Discovery of specific rhizosphere bacteria <i>Rhodanobacter</i> involved in KAI2-mediated drought tolerance in <i>Arabidopsis</i>

Обнаружение специфичных бактерий ризосферы Rhodanobacter, вовлечённых в опосредованную KAI2 толерантность к засухе у Arabidopsis
Gang Ye, Lam‐Son Phan Tran, Chunjie Tian, Weiqiang Li, Xianzhong Feng, Yuxuan Hu, Zhongjun Jia, Yu Sun, Hengfei Zhang, Shuhua Liu, Zongmu Yao, Lei Tian, Jingjing Chang, Wenbo Jia, Mostafa Abdelrahman, Yuchun Yan, Tianzuo Wang, Xiaojian Yin
2026-07-01

KAI2-mediated drought toleranceKAI2–SMAX1 interactionRhodanobacter sp.daidzinrhizosphere microbiome
The KARRIKIN INSENSITIVE 2 (KAI2) receptor has been reported to contribute to drought tolerance in Arabidopsis . However, the extent to which KAI2’s function in drought tolerance depends on soil microbiota remains unclear. This study demonstrates that the rhizosphere microbiome is indispensable for KAI2-mediated drought tolerance. We isolated specific Rhodanobacter sp. and confirmed its role in enhancing drought tolerance in Arabidopsis . Notably, Rhodanobacter sp. was found to specifically secrete the key isoflavone daidzin. We found that daidzin had a similar function with KAI2 agonist, desmethyl-type germinone, and induced interaction between KAI2 and SUPRESSOR OF MORE AXILLARY GROWTH 2 1. Moreover, the exogenous application of daidzin enhanced drought tolerance by modulating the expression of karrikin response and drought-related genes, in a KAI2-dependent manner. Our findings suggest that the rhizosphere microbiome plays a crucial role in facilitating KAI2-mediated drought tolerance in Arabidopsis , with Rhodanobacter sp. contributing through the secretion of daidzin.
1
Daidzin functions similarly to the KAI2 agonist desmethyl-type germinone and induces KAI2–SMAX1 interaction.
2
Exogenous daidzin application enhances drought tolerance by modulating karrikin response and drought-related gene expression in a KAI2-dependent manner.
3
Rhodanobacter sp. specifically secretes the isoflavone daidzin.
4
Specific Rhodanobacter sp. isolated from the rhizosphere enhances drought tolerance in Arabidopsis.
5
The rhizosphere microbiome is indispensable for KAI2-mediated drought tolerance in Arabidopsis.

Rhodanobacter sp. isolated from the Arabidopsis rhizosphere

Role of the Rhodanobacter sp. in facilitating KAI2-mediated drought tolerance via secretion of the isoflavone daidzin and modulation of KAI2-dependent signalling and drought-related gene expression

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2026-07-01
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Gang Ye
Lam‐Son Phan Tran
Chunjie Tian
Weiqiang Li
Xianzhong Feng
Yuxuan Hu
Zhongjun Jia
Yu Sun
Hengfei Zhang
Shuhua Liu
Zongmu Yao
Lei Tian
Jingjing Chang
Wenbo Jia
Mostafa Abdelrahman
Yuchun Yan
Tianzuo Wang
Xiaojian Yin
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