Division of Crop Improvement, Indian Council of Agricultural Research-Sugarcane Breeding Institute, Coimbatore 641007, India.
Bharathidasan University, Tiruchirappalli 620024, India.
Genes (Basel). 2023 May 25;14(6):1147. doi: 10.3390/genes14061147.
Plant nuclear factor (NF-Y) is a transcriptional activating factor composed of three subfamilies: NF-YA, NF-YB, and NF-YC. These transcriptional factors are reported to function as activators, suppressors, and regulators under different developmental and stress conditions in plants. However, there is a lack of systematic research on the gene subfamily in sugarcane. In this study, 51 genes (), composed of 9 , 18 , and 24 genes, were identified in sugarcane ( spp.). Chromosomal distribution analysis of in a hybrid located the genes on all 10 chromosomes. Multiple sequence alignment (MSA) of ShNF-Y proteins revealed conservation of core functional domains. Sixteen orthologous gene pairs were identified between sugarcane and sorghum. Phylogenetic analysis of NF-Y subunits of sugarcane, sorghum, and showed that ShNF-YA subunits were equidistant while ShNF-YB and ShNF-YC subunits clustered distinctly, forming closely related and divergent groups. Expression profiling under drought treatment showed that NF-Y gene members were involved in drought tolerance in a hybrid and its drought-tolerant wild relative, . and genes had significantly higher expression in the root and leaf tissues of both plant species. Similarly, had elevated expression in the leaf and root of and in the leaf of a hybrid. These results provide valuable genetic resources for further sugarcane crop improvement programs.
植物核因子(NF-Y)是一种由三个亚家族组成的转录激活因子:NF-YA、NF-YB 和 NF-YC。这些转录因子在植物的不同发育和胁迫条件下被报道具有激活子、抑制剂和调节剂的功能。然而,关于甘蔗基因亚家族的系统研究还很缺乏。在本研究中,从甘蔗( spp.)中鉴定出了 51 个基因(),由 9、18 和 24 个基因组成。在一个杂种中对 NF-Y 基因的染色体分布分析表明,这些基因位于所有 10 条染色体上。ShNF-Y 蛋白的多重序列比对(MSA)揭示了核心功能域的保守性。在甘蔗和高粱之间鉴定出了 16 对直系同源基因对。甘蔗、高粱和 NF-Y 亚基的系统发育分析表明,ShNF-YA 亚基等距分布,而 ShNF-YB 和 ShNF-YC 亚基聚类明显,形成密切相关和分化的亚群。干旱处理下的表达谱分析表明,NF-Y 基因成员参与了杂种及其耐旱野生近缘种的耐旱性。在两个物种的根和叶组织中,和 基因的表达显著升高。同样,在 和杂种的叶片以及 的叶片中, 基因的表达也升高了。这些结果为进一步的甘蔗作物改良计划提供了有价值的遗传资源。