OUP accepted manuscript

生物 光合作用 类黄酮生物合成 次生代谢 转录组 类黄酮 光防护 基因 植物 生物合成 基因表达 遗传学 细胞生物学 生物化学 抗氧化剂
作者
Jie Xu,Dou Zhang,Shanshan Zhou,Si-Qian Jiao,Kai-Hua Jia,Shuai Nie,Hui Liu,Wei Zhao,Xiaoru Wang,Yousry A. El-Kassaby,Ilga Porth,Jianfeng Mao
出处
期刊:Tree Physiology [Oxford University Press]
卷期号:42 (8): 1587-1600
标识
DOI:10.1093/treephys/tpac021
摘要

Abstract In plants, ultraviolet (UV)-light is an important driver for growth and natural distribution, and is also a valuable tool for manipulating productivity as well as biotic interactions. Understanding of plant responses to different UV radiation is sparse, especially from a systems biology perspective and particularly for conifers. Here, we evaluated the physiological and transcriptomic responses to the short-term application of high-irradiance UV-B and UV-C waves on Pinus tabuliformis Carr., a major conifer in Northern China. By undertaking time-ordered gene coexpression network analyses and network comparisons incorporating physiological traits and gene expression variation, we uncovered communalities but also differences in P. tabuliformis responses to UV-B and UV-C. Both types of spectral bands caused a significant inhibition of photosynthesis, and conversely, the improvement of antioxidant capacity, flavonoid production and signaling pathways related to stress resistance, indicating a clear switch from predominantly primary metabolism to enhanced defensive metabolism in pine. We isolated distinct subnetworks for photoreceptor-mediated signal transduction, maximum quantum efficiency of photosystem II (Fv/Fm) regulation and flavonoid biosynthesis in response to UV-B and UV-C radiation. From these subnetworks, we further identified phototropins as potentially important elements in both UV-B and UV-C signaling and, for the first time, suggesting peptide hormones to be involved in promoting flavonoid biosynthesis against UV-B, while these hormones seem not to be implicated in the defense against UV-C exposure. The present study employed an effective strategy for disentangling the complex physiological and genetic regulatory mechanisms in a nonmodel plant species, and thus, provides a suitable reference for future functional evaluations and artificial UV-light mediated growing strategies in plant production.
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