Streptomyces sesquiterpenes elicit 10-HCA secretion and recruit disease-suppressive microbiota to enhance banana Fusarium wilt resistance

Y Yufeng Chen (Power Battery & Systems Research Center, State Key Laboratory of Catalysis) J Junting Feng P Peitao Lü D Dengbo Zhou Y Yongzan Wei T Tao Jing Z Zai Zheng W Waseem Raza D Dengfeng Qi M Miaoyi Zhang Y Yankun Zhao K Kai Li W Wei Wang X Xu Cheng (QTF Center of Excellence, Department of Electronics and Nanoengineering) J Jianghui Xie

Abstract

Abstract Plant-beneficial microbe interactions are vital for enhancing soil-borne disease resistance, largely through the assembly of a disease-suppressive microbiome. However, the mechanisms governing these interactions remain elusive. Here, we establish an interaction model between banana and Streptomyces yongxingensis sp. nov. 2-11. We demonstrate that strain Sy2-11 suppresses banana Fusarium wilt (BFW) by recruiting a protective rhizosphere microbiome. Furthermore, we identify sesquiterpenes (aristolene and ledene), produced by strain Sy2-11, as key signaling molecules that trigger banana roots to biosynthesize 10-hydroxycapric acid (10-HCA). Interestingly, 10-HCA specifically enriches beneficial Bacillus spp., which is essential for the suppression of BFW. This effect is validated by synthetic communities (SynComs) and chemotaxis-deficient mutants of Bacillus velezensis . Our findings reveal a previously unreported mechanism that differs from conventional plant-microbe interactions, whereby Streptomyces , acting as a beneficial elicitor, releases sesquiterpene signals to trigger 10-HCA secretion in banana plants, thereby orchestrating the assembly of a rhizosphere microbiome that suppresses BFW. These findings provide a promising strategy for rhizosphere micro-ecological regulation and sustainable soil-borne disease control, with significant potential for advancing sustainable agriculture.

Article Details

Volume / Issue Vol. 17, Issue 1
Published June 03, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (15)

Y

Yufeng Chen

Power Battery & Systems Research Center, State Key Laboratory of Catalysis

J

Junting Feng

P

Peitao Lü

D

Dengbo Zhou

Y

Yongzan Wei

T

Tao Jing

Z

Zai Zheng

W

Waseem Raza

D

Dengfeng Qi

M

Miaoyi Zhang

Y

Yankun Zhao

K

Kai Li

W

Wei Wang

X

Xu Cheng

QTF Center of Excellence, Department of Electronics and Nanoengineering

J

Jianghui Xie