Root exudates drive soil‐microbe‐nutrient feedbacks in response to plant growth

Publication date

2021-02

Authors

Zhao, Mengli
Zhao, Jun
Yuan, Jun
Hale, Lauren
Wen, Tao
Huang, Qiwei
Vivanco, Jorge M.
Zhou, Jizhong
Kowalchuk, G.A.ISNI 0000000395768233
Shen, Qirong

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

taverne

Abstract

Although interactions between plants and microbes at the plant–soil interface are known to be important for plant nutrient acquisition, relatively little is known about how root exudates contribute to nutrient exchange over the course of plant development. In this study, root exudates from slow‐ and fast‐growing stages of Arabidopsis thaliana plants were collected, chemically analysed and then applied to a sandy nutrient‐depleted soil. We then tracked the impacts of these exudates on soil bacterial communities, soil nutrients (ammonium, nitrate, available phosphorus and potassium) and plant growth. Both pools of exudates shifted bacterial community structure. GeoChip analyses revealed increases in the functional gene potential of both exudate‐treated soils, with similar responses observed for slow‐growing and fast‐growing plant exudate treatments. The fast‐growing stage root exudates induced higher nutrient mineralization and enhanced plant growth as compared to treatments with slow‐growing stage exudates and the control. These results suggest that plants may adjust their exudation patterns over the course of their different growth phases to help tailor microbial recruitment to meet increased nutrient demands during periods demanding faster growth.

Keywords

GeoChip, plant development, plant–soil feedback, root exudates, soil bacterial community, Taverne, Physiology, Plant Science

Citation

Zhao, M, Zhao, J, Yuan, J, Hale, L, Wen, T, Huang, Q, Vivanco, J M, Zhou, J, Kowalchuk, G A & Shen, Q 2021, 'Root exudates drive soil‐microbe‐nutrient feedbacks in response to plant growth', Plant, Cell and Environment, vol. 44, no. 2, pp. 613-628. https://doi.org/10.1111/pce.13928