High-quality Cymbidium mannii genome and multifaceted regulation of crassulacean acid metabolism in epiphytes

景天酸代谢 生物 兰科 附生植物 大花蕙兰 基因组 植物 进化生物学 光合作用 基因 遗传学
作者
Weishu Fan,Zhengshan He,Mengqing Zhe,Jing-Qiu Feng,Le Zhang,Yiwei Huang,Fang Liu,Jialin Huang,Ji‐Dong Ya,Shi‐Bao Zhang,Junbo Yang,Andan Zhu,Li D
出处
期刊:Plant communications [Elsevier BV]
卷期号:4 (5): 100564-100564 被引量:17
标识
DOI:10.1016/j.xplc.2023.100564
摘要

Epiphytes with crassulacean acid metabolism (CAM) photosynthesis are widespread among vascular plants, and repeated evolution of CAM photosynthesis is a key innovation for micro-ecosystem adaptation. However, we lack a complete understanding of the molecular regulation of CAM photosynthesis in epiphytes. Here, we report a high-quality chromosome-level genome assembly of a CAM epiphyte, Cymbidium mannii (Orchidaceae). The 2.88-Gb orchid genome with a contig N50 of 22.7 Mb and 27 192 annotated genes was organized into 20 pseudochromosomes, 82.8% of which consisted of repetitive elements. Recent expansions of long terminal repeat retrotransposon families have made a major contribution to the evolution of genome size in Cymbidium orchids. We reveal a holistic scenario of molecular regulation of metabolic physiology using high-resolution transcriptomics, proteomics, and metabolomics data collected across a CAM diel cycle. Patterns of rhythmically oscillating metabolites, especially CAM-related products, reveal circadian rhythmicity in metabolite accumulation in epiphytes. Genome-wide analysis of transcript and protein level regulation revealed phase shifts during the multifaceted regulation of circadian metabolism. Notably, we observed diurnal expression of several core CAM genes (especially βCA and PPC) that may be involved in temporal fixation of carbon sources. Our study provides a valuable resource for investigating post-transcription and translation scenarios in C. mannii, an Orchidaceae model for understanding the evolution of innovative traits in epiphytes.
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