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冬枣着色过程中细胞壁木质化及木质素生物合成的调控

The regulation of cell wall lignification and lignin biosynthesis during pigmentation of winter jujube.

作者信息

Zhang Qiong, Wang Lihu, Wang Zhongtang, Zhang Rentang, Liu Ping, Liu Mengjun, Liu Zhiguo, Zhao Zhihui, Wang Lili, Chen Xin, Xu Haifeng

机构信息

Shandong Institute of Pomology, Tai'an, Shandong, 271000, China.

School of Landscape and Ecological Engineering, Hebei University of Engineering, Handan, Hebei, 056038, China.

出版信息

Hortic Res. 2021 Nov 1;8(1):238. doi: 10.1038/s41438-021-00670-4.

Abstract

Fruit lignification is due to lignin deposition in the cell wall during cell development. However, there are few studies on the regulation of cell wall lignification and lignin biosynthesis during fruit pigmentation. In this study, we investigated the regulation of cell wall lignification and lignin biosynthesis during pigmentation of winter jujube. The cellulose content decreased, while the lignin content increased in the winter jujube pericarp during pigmentation. Safranin O-fast green staining showed that the cellulose content was higher in the cell wall of winter jujube prior to pigmentation, whereas the lignin in the cell wall increased after pigmentation. The thickness of the epidermal cells decreased with pericarp pigmentation. A combined metabolomics and transcriptomics analysis showed that guaiacyl-syringyl (G-S) lignin was the main lignin type in the pericarp of winter jujube, and F5H (LOC107424406) and CCR (LOC107420974) were preliminarily identified as the key genes modulating lignin biosynthesis in winter jujube. Seventeen MYB and six NAC transcription factors (TFs) with potential regulation of lignin biosynthesis were screened out based on phylogenetic analysis. Three MYB and two NAC TFs were selected as candidate genes and further studied in detail. Arabidopsis ectopic expression and winter jujube pericarp injection of the candidate genes indicated that the MYB activator (LOC107425254) and the MYB repressor (LOC107415078) control lignin biosynthesis by regulating CCR and F5H, while the NAC (LOC107435239) TF promotes F5H expression and positively regulates lignin biosynthesis. These findings revealed the lignin biosynthetic pathway and associated genes during pigmentation of winter jujube pericarp and provide a basis for further research on lignin regulation.

摘要

果实木质化是由于在细胞发育过程中木质素沉积在细胞壁中。然而,关于果实色素沉着过程中细胞壁木质化和木质素生物合成的调控研究较少。在本研究中,我们调查了冬枣色素沉着过程中细胞壁木质化和木质素生物合成的调控。冬枣果皮在色素沉着过程中,纤维素含量降低,而木质素含量增加。番红O-固绿染色显示,色素沉着前冬枣细胞壁中的纤维素含量较高,而色素沉着后细胞壁中的木质素增加。随着果皮色素沉着,表皮细胞厚度减小。代谢组学和转录组学联合分析表明,愈创木基-紫丁香基(G-S)木质素是冬枣果皮中的主要木质素类型,F5H(LOC107424406)和CCR(LOC107420974)被初步鉴定为调控冬枣木质素生物合成的关键基因。基于系统发育分析,筛选出17个可能调控木质素生物合成的MYB和6个NAC转录因子(TFs)。选择3个MYB和2个NAC TFs作为候选基因并进行进一步详细研究。拟南芥异位表达和冬枣果皮注射候选基因表明,MYB激活因子(LOC107425254)和MYB抑制因子(LOC107415078)通过调控CCR和F5H来控制木质素生物合成,而NAC(LOC107435239)TF促进F5H表达并正向调控木质素生物合成。这些发现揭示了冬枣果皮色素沉着过程中的木质素生物合成途径及相关基因,为进一步研究木质素调控提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/671a/8558337/434653b90667/41438_2021_670_Fig1_HTML.jpg

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