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OsGLU3,一种假定的膜结合内-1,4-β-葡聚糖酶,对于水稻(Oryza sativa L.)根细胞的伸长和分裂是必需的。

OsGLU3, a putative membrane-bound endo-1,4-beta-glucanase, is required for root cell elongation and division in rice (Oryza sativa L.).

机构信息

The State Key Laboratory of Plant Physiology and Biochemistry, College of Life Science, Zhejiang University, Hangzhou 310058, China.

出版信息

Mol Plant. 2012 Jan;5(1):176-86. doi: 10.1093/mp/ssr084. Epub 2011 Oct 5.

Abstract

Plant roots move through the soil by elongation. This is vital to their ability to anchor the plant and acquire water and minerals from the soil. In order to identify new genes involved in root elongation in rice, we screened an ethyl methane sulfonate (EMS)-mutagenized rice library, and isolated a short root mutant, Osglu3-1. The map-based cloning results showed that the mutant was due to a point mutation in OsGLU3, which encodes a putative membrane-bound endo-1,4-β-glucanase. Osglu3-1 displayed less crystalline cellulose content in its root cell wall, shorter root cell length, and a slightly smaller root meristem as visualized by restricted expression of OsCYCB1,1:GUS. Exogenous application of glucose can suppress both the lower root cell wall cellulose content and short root phenotypes of Osglu3-1. Consistently, OsGLU3 is ubiquitously expressed in various tissues with strong expression in root tip, lateral root, and crown root primodia. The fully functional OsGLU3-GFP was detected in plasma membrane, and FM4-64-labeled compartments in the root meristem and elongation zones. We also found that phosphate starvation, an environmental stress, altered cell wall cellulose content to modulate root elongation in a OsGLU3-dependant way.

摘要

植物的根通过伸长在土壤中移动。这对它们固定植物和从土壤中获取水分和矿物质的能力至关重要。为了鉴定参与水稻根系伸长的新基因,我们筛选了一个乙基甲烷磺酸(EMS)诱变的水稻文库,并分离出一个短根突变体 Osglu3-1。基于图谱的克隆结果表明,突变是由于 OsGLU3 中的一个点突变,该基因编码一个假定的膜结合内-1,4-β-葡聚糖酶。Osglu3-1 的根细胞壁中结晶纤维素含量较低,根细胞长度较短,根分生组织稍小,这是通过 OsCYCB1,1:GUS 的限制表达观察到的。葡萄糖的外源应用可以抑制 Osglu3-1 的低根细胞壁纤维素含量和短根表型。一致地,OsGLU3 在各种组织中广泛表达,在根尖、侧根和冠根原基中表达较强。在根分生组织和伸长区中,检测到完全功能的 OsGLU3-GFP 位于质膜上,以及 FM4-64 标记的隔室中。我们还发现,磷酸盐饥饿,一种环境胁迫,通过依赖 OsGLU3 的方式改变细胞壁纤维素含量来调节根伸长。

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