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[植物名称]中叶黄化突变体的细胞学、生理学及转录组分析

Cytological, Physiological, and Transcriptome Analysis of Leaf-Yellowing Mutant in .

作者信息

Huang Bin, Huang Wenyin, Liu Zhenyu, Peng Yixuan, Qu Yanshu, Zhou Wencai, Huang Jianjian, Shu Huili, Wen Qiang

机构信息

Jiangxi Provincial Key Laboratory of Oil-Tea Camellia Resource Cultivation and Utilization, Jiangxi Academy of Forestry, Nanchang 330032, China.

College of Forestry, Jiangxi Agricultural University, Nanchang 330045, China.

出版信息

Int J Mol Sci. 2024 Dec 27;26(1):132. doi: 10.3390/ijms26010132.

Abstract

Color variation in plant leaves has a significant impact on their photosynthesis and plant growth. yellow-leaf mutants are ideal materials for studying the mechanisms of pigment synthesis and photosynthesis, but their mechanism of leaf variation is not clear. We systematically elucidated the intrinsic causes of leaf yellowing in the new variety 'Diecui Liuji' in terms of changes in its cell structure, pigment content, and transcript levels. This study indicates that the incomplete structure of chloroplast-like vesicles, the decrease in blue-green chlorophyll a, and the increase in yellow-green chlorophyll b in yellowing leaves are the direct causes of yellowing-leaf formation. The high expression of genes that catalyze the degradation of chlorophyll a ( and ) and its conversion to chlorophyll b () in yellowing leaves leads to a decrease in the chlorophyll a content, while the low expression of genes is the main reason for the increase in the chlorophyll b content. We also found transcription factors such as ERF, E2F, WRKY, MYB, TPC, TGA, and NFYC may regulate their expression. RT-qPCR assays of 12 DEGs confirm the RNA-seq results. This study will provide a foundation for investigating the transcriptional and regulatory mechanisms of leaf color changes.

摘要

植物叶片颜色变化对其光合作用和植物生长有重大影响。黄叶突变体是研究色素合成和光合作用机制的理想材料,但其叶片变异机制尚不清楚。我们从细胞结构、色素含量和转录水平的变化方面,系统地阐明了新品种‘叠翠柳姬’叶片发黄的内在原因。本研究表明,叶绿体样囊泡结构不完整、黄叶中蓝绿色叶绿素a含量降低以及黄绿色叶绿素b含量增加是黄叶形成的直接原因。黄叶中催化叶绿素a降解(和)及其向叶绿素b转化()的基因高表达导致叶绿素a含量降低,而基因低表达是叶绿素b含量增加的主要原因。我们还发现ERF、E2F、WRKY、MYB、TPC、TGA和NFYC等转录因子可能调节它们的表达。对12个差异表达基因的RT-qPCR分析证实了RNA测序结果。本研究将为研究叶片颜色变化的转录和调控机制提供基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1973/11719897/944d172818ae/ijms-26-00132-g001.jpg

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