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Regulatory networks of senescence‐associated gene‐transcription factors promote degradation in Moso bamboo shoots.

Authors :
Zhang, Wenyu
Shi, Man
Yang, Kebin
Zhang, Junbo
Gao, Zhimin
El‐Kassaby, Yousry A.
Li, Quan
Cao, Tingting
Deng, Shixin
Qing, Hongsheng
Wang, Zhikang
Song, Xinzhang
Source :
Plant, Cell & Environment. Sep2024, Vol. 47 Issue 9, p3654-3667. 14p.
Publication Year :
2024

Abstract

Bamboo cultivation, particularly Moso bamboo (Phyllostachys edulis), holds significant economic importance in various regions worldwide. Bamboo shoot degradation (BSD) severely affects productivity and economic viability. However, despite its agricultural consequences, the molecular mechanisms underlying BSD remain unclear. Consequently, we explored the dynamic changes of BSD through anatomy, physiology and the transcriptome. Our findings reveal ruptured protoxylem cells, reduced cell wall thickness and the accumulation of sucrose and reactive oxygen species (ROS) during BSD. Transcriptomic analysis underscored the importance of genes related to plant hormone signal transduction, sugar metabolism and ROS homoeostasis in this process. Furthermore, BSD appears to be driven by the coexpression regulatory network of senescence‐associated gene transcription factors (SAG‐TFs), specifically PeSAG39, PeWRKY22 and PeWRKY75, primarily located in the protoxylem of vascular bundles. Yeast one‐hybrid and dual‐luciferase assays demonstrated that PeWRKY22 and PeWRKY75 activate PeSAG39 expression by binding to its promoter. This study advanced our understanding of the molecular regulatory mechanisms governing BSD, offering a valuable reference for enhancing Moso bamboo forest productivity. Summary statement: The bamboo shoot degradation occurs first in the protoxylem and impacts phytohormone signalling, starch and sucrose metabolism, as well as reactive oxygen species homoeostasis. PeWRKY22 and PeWRKY75 activate PeSAG39 by binding to its promoters. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01407791
Volume :
47
Issue :
9
Database :
Academic Search Index
Journal :
Plant, Cell & Environment
Publication Type :
Academic Journal
Accession number :
179045783
Full Text :
https://doi.org/10.1111/pce.14950