Liu Zhi-Hao, Chen Yun, Wang Na-Na, Chen Yi-Hao, Wei Ning, Lu Rui, Li Yang, Li Xue-Bao
Hubei Key Laboratory of Genetic Regulation and Integrative Biology, School of Life Sciences, Central China Normal University, Wuhan, 430079, China.
School of Life Sciences, Hubei Normal University, Huangshi, 435002, China.
New Phytol. 2020 Mar;225(6):2439-2452. doi: 10.1111/nph.16301. Epub 2019 Dec 2.
Basic helix-loop-helix (bHLH) proteins are involved in transcriptional networks controlling a number of biological processes in plants. However, little information is known on the roles of bHLH proteins in cotton fibre development so far. Here, we show that a cotton bHLH protein (GhFP1) positively regulates fibre elongation. GhFP1 transgenic cotton and Arabidopsis plants were generated to study how GhFP1 regulates fibre cell elongation. Fibre length of the transgenic cotton overexpressing GhFP1 was significantly longer than that of wild-type, whereas suppression of GhFP1 expression hindered fibre elongation. Furthermore, overexpression of GhFP1 in Arabidopsis promoted trichome development. Expression of the brassinosteroid (BR)-related genes was markedly upregulated in fibres of GhFP1 overexpression cotton, but downregulated in GhFP1-silenced fibres. BR content in the transgenic fibres was significantly altered, relative to that in wild-type. Moreover, GhFP1 protein could directly bind to the promoters of GhDWF4 and GhCPD to activate expression of these BR-related genes. Therefore, our data suggest that GhFP1 as a positive regulator participates in controlling fibre elongation by activating BR biosynthesis and signalling. Additionally, homodimerisation of GhFP1 may be essential for its function, and interaction between GhFP1 and other cotton bHLH proteins may interfere with its DNA-binding activity.
碱性螺旋-环-螺旋(bHLH)蛋白参与调控植物多种生物学过程的转录网络。然而,迄今为止,关于bHLH蛋白在棉花纤维发育中的作用知之甚少。在此,我们表明一种棉花bHLH蛋白(GhFP1)正向调控纤维伸长。构建了GhFP1转基因棉花和拟南芥植株,以研究GhFP1如何调控纤维细胞伸长。过表达GhFP1的转基因棉花的纤维长度显著长于野生型,而抑制GhFP1表达则阻碍纤维伸长。此外,在拟南芥中过表达GhFP1促进了毛状体发育。在过表达GhFP1的棉花纤维中,油菜素内酯(BR)相关基因的表达显著上调,但在GhFP1沉默的纤维中下调。与野生型相比,转基因纤维中的BR含量发生了显著变化。此外,GhFP1蛋白可直接结合到GhDWF4和GhCPD的启动子上,以激活这些BR相关基因的表达。因此,我们的数据表明,GhFP1作为一个正向调节因子,通过激活BR生物合成和信号传导参与调控纤维伸长。此外,GhFP1的同源二聚化可能对其功能至关重要,并且GhFP1与其他棉花bHLH蛋白之间的相互作用可能会干扰其DNA结合活性。