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首页> 外文期刊>Acta Agriculturae Scandinavica. Section B, Soil and Plant Science >Specific polyphenol oxidase activity of red clover (Trifolium pratense) and its relation with forage quality in field experiments
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Specific polyphenol oxidase activity of red clover (Trifolium pratense) and its relation with forage quality in field experiments

机译:红三叶草(Trifolium pratense)的比多酚氧化酶活性及其与饲料质量的关系

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In feeding studies, red clover (RC) influenced positively the N utilization by ruminants. A relationship between polyphenol oxidase (PPO) activity and forage quality has not been established. Our objective was to investigate seasonal, site, genotype, and management effects on specific PPO activity in RC in three experiments under field conditions, and relate the activity to forage-quality parameters. In Experiment 1, six RC genotypes at two study sites were submitted to a 3-cut system. Specific PPO activity, forage quality, and vegetation stage were determined. PPO activity varied between harvest and study sites, with genotypes differing up to 3-fold in PPO activity within harvests. The specific PPO activity, forage quality, and vegetation stage in RC subjected to 5-cut system and grazing (Experiment 2) were determined. Additionally, in Experiment 3, cutting frequency in RC swards including mechanical stress (rolling) was investigated. The induction of PPO activity in RC by grazing or mechanical stress (Experiments 2 and 3) increased the activity up to 2.5-fold compared with RC at similar vegetation stage submitted to the 5-cut system. Mechanical stress induced by grazing or rolling, and seasonal differences, seem to have a larger influence on specific PPO activity than does the genotype effect observed in Experiment 1. For forage quality, an increased specific PPO activity explained 29-46% of the reduction in protein fraction 'A' content (non-protein N) in the cutting systems in Experiments 2 and 3. Other CP fractions achieved a lower relation. Furthermore, the precipitation-to-temperature ratio preceeding a harvest explained 63% of the variation in the specific PPO activity. In conclusion, the PPO activity in RC is induced by grazing and rolling. Whereas weather conditions preceeding a harvest showed a large influence, genotype influence had only minor relevance. These results may have implications for regional harvest management towards efficient N utilization by ruminants.
机译:在饲养研究中,红三叶草(RC)对反刍动物对氮的利用产生了积极影响。尚未建立多酚氧化酶(PPO)活性与饲料品质之间的关系。我们的目标是在田间条件下的三个实验中研究季节性,位点,基因型和管理对RC中特定PPO活性的影响,并将该活性与饲料质量参数关联。在实验1中,将两个研究地点的6个RC基因型提交给3切割系统。确定了特定的PPO活性,草料质量和植被阶段。 PPO活性在收获和研究地点之间有所不同,在收获内,PPO活性的基因型差异高达3倍。确定了五割系统和放牧条件下RC的PPO比活度,草料质量和植被阶段(实验2)。另外,在实验3中,研究了RC割草的切削频率,包括机械应力(滚动)。在放牧或机械胁迫下,RC对PPO活性的诱导(实验2和3)与在5割制下相似植被阶段的RC相比,其活性提高了2.5倍。与实验1中观察到的基因型效应相比,由放牧或翻滚引起的机械应力和季节性差异似乎对PPO活性的影响更大。就饲草质量而言,PPO活性的增加解释了PPO活性下降的29-46%。实验2和3中切割系统中蛋白质组分的“ A”含量(非蛋白质N)含量。其他CP组分的关系较低。此外,收获前的沉淀温度比解释了PPO比活度变化的63%。总之,RC中的PPO活性是通过放牧和滚动诱导的。收成之前的天气条件影响很大,而基因型影响的影响很小。这些结果可能对反刍动物有效利用氮的区域收获管理产生影响。

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