State Key Laboratory of Cotton Biology, Institute of Cotton Research, Chinese Academy of Agricultural Sciences, Anyang 455000, China.
Institute of Cotton Research, Henan Normal University Research Base of State Key Laboratory of Cotton Biology, Xinxiang 453000, China.
Int J Mol Sci. 2021 Jan 18;22(2):898. doi: 10.3390/ijms22020898.
Cotton is a paramount cash crop around the globe. Among all abiotic stresses, drought is a leading cause of cotton growth and yield loss. However, the molecular link between drought stress and vascular growth and development is relatively uncharted. Here, we validated a crucial role of GhWOX4, a transcription factor, modulating drought stress with that of vasculature growth in cotton. Knock-down of GhWOX4 decreased the stem width and severely compromised vascular growth and drought tolerance. Conversely, ectopic expression of GhWOX4 in enhanced the tolerance to drought stress. Comparative RNAseq analysis revealed auxin responsive protein (AUX/IAA), abscisic acid (ABA), and ethylene were significantly induced. Additionally, MYC-bHLH, WRKY, MYB, homeodomain, and heat-shock transcription factors (HSF) were differentially expressed in control plants as compared to GhWOX4-silenced plants. The promotor zone of GhWOX4 was found congested with plant growth, light, and stress response related cis-elements. differentially expressed genes (DEGs) related to stress, water deprivation, and desiccation response were repressed in drought treated GhWOX4-virus-induced gene silencing (VIGS) plants as compared to control. Gene ontology (GO) functions related to cell proliferation, light response, fluid transport, and flavonoid biosynthesis were over-induced in TRV: 156-0 h/TRV: 156-1 h (control) in comparison to TRV: VIGS-0 h/TRV: VIGS-1 h (GhWOX4-silenced) plants. This study improves our context for elucidating the pivotal role of GhWOX4 transcription factors (TF), which mediates drought tolerance, plays a decisive role in plant growth and development, and is likely involved in different regulatory pathways in cotton.
棉花是全球最重要的经济作物之一。在所有非生物胁迫中,干旱是导致棉花生长和产量损失的主要原因。然而,干旱胁迫与维管束生长和发育之间的分子联系还相对未知。在这里,我们验证了 GhWOX4 转录因子在棉花抗旱性和维管束生长中的关键作用。GhWOX4 的敲低降低了茎的宽度,并严重损害了维管束的生长和抗旱性。相反,GhWOX4 的异位表达增强了对干旱胁迫的耐受性。比较 RNAseq 分析显示生长素响应蛋白 (Aux/IAA)、脱落酸 (ABA) 和乙烯显著诱导。此外,与对照植物相比,在 GhWOX4 沉默植物中,MYC-bHLH、WRKY、MYB、同源域和热休克转录因子 (HSF) 差异表达。GhWOX4 的启动子区域与植物生长、光照和应激反应相关的顺式元件拥挤在一起。与对照相比,在 GhWOX4 病毒诱导基因沉默 (VIGS) 处理的干旱植物中,与应激、水分剥夺和干燥响应相关的差异表达基因 (DEGs) 受到抑制。与细胞增殖、光反应、流体运输和类黄酮生物合成相关的基因本体 (GO) 功能在 TRV:156-0 h/TRV:156-1 h(对照)中过表达,而在 TRV:VIGS-0 h/TRV:VIGS-1 h(GhWOX4 沉默)植物中。这项研究提高了我们对 GhWOX4 转录因子 (TF) 介导抗旱性的关键作用的理解,GhWOX4 转录因子在植物生长和发育中起着决定性的作用,并且可能参与棉花中不同的调控途径。