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MADS盒基因的结构与功能分析揭示其在茶树低温胁迫响应和花发育中的功能( )。

Structural and Functional Analysis of the MADS-Box Genes Reveals Their Functions in Cold Stress Responses and Flower Development in Tea Plant ().

作者信息

Hu Juan, Chen Qianqian, Idrees Atif, Bi Wanjun, Lai Zhongxiong, Sun Yun

机构信息

Key Laboratory of Tea Science in Fujian Province, College of Horticulture, Fujian Agriculture and Forestry University, Fuzhou 350002, China.

College of Life Sciences, Fujian Agriculture and Forestry University, Fuzhou 350002, China.

出版信息

Plants (Basel). 2023 Aug 13;12(16):2929. doi: 10.3390/plants12162929.

Abstract

MADS-box genes comprise a large family of transcription factors that play crucial roles in all aspects of plant growth and development. However, no detailed information on the evolutionary relationship and functional characterization of MADS-box genes is currently available for some representative lineages, such as the Camellia plant. In this study, 136 MADS-box genes were detected from a reference genome of the tea plant () by employing a 569 bp HMM (Hidden Markov Model) developed using nucleotide sequencing including 73 type I and 63 type II genes. An additional twenty-seven genes were identified, with five MIKC-type genes. Truncated and/or inaccurate gene models were manually verified and curated to improve their functional characterization. Subsequently, phylogenetic relationships, chromosome locations, conserved motifs, gene structures, and gene expression profiles were systematically investigated. Tea plant MIKC genes were divided into all 14 major eudicot subfamilies, and no gene was found in Mβ. The expansion of MADS-box genes in the tea plant was mainly contributed by WGD/fragment and tandem duplications. The expression profiles of tea plant MADS-box genes in different tissues and seasons were analyzed, revealing widespread evolutionary conservation and genetic redundancy. The expression profiles linked to cold stress treatments suggested the wide involvement of MADS-box genes from the tea plant in response to low temperatures. Moreover, a floral 'ABCE' model was proposed in the tea plant and proved to be both conserved and ancient. Our analyses offer a detailed overview of MADS-box genes in the tea plant, allowing us to hypothesize the potential functions of unknown genes and providing a foundation for further functional characterizations.

摘要

MADS盒基因构成了一个庞大的转录因子家族,在植物生长发育的各个方面都发挥着关键作用。然而,目前对于一些代表性谱系,如茶树植物,MADS盒基因的进化关系和功能特征尚无详细信息。在本研究中,通过使用一个由核苷酸测序开发的569 bp隐马尔可夫模型(Hidden Markov Model),从茶树的参考基因组中检测到136个MADS盒基因,其中包括73个I型基因和63个II型基因。另外还鉴定出27个基因,其中有5个MIKC型基因。对截短和/或不准确的基因模型进行了人工验证和修正,以改善其功能特征。随后,系统地研究了系统发育关系、染色体定位、保守基序、基因结构和基因表达谱。茶树的MIKC基因被划分到所有14个主要的真双子叶植物亚科中,在Mβ亚科中未发现基因。茶树中MADS盒基因的扩增主要由全基因组复制/片段重复和串联重复造成。分析了茶树MADS盒基因在不同组织和季节中的表达谱,揭示了广泛的进化保守性和遗传冗余性。与冷胁迫处理相关的表达谱表明,茶树的MADS盒基因广泛参与对低温的响应。此外,在茶树中提出了一个花的“ABCE”模型,并且证明它既保守又古老。我们的分析提供了茶树中MADS盒基因的详细概述,使我们能够推测未知基因的潜在功能,并为进一步的功能表征提供基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/422a/10458798/14c131913c27/plants-12-02929-g001.jpg

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