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棉属(Gossypium hirsutum L.)F-box 基因家族的全基因组分析与鉴定

Genome-wide analysis and characterization of F-box gene family in Gossypium hirsutum L.

机构信息

State Key Laboratory of Cotton Biology, Institute of Plant Stress Biology, School of Life Sciences, Henan University, Jinming Street, Kaifeng, 475004, China.

College of Biology and Food Engineering, Anyang Institute of Technology, Anyang, 455000, China.

出版信息

BMC Genomics. 2019 Dec 19;20(1):993. doi: 10.1186/s12864-019-6280-2.

Abstract

BACKGROUND

F-box proteins are substrate-recognition components of the Skp1-Rbx1-Cul1-F-box protein (SCF) ubiquitin ligases. By selectively targeting the key regulatory proteins or enzymes for ubiquitination and 26S proteasome mediated degradation, F-box proteins play diverse roles in plant growth/development and in the responses of plants to both environmental and endogenous signals. Studies of F-box proteins from the model plant Arabidopsis and from many additional plant species have demonstrated that they belong to a super gene family, and function across almost all aspects of the plant life cycle. However, systematic exploration of F-box family genes in the important fiber crop cotton (Gossypium hirsutum) has not been previously performed. The genome-wide analysis of the cotton F-box gene family is now possible thanks to the completion of several cotton genome sequencing projects.

RESULTS

In current study, we first conducted a genome-wide investigation of cotton F-box family genes by reference to the published F-box protein sequences from other plant species. 592 F-box protein encoding genes were identified in the Gossypium hirsutume acc.TM-1 genome and, subsequently, we were able to present their gene structures, chromosomal locations, syntenic relationships with their parent species. In addition, duplication modes analysis showed that cotton F-box genes were distributed to 26 chromosomes, with the maximum number of genes being detected on chromosome 5. Although the WGD (whole-genome duplication) mode seems play a dominant role during cotton F-box gene expansion process, other duplication modes including TD (tandem duplication), PD (proximal duplication), and TRD (transposed duplication) also contribute significantly to the evolutionary expansion of cotton F-box genes. Collectively, these bioinformatic analysis suggest possible evolutionary forces underlying F-box gene diversification. Additionally, we also conducted analyses of gene ontology, and expression profiles in silico, allowing identification of F-box gene members potentially involved in hormone signal transduction.

CONCLUSION

The results of this study provide first insights into the Gossypium hirsutum F-box gene family, which lays the foundation for future studies of functionality, particularly those involving F-box protein family members that play a role in hormone signal transduction.

摘要

背景

F-box 蛋白是 Skp1-Rbx1-Cul1-F-box 蛋白 (SCF) 泛素连接酶的底物识别组件。通过选择性地靶向关键调节蛋白或酶进行泛素化和 26S 蛋白酶体介导的降解,F-box 蛋白在植物生长/发育以及植物对环境和内源性信号的响应中发挥多种作用。对模式植物拟南芥和许多其他植物的 F-box 蛋白的研究表明,它们属于一个超级基因家族,几乎在植物生命周期的所有方面都发挥作用。然而,对重要纤维作物棉花(Gossypium hirsutum)的 F-box 家族基因进行系统研究尚未进行。由于完成了几个棉花基因组测序项目,现在可以对棉花 F-box 基因家族进行全基因组分析。

结果

在目前的研究中,我们首先通过参考其他植物物种发表的 F-box 蛋白序列,对棉花 F-box 家族基因进行了全基因组研究。在 Gossypium hirsutume acc.TM-1 基因组中鉴定了 592 个 F-box 蛋白编码基因,随后我们能够展示它们的基因结构、染色体位置、与亲本物种的共线性关系。此外,重复模式分析表明,棉花 F-box 基因分布在 26 条染色体上,在第 5 条染色体上检测到的基因数量最多。尽管 WGD(全基因组重复)模式似乎在棉花 F-box 基因扩张过程中起主导作用,但其他重复模式,包括 TD(串联重复)、PD(近端重复)和 TRD(转位重复),也对棉花 F-box 基因的进化扩张有重要贡献。总的来说,这些生物信息学分析表明了 F-box 基因多样化的可能进化力量。此外,我们还进行了基因本体论和表达谱的计算机分析,鉴定了可能参与激素信号转导的 F-box 基因成员。

结论

本研究结果首次深入了解了 Gossypium hirsutum F-box 基因家族,为进一步研究功能奠定了基础,特别是那些涉及在激素信号转导中起作用的 F-box 蛋白家族成员的功能研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/969d/6921459/407c5b205301/12864_2019_6280_Fig1_HTML.jpg

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