Su Mei, Ru Xuejuan, Chen Yang, Wang Hongjuan, Luo Jia, Wu Hong
Chongqing Academy of Agricultural Sciences, Chongqing 401329, China.
Chongqing Key Laboratory of Adversity Agriculture Research, Chongqing 401329, China.
Genes (Basel). 2024 Nov 29;15(12):1555. doi: 10.3390/genes15121555.
Tomatoes are renowned for their popularity and nutritional value across the globe, yet their production and quality face significant challenges from various biotic stresses in their growing environments. Kiwellin (KWL) has been implicated in plant disease resistance. However, our comprehension of this gene family in plants is still remarkably insufficient.
We conducted a comprehensive genomic analysis of the gene family in tomatoes. The tertiary structures of SlKWLs were predicted by AlphaFold2. EMBOSS was used for codon analysis. RNA-seq and RT-qPCR analysis were performed to explore the expression profile of SlKWLs.
Our findings identified 12 distinct SlKWL members distributed across four chromosomes within the tomato genome. By examining their gene structure, conserved motifs, functional domains, and phylogenetic relationships, we elucidated the complex evolutionary relationships and potential functions of these genes. Notably, we identified numerous cis-regulatory elements within the promoter regions of the genes which are associated with responses to both abiotic and biotic stresses, as well as hormone signaling pathways. This finding strongly implies that SlKWLs are integral to plant growth and adaptation to diverse stress conditions. Furthermore, RNA-seq and RT-qPCR analysis revealed an upregulation of five expressed subsequent to infection. Particularly, SlKWL2 and SlKWL3 exhibited substantially elevated expression levels, underscoring their active involvement in biotic stress responses.
Collectively, these findings advance our comprehension of the gene family and provide a robust foundation for future investigations into the roles of genes in tomato stress responses.
番茄以其在全球的受欢迎程度和营养价值而闻名,但其生产和品质在生长环境中面临各种生物胁迫带来的重大挑战。猕猴桃素(KWL)与植物抗病性有关。然而,我们对植物中这个基因家族的了解仍然非常不足。
我们对番茄中的该基因家族进行了全面的基因组分析。利用AlphaFold2预测了SlKWLs的三级结构。使用EMBOSS进行密码子分析。进行RNA测序和RT-qPCR分析以探究SlKWLs的表达谱。
我们的研究结果确定了12个不同的SlKWL成员,分布在番茄基因组的四条染色体上。通过检查它们的基因结构、保守基序、功能域和系统发育关系,我们阐明了这些基因复杂的进化关系和潜在功能。值得注意的是,我们在这些基因的启动子区域内鉴定出许多顺式调控元件,它们与对非生物和生物胁迫的反应以及激素信号通路有关。这一发现强烈表明SlKWLs对于植物生长和适应各种胁迫条件至关重要。此外,RNA测序和RT-qPCR分析显示,在感染后,五个基因的表达上调。特别是,SlKWL2和SlKWL3表现出显著升高的表达水平,突出了它们在生物胁迫反应中的积极参与。
总的来说,这些发现推进了我们对该基因家族的理解,并为未来研究该基因在番茄胁迫反应中的作用提供了坚实的基础。