Raza Ali, Sharif Yasir, Chen Kun, Wang Lihui, Fu Huiwen, Zhuang Yuhui, Chitikineni Annapurna, Chen Hua, Zhang Chong, Varshney Rajeev K, Zhuang Weijian
Key Laboratory of Ministry of Education for Genetics, Breeding and Multiple Utilization of Crops, Center of Legume Plant Genetics and Systems Biology, College of Agriculture, Oil Crops Research Institute, Fujian Agriculture and Forestry University (FAFU), Fuzhou, China.
College of Plant Protection, Fujian Agriculture and Forestry University (FAFU), Fuzhou, China.
Front Plant Sci. 2022 Sep 9;13:962182. doi: 10.3389/fpls.2022.962182. eCollection 2022.
Ascorbate peroxidase (APX), an important antioxidant enzyme, plays a significant role in ROS scavenging by catalyzing the decrease of hydrogen peroxide under various environmental stresses. Nevertheless, information about the gene family and their evolutionary and functional attributes in peanut ( L.) was not reported. Therefore, a comprehensive genome-wide study was performed to discover the genes in cultivated peanut genome. This study identified 166 genes in the peanut genome, classified into 11 main groups. The gene duplication analysis showed that genes had experienced segmental duplications and purifying selection pressure. Gene structure and motif investigation indicated that most of the genes exhibited a comparatively well-preserved exon-intron pattern and motif configuration contained by the identical group. We discovered five phytohormones-, six abiotic stress-, and five growth and development-related -elements in the promoter regions of . Fourteen putative ah-miRNAs from 12 families were identified, targeting 33 genes. Furthermore, we identified 3,257 transcription factors from 38 families (including AP2, ARF, B3, bHLH, bZIP, ERF, MYB, NAC, WRKY, etc.) in 162 genes. Gene ontology and KEGG enrichment analysis confirm the role of genes in oxidoreductase activity, catalytic activity, cell junction, cellular response to stimulus and detoxification, biosynthesis of metabolites, and phenylpropanoid metabolism. Based on transcriptome datasets, some genes such as and showed significantly higher expression in diverse tissues/organs, i.e., flower, leaf, stem, roots, peg, testa, and cotyledon. Likewise, only a few genes, including and , were significantly upregulated under abiotic (drought and cold), and phytohormones (ethylene, abscisic acid, paclobutrazol, brassinolide, and salicylic acid) treatments. qRT-PCR-based expression profiling presented the parallel expression trends as generated from transcriptome datasets. Our discoveries gave new visions into the evolution of genes and provided a base for further functional examinations of the genes in peanut breeding programs.
抗坏血酸过氧化物酶(APX)是一种重要的抗氧化酶,在各种环境胁迫下,通过催化过氧化氢的减少,在活性氧清除中发挥着重要作用。然而,关于花生( )中该基因家族及其进化和功能特性的信息尚未见报道。因此,开展了一项全面的全基因组研究,以在栽培花生基因组中发现该基因。本研究在花生基因组中鉴定出166个该基因,分为11个主要组。基因重复分析表明,该基因经历了片段重复和纯化选择压力。基因结构和基序研究表明,大多数该基因表现出相对保守的外显子-内含子模式,且同一组中的基序配置相同。我们在该基因的启动子区域发现了5种植物激素、6种非生物胁迫以及5种与生长发育相关的顺式作用元件。从12个家族中鉴定出14个假定的ah-miRNA,靶向33个该基因。此外,我们在162个该基因中鉴定出了来自38个家族(包括AP2、ARF、B3、bHLH、bZIP、ERF、MYB、NAC、WRKY等)的3257个转录因子。基因本体论和KEGG富集分析证实了该基因在氧化还原酶活性、催化活性、细胞连接、细胞对刺激的反应和解毒、代谢物生物合成以及苯丙烷代谢中的作用。基于转录组数据集,一些基因,如 和 ,在不同组织/器官(即花、叶、茎、根、果针、种皮和子叶)中表现出显著更高的表达。同样,只有少数基因,包括 和 ,在非生物胁迫(干旱和寒冷)以及植物激素(乙烯、脱落酸、多效唑、油菜素内酯和水杨酸)处理下显著上调。基于qRT-PCR的表达谱呈现出与转录组数据集产生的平行表达趋势。我们的发现为该基因的进化提供了新的见解,并为花生育种计划中该基因的进一步功能研究提供了基础。