Citrus Research Institute, Southwest University, Chongqing, 400712, China.
Citrus Research Institute, National Citrus Engineering Research Center, Chinese Academy of Agricultural Sciences, Chongqing, 400712, China.
BMC Genomics. 2020 Mar 14;21(1):233. doi: 10.1186/s12864-020-6644-7.
Iron (Fe) deficiency is a common problem in citrus production. As the second largest superfamily of transcription factors (TFs), the basic/helix-loop-helix (bHLH) proteins have been shown to participate in the regulation of Fe homeostasis and a series of other biological and developmental processes in plants. However, this family of members in citrus and their functions in citrus Fe deficiency are still largely unknown.
In this study, we identified a total of 128 CgbHLHs from pummelo (Citrus grandis) genome that were classified into 18 subfamilies by phylogenetic comparison with Arabidopsis thaliana bHLH proteins. All of these CgbHLHs were randomly distributed on nine known (125 genes) and one unknown (3 genes) chromosomes, and 12 and 47 of them were identified to be tandem and segmental duplicated genes, respectively. Sequence analysis showed detailed characteristics of their intron-exon structures, bHLH domain and conserved motifs. Gene ontology (GO) analysis suggested that most of CgbHLHs were annotated to the nucleus, DNA-binding transcription factor activity, response to abiotic stimulus, reproduction, post-embryonic development, flower development and photosynthesis. In addition, 27 CgbHLH proteins were predicted to have direct or indirect protein-protein interactions. Based on GO annotation, RNA sequencing data in public database and qRT-PCR results, several of CgbHLHs were identified as the key candidates that respond to iron deficiency.
In total, 128 CgbHLH proteins were identified from pummelo, and their detailed sequence and structure characteristics and putative functions were analyzed. This study provides comprehensive information for further functional elucidation of CgbHLH genes in citrus.
铁(Fe)缺乏是柑橘生产中的一个常见问题。作为转录因子(TFs)的第二大超家族,碱性/螺旋-环-螺旋(bHLH)蛋白已被证明参与植物中铁稳态和一系列其他生物及发育过程的调节。然而,柑橘中的这一家族成员及其在柑橘铁缺乏中的功能在很大程度上仍然未知。
本研究通过与拟南芥 bHLH 蛋白的系统发育比较,从柚子(Citrus grandis)基因组中总共鉴定出 128 个 CgbHLH,分为 18 个亚家族。所有这些 CgbHLH 都随机分布在 9 个已知(125 个基因)和 1 个未知(3 个基因)染色体上,其中 12 个和 47 个分别被鉴定为串联和片段重复基因。序列分析显示了它们内含子-外显子结构、bHLH 结构域和保守基序的详细特征。基因本体(GO)分析表明,CgbHLHs 的大多数被注释为细胞核、DNA 结合转录因子活性、对非生物刺激的反应、生殖、胚胎后发育、花发育和光合作用。此外,27 个 CgbHLH 蛋白被预测具有直接或间接的蛋白质-蛋白质相互作用。基于 GO 注释、公共数据库中的 RNA 测序数据和 qRT-PCR 结果,鉴定出一些 CgbHLH 是对铁缺乏有响应的关键候选基因。
总共从柚子中鉴定出 128 个 CgbHLH 蛋白,并对其详细的序列和结构特征以及可能的功能进行了分析。本研究为进一步阐明柑橘 CgbHLH 基因的功能提供了全面的信息。