Huo Ruxue, Zhao Yanshu, Liu Tianxu, Xu Meng, Wang Xiaohua, Xu Ping, Dai Shengjie, Cui Xiaoyu, Han Yonghua, Liu Zhenning, Li Zongyun
Jiangsu Key Laboratory of Phylogeny and Comparative Genomics, School of Life Sciences, Institute of Integrative Plant Biology, Jiangsu Normal University, Xuzhou, China.
College of Agriculture and Forestry Science, Linyi University, Linyi, China.
Front Plant Sci. 2023 Jan 12;13:1091620. doi: 10.3389/fpls.2022.1091620. eCollection 2022.
Two-component system (TCS), which comprises histidine kinases (HKs), histidine phosphotransfer proteins (HPs), and response regulators (RRs), plays essential roles in regulating plant growth, development, and response to various environmental stimuli. TCS genes have been comprehensively identified in various plants, while studies on the genome-wide identification and analysis of TCS in sweet potato were still not reported. Therefore, in this study, a total of 90 TCS members consisting of 20 HK(L)s, 11 HPs, and 59 RRs were identified in the genome of . Furthermore, their gene structures, conserved domains, and phylogenetic relationships were analyzed in detail. Additionally, the gene expression profiles in various organs were analyzed, and response patterns to adverse environmental stresses were investigated. The results showed that these 90 TCS genes were mapped on 15 chromosomes with a notably uneven distribution, and the expansion of TCS genes in sweet potato was attributed to both segmental and tandem duplications. The majority of the TCS genes showed distinct organ-specific expression profiles, especially in three types of roots (stem roots, fibrous roots, tuberous roots). Moreover, most of the TCS genes were either induced or suppressed upon treatment with abiotic stresses (drought, salinity, cold, heat) and exogenous phytohormone abscisic acid (ABA). In addition, the yeast-two hybrid system was used to reveal the HK-HP-RR protein-protein interactions. IbHP1, IbHP2, IbHP4, and IbHP5 could interact with three HKs (IbHK1a, IbHK1b, and IbHK5), and also interact with majority of the type-B RRs (IbRR20-IbRR28), while no interaction affinity was detected for IbHP3. Our systematic analyses could provide insights into the characterization of the TCS genes, and further the development of functional studies in sweet potato.
双组分系统(TCS)由组氨酸激酶(HKs)、组氨酸磷酸转移蛋白(HPs)和响应调节因子(RRs)组成,在调节植物生长、发育以及对各种环境刺激的响应中发挥着重要作用。TCS基因已在多种植物中得到全面鉴定,而关于甘薯TCS的全基因组鉴定和分析研究尚未见报道。因此,在本研究中,在甘薯基因组中共鉴定出90个TCS成员,包括20个HK(L)s、11个HPs和59个RRs。此外,还对它们的基因结构、保守结构域和系统发育关系进行了详细分析。另外,分析了各器官中的基因表达谱,并研究了对逆境胁迫的响应模式。结果表明,这90个TCS基因分布在15条染色体上,分布明显不均,甘薯中TCS基因的扩增归因于片段重复和串联重复。大多数TCS基因表现出明显的器官特异性表达谱,尤其是在三种类型的根(茎根、须根、块根)中。此外,大多数TCS基因在非生物胁迫(干旱、盐度、寒冷、高温)和外源植物激素脱落酸(ABA)处理后,要么被诱导要么被抑制。此外,利用酵母双杂交系统揭示了HK-HP-RR蛋白-蛋白相互作用。IbHP1、IbHP2、IbHP4和IbHP5可以与三个HKs(IbHK1a、IbHK1b和IbHK5)相互作用,也可以与大多数B型RRs(IbRR20-IbRR28)相互作用,而未检测到IbHP3的相互作用亲和力。我们的系统分析可为TCS基因的特征鉴定提供见解,并进一步推动甘薯功能研究的发展。