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栽培杂交甘蔗ZZ1中GRAS转录因子家族的全基因组鉴定与特征分析及其在发育和胁迫中的作用

Genome-Wide Identification and Characterization of GRAS Transcription Factor Family in Cultivated Hybrid Sugarcane ZZ1 () and Their Role in Development and Stress.

作者信息

Wen Hao, Wang Lidan, Gong Yuqing, Zhang Yu, Zhao Tingting, Feng Cuilian, Wang Jungang, Lin Jishan

机构信息

National Key Laboratory for Tropical Crop Breeding, Institute of Tropical Bioscience and Biotechnology, Chinese Academy of Tropical Agricultural Sciences, Sanya 572024, China.

School of Breeding and Multiplication (Sanya Institute of Breeding and Multiplication), Hainan University, Sanya 572025, China.

出版信息

Int J Mol Sci. 2024 Dec 16;25(24):13470. doi: 10.3390/ijms252413470.

Abstract

GRAS gene family plays multifunctional roles in plant growth, development, and resistance to various biotic and abiotic stresses, belonging to the plant-specific transcription factor (TF) family. In this study, a genome-wide survey and systematic analysis of the GRAS family in cultivated hybrid sugarcane ZZ1 () with economic and industrial importance was carried out. We identified 747 GRAS genes with complete structural domains and classified these into 11 subfamilies by phylogenetic analyses, exhibiting a diverse range of molecular weight and isoelectric points, thereby indicating a broad structural and functional spectrum. Analysis of Protein motif and gene structure revealed a conserved yet variable arrangement of motifs within the GRAS TFs, suggesting its potential for diverse functional roles. Furthermore, the identification of numerous cis-regulatory elements by GRAS TFs promoter sequence analysis, implying their complex regulation in response to environmental and physiological signals. Tertiary structure predictions analyses using AlphaFold3 highlighted the structural flexibility and conservation within the GRAS family, with disordered regions potentially contributing to their functional versatility. Weighted Gene Co-expression Network Analysis (WGCNA) provided insights into the potential roles of in sugarcane's response to smut infection. This comprehensive investigation of the GRAS family in ZZ1 not only uncovers their structural diversity but also sheds light on their potential regulatory roles in plant growth, development, and stress response. The findings contribute to a deeper understanding of GRAS TFs functions and lay the groundwork for future studies on their role in sugarcane improvement and disease resistance.

摘要

GRAS基因家族在植物生长、发育以及对各种生物和非生物胁迫的抗性中发挥着多功能作用,属于植物特异性转录因子(TF)家族。在本研究中,对具有经济和工业重要性的栽培杂交甘蔗ZZ1中的GRAS家族进行了全基因组调查和系统分析。我们鉴定出747个具有完整结构域的GRAS基因,并通过系统发育分析将它们分为11个亚家族,这些基因呈现出不同的分子量和等电点范围,从而表明其结构和功能谱广泛。蛋白质基序和基因结构分析揭示了GRAS转录因子中基序的保守但可变的排列方式,表明其具有多种功能作用的潜力。此外,通过GRAS转录因子启动子序列分析鉴定出众多顺式调控元件,这意味着它们在响应环境和生理信号时受到复杂调控。使用AlphaFold3进行的三级结构预测分析突出了GRAS家族内的结构灵活性和保守性,无序区域可能有助于其功能的多功能性。加权基因共表达网络分析(WGCNA)为ZZ1在甘蔗对黑穗病感染的响应中的潜在作用提供了见解。对ZZ1中GRAS家族的这项全面研究不仅揭示了它们的结构多样性,还阐明了它们在植物生长、发育和胁迫响应中的潜在调控作用。这些发现有助于更深入地理解GRAS转录因子的功能,并为未来研究它们在甘蔗改良和抗病性中的作用奠定基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c90d/11678106/6c8c8f21d98f/ijms-25-13470-g001.jpg

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