Wang Lu, Cook Akiko, Patrick John W, Chen Xiao-Ya, Ruan Yong-Ling
School of Environmental and Life Sciences, University of Newcastle, Callaghan, NSW, 2308, Australia; Australia-China Research Centre for Crop Improvement, University of Newcastle, Callaghan, NSW, 2308, Australia.
Plant J. 2014 May;78(4):686-96. doi: 10.1111/tpj.12512. Epub 2014 Apr 29.
Cotton fibers, the most important source of cellulose for the global textile industry, are single-celled trichomes derived from the ovule epidermis at or just prior to anthesis. Despite progress in understanding cotton fiber elongation and cell-wall biosynthesis, knowledge regarding the molecular basis of fiber cell initiation, the first step of fiber development determining the fiber yield potential, remains elusive. Here, we provide evidence that expression of a vacuolar invertase (VIN) is an early event that is essential for cotton fiber initiation. RNAi-mediated suppression of GhVIN1, a major VIN gene that is highly expressed in wild-type fiber initials, resulted in significant reduction of VIN activity and consequently a fiberless seed phenotype in a dosage dependent manner. The absence of a negative effect on seed development in these fiberless seeds indicates that the phenotype is unlikely to be due to lack of carbon nutrient. Gene expression analyses coupled with in vitro ovule culture experiments revealed that GhVIN1-derived hexose signaling may play an indispensable role in cotton fiber initiation, probably by regulating the transcription of several MYB transcription factors and auxin signaling components that were previously identified as required for fiber initiation. Together, the data represent a significant advance in understanding the mechanisms of cotton fiber initiation, and provide the first indication that VIN-mediated hexose signaling may act as an early event modulating the expression of regulatory genes and hence cell differentiation from the ovule epidermis.
棉花纤维是全球纺织工业中纤维素的最重要来源,是在开花期或开花前从胚珠表皮衍生而来的单细胞毛状体。尽管在理解棉花纤维伸长和细胞壁生物合成方面取得了进展,但关于纤维细胞起始(纤维发育的第一步,决定纤维产量潜力)的分子基础的知识仍然难以捉摸。在这里,我们提供证据表明液泡转化酶(VIN)的表达是棉花纤维起始所必需的早期事件。RNA干扰介导的对GhVIN1(一种在野生型纤维起始细胞中高表达的主要VIN基因)的抑制,导致VIN活性显著降低,从而以剂量依赖的方式产生无纤维种子表型。这些无纤维种子对种子发育没有负面影响,表明该表型不太可能是由于缺乏碳营养。基因表达分析与体外胚珠培养实验表明,GhVIN1衍生的己糖信号可能在棉花纤维起始中起不可或缺的作用,可能是通过调节几个先前被确定为纤维起始所需的MYB转录因子和生长素信号成分的转录。总之,这些数据代表了在理解棉花纤维起始机制方面的重大进展,并首次表明VIN介导的己糖信号可能作为一种早期事件调节调控基因的表达,从而调节胚珠表皮的细胞分化。