Beijing Key Laboratory of Growth and Developmental Regulation for Protected Vegetable Crops, China Agricultural University, Beijing 100193, China.
College of Life Science and Technology, HongHe University, Mengzi 661100, China.
Int J Mol Sci. 2020 May 29;21(11):3857. doi: 10.3390/ijms21113857.
Cucumber ( L.) is one of the most important cucurbit vegetables but is often subjected to stress during cultivation. () genes encode a family of transcriptional factors that regulate plant growth and development. In the model plant , GRAS family genes function in formation of axillary meristem and root radial structure, phytohormone (gibberellin) signal transduction, light signal transduction and abiotic/biological stress. In this study, a gene family was comprehensively analyzed from the aspects of evolutionary tree, gene structure, chromosome location, evolutionary and expression pattern by means of bioinformatics; 37 GRAS gene family members have been screened from cucumber. We reconstructed an evolutionary tree based on multiple sequence alignment of the typical GRAS domain and conserved motif sequences with those of other species ( and ). Cucumber GRAS family was divided into 10 groups according to the classification of and tomato genes. We conclude that tandem and segmental duplication have played important roles in the expansion and evolution of the cucumber GRAS () family. Expression patterns of genes in different tissues and under cold treatment, combined with gene ontology annotation and interaction network analysis, revealed potentially different functions for genes in response to cold tolerance, with members of the SHR, SCR and DELLA subfamilies likely playing important roles. In conclusion, this study provides valuable information and candidate genes for improving cucumber tolerance to cold stress.
黄瓜(L.)是最重要的葫芦科蔬菜之一,但在栽培过程中经常受到胁迫。GRAS 基因家族编码一类转录因子,调节植物的生长和发育。在模式植物中,GRAS 家族基因参与侧芽分生组织和根径向结构的形成、植物激素(赤霉素)信号转导、光信号转导以及非生物/生物胁迫反应。本研究通过生物信息学从进化树、基因结构、染色体定位、进化和表达模式等方面对黄瓜的一个基因家族进行了综合分析;从黄瓜中筛选出 37 个 GRAS 基因家族成员。我们基于典型 GRAS 结构域和保守基序序列与其他物种( 和 )的多重序列比对,构建了一个进化树。根据 和番茄基因的分类,黄瓜 GRAS 家族被分为 10 组。我们得出结论,串联和片段复制在黄瓜 GRAS()家族的扩张和进化中发挥了重要作用。在不同组织和冷处理下的基因表达模式,结合基因本体注释和互作网络分析,揭示了 基因可能在冷胁迫响应中具有不同的功能,SHR、SCR 和 DELLA 亚家族的成员可能发挥重要作用。总之,本研究为提高黄瓜耐冷性提供了有价值的信息和候选基因。