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水分亏缺调节大豆幼苗生长区的基因表达。差异表达cDNA的分析、一个新的β-微管蛋白基因以及编码细胞壁蛋白的基因的表达。

Water deficit modulates gene expression in growing zones of soybean seedlings. Analysis of differentially expressed cDNAs, a new beta-tubulin gene, and expression of genes encoding cell wall proteins.

作者信息

Creelman R A, Mullet J E

机构信息

Department of Biochemistry and Biophysics, Texas A&M University, College Station 77843.

出版信息

Plant Mol Biol. 1991 Oct;17(4):591-608. doi: 10.1007/BF00037046.

Abstract

Transfer of soybean seedlings to low-water-potential vermiculite (psi w = -0.3 MPa) results in a reversible decrease in hypocotyl growth and modulation of several polysomal mRNAs (Plant Physiol 92: 205-214). We report here the isolation of two cDNA clones (pGE16 and pGE95) which correspond to genes whose mRNA levels are increased, and one cDNA clone (pGE23) which corresponds to a gene whose mRNA level is decreased in the hypocotyl zone of cell elongation by water deficit. In well-watered seedlings mRNAs hybridizing to pGE16 and pGE95 are most abundant in mature regions of the seedling, but in water-deficient seedlings mRNA levels are reduced in mature regions and enhanced in elongating regions. RNA corresponding to soybean proline-rich protein 1 (sbPRP1) shows a similar tissue distribution and response to water deficit. In contrast, in well-watered seedlings, the gene corresponding to pGE23 was highly expressed in the hypocotyl and root growing zones. Transfer of seedlings to low-water-potential vermiculite caused a rapid decrease in mRNA hybridizing to pGE23. Sequence analysis revealed that pGE23 has high homology with beta-tubulin. Water deficit also reduced the level of mRNA hybridizing to JCW1, an auxin-modulated gene, although with different kinetics. Furthermore, mRNA encoding actin, glycine-rich proteins (GRPs), and hydroxyproline-rich glycoproteins (HRGPs) were down-regulated in the hypocotyl zone of elongation of seedlings exposed to water deficit. No effect of water deficit was observed on the expression of chalcone synthase. Decreased expression of beta-tubulin, actin, JCW1, HRGP and GRP and increased expression of sbPRP1, pGE95 and pGE16 in the hypocotyl zone of cell elongation could participate in the reversible growth inhibition observed in water-deficient soybean seedlings.

摘要

将大豆幼苗转移至低水势蛭石(ψw = -0.3 MPa)中会导致下胚轴生长可逆性降低,并调节几种多聚核糖体mRNA(《植物生理学》92: 205 - 214)。我们在此报告分离出两个cDNA克隆(pGE16和pGE95),它们对应于mRNA水平升高的基因,以及一个cDNA克隆(pGE23),其对应于一个在水分亏缺时细胞伸长的下胚轴区域中mRNA水平降低的基因。在水分充足的幼苗中,与pGE16和pGE95杂交的mRNA在幼苗的成熟区域最为丰富,但在缺水幼苗中,成熟区域的mRNA水平降低,而伸长区域的mRNA水平升高。与大豆富含脯氨酸蛋白1(sbPRP1)对应的RNA显示出相似的组织分布和对水分亏缺的反应。相反,在水分充足的幼苗中,与pGE23对应的基因在下胚轴和根生长区高表达。将幼苗转移至低水势蛭石中会导致与pGE23杂交的mRNA迅速减少。序列分析表明pGE23与β-微管蛋白具有高度同源性。水分亏缺也降低了与生长素调节基因JCW1杂交的mRNA水平,尽管动力学不同。此外,在水分亏缺的幼苗伸长的下胚轴区域中,编码肌动蛋白、富含甘氨酸蛋白(GRP)和富含羟脯氨酸糖蛋白(HRGP)的mRNA被下调。未观察到水分亏缺对查尔酮合酶表达的影响。在细胞伸长的下胚轴区域中,β-微管蛋白、肌动蛋白、JCW1、HRGP和GRP的表达降低以及sbPRP1、pGE95和pGE16的表达增加可能参与了缺水大豆幼苗中观察到的可逆生长抑制。

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