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Regulation of the alpha-expansin gene OsEXPA8 expression affects root system architecture in transgenic rice plants

机译:调节α-扩展素基因OsEXPA8表达影响转基因水稻植株的根系结构

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Expansins are cell wall proteins implicated in the control of plant growth via loosening of the extracellular matrix, and are encoded by a large gene family. However, data linked to loss of function of single genes which support the role of expansins in root growth remain limited. In this study, we used RNA interference to examine the biological functions of the rice alpha-expansin gene OsEXPA8. Repression of OsEXPA8 expression in rice impaired the root system architecture and plant growth significantly, leading to shorter primary roots and fewer lateral roots. Accordingly, the cell size of the root vascular bundle reduced drastically. Notably, OsEXPA8 silencing impaired root hair elongation; moreover, plant height was clearly reduced. Transient expression of OsEXPA8-GFP in onion epidermal cells verified that OsEXPA8 is located on the cell wall. OsEXPA8 was expressed predominantly in the root and shoot of one-week-old rice seedlings, and highly induced by NaCl but suppressed by nitrate and phosphate starvation. In addition, atomic force microscopy was used to explore alterations in cell wall nanomechanics caused by OsEXPA8 protein reduction, which showed that the wall stiffness (Young's modulus) of OsEXPA8-silenced suspension cells was increased significantly. Taken together, our results suggest that OsEXPA8 is critical for root system architecture, which supports the hypothesis that expansins are involved in enhancing plant growth by mediating cell wall loosening.
机译:扩展蛋白是细胞壁蛋白,通过细胞外基质的松散牵涉到植物生长的控制中,并由一个大的基因家族编码。但是,与支持expansins在根生长中作用的单个基因功能丧失相关的数据仍然有限。在这项研究中,我们使用RNA干扰来检查水稻alpha-expansin基因OsEXPA8的生物学功能。水稻中OsEXPA8表达的抑制显着损害了根系结构和植物生长,导致较短的初生根和较少的侧根。因此,根血管束的细胞大小急剧减少。值得注意的是,OsEXPA8沉默会削弱根毛伸长率;此外,植物高度明显降低。 OsEXPA8-GFP在洋葱表皮细胞中的瞬时表达证实了OsEXPA8位于细胞壁上。 OsEXPA8主要在一个星期大的水稻幼苗的根和茎中表达,受NaCl强烈诱导,但被硝酸盐和磷酸盐饥饿抑制。此外,原子力显微镜用于探讨由OsEXPA8蛋白质还原引起的细胞壁纳米力学的变化,这表明OsEXPA8沉默的悬浮细胞的壁硬度(杨氏模量)显着增加。两者合计,我们的结果表明,OsEXPA8对于根系体系结构至关重要,这支持了以下假设这一事实,即扩展酶通过介导细胞壁松弛来参与促进植物生长。

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