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首页> 外文期刊>Molecular Plant-Microbe Interactions >New Insights into the Regulation of Aquaporins by the Arbuscular Mycorrhizal Symbiosis in Maize Plants Under Drought Stress and Possible Implications for Plant Performance
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New Insights into the Regulation of Aquaporins by the Arbuscular Mycorrhizal Symbiosis in Maize Plants Under Drought Stress and Possible Implications for Plant Performance

机译:干旱胁迫下玉米丛枝菌根共生调控水通道蛋白的新见解及其对植物性能的影响

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The relationship between modulation by arbuscular mycorrhizae (AM) of aquaporin expression in the host plant and changes in root hydraulic conductance, plant water status, and performance under stressful conditions is not well known. This investigation aimed to elucidate how the AM symbiosis modulates the expression of the whole set of aquaporin genes in maize plants under different growing and drought stress conditions, as well as to characterize some of these aquaporins in order to shed further light on the molecules that may be involved in the mycorrhizal responses to drought. The AM symbiosis regulated a wide number of aquaporins in the host plant, comprising members of the different aquaporin subfamilies. The regulation of these genes depends on the watering conditions and the severity of the drought stress imposed. Some of these aquaporins can transport water and also other molecules which are of physiological importance for plant performance. AM plants grew and developed better than non-AM plants under the different conditions assayed. Thus, for the first time, this study relates the well-known better performance of AM plants under drought stress to not only the water movement in their tissues but also the mobilization of N compounds, glycerol, signaling molecules, or metalloids with a role in abiotic stress tolerance. Future studies should elucidate the specific function of each aquaporin isoform regulated by the AM symbiosis in order to shed further light on how the symbiosis alters the plant fitness under stressful conditions.
机译:宿主植物中丛枝菌根(AM)对水通道蛋白表达的调节与根系水力传导率,植物水分状况以及在胁迫条件下的性能变化之间的关系尚不清楚。这项研究旨在阐明AM共生如何在不同生长和干旱胁迫条件下调节玉米植物中整个水通道蛋白基因的表达,并鉴定其中一些水通道蛋白的特性,以进一步阐明可能与水分子有关的分子。参与对干旱的菌根反应。 AM共生调节宿主植物中大量的水通道蛋白,包括不同水通道蛋白亚家族的成员。这些基因的调节取决于浇水条件和施加的干旱胁迫的严重性。这些水通道蛋白中的一些可以运输水以及其他对于植物生长具有生理重要性的分子。在测定的不同条件下,AM植物比非AM植物生长和发育更好。因此,这项研究首次将众所周知的AM植物在干旱胁迫下的更好表现不仅与它们组织中的水分运动有关,还与N化合物,甘油,信号分子或准金属在其中的作用有关。非生物胁迫耐受性。未来的研究应阐明受AM共生调控的每种水通道蛋白同工型的特定功能,以进一步阐明共生如何在胁迫条件下改变植物适应性。

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