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Polyethyleneimine-coated MXene quantum dots improve cotton tolerance to *Verticillium dahliae* by maintaining ROS homeostasis

Agriculture

Polyethyleneimine-coated MXene quantum dots improve cotton tolerance to *Verticillium dahliae* by maintaining ROS homeostasis

P. Qiu, J. Li, et al.

Discover how researchers, including Ping Qiu and Jiayue Li, tackled the challenge posed by the soil-borne fungal pathogen Verticillium dahliae in cotton production. This study reveals a groundbreaking virulence gene, SP3, and explores how polyethyleneimine-coated MXene quantum dots can enhance cotton's resistance by maintaining reactive oxygen species homeostasis, suggesting a novel approach for disease management.... show more
Abstract
Verticillium dahliae is a soil-borne hemibiotrophic fungal pathogen that threatens cotton production worldwide. In this study, we assemble the genomes of two V. dahliae isolates: the more virulence and defoliating isolate V991 and nondefoliating isolate 1cd3-2. Transcriptome and comparative genomics analyses show that genes associated with pathogen virulence are mostly induced at the late stage of infection (Stage II), accompanied by a burst of reactive oxygen species (ROS), with upregulation of more genes involved in defense response in cotton. We identify the V991-specific virulence gene SP3 that is highly expressed during the infection Stage II. V. dahliae SP3 knock-out strain shows attenuated virulence and triggers less ROS production in cotton plants. To control the disease, we employ polyethyleneimine-coated MXene quantum dots (PEI-MQDs) that possess the ability to remove ROS. Cotton seedlings treated with PEI-MQDs are capable of maintaining ROS homeostasis with enhanced peroxidase, catalase, and glutathione peroxidase activities and exhibit improved tolerance to V. dahliae. These results suggest that V. dahliae trigger ROS production to promote infection and scavenging ROS is an effective way to manage this disease. This study reveals a virulence mechanism of V. dahliae and provides a means for V. dahliae resistance that benefits cotton production.
Publisher
Nature Communications
Published On
Nov 15, 2023
Authors
Ping Qiu, Jiayue Li, Lin Zhang, Kun Chen, Jianmin Shao, Baoxin Zheng, Hang Yuan, Jie Qi, Lin Yue, Qin Hu, Yuqing Ming, Shiming Liu, Lu Long, Jiangjiang Gu, Xianlong Zhang, Keith Lindsey, Wei Gao, Honghong Wu, Longfu Zhu
Tags
Verticillium dahliae
cotton production
virulence gene
reactive oxygen species
disease management
quantum dots
plant pathology
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