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干旱条件下根际微生物活性的空间分布:水分有效性比根毛控制的分泌物更重要。

The spatial distribution of rhizosphere microbial activities under drought: water availability is more important than root-hair-controlled exudation.

作者信息

Zhang Xuechen, Bilyera Nataliya, Fan Lichao, Duddek Patrick, Ahmed Mutez A, Carminati Andrea, Kaestner Anders, Dippold Michaela A, Spielvogel Sandra, Razavi Bahar S

机构信息

College of Natural Resources and Environment, Northwest A&F University, Yangling, 712100, China.

Department of Soil and Plant Microbiome, Institute of Phytopathology, Christian-Albrechts University of Kiel, 24118, Kiel, Germany.

出版信息

New Phytol. 2023 Feb;237(3):780-792. doi: 10.1111/nph.18409. Epub 2022 Aug 20.

Abstract

Root hairs and soil water content are crucial in controlling the release and diffusion of root exudates and shaping profiles of biochemical properties in the rhizosphere. But whether root hairs can offset the negative impacts of drought on microbial activity remains unknown. Soil zymography, C imaging and neutron radiography were combined to identify how root hairs and soil moisture affect rhizosphere biochemical properties. To achieve this, we cultivated two maize genotypes (wild-type and root-hair-defective rth3 mutant) under ambient and drought conditions. Root hairs and optimal soil moisture increased hotspot area, rhizosphere extent and kinetic parameters (V and K ) of β-glucosidase activities. Drought enlarged the rhizosphere extent of root exudates and water content. Colocalization analysis showed that enzymatic hotspots were more colocalized with root exudate hotspots under optimal moisture, whereas they showed higher dependency on water hotspots when soil water and carbon were scarce. We conclude that root hairs are essential in adapting rhizosphere properties under drought to maintain plant nutrition when a continuous mass flow of water transporting nutrients to the root is interrupted. In the rhizosphere, soil water was more important than root exudates for hydrolytic enzyme activities under water and carbon colimitation.

摘要

根毛和土壤含水量对于控制根系分泌物的释放与扩散以及塑造根际生化特性的分布至关重要。但根毛是否能抵消干旱对微生物活性的负面影响仍不清楚。结合土壤酶谱法、碳成像和中子射线成像技术来确定根毛和土壤湿度如何影响根际生化特性。为此,我们在正常和干旱条件下种植了两种玉米基因型(野生型和根毛缺陷型rth3突变体)。根毛和最佳土壤湿度增加了β-葡萄糖苷酶活性的热点区域、根际范围和动力学参数(V和K)。干旱扩大了根系分泌物的根际范围和含水量。共定位分析表明,在最佳湿度条件下,酶热点与根系分泌物热点的共定位更多,而当土壤水分和碳缺乏时,它们对水热点的依赖性更高。我们得出结论,当持续的水分向根部输送养分的质量流中断时,根毛对于干旱条件下根际特性的适应性以维持植物营养至关重要。在根际中,在水分和碳共同受限的情况下,土壤水分对水解酶活性比根系分泌物更重要。

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