Scholay

学术搜索 · AI 审稿 · LaTeX 协作

Transcriptome-metabolome and anatomy conjoint analysis of vital component change of photosynthesis in foxtail millet under different drought conditions

作者:Jing Wang, Zexin Sun, Lei Tian, Wei Sun, Xinning Wang, Zhihao Wang, Zhiying Wang, Li Zhao, Wei Liu, Qianchi Ma, Chuanyou Ren, Xining Gao, Yue Li, Liwei Wang, Xiaoguang Wang, Chunji Jiang, Chao Zhong, Xinhua Zhao, Haiqiu Yu · 发表于:Journal of Integrative Agriculture · 年份:2024 · DOI:10.1016/j.jia.2024.04.001 · 被引用次数:9 · 研究领域:Rice Cultivation and Yield Improvement、Leaf Properties and Growth Measurement、Genetics and Plant Breeding

Drought caused by extreme climate change has become more severe and unpredictable, causing imperceptible effects on leaf photosynthesis in foxtail millet. To investigate the damage, we performed light drought (LD) and heavy drought (HD) treatments at both the elongation (Y) and booting stages to obtain a comprehensive understanding of the morphological, anatomical, physiological, transcriptome, and metabolome levels. Under drought stress, the length and area of leaves decreased, especially during the HD treatment at the booting stage. The number of mesophyll cells and the area of large vascular bundles were both decreased under LD and HD treatments at the booting stage, as well as with more blurring vascular bundle structure and Kranz anatomy. However, these numbers decreased but with no significance under Y-LD and Y-HD treatments at the elongation stage. The net photosynthetic rate, stomatal conductivity, transpiration rate, and intercellular CO2 concentration significantly decreased at the booting stage. In addition, the efficiency of electron transfers in photosystem II (PS II) decreased. Conjunction analyses of the transcriptome and metabolome were utilized to uncover the underlying mechanism at the booting stage. The results showed that there was no common differentially enriched pathway in the transcriptome and metabolome under LD treatment but thirty-two pathways were enriched in both the transcript and metabolome under HD treatment. Among these, three pathways arginin...