首页> 外文期刊>Plant Physiology and Biochemistry >Genome-wide analysis of the MADS-box gene family in polyploid cotton (Gossypium hirsutum) and in its diploid parental species (Gossypium arboreum and Gossypium raimondii)
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Genome-wide analysis of the MADS-box gene family in polyploid cotton (Gossypium hirsutum) and in its diploid parental species (Gossypium arboreum and Gossypium raimondii)

机译:多倍体棉花(Gossypium hirsutum)和二倍体父母物种(Gossypium Arboreum和Gossypium raimondii)的基因组分析

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摘要

The MADS-box gene family encodes transcription factors that share a highly conserved domain known to bind to DNA. Members of this family control various processes of development in plants, from root formation to fruit ripening. In this work, a survey of diploid (Gossypiwn raimondii and Gossypium arborewn) and tetraploid (Gossypium hirsuumt) cotton genomes found a total of 147, 133 and 207 MADS-box genes, respectively, distributed in the MIKC, Ma, MD, My, and MS subclades. A comparative phylogenetic analysis among cotton species, Arabidopsis, poplar and grapevine MADS-box homologous genes allowed us to evaluate the evolution of each MADS-box lineage in cotton plants and identify sequences within well-established subfamilies. Chromosomal localization and phylogenetic analysis revealed that G. raimondii and G. arboreum showed a conserved evolution of the MIKC subclade and a distinct pattern of duplication events in the Ma, My and MS subclades. Additionally, G. hirsutum showed a combination of its parental subgenomes followed by a distinct evolutionary history including gene gain and loss in each subclade. qPCR analysis revealed the expression patterns of putative homologs in the AP1, AP3, AGL6, SEP4, AGL15, AG, AGL17, TM8, SVP, SOC and TT16 subfamilies of G. hirsutum. The identification of putative cotton orthologs is discussed In the light of evolution and gene expression data from other plants. This analysis of the MADS-box genes in Gossypium species opens an avenue to understanding the origin and evolution of each gene subfamily within diploid and polyploid species and paves the way for functional studies in cotton species.
机译:MAD-BOX基因家族编码分类的转录因子,该因子共享已知具有结合DNA的高度保守域。该家庭成员控制植物中的各种发展过程,从根系形成到果实成熟。在这项工作中,对二倍体(Gossypiwn Raimondii和Gossypium Arborewn)和四倍体(Gossypium hirsuumt)棉基因组的调查分别发现了147,133和207个Mad-Box基因,分布在MIKC,MA,MD,我的,和女士亚克士。棉花种类,拟南芥,杨树和葡萄疯子盒同源基因的比较系统发育分析使我们能够评估棉花植物中每个疯箱谱系的演变,并鉴定良好的亚壳内的序列。染色体定位和系统发育分析表明,G. raimondii和G. arboreum展示了Mikc Subclade的保守演变,以及MA,MY和MS亚克士中的不同重复事件模式。此外,G. hirsutum显示其亲本​​亚因子的组合,然后是一个不同的进化史,包括每个亚亚的基因增益和损失。 QPCR分析揭示了AP1,AP3,AGL6,SEP4,AGL15,AG,AGL17,TM8,SVP,SOC和TT16 G. hirsutum的AP115,SVP,SOC和TT16亚壳的表达模式。根据来自其他植物的进化和基因表达数据,讨论了推定的棉质直脑的鉴定。这种分析Gossypium种类中的疯子箱基因开辟了一个途径,以了解各分脂和多倍体物种内每种基因亚家族的起源和演变,并为棉花种类的功能研究铺平了途径。

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