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甜瓜黄绿叶突变体(Cmygp)编码一个类 Golden2 的转录因子,调控叶绿素合成和叶绿体发育。

Melon yellow-green plant (Cmygp) encodes a Golden2-like transcription factor regulating chlorophyll synthesis and chloroplast development.

机构信息

College of Horticulture, Henan Agricultural University, 63 Nongye Road, Zhengzhou, 450002, China.

State Key Laboratory of Crop Genetics and Germplasm Enhancement, Bioinformatics Center, Nanjing Agricultural University, Nanjing, 210095, China.

出版信息

Theor Appl Genet. 2023 Mar 23;136(4):66. doi: 10.1007/s00122-023-04343-9.

Abstract

A SNP mutation in CmYGP gene encoding Golden2-like transcription factor is responsible for melon yellow-green plant trait. Chlorophylls are essential and beneficial substances for both plant and human health. Identifying the regulatory network of chlorophyll is necessary to improve the nutritional quality of fruits. At least six etiolation genes have been identified in different melon varieties, but none of them have been cloned, and the molecular mechanisms underlying chlorophyll synthesis and chloroplast development in melon remain unclear. Here, the NSL73046, a yellow-green plant (Cmygp) mutant, enabled the map-based cloning of the first etiolation gene in melon. CmYGP encodes a Golden2-like transcription factor. Spatiotemporal expression analyses confirmed the high CmYGP expression in all green tissues, particularly in young leaves and fruit peels. Virus-induced gene silencing and the development of near-isogenic line by marker-assisted selection further confirmed that downregulation of CmYGP can reduce chloroplast number and chlorophyll content, thereby resulting in yellow-green leaves and fruits in melon, and overexpression of CmYGP in tomatoes also led to dark-green leaves and fruits. RNA-seq analysis revealed that CmYGP greatly affected the expression of key genes associated with chloroplast development. Taken together, these findings demonstrated that CmYGP regulate chlorophyll synthesis and chloroplast development thus affect fruit development in melon. This study also offers a new strategy to enhance fruit quality in melon.

摘要

一个 SNP 突变在编码 Golden2 样转录因子的 CmYGP 基因中负责甜瓜黄绿叶性状。叶绿素是植物和人类健康所必需的有益物质。鉴定叶绿素的调控网络对于提高果实的营养价值是必要的。在不同的甜瓜品种中已经鉴定出至少六个黄化基因,但没有一个被克隆,甜瓜中叶绿素合成和叶绿体发育的分子机制仍不清楚。在这里,黄绿叶(Cmygp)突变体 NSL73046 使得基于图谱的克隆成为可能第一个在甜瓜中鉴定出的黄化基因。CmYGP 编码一个 Golden2 样转录因子。时空表达分析证实 CmYGP 在所有绿色组织中,特别是在嫩叶和果皮中高表达。病毒诱导的基因沉默和利用标记辅助选择开发近等基因系进一步证实,下调 CmYGP 可以减少叶绿体数量和叶绿素含量,从而导致甜瓜的黄绿叶和果实,过表达 CmYGP 在番茄中也导致深绿色的叶子和果实。RNA-seq 分析显示 CmYGP 极大地影响了与叶绿体发育相关的关键基因的表达。总之,这些发现表明 CmYGP 调节叶绿素合成和叶绿体发育,从而影响甜瓜果实发育。本研究还为提高甜瓜果实品质提供了一种新策略。

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