Lv Fenni, Wang Haihai, Wang Xinyu, Han Libo, Ma Yinping, Wang Sen, Feng Zhidi, Niu Xiaowei, Cai Caiping, Kong Zhaosheng, Zhang Tianzhen, Guo Wangzhen
State Key Laboratory of Crop Genetics & Germplasm Enhancement, Hybrid Cotton R & D Engineering Research Center, MOE, Nanjing Agricultural University, Nanjing 210095, China.
College of Life Science, Nanjing Agricultural University, Nanjing 210095, China.
J Exp Bot. 2015 Apr;66(7):1877-89. doi: 10.1093/jxb/eru530. Epub 2015 Jan 21.
Fibre cell initiation and elongation is critical for cotton fibre development. However, little is known about the regulation of initiation and elongation during fibre cell development. Here, the regulatory role of a novel protein GhCFE1A was uncovered. GhCFE1A is preferentially expressed at initiation and rapid elongation stages during fibre development; in addition, much higher expression of GhCFE1A was detected at the fibre initiation stage in fibreless cotton mutants than in the fibre-bearing TM-1 wild-type. Importantly, overexpression of GhCFE1A in cotton not only delayed fibre cell elongation but also significantly reduced the density of lint and fuzz fibre initials and stem trichomes. Yeast two-hybrid assay showed that GhCFE1A interacted with several actin proteins, and the interaction was further confirmed by co-sedimentation assay. Interestingly, a subcellular localization assay showed that GhCFE1A resided on the cortical endoplasmic reticulum (ER) network and co-localized with actin cables. Moreover, the density of F-actin filaments was shown to be reduced in GhCFE1A-overexpressing fibres at the rapid elongation stage compared with the wild-type control. Taken together, the results demonstrate that GhCFE1A probably functions as a dynamic linker between the actin cytoskeleton and the ER network, and plays an important role in fibre cell initiation and elongation during cotton fibre development.
纤维细胞的起始和伸长对棉花纤维发育至关重要。然而,关于纤维细胞发育过程中起始和伸长的调控机制,我们所知甚少。在此,一种新型蛋白质GhCFE1A的调控作用被揭示。GhCFE1A在纤维发育的起始和快速伸长阶段优先表达;此外,在无纤维棉花突变体的纤维起始阶段,GhCFE1A的表达量比有纤维的TM-1野生型高得多。重要的是,在棉花中过表达GhCFE1A不仅延迟了纤维细胞的伸长,还显著降低了皮棉和绒毛纤维起始细胞以及茎毛状体的密度。酵母双杂交试验表明,GhCFE1A与几种肌动蛋白相互作用,共沉降试验进一步证实了这种相互作用。有趣的是,亚细胞定位试验表明,GhCFE1A定位于皮质内质网(ER)网络,并与肌动蛋白丝共定位。此外,与野生型对照相比,在快速伸长阶段过表达GhCFE1A的纤维中,F-肌动蛋白丝的密度降低。综上所述,结果表明GhCFE1A可能作为肌动蛋白细胞骨架和内质网网络之间的动态连接物,在棉花纤维发育过程中的纤维细胞起始和伸长中发挥重要作用。