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

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Article
English
2022

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

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English
2022
New Phytologist
Vol 237 (3)
DOI: 10.1111/nph.18409

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Michaela Dippold
Michaela Dippold

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Xuechen Zhang
Nataliya Bilyera
Lichao Fan
+7 more

Abstract

Summary 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, 14 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 max and K m ) 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.

How to cite this publication

Xuechen Zhang, Nataliya Bilyera, Lichao Fan, Patrick Duddek, Mutez Ali Ahmed, Andrea Carminati, Anders Kaestner, Michaela Dippold, Sandra Spielvogel, Bahar S. Razavi (2022). The spatial distribution of rhizosphere microbial activities under drought: water availability is more important than root‐hair‐controlled exudation. New Phytologist, 237(3), pp. 780-792, DOI: 10.1111/nph.18409.

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Publication Details

Type

Article

Year

2022

Authors

10

Datasets

0

Total Files

0

Language

English

Journal

New Phytologist

DOI

10.1111/nph.18409

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