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Arbuscular mycorrhiza effects on plant performance under osmotic stress

机译:骨折菌根对渗透压植物性能的影响

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At present, drought and soil salinity are among the most severe environmental stresses that affect the growth of plants through marked reduction of water uptake which lowers water potential, leading to osmotic stress. In general, osmotic stress causes a series of morphological, physiological, biochemical, and molecular changes that affect plant performance. Several studies have found that diverse types of soil microorganisms improve plant growth, especially when plants are under stressful conditions. Most important are the arbuscular mycorrhizal fungi (AMF) which form arbuscular mycorrhizas (AM) with approximately 80% of plant species and are present in almost all terrestrial ecosystems. Beyond the well-known role of AM in improving plant nutrient uptake, the contributions of AM to plants coping with osmotic stress merit analysis. With this review, we describe the principal direct and indirect mechanisms by which AM modify plant responses to osmotic stress, highlighting the role of AM in photosynthetic activity, water use efficiency, osmoprotectant production, antioxidant activities, and gene expression. We also discuss the potential for using AMF to improve plant performance under osmotic stress conditions and the lines of research needed to optimize AM use in plant production.
机译:目前,干旱和土壤盐度是最严重的环境压力,通过显着降低水势,从而降低水势,导致渗透胁迫,影响植物的生长。通常,渗透压会导致影响植物性能的一系列形态,生理,生物化学和分子变化。一些研究发现,各种类型的土壤微生物改善植物生长,特别是当植物在压力条件下时。最重要的是丛枝菌根真菌(AMF),形成丛枝菌根(AM),其中约80%的植物物种,几乎存在于所有陆地生态系统中。除了在改善植物营养摄取的众所周知的作用之外,AM对应对渗透胁迫优异分析的贡献。通过本次审查,我们描述了主要的直接和间接机制,它可以修饰植物对渗透压力的反应,突出了AM在光合活动中的作用,用水效率,渗透剂生产,抗氧化活性和基因表达。我们还讨论了使用AMF在渗透压力条件下改善植物性能的可能性以及优化植物生产中使用的研究。

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