Panzade Kishor Prabhakar, Kale Sonam S, Manoj M L, Kothawale Sonali P, Damse Dipak N
Department of Plant Biotechnology, SDMVM College of Agricultural Biotechnology, Georai Tanda, Maharashtra, 431002, India.
Department of Plant Biotechnology, MGM College of Agricultural Biotechnology, Aurangabad, Maharashtra, 431007, India.
Appl Biochem Biotechnol. 2022 Mar;194(3):1373-1389. doi: 10.1007/s12010-021-03730-6. Epub 2021 Nov 3.
Nuclear factor-Y (NF-Y) is an important transcription factor in the plant species, which potentially provides a higher level of functional diversity including for abiotic stress tolerance. The genome-wide study and expression analysis of NF-Y gene family in Ziziphus, an elite abiotic stress-tolerant species, assist bioprospecting of genes. Here, a total of 32 NF-Y (8 NF-YA, 15 NF-YB, and 9 NF-YC) genes were identified in genome-wide search of Z. jujuba genome. Physicochemical properties, cellular localization, gene structure, chromosomal location, and protein motifs were analyzed for structural and functional understanding. Identified 12 NF-Ys were responsible for the expansion of NF-Y gene family by tandem duplication in Z. jujuba. Phylogenetic and comparative physical mapping of Z. jujuba NF-Ys with its orthologs illustrated evolutionary and functional insights into NF-Y gene family. A total of 45 perfect microsatellites (20bp to 40bp) were extracted across the ZjNF-Y genes. The promoter and gene ontology study suggested that Z. jujuba NF-Y gene family is functionally diverse and could play a wide-ranging role in plant abiotic stress, development, and cellular processes. An expression study revealed that large numbers of the NF-Ys are differentially expressed in response to drought and salinity. The total 15 and 18 ZjNF-Y genes that are upregulated under drought and salinity stress, respectively, are the potential candidates for further functional analysis for development of climate-resilient crops. The present study established a base for understanding the role of NF-Ys in Z. jujuba under abiotic stress conditions and paved a way for further research.
核因子-Y(NF-Y)是植物物种中一种重要的转录因子,它可能提供更高水平的功能多样性,包括对非生物胁迫的耐受性。对枣(一种优良的非生物胁迫耐受物种)中NF-Y基因家族进行全基因组研究和表达分析,有助于基因的生物勘探。在此,通过对枣基因组进行全基因组搜索,共鉴定出32个NF-Y基因(8个NF-YA、15个NF-YB和9个NF-YC)。对其理化性质、细胞定位、基因结构、染色体定位和蛋白质基序进行了分析,以了解其结构和功能。已鉴定出12个NF-Y基因通过串联重复导致了枣中NF-Y基因家族的扩增。枣的NF-Y基因与其直系同源基因的系统发育和比较物理图谱揭示了NF-Y基因家族的进化和功能见解。在ZjNF-Y基因中总共提取了45个完美微卫星(20bp至40bp)。启动子和基因本体研究表明,枣NF-Y基因家族功能多样,可能在植物非生物胁迫、发育和细胞过程中发挥广泛作用。一项表达研究表明,大量的NF-Y基因在干旱和盐胁迫下差异表达。分别在干旱和盐胁迫下上调的15个和18个ZjNF-Y基因,是进一步进行功能分析以培育抗逆作物的潜在候选基因。本研究为理解NF-Y基因在枣非生物胁迫条件下的作用奠定了基础,并为进一步研究铺平了道路。