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Plant commensal type VII secretion system causes iron leakage from roots to promote colonization

Authors :
Liu, Yunpeng
Shu, Xia
Chen, Lin
Zhang, Huihui
Feng, Haichao
Sun, Xiting
Xiong, Qin
Li, Guangqi
Xun, Weibing
Xu, Zhihui
Zhang, Nan
Pieterse, Corné M.J.
Shen, Qirong
Zhang, Ruifu
Liu, Yunpeng
Shu, Xia
Chen, Lin
Zhang, Huihui
Feng, Haichao
Sun, Xiting
Xiong, Qin
Li, Guangqi
Xun, Weibing
Xu, Zhihui
Zhang, Nan
Pieterse, Corné M.J.
Shen, Qirong
Zhang, Ruifu
Source :
Nature Microbiology vol.8 (2023) nr.8 p.1434-1449 [ISSN 1740-1526]
Publication Year :
2023

Abstract

Competition for iron is an important factor for microbial niche establishment in the rhizosphere. Pathogenic and beneficial symbiotic bacteria use various secretion systems to interact with their hosts and acquire limited resources from the environment. Bacillus spp. are important plant commensals that encode a type VII secretion system (T7SS). However, the function of this secretion system in rhizobacteria–plant interactions is unclear. Here we use the beneficial rhizobacterium Bacillus velezensis SQR9 to show that the T7SS and the major secreted protein YukE are critical for root colonization. In planta experiments and liposome-based experiments demonstrate that secreted YukE inserts into the plant plasma membrane and causes root iron leakage in the early stage of inoculation. The increased availability of iron promotes root colonization by SQR9. Overall, our work reveals a previously undescribed role of the T7SS in a beneficial rhizobacterium to promote colonization and thus plant–microbe interactions.

Details

Database :
OAIster
Journal :
Nature Microbiology vol.8 (2023) nr.8 p.1434-1449 [ISSN 1740-1526]
Notes :
DOI: 10.1038/s41564-023-01402-1, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1445832279
Document Type :
Electronic Resource