Key Laboratory of the Ministry of Education for Medicinal Plant Resources and Natural Pharmaceutical Chemistry, National Engineering Laboratory for Resource Development of Endangered Crude Drugs in the Northwest of China, College of Life Sciences, Shaanxi Normal University, Xi'an, China.
College of Life Sciences, Shaanxi Normal University, Xi'an, China.
J Exp Bot. 2018 Aug 14;69(18):4323-4337. doi: 10.1093/jxb/ery219.
Auxin signalling plays an essential role in regulating plant development. Auxin response factors (ARFs), which are critical components of auxin signalling, modulate the expression of early auxin-responsive genes by binding to auxin response factor elements (AuxREs). However, there has been no comprehensive characterization of this gene family in cotton. Here, we identified 56 GhARF genes in the assembled Gossypium hirsutum genome. This gene family was divided into 17 subfamilies, and 44 members of them were distributed across 21 chromosomes. GhARF6 and GhARF11 subfamily genes were predominantly expressed in vegetative tissues, whereas GhARF2 and GhARF18 subfamily genes were highly expressed during seed fibre cell initiation. GhARF2-1 and GhARF18-1 were exclusively expressed in trichomes, organs similar to cotton seed fibre cells, and overexpression of these genes in Arabidopsis enhances trichome initiation. Comparative transcriptome analysis combined with AuxRE prediction revealed 11 transcription factors as potential target genes of GhARF2 and GhARF18. Six of these genes were significantly expressed during seed fibre cell initiation and were bound by GhARF2-1 and GhARF18-1 in yeast one-hybrid assays. Our results suggest that GhARF2 and GhARF18 genes may be key regulators of cotton seed fibre initiation by regulating the expression of several transcription factor genes. This study deepens our understanding of auxin-mediated initiation of cotton seed fibre cells and helps us in breeding better cotton varieties in the future.
生长素信号在调节植物发育中起着至关重要的作用。生长素反应因子(ARFs)是生长素信号的关键组成部分,通过与生长素反应因子元件(AuxREs)结合来调节早期生长素反应基因的表达。然而,在棉花中,这个基因家族还没有得到全面的描述。在这里,我们在组装的棉属基因组中鉴定了 56 个 GhARF 基因。这个基因家族被分为 17 个亚家族,其中 44 个成员分布在 21 条染色体上。GhARF6 和 GhARF11 亚家族基因主要在营养组织中表达,而 GhARF2 和 GhARF18 亚家族基因在种子纤维细胞起始时高度表达。GhARF2-1 和 GhARF18-1 仅在毛状体中表达,毛状体类似于棉花种子纤维细胞,这些基因在拟南芥中的过表达增强了毛状体的起始。比较转录组分析结合 AuxRE 预测揭示了 11 个转录因子可能是 GhARF2 和 GhARF18 的靶基因。这 6 个基因在种子纤维细胞起始时表达量显著,并且在酵母单杂交试验中与 GhARF2-1 和 GhARF18-1 结合。我们的结果表明,GhARF2 和 GhARF18 基因可能通过调节几个转录因子基因的表达来调控棉花种子纤维的起始,是棉花种子纤维起始的关键调节因子。本研究加深了我们对生长素介导的棉花种子纤维细胞起始的理解,有助于我们在未来培育更好的棉花品种。