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毛竹中CPP基因家族的综合分析:洞察其在笋快速生长中的作用

Comprehensive analysis of the CPP gene family in Moso bamboo: insights into their role in rapid shoot growth.

作者信息

Tan Jiaqi, Xuan Xueyun, Su Shiying, Jiao Yang, Guo Hui, Zhang Zhijun

机构信息

Bamboo Industry Institute, Zhejiang A&F University, Lin'an, Hangzhou, Zhejiang, 311300, China.

出版信息

BMC Genomics. 2024 Dec 3;25(1):1173. doi: 10.1186/s12864-024-11084-6.

Abstract

Cysteine-rich polycomb-like proteins (CPPs), pivotal transcription factors crucial for evolution of plants from germination to maturity, and adaptation to environmental stresses, have not yet been characterized within the context of Moso bamboo. The CPP gene family of Moso bamboo was identified through bioinformatics, and the structural and functional attributes of the gene, including its physicochemical properties, evolutionary relationships, and gene-protein structures, were revealed. Additionally, the current study also offers valuable information on the patterns of gene expression in bamboo shoots during the period of accelerated development. The results show that the Moso bamboo genome contains 17 CPP members. Molecular phylogenetic relationships indicated that CPPs could be divided into three subfamilies and that CPP members of the same subfamily shared similar gene structures, motifs and conserved structural domains. The covariance analysis showed that the covariance between CPP and Oryza sativa was higher than that between Arabidopsis. Protein homology modeling showed that CPP proteins contain the DNA-binding domain of typical transcription factors. Transcriptomic data analysis revealed that CPP gene expression differs between tissues and organs. CPP could be regulated in response to exogenous gibberellin (GA) and naphthalene acetic acid (NAA). The qRT-PCR experiments demonstrated that CPP was crucial in the initial and fast expansion of bamboo shoots. Additionally, gene ontology (GO), KEGG enrichment and CPP regulatory network map analyses revealed multiple functional annotations of PeCPP-regulated downstream target genes. The results of this study will not only lay the foundation for further exploration of the detailed biological functions of CPP genes in the growth and development of Moso bamboo, but also establish the groundwork for future genetic enhancement of fast-growing forest trees.

摘要

富含半胱氨酸的多梳样蛋白(CPPs)是植物从萌发到成熟以及适应环境胁迫过程中至关重要的关键转录因子,然而在毛竹中尚未得到表征。通过生物信息学鉴定了毛竹的CPP基因家族,并揭示了该基因的结构和功能特性,包括其理化性质、进化关系以及基因-蛋白质结构。此外,本研究还提供了有关竹笋快速发育期间基因表达模式的有价值信息。结果表明,毛竹基因组包含17个CPP成员。分子系统发育关系表明,CPPs可分为三个亚家族,同一亚家族的CPP成员具有相似的基因结构、基序和保守结构域。共线性分析表明,CPP与水稻之间的共线性高于与拟南芥之间的共线性。蛋白质同源建模表明,CPP蛋白包含典型转录因子的DNA结合结构域。转录组数据分析显示,CPP基因在不同组织和器官中的表达存在差异。CPP可响应外源赤霉素(GA)和萘乙酸(NAA)进行调控。qRT-PCR实验表明,CPP在竹笋的初始和快速生长中至关重要。此外,基因本体论(GO)、KEGG富集和CPP调控网络图分析揭示了PeCPP调控的下游靶基因的多个功能注释。本研究结果不仅为进一步探索CPP基因在毛竹生长发育中的详细生物学功能奠定基础,也为未来速生林木的遗传改良奠定基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4252/11613906/7c7b25023094/12864_2024_11084_Fig1_HTML.jpg

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