Yang Zongtao, Cheng Guangyuan, Yu Quanxin, Jiao Wendi, Zeng Kang, Luo Tingxu, Zhang Hai, Shang Heyang, Huang Guoqiang, Wang Fengji, Guo Ying, Xu Jingsheng
Key Laboratory of Sugarcane Biology and Genetic Breeding, Ministry of Agriculture and Rural Affairs, National Engineering Research Center for Sugarcane, College of Agriculture, Fujian Agriculture and Forestry University, Fuzhou, Fujian, China.
Key Laboratory of Ministry of Education for Genetics, Breeding and Multiple Utilization of Crops, College of Crop Science, Fujian Agriculture and Forestry University, Fuzhou, China.
Front Plant Sci. 2024 Feb 23;15:1365995. doi: 10.3389/fpls.2024.1365995. eCollection 2024.
Remorins (REMs) are plant-specific membrane-associated proteins that play important roles in plant-pathogen interactions and environmental adaptations. Group I REMs are extensively involved in virus infection. However, little is known about the gene family in sugarcane ( spp. hyrid), the most important sugar and energy crop around world.
Comparative genomics were employed to analyze the gene family in . Transcriptomics or RT-qPCR were used to analyze their expression files in different development stages or tissues under different treatments. Yeast two hybrid, bimolecular fluorescence complementation and co-immunoprecipitation assays were applied to investigate the protein interaction.
In this study, 65 were identified from genome and classified into six groups based on phylogenetic tree analysis. These REMs contain multiple -elements associated with growth, development, hormone and stress response. Expression profiling revealed that among different with variable expression levels in different developmental stages or different tissues. A pair of alleles, , were isolated from the sugarcane cultivar ROC22. were highly expressed in leaves, with the former expressed at significantly higher levels than the latter. Their expression was induced by treatment with HO, ABA, ethylene, brassinosteroid, SA or MeJA, and varied upon (SCMV) infection. ScREM1.5e-1 was localized to the plasma membrane (PM), while ScREM1.5e-2 was localized to the cytoplasm or nucleus. ScREM1.5e-1/-2 can self-interact and interact with each other, and interact with VPgs from SCMV, , or . The interactions with VPgs relocated ScREM1.5e-1 from the PM to the cytoplasm.
These results reveal the origin, distribution and evolution of the gene family in sugarcane and may shed light on engineering sugarcane resistance against sugarcane mosaic pathogens.
Remorins(REM)是植物特有的膜相关蛋白,在植物与病原体的相互作用以及环境适应中发挥重要作用。第一类REM广泛参与病毒感染。然而,对于世界上最重要的糖和能源作物甘蔗(spp. hyrid)中的该基因家族知之甚少。
采用比较基因组学分析甘蔗中的REM基因家族。利用转录组学或RT-qPCR分析其在不同发育阶段或不同处理下不同组织中的表达谱。应用酵母双杂交、双分子荧光互补和免疫共沉淀试验研究蛋白质相互作用。
在本研究中,从甘蔗基因组中鉴定出65个REM,并根据系统发育树分析将其分为六组。这些REM含有与生长、发育、激素和应激反应相关的多个顺式作用元件。表达谱分析表明,不同的REM在不同发育阶段或不同组织中表达水平不同。从甘蔗品种ROC22中分离出一对等位基因ScREM1.5e-1和ScREM1.5e-2。它们在叶片中高表达,前者的表达水平明显高于后者。它们的表达受到过氧化氢、脱落酸、乙烯、油菜素内酯、水杨酸或茉莉酸甲酯处理的诱导,并且在甘蔗花叶病毒(SCMV)感染后发生变化。ScREM1.5e-1定位于质膜(PM),而ScREM1.5e-2定位于细胞质或细胞核。ScREM1.5e-1/-2可以自我相互作用并相互作用,并且与SCMV、甘蔗线条花叶病毒或高粱花叶病毒的VPg相互作用。与VPg的相互作用将ScREM1.5e-1从质膜重新定位到细胞质。
这些结果揭示了甘蔗中REM基因家族的起源、分布和进化,并可能为甘蔗抗甘蔗花叶病原体的工程研究提供线索。