State Key Laboratory of Cotton Biology, Institute of Cotton Research of CAAS, Anyang, 455000, China.
College of Agronomy, Northwest A&F University, Yangling, 712100, China.
BMC Genomics. 2019 Jul 8;20(1):558. doi: 10.1186/s12864-019-5948-y.
Many BURP domain-containing proteins, which are unique to plants, have been identified. They performed diverse functions in plant development and the stress response. To date, only a few BURP domain-containing genes have been studied, and no comprehensive analysis of the gene family in cotton has been reported.
In this study, 18, 17 and 30 putative BURP genes were identified in G. raimondii (D), G. arboreum (A) and G. hirsutum (AD), respectively. These BURP genes were phylogenetically classified into eight subfamilies, which were confirmed by analyses of gene structures, motifs and protein domains. The uneven distribution of BURPs in chromosomes and gene duplication analysis indicated that segmental duplication might be the main driving force of the GhBURP family expansion. Promoter regions of all GhBURPs contained at least one putative stress-related cis-elements. Analysis of transcriptomic data and qRT-PCR showed that GhBURPs showed different expression patterns in different organs, and all of them, especially the members of the RD22-like subfamily, could be induced by different stresses, such as abscisic acid (ABA) and salicylic acid (SA), which indicated that the GhBURPs may performed important functions in cotton's responses to various abiotic stresses.
Our study comprehensively analyzed BURP genes in G. hirsutum, providing insight into the functions of GhBURPs in cotton development and adaptation to stresses.
已鉴定出许多仅存在于植物中的 BURP 结构域蛋白,它们在植物发育和应激反应中发挥着多样化的功能。迄今为止,仅研究了少数几个 BURP 结构域蛋白基因,尚未对棉花中的基因家族进行全面分析。
在这项研究中,分别在雷蒙德氏棉(D)、亚洲棉(A)和陆地棉(AD)中鉴定出 18、17 和 30 个推定的 BURP 基因。这些 BURP 基因通过基因结构、基序和蛋白质结构域分析被分为八个亚家族。BURP 在染色体上的不均匀分布和基因复制分析表明,片段复制可能是 GhBURP 家族扩张的主要驱动力。所有 GhBURP 的启动子区域都包含至少一个推定的与应激相关的顺式元件。转录组数据和 qRT-PCR 分析表明,GhBURP 在不同器官中表现出不同的表达模式,它们都可以被不同的应激诱导,如脱落酸(ABA)和水杨酸(SA),这表明 GhBURP 可能在棉花对各种非生物胁迫的响应中发挥重要作用。
我们的研究全面分析了陆地棉中的 BURP 基因,深入了解了 GhBURP 在棉花发育和适应应激方面的功能。