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首页> 外文期刊>Journal of Chemical Ecology: Official Journal of the International Society of Chemical Ecology >Seasonal Changes Affect Root Prunasin Concentration in Prunus serotina and Override Species Interactions between P-serotina and Quercus petraea
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Seasonal Changes Affect Root Prunasin Concentration in Prunus serotina and Override Species Interactions between P-serotina and Quercus petraea

机译:季节变化影响李子血清中的芦根素含量以及P-血清和栎类栎之间的覆盖物种相互作用。

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摘要

The allocation of resources to chemical defense can decrease plant growth and photosynthesis. Prunasin is a cyanogenic glycoside known for its role in defense against herbivores and other plants. In the present study, fluctuations of prunasin concentrations in roots of Prunus serotina seedlings were hypothesized to be: (1) dependent on light, air temperature, and humidity; (2) affected by competition between Prunus serotina and Quercus petraea seedlings, with mulching with Prunus serotina leaves; (3) connected with optimal allocation of resources. For the first time, we determined prunasin concentration in roots on several occasions during the vegetative season. The results indicate that seasonal changes have more pronounced effects on prunasin concentration than light regime and interspecific competition. Prunus serotina invested more nitrogen in the synthesis of prunasin under highly restricted light conditions than in higher light environments. In full sun, prunasin in roots of Prunus serotina growing in a monoculture was correlated with growth and photosynthesis, whereas these relationships were not found when interspecific competition with mulching was a factor. The study demonstrates that prunasin concentration in Prunus serotina roots is the result of species-specific adaptation, light and temperature conditions, ontogenetic shift, and, to a lesser extent, interspecific plant-plant interactions.
机译:为化学防御分配资源会降低植物的生长和光合作用。普鲁那星是一种生氰苷,因其在防御食草动物和其他植物中的作用而闻名。在本研究中,李子李幼苗根中的李宁浓度波动被假设为:(1)取决于光照,空气温度和湿度; (2)受李子与栎栎幼苗竞争的影响,覆盖有李子叶片; (3)与资源的优化分配有关。我们首次在营养旺季中多次确定了根中的桃李素浓度。结果表明,与光照和种间竞争相比,季节变化对苦瓜素浓度的影响更为明显。在高度限制的光照条件下,李子血清比在更高的光照环境中投入更多的氮来合成李子。在阳光充足的情况下,单一培养中生长的李子根中的李干素与生长和光合作用相关,而当种间竞争与地膜覆盖是一个因素时,则未发现这些关系。该研究表明,李子血清根中的桃李素浓度是物种特异性适应,光照和温度条件,个体发生变化以及种间植物间相互作用的结果。

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