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丑角(hlq)和短蓝根(sbr),两种拟南芥突变体,它们异位表达一种脱落酸和生长素诱导的转基因胡萝卜启动子,并对形态发生具有多效性影响。

Harlequin (hlq) and short blue root (sbr), two Arabidopsis mutants that ectopically express an abscisic acid- and auxin-inducible transgenic carrot promoter and have pleiotropic effects on morphogenesis.

作者信息

Subramanian Senthil, Rajagopal Balasubramanian, Rock Christopher D

机构信息

Department of Biology, Hong Kong University of Science and Technology Clear Water Bay, Kowloon, China.

出版信息

Plant Mol Biol. 2002 May;49(1):93-105. doi: 10.1023/a:1014472417150.

Abstract

Plant growth and development is regulated by complex interactions among different hormonal, developmental and environmental signalling pathways. Isolation of mutants in these processes is a powerful approach to dissect unknown mechanisms in regulatory networks. The plant hormones abscisic acid (ABA) and auxin are involved in vegetative, developmental and environmental growth responses, including cell division and elongation, vascular tissue differentiation and stress adaptation. The uidA (beta-glucuronidase; GUS) reporter gene driven by the carrot (Daucus carota) late embryogenesis-abundantDc3 promoter in transgenic Arabidopsis thaliana seedlings is ABA-inducible in the root zone of elongation and vasculature. We show here that the ABA-insensitive2-1 mutation (abi2) reduces ABA-inducible Dc3-GUS expression in these root tissues. Dc3-GUS expression is also induced in root cortex cells by indole-3-acetic acid. We mutagenized, with ethyl methane sulfonate, 5100 M1 abi2/abi2 homozygous plants of a line that carries two independent Dc3-GUS reporter genes and screened M2 clonal lines for ABA-inducible Dc3-GUS expression in roots. We isolated two novel single-gene nuclear mutants, harlequin (hlq) and short blue root (sbr), that ectopically express Dc3-GUS in roots and have pleiotropic effects on morphogenesis. The hlq mutant expresses Dc3-GUS in a checkered pattern in epidermis of roots and hypocotyls, accumulates callose and has deformed and collapsed epidermal cells and abnormal and reduced root hairs and leaf trichomes. It (hlq) is also dwarfed, skotomorphogenic and sterile. The sbr mutant is a seedling-lethal dwarf that over-expresses Dc3-GUS in the root and has radially swollen epidermal cells in the root and hypocotyl, supernumerary cell number in the root cortex and epidermis, abnormal vasculature, and abnormal epidermal cell patterning in cotyledons and leaves. It (sbr) also exhibits a semidominant root phenotype of reduced growth and lateral root initiation. The hlq and sbr mutants are not rescued by exogenous application of plant growth regulators. The hlq and sbr mutants do not require the abi2-1 mutant gene for their phenotypes and map to chromosome III and I, respectively. Further characterization of the hlq and sbr phenotypes and genes may provide insights into the relationship of hormone- and stress-regulated gene expression to morphogenesis and plant growth.

摘要

植物的生长和发育受不同激素、发育及环境信号通路之间复杂相互作用的调控。在这些过程中分离突变体是剖析调控网络中未知机制的有力方法。植物激素脱落酸(ABA)和生长素参与营养、发育及环境生长响应,包括细胞分裂和伸长、维管组织分化以及胁迫适应。在转基因拟南芥幼苗中,由胡萝卜(Daucus carota)晚期胚胎丰富蛋白Dc3启动子驱动的uidA(β-葡萄糖醛酸酶;GUS)报告基因在伸长区和维管系统的根区中是ABA诱导型的。我们在此表明,ABA不敏感2-1突变(abi2)降低了这些根组织中ABA诱导的Dc3-GUS表达。吲哚-3-乙酸也可诱导根皮层细胞中的Dc3-GUS表达。我们用甲磺酸乙酯诱变了携带两个独立Dc3-GUS报告基因的品系中的5100株M1 abi2/abi2纯合植株,并筛选M2克隆系,以检测根中ABA诱导的Dc3-GUS表达。我们分离出两个新的单基因核突变体,丑角(hlq)和短蓝根(sbr),它们在根中异位表达Dc3-GUS,并对形态发生具有多效性影响。hlq突变体在根和下胚轴的表皮中以棋盘状模式表达Dc3-GUS,积累胼胝质,具有变形和塌陷的表皮细胞以及异常和减少的根毛和叶毛状体。它(hlq)也是矮小的、黄化的且不育的。sbr突变体是一种幼苗致死的矮化突变体,在根中过表达Dc3-GUS,在根和下胚轴中有径向肿胀的表皮细胞,根皮层和表皮中的细胞数量过多,维管系统异常,子叶和叶片中的表皮细胞模式异常。它(sbr)还表现出一种半显性的根表型,即生长减少和侧根起始减少。hlq和sbr突变体不能通过外源施加植物生长调节剂来挽救。hlq和sbr突变体的表型不需要abi2-1突变基因,它们分别定位于第三条和第一条染色体上。对hlq和sbr表型及基因的进一步表征可能会为激素和胁迫调控的基因表达与形态发生及植物生长之间的关系提供见解。

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