Leaf Senescence Regulation Mechanism Based on Comparative Transcriptome Analysis in Foxtail Millet

Author:

Zhen Xiaoxi1,Liu Chao1,Guo Yajun1,Yu Zirui1,Han Yuanhuai1,Zhang Bin1,Liang Yinpei1

Affiliation:

1. College of Agriculture, Shanxi Agricultural University, Jinzhong 030801, China

Abstract

Leaf senescence, a pivotal process in plants, directly influences both crop yield and nutritional quality. Foxtail millet (Setaria italica) is a C4 model crop renowned for its exceptional nutritional value and stress tolerance characteristics. However, there is a lack of research on the identification of senescence-associated genes (SAGs) and the underlying molecular regulatory mechanisms governing this process. In this study, a dark-induced senescence (DIS) experimental system was applied to investigate the extensive physiological and transcriptomic changes in two foxtail millet varieties with different degrees of leaf senescence. The physiological and biochemical indices revealed that the light senescence (LS) variety exhibited a delayed senescence phenotype, whereas the severe senescence (SS) variety exhibited an accelerated senescence phenotype. The most evident differences in gene expression profiles between these two varieties during DIS included photosynthesis, chlorophyll, and lipid metabolism. Comparative transcriptome analysis further revealed a significant up-regulation of genes related to polysaccharide and calcium ion binding, nitrogen utilization, defense response, and malate metabolism in LS. In contrast, the expression of genes associated with redox homeostasis, carbohydrate metabolism, lipid homeostasis, and hormone signaling was significantly altered in SS. Through WGCNA and RT-qPCR analyses, we identified three SAGs that exhibit potential negative regulation towards dark-induced leaf senescence in foxtail millet. This study establishes the foundation for a further comprehensive examination of the regulatory network governing leaf senescence and provides potential genetic resources for manipulating senescence in foxtail millet.

Funder

Applied Basic Research Program of Shanxi Province

Scientific and Technological Innovation Foundation of Higher Education Institutions in Shanxi

Science and Technology Innovation Fund Project of Shanxi Agricultural University

Innovation Project of Shanxi Foxtail Millet Industry

Shanxi Province Doctoral Graduates and Postdoctoral Researchers Work Award Fund Research Project

Publisher

MDPI AG

Reference56 articles.

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