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Relative importance of an arbuscular mycorrhizal fungus (Rhizophagus intraradices) and root hairs in plant drought tolerance

机译:丛枝菌根真菌(Rhizophagus intraradices)和根毛在植物抗旱性中的相对重要性

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摘要

Both arbuscular mycorrhizal (AM) fungi and root hairs play important roles in plant uptake of water and mineral nutrients. To reveal the relative importance of mycorrhiza and root hairs in plant water relations, a bald root barley (brb) mutant and its wild type (wt) were grown with or without inoculation of the AM fungus Rhizophagus intraradices under well-watered or drought conditions, and plant physiological traits relevant to drought stress resistance were recorded. The experimental results indicated that the AM fungus could almost compensate for the absence of root hairs under drought-stressed conditions. Moreover, phosphorus (P) concentration, leaf water potential, photosynthetic rate, transpiration rate, stomatal conductance, and water use efficiency were significantly increased by R. intraradices but not by root hairs, except for shoot P concentration and photosynthetic rate under the drought condition. Root hairs even significantly decreased root P concentration under drought stresses. These results confirm that AM fungi can enhance plant drought tolerance by improvement of P uptake and plant water relations, which subsequently promote plant photosynthetic performance and growth, while root hairs presumably contribute to the improvement of plant growth and photosynthetic capacity through an increase in shoot P concentration.
机译:丛枝菌根(AM)真菌和根毛在植物吸收水分和矿质营养素方面均起着重要作用。为了揭示菌根和根毛在植物水分关系中的相对重要性,在灌溉条件良好或干旱的条件下,在接种或不接种AM真菌根瘤菌的情况下,种植了秃根大麦(brb)突变体及其野生型(wt),记录了与干旱胁迫相关的植物生理性状。实验结果表明,AM真菌几乎可以弥补干旱胁迫下根毛的缺失。此外,除干旱条件下的芽苗磷含量和光合速率外,根瘤菌(R. intraradices)显着提高了磷(P)的浓度,叶片水势,光合速率,蒸腾速率,气孔导度和水分利用效率,但根毛却没有, 。在干旱胁迫下,根毛甚至显着降低了根磷浓度。这些结果证实,AM真菌可以通过改善P吸收和植物水分关系来增强植物的抗旱性,从而促进植物的光合性能和生长,而根毛可能通过增加芽P来改善植物的生长和光合能力。浓度。

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