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YORE - YORE基因调控拟南芥表皮细胞分化的多个方面。

The YORE-YORE gene regulates multiple aspects of epidermal cell differentiation in Arabidopsis.

作者信息

Kurata Tetsuya, Kawabata-Awai Chie, Sakuradani Eiji, Shimizu Sakayu, Okada Kiyotaka, Wada Takuji

机构信息

Plant Science Center, RIKEN, 1-7-22 Suehiro-cho, Tsurumi-ku, Yokohama, Kanagawa 230-0045, Japan.

出版信息

Plant J. 2003 Oct;36(1):55-66. doi: 10.1046/j.1365-313x.2003.01854.x.

Abstract

We have identified a new Arabidopsis mutant, yore-yore (yre), which has small trichomes and glossy stems. Adhesion between epidermal cells was observed in the organs of the yre shoot. The cloned YRE had high homology to plant genes involved in epicuticular wax synthesis, such as ECERIFERUM1 (CER1) and maize GLOSSY1. The phenotype of transgenic plants harboring double-stranded RNA interference (dsRNAi) YRE was quite similar to that of the yre mutant. The amount of epicuticular wax extracted from leaves and stems of yre-1 was approximately one-sixth of that from the wild type. YRE promoter::GUS and in situ hybridization revealed that YRE was specifically expressed in cells of the L1 layer of the shoot apical meristem and young leaves, stems, siliques, and lateral root primordia. Strong expression was detected in developing trichomes. The trichome structure of cer1 was normal, whereas that of the yre cer1 double mutant was heavily deformed, indicating that epicuticular wax is required for normal growth of trichomes. Double mutants of yre and trichome-morphology mutants, glabra2 (gl2) and transparent testa glabra1 (ttg1), showed that the phenotype of the trichome structure was additive, suggesting that the wax-requiring pathway is distinct from the trichome development pathway controlled by GL2 and TTG1.

摘要

我们鉴定出了一种新的拟南芥突变体,yore-yore(yre),它具有小的毛状体和有光泽的茎。在yre茎的器官中观察到表皮细胞之间存在粘连。克隆得到的YRE与参与表皮蜡质合成的植物基因具有高度同源性,如CER1和玉米GLOSSY1。携带双链RNA干扰(dsRNAi)YRE的转基因植物的表型与yre突变体非常相似。从yre-1的叶片和茎中提取的表皮蜡质的量约为野生型的六分之一。YRE启动子::GUS和原位杂交显示,YRE在茎尖分生组织的L1层细胞以及幼叶、茎、角果和侧根原基中特异性表达。在发育中的毛状体中检测到强表达。cer1的毛状体结构正常,而yre cer1双突变体的毛状体结构严重变形,这表明表皮蜡质是毛状体正常生长所必需的。yre与毛状体形态突变体glabra2(gl2)和透明种皮glabra1(ttg1)的双突变体表明,毛状体结构的表型是累加的,这表明蜡质需求途径与由GL2和TTG1控制的毛状体发育途径不同。

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