Time-Course Transcriptome, Metabolome, and Weighted Gene Co-Expression Network Analysis Reveal the Roles of the OsBELH4A Gene in Regulating Leaf Senescence and Grain Yield of Rice
Ruyi Zheng, Tianyu Chen, Jianjian Li, Chengcheng Hu, Zhiming Yu, Zhanghui Zeng, Zhehao Chen, Lilin Wang, Taihe Xiang, Xiaoping Huang

TL;DR
This study identifies the OsBELH4A gene as a key regulator of leaf senescence and grain yield in rice, using transcriptome, metabolome, and network analysis.
Contribution
The study discovers OsBELH4A as a novel gene influencing both leaf aging and grain production in rice.
Findings
OsBELH4A overexpression delays leaf senescence and increases grain yield in rice.
Knockout of OsBELH4A leads to premature leaf aging and reduced grain production.
OsBELH4A responds to salicylic acid and auxin, indicating its role in hormone signaling.
Abstract
Rice (Oryza sativa L.) is one of the major food crops. Yield and quality are affected by premature leaf senescence, a complex and tightly regulated developmental process. To elucidate the molecular regulatory mechanism controlling rice leaf senescence, the integrative transcriptome, metabolome and weighted gene co-expression network analysis (WGCNA) of flag leaves in five development stages (FL1–FL5) was performed. In this study, a total of 9412 differential expressed genes (DEGs) were identified. To further mine DEGs related to leaf senescence, a total of five stage-specific modules were characterized by WGCNA. Among them, two modules displayed continuous down-regulated and up-regulated trends from stages FL1 to FL5, which were considered to be highly negatively and positively correlated with the senescence trait, respectively. GO enrichment results showed that the genes clustered in…
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Taxonomy
TopicsPlant Gene Expression Analysis · Plant Molecular Biology Research · Photosynthetic Processes and Mechanisms
