Systematic analysis of the ARF gene family in Fagopyrum dibotrys and its potential roles in stress tolerance.

IF 1.3 4区 生物学 Q4 GENETICS & HEREDITY
Genetica Pub Date : 2024-12-01 Epub Date: 2024-10-04 DOI:10.1007/s10709-024-00214-3
Ying Liu, Nan Ma, Ziyong Gao, Yangguang Hua, Yu Cao, Dengpan Yin, Qiaojun Jia, Dekai Wang
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引用次数: 0

Abstract

The auxin response factor (ARF) is a plant-specific transcription factor that regulates the expression of auxin response genes by binding directly to their promoters. They play an important role in the regulation of plant growth and development, as well as in the response to biotic and abiotic stresses. However, the identification and functional analysis of ARFs in Fagopyrum dibotrys are still unclear. In this study, a total of 26 FdARF genes were identified using bioinformatic methods. Their chromosomal location, gene structure, physical and chemical properties of their encoded protein, subcellular location, phylogenetic tree, conserved motifs and cis-acting elements in FdARF promoters were analyzed. The results showed that 26 FdARF genes were unevenly distributed on 8 chromosomes, with the largest distribution on chromosome 4 and the least distribution on chromosome 3. Most FdARF proteins are located in the nucleus, except for the proteins FdARF7 and FdARF21 located to the cytoplasm and nucleus, while FdARF14, FdARF16, and FdARF25 proteins are located outside the chloroplast and nucleus. According to phylogenetic analysis, 26 FdARF genes were divided into 6 subgroups. Duplication analysis indicates that the expansion of the FdARF gene family was derived from segmental duplication rather than tandem duplication. The prediction based on cis-elements of the promoter showed that 26 FdARF genes were rich in multiple stress response elements, suggesting that FdARFs may be involved in the response to abiotic stress. Expression profiling analysis showed that most of the FdARF genes were expressed in the roots, stems, leaves, and tubers of F. dibotrys, but their expression exhibits a certain degree of tissue specificity. qRT-PCR analysis revealed that most members of the FdARF gene were up- or down-regulated in response to abiotic stress. The results of this study expand our understanding of the functional role of FdARFs in response to abiotic stress and lay a theoretical foundation for further exploration of other functions of FdARF genes.

对 Fagopyrum dibotrys 的 ARF 基因家族及其在抗逆性中的潜在作用进行系统分析。
辅酶反应因子(ARF)是一种植物特异性转录因子,它通过直接与启动子结合来调节辅酶反应基因的表达。它们在调控植物生长和发育以及应对生物和非生物胁迫方面发挥着重要作用。然而,目前对法桐中 ARFs 的鉴定和功能分析仍不清楚。本研究利用生物信息学方法鉴定了 26 个 FdARF 基因。分析了这些基因的染色体位置、基因结构、编码蛋白的理化性质、亚细胞位置、系统发生树、FdARF启动子中的保守基序和顺式作用元件。结果表明,26个FdARF基因不均匀地分布在8条染色体上,其中在4号染色体上分布最多,在3号染色体上分布最少。除 FdARF7 和 FdARF21 蛋白位于细胞质和细胞核外,大部分 FdARF 蛋白位于细胞核内,而 FdARF14、FdARF16 和 FdARF25 蛋白位于叶绿体和细胞核外。根据系统进化分析,26 个 FdARF 基因被分为 6 个亚群。重复分析表明,FdARF 基因家族的扩展来自于片段重复而非串联重复。基于启动子顺式元件的预测显示,26个FdARF基因富含多种胁迫响应元件,表明FdARF可能参与了非生物胁迫响应。表达谱分析显示,大多数 FdARF 基因在二锅头蕨菜的根、茎、叶和块茎中表达,但其表达表现出一定程度的组织特异性。该研究结果拓展了我们对 FdARF 在响应非生物胁迫中的功能作用的认识,并为进一步探索 FdARF 基因的其他功能奠定了理论基础。
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来源期刊
Genetica
Genetica 生物-遗传学
CiteScore
2.70
自引率
0.00%
发文量
32
审稿时长
>12 weeks
期刊介绍: Genetica publishes papers dealing with genetics, genomics, and evolution. Our journal covers novel advances in the fields of genomics, conservation genetics, genotype-phenotype interactions, evo-devo, population and quantitative genetics, and biodiversity. Genetica publishes original research articles addressing novel conceptual, experimental, and theoretical issues in these areas, whatever the taxon considered. Biomedical papers and papers on breeding animal and plant genetics are not within the scope of Genetica, unless framed in an evolutionary context. Recent advances in genetics, genomics and evolution are also published in thematic issues and synthesis papers published by experts in the field.
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