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◆ Plant disease2026-09-17

Spatiotemporal Dissection of the Infection Response to Bacterial Soft Rot in Non-heading Chinese cabbage.

Meiling Lyu, Xueli Zheng, Xiaowen Zhang, Bingfeng Xie, Junjie Zhu, Yun Su, Tianyang Song, Yucen Qiu, Yu Zeng, Xinxin Xie, Yixuan Wu, Nuo Chen, Yujun Bu, Rongfang Guo

原始摘要(英文原文)· Original abstract
Bacterial soft rot caused by Pectobacterium brasiliense (Pbr) leads to substantial yield losses in cruciferous vegetables, including non-heading Chinese cabbage (pak choi, Brassica rapa subsp. chinensis). This study employed an integrated physiological and multi-tissue transcriptomic approach to decipher the infection response strategies of pak choi against Pbr. Age-dependent resistance was detected, with susceptibility decreasing as plants matured. In susceptible four-week-old plants, Pbr infection induced oxidative stress, characterized by the accumulation of hydrogen peroxide (H₂O₂) and malondialdehyde (MDA), and activated a multi-layered response system involving key antioxidant enzymes (SOD, POD, CAT, APX) and phenylpropanoid pathway enzymes (PAL, PPO). Transcriptome profiling revealed a tissue-specific division of response labor. Petioles, the primary infection site, mounted a response characterized by a bidirectional reprogramming of the ribosomal pathway and activation of sulfur metabolism, including the upregulation of cysteine synthesis genes (cysC, cysK). In contrast, leaves implemented a resource-reallocation strategy, involving broad suppression of photosynthesis and hormonal rebalancing-specifically, upregulation of JA repressors (JAZ) and downregulation of the SA signaling component NPR1. Furthermore, we identified an infection-induced transcriptional regulatory network mediated by transcription factors (e.g., MYB, WRKY, AP2-EREBP, NAC), and weighted gene co-expression network analysis (WGCNA) pinpointed hub TFs in infection-associated and health-associated modules. Our findings provide a comprehensive framework for age-dependent and tissue-coordinated infection response in pak choi, offering valuable genetic targets for breeding resistance against bacterial soft rot.
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Spatiotemporal Dissection of the Infection Response to Bacterial Soft Rot in Non-heading Chinese cabbage. — 科研速览 Science Skim