 相似文献
40.
碳酸氢根和铵态氮共同对菜豆生长及养分吸收的影响 总被引:5,自引:1,他引:5
以菜豆为材料进行水培试验, 探讨了高浓度NH4+-N与HCO3-共存介质对菜豆生长发育及其营养吸收的影响, 结果表明: ①以HCO3--N 为主要氮源时, 菜豆生长状况最好; 以NH4+-N为主要氮源且无HCO3-存在时, 培养前期菜豆根系就发生受害现象, 叶片出现萎蔫; 但加入HCO3-后, 随着营养液中HCO3- 浓度从0 升高到13. 0 mmol/L , 菜豆长势逐渐改善, 表明HCO3-与NH4+ 以较合适的比例共存于介质中可明显减轻二者非共存对菜豆生长的抑制作用。② 同一处理, 菜豆整株对主要营养元素吸收量的次序为: N > K> P > Ca >Mg > Fe >Mn , 以NH4+2N 为主要氮源时, 随HCO3-浓度升高, 菜豆对N、P、Ca、Mn 的吸收量逐渐增大。③以NO3--N 为主要氮源, P、Fe、Mn 元素在根部出现累积, 而以NH4+-N为主要氮源时, 随HCO3-浓度增加, N、P、Ca、Mn 在根部亦有累积现象。 相似文献