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根瘤菌共生在非胁迫和盐胁迫条件下改变了豆类植物的根系水力性质。

Rhizobial symbiosis modifies root hydraulic properties in bean plants under non-stressed and salinity-stressed conditions.

机构信息

Department of Soil Microbiology and Symbiotic System, Estación Experimental del Zaidín (CSIC), Profesor Albareda 1, 18008, Granada, Spain.

出版信息

Planta. 2019 Apr;249(4):1207-1215. doi: 10.1007/s00425-018-03076-0. Epub 2019 Jan 2.

Abstract

Rhizobial symbiosis improved the water status of bean plants under salinity-stress conditions, in part by increasing their osmotic root water flow. One of the main problems for agriculture worldwide is the increasing salinization of farming lands. The use of soil beneficial microorganisms stands up as a way to tackle this problem. One approach is the use of rhizobial N-fixing, nodule-forming bacteria. Salinity-stress causes leaf dehydration due to an imbalance between water lost through stomata and water absorbed by roots. The aim of the present study was to elucidate how rhizobial symbiosis modulates the water status of bean (Phaseolus vulgaris) plants under salinity-stress conditions, by assessing the effects on root hydraulic properties. Bean plants were inoculated or not with a Rhizobium leguminosarum strain and subjected to moderate salinity-stress. The rhizobial symbiosis was found to improve leaf water status and root osmotic water flow under such conditions. Higher content of nitrogen and lower values of sodium concentration in root tissues were detected when compared to not inoculated plants. In addition, a drop in the osmotic potential of xylem sap and increased amount of PIP aquaporins could favour higher root osmotic water flow in the inoculated plants. Therefore, it was found that rhizobial symbiosis may also improve root osmotic water flow of the host plants under salinity stress.

摘要

根瘤菌共生通过增加根的渗透水流来提高盐分胁迫条件下豆类植物的水分状况。全世界农业的主要问题之一是农田的盐渍化日益严重。利用土壤有益微生物是解决这一问题的一种方法。一种方法是利用根瘤菌固氮、结瘤细菌。盐分胁迫会导致叶片脱水,这是由于通过气孔失去的水分和通过根部吸收的水分之间失去平衡造成的。本研究的目的是通过评估对根系水力特性的影响,阐明根瘤菌共生如何在盐分胁迫条件下调节豆类(菜豆)植物的水分状况。将豆类植物接种或不接种根瘤菌属菌株,并使其受到中度盐分胁迫。结果发现,在这种条件下,根瘤菌共生可以改善叶片水分状况和根的渗透水流。与未接种植物相比,根组织中的氮含量更高,钠浓度更低。此外,木质部汁液的渗透势下降和 PIP 水通道蛋白数量的增加可能有利于接种植物根的渗透水流增加。因此,发现根瘤菌共生也可以改善盐分胁迫下宿主植物的根渗透水流。

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