Xi Rui, Liu Huifang, Chen Yijia, Zhuang Hongmei, Han Hongwei, Wang Hao, Wang Qiang, Li Ning
Institute of Horticulture Crops, Xinjiang Academy of Agricultural Sciences/Xingjiang Engineering Research Center for Vegetables, Urumqi 830091, China.
The State Key Laboratory of Genetic Improvement and Germplasm Innovation of Crop Resistance in Arid Desert Regions (Preparation), Institute of Horticultural Crops, Xinjiang Academy of Agricultural Sciences, Urumqi 830091, China.
Plants (Basel). 2023 Nov 10;12(22):3818. doi: 10.3390/plants12223818.
The fatty acid desaturase (FAD) gene family plays a crucial regulatory role in the resistance process of plant biomembranes. To understand the role of FADs in tomato growth and development, this study identified and analyzed the tomato gene family based on bioinformatics analysis methods. In this study, 26 were unevenly distributed on 10 chromosomes. Phylogenetic analysis showed that the gene family was divided into six branches, and the exon-intron composition and conserved motifs of clustered in the same branch were quite conservative. Several hormone and stress response elements in the promoter suggest that the expression of members is subject to complex regulation; the construction of a tomato FAD protein interaction network found that proteins have apparent synergistic effects with SPA and GPAT proteins. qRT-PCR verification results show that participates in the expression of tomato root, stem, and leaf tissues; is mainly highly expressed in leaves; plays a vital role in response to salt stress; and regulates all stages of fruit development under the action of exogenous hormones. In summary, this study provides a basis for a systematic understanding of the gene family. It provides a theoretical basis for in-depth research on the functional characteristics of tomato genes.
脂肪酸去饱和酶(FAD)基因家族在植物生物膜的抗性过程中起着关键的调控作用。为了解FADs在番茄生长发育中的作用,本研究基于生物信息学分析方法对番茄基因家族进行了鉴定和分析。在本研究中,26个基因不均匀地分布在10条染色体上。系统发育分析表明,该基因家族分为六个分支,同一分支中基因的外显子-内含子组成和保守基序相当保守。基因启动子中的几个激素和胁迫响应元件表明,基因成员的表达受到复杂的调控;构建番茄FAD蛋白相互作用网络发现,FAD蛋白与SPA和GPAT蛋白具有明显的协同作用。qRT-PCR验证结果表明,该基因参与番茄根、茎和叶组织的表达;主要在叶片中高表达;在响应盐胁迫中起重要作用;在外源激素作用下调控果实发育的各个阶段。综上所述,本研究为系统了解该基因家族提供了依据。为深入研究番茄基因的功能特性提供了理论基础。