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深入解析甜瓜性别表达和花发育的转录和表观遗传调控的新视角。

A novel insight into transcriptional and epigenetic regulation underlying sex expression and flower development in melon (Cucumis melo L.).

机构信息

Division of Crop Improvement, ICAR-Indian Institute of Vegetable Research (ICAR-IIVR), Varanasi, India.

Centre for Bioinformatics, School of Biotechnology, Institute of Science, Banaras Hindu University, Varanasi, India.

出版信息

Physiol Plant. 2021 Dec;173(4):1729-1764. doi: 10.1111/ppl.13357. Epub 2021 Feb 21.

Abstract

Melon (Cucumis melo L.) is an important cucurbit and has been considered as a model plant for studying sex determination. The four most common sexual morphotypes in melon are monoecious (A-G-M), gynoecious (--ggM-), andromonoecious (A-G-mm), and hermaphrodite (--ggmm). Sex expression in melons is complex, as the genes and associated networks that govern the sex expression are not fully explored. Recently, RNA-seq transcriptomic profiling, ChIP-qPCR analysis integrated with gene ontology annotation and Kyoto Encyclopedia of Genes and Genomes pathways predicted the differentially expressed genes including sex-specific ACS and ACO genes, in regulating the sex-expression, phytohormonal cross-talk, signal transduction, and secondary metabolism in melons. Integration of transcriptional control through genetic interaction in between the ACS7, ACS11, and WIP1 in epistatic or hypostatic manner, along with the recruitment of H3K9ac and H3K27me3, epigenetically, overall determine sex expression. Alignment of protein sequences for establishing phylogenetic evolution, motif comparison, and protein-protein interaction supported the structural conservation while presence of the conserved hydrophilic and charged residues across the diverged evolutionary group predicted the functional conservation of the ACS protein. Presence of the putative cis-binding elements or DNA motifs, and its further comparison with DAP-seq-based cistrome and epicistrome of Arabidopsis, unraveled strong ancestry of melons with Arabidopsis. Motif comparison analysis also characterized putative genes and transcription factors involved in ethylene biosynthesis, signal transduction, and hormonal cross-talk related to sex expression. Overall, we have comprehensively reviewed research findings for a deeper insight into transcriptional and epigenetic regulation of sex expression and flower development in melons.

摘要

甜瓜(Cucumis melo L.)是一种重要的葫芦科植物,被认为是研究性别决定的模式植物。甜瓜中最常见的四种性型是雌雄同株(A-G-M)、雌全同株(--ggM-)、雌雄同株(A-G-mm)和两性花(--ggmm)。甜瓜的性别表达较为复杂,因为调控性别表达的基因和相关网络尚未完全阐明。最近,RNA-seq 转录组分析、结合基因本体注释和京都基因与基因组百科全书通路预测的 ChIP-qPCR 分析,预测了差异表达基因,包括性别特异性 ACS 和 ACO 基因,这些基因在调控甜瓜的性别表达、植物激素互作、信号转导和次生代谢中起作用。通过 ACS7、ACS11 和 WIP1 之间的遗传相互作用的转录调控整合,以及表观遗传上 H3K9ac 和 H3K27me3 的募集,整体上决定了性别表达。通过建立系统发育进化的蛋白质序列比对、基序比较和蛋白质-蛋白质相互作用,支持 ACS 蛋白的结构保守性,而跨分化进化群存在保守的亲水和带电残基,预测了 ACS 蛋白的功能保守性。推测顺式结合元件或 DNA 基序的存在,并与拟南芥 DAP-seq 基于顺式作用元件和反式作用元件的比较,揭示了甜瓜与拟南芥的强烈亲缘关系。基序比较分析还鉴定了参与乙烯生物合成、信号转导和激素互作的假定基因和转录因子,这些基因和转录因子与性别表达有关。总的来说,我们全面回顾了研究结果,以期更深入地了解甜瓜性别表达和花发育的转录和表观遗传调控。

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