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拟南芥类葡聚糖合酶基因GSL8和GSL10在雄配子体发育和植物生长中的双重功能

Dual function of Arabidopsis glucan synthase-like genes GSL8 and GSL10 in male gametophyte development and plant growth.

作者信息

Töller Armin, Brownfield Lynette, Neu Christina, Twell David, Schulze-Lefert Paul

机构信息

Department of Plant-Microbe Interactions, Max-Planck-Institut für Züchtungsforschung, Carl-von-Linné-Weg 10, D-50829 Köln, Germany.

出版信息

Plant J. 2008 Jun;54(5):911-23. doi: 10.1111/j.1365-313X.2008.03462.x. Epub 2008 Feb 27.

Abstract

Members of the glucan synthase-like (GSL) family are believed to be involved in synthesis of the cell-wall component callose in specialized locations throughout the plant. We identified two members of the Arabidopsis GSL gene family, GSL8 and GSL10, that are independently required for male gametophyte development and plant growth. Analysis of gsl8 and gsl10 mutant pollen during development revealed specific malfunctions associated with asymmetric microspore division. GSL8 and GSL10 are not essential for normal microspore growth and polarity, but play a role in entry of microspores into mitosis. Impaired function of GSL10 also leads to perturbation of microspore division symmetry, irregular callose deposition and failure of generative-cell engulfment by the cytoplasm of the vegetative cell. Silencing of GSL8 or GSL10 in transgenic lines expressing gene-specific dsRNAi constructs resulted in a dwarfed growth habit, thereby revealing additional and independent wild-type gene functions for normal plant growth.

摘要

葡聚糖合酶样(GSL)家族成员被认为参与了植物全身特定部位细胞壁成分胼胝质的合成。我们鉴定出拟南芥GSL基因家族的两个成员GSL8和GSL10,它们对于雄配子体发育和植物生长是独立必需的。对发育过程中gsl8和gsl10突变体花粉的分析揭示了与不对称小孢子分裂相关的特定功能故障。GSL8和GSL10对于正常小孢子生长和极性并非必不可少,但在小孢子进入有丝分裂过程中发挥作用。GSL10功能受损还会导致小孢子分裂对称性受到干扰、胼胝质沉积不规则以及生殖细胞无法被营养细胞的细胞质吞噬。在表达基因特异性dsRNAi构建体的转基因系中使GSL8或GSL10沉默会导致生长习性矮小,从而揭示了正常植物生长中额外的独立野生型基因功能。

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