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首页> 外文期刊>Angewandte Botanik: Zeitschrift der Vereinigung fur Angewandte Botanik >Effect of VA mycorrhiza on improving drought and chilling tolerance ofbean plants (Phaseolus vulgaris L.)
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Effect of VA mycorrhiza on improving drought and chilling tolerance ofbean plants (Phaseolus vulgaris L.)

机译:VA菌根对改善豆类植物(菜豆)的抗旱和抗寒性的作用

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摘要

Growth, productivity and water relations of Phaseolus vulgaris is L. var. Flexo were measured in responce to mycorrhizal inoculation with Glomus intraradices under both drought and chilling conditions and at different phosphorus levels. Experiments were conducted in a well controlled greenhouse and in a phytotrone at the research station of the Institute for Vegetable Science at Durnast, Bavaria, Germany. Growth and yield of water-stressed plants were enhanced by mycorrhiza inoculation depending on the phosphorus level applied to plants. Chilling-stressed plants showed higher leaf water potential in responce to mycorrhizal inoculation. Electrolyte leakage of chilled-stressed plants showed no significant effect between mycorrhizal and non-mycorrhizal plants. The results indicate that VA mycorrhiza improves water status during chilling stress and this effect was more pronounced under drought conditions. The effect of VA mycorrhiza at different P-levels on water relations of bean plants under drought and chilling conditions and the effects on growth and yield after recovery from stress are discussed.
机译:菜豆的生长,生产力和水的关系是L. var。在干旱和寒冷条件下以及在不同的磷水平下,对柔藻的接种量均以Glomus inradices对菌根接种的反应进行了测量。实验是在德国巴伐利亚州杜尔纳斯特市蔬菜科学研究所的一个控制良好的温室和一个光电子植物中进行的。菌根接种可以提高水分胁迫植物的生长和产量,具体取决于施于植物的磷水平。低温胁迫的植物表现出较高的叶片水势,以响应菌根接种。冷藏胁迫植物的电解液泄漏在菌根植物和非菌根植物之间均没有显着影响。结果表明,VA菌根改善了寒冷胁迫期间的水分状况,这种作用在干旱条件下更为明显。讨论了不同P水平下VA菌根对干旱和寒冷条件下豆类植物水分关系的影响,以及从胁迫中恢复后对生长和产量的影响。

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