Regulatory and retrograde signaling networks in the chlorophyll biosynthetic pathway

四吡咯 光合作用 逆行信号 叶绿体 生物化学 叶绿素 生物 血红素 藻类 化学 细胞生物学 信号转导 植物 基因
作者
Yuhong Li,Tianjun Cao,Yunling Guo,Bernhard Grimm,Xiaobo Li,Deqiang Duanmu,Rongcheng Lin
出处
期刊:Journal of Integrative Plant Biology [Wiley]
卷期号:67 (4): 887-911 被引量:11
标识
DOI:10.1111/jipb.13837
摘要

ABSTRACT Plants, algae and photosynthetic bacteria convert light into chemical energy by means of photosynthesis, thus providing food and energy for most organisms on Earth. Photosynthetic pigments, including chlorophylls (Chls) and carotenoids, are essential components that absorb the light energy necessary to drive electron transport in photosynthesis. The biosynthesis of Chl shares several steps in common with the biosynthesis of other tetrapyrroles, including siroheme, heme and phycobilins. Given that many tetrapyrrole precursors possess photo‐oxidative properties that are deleterious to macromolecules and can lead to cell death, tetrapyrrole biosynthesis (TBS) requires stringent regulation under various developmental and environmental conditions. Thanks to decades of research on model plants and algae, we now have a deeper understanding of the regulatory mechanisms that underlie Chl synthesis, including (i) the many factors that control the activity and stability of TBS enzymes, (ii) the transcriptional and post‐translational regulation of the TBS pathway, and (iii) the complex roles of tetrapyrrole‐mediated retrograde signaling from chloroplasts to the cytoplasm and the nucleus. Based on these new findings, Chls and their derivatives will find broad applications in synthetic biology and agriculture in the future.
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