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Cited 6 time in webofscience Cited 6 time in scopus
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A novel toxoflavin-quenching regulation in bacteria and its application to resistance cultivarsopen access

Authors
Choi, OkheeLee, YeyeongPark, JiyeongKang, ByeongsamChun, Hyun JinKim, Min ChulKim, Jinwoo
Issue Date
Jul-2021
Publisher
WILEY
Citation
MICROBIAL BIOTECHNOLOGY, v.14, no.4, pp 1657 - 1670
Pages
14
Indexed
SCIE
SCOPUS
Journal Title
MICROBIAL BIOTECHNOLOGY
Volume
14
Number
4
Start Page
1657
End Page
1670
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/3542
DOI
10.1111/1751-7915.13831
ISSN
1751-7915
Abstract
The toxoflavin (Txn), broad host range phytotoxin produced by a variety of bacteria, including Burkholderia glumae, is a key pathogenicity factor of B. glumae in rice and field crops. Two bacteria exhibiting Txn-degrading activity were isolated from healthy rice seeds and identified as Sphingomonas adhaesiva and Agrobacterium sp. respectively. The genes stdR and stdA, encoding proteins responsible for Txn degradation of both bacterial isolates, were identical, indicating that horizontal gene transfer occurred between microbial communities in the same ecosystem. We identified a novel Txn-quenching regulation of bacteria, demonstrating that the LysR-type transcriptional regulator (LTTR) StdR induces the expression of the stdA, which encodes a Txn-degrading enzyme, in the presence of Txn as a coinducer. Here we show that the bacterial StdR(Txn)-quenching regulatory system mimics the ToxR(Txn)-mediated biosynthetic regulation of B. glumae. Substrate specificity investigations revealed that Txn is the only coinducer of StdR and that StdA has a high degree of specificity for Txn. Rice plants expressing StdA showed Txn resistance. Collectively, bacteria mimic the mechanism of Txn biosynthesis regulation, employ it in the development of a Txn-quenching regulatory system and share it with neighbouring bacteria for survival in rice environments full of Txn.
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