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水分胁迫增强大麦叶片中α-淀粉酶基因的表达。

Water stress enhances expression of an alpha-amylase gene in barley leaves.

机构信息

Commonwealth Scientific and Industrial Research Organization, Division of Plant Industry, Canberra, A.C.T. 2601, Australia.

出版信息

Plant Physiol. 1986 Feb;80(2):350-9. doi: 10.1104/pp.80.2.350.

Abstract

The amylases of the second leaves of barley seedlings (Hordeum vulgare L. cv Betzes) were resolved into eight isozymes by isoelectric focusing, seven of which were beta-amylase and the other, alpha-amylase. The alpha-amylase had the same isoelectric point as one of the gibberellin-induced alpha-amylase isozymes in the aleurone layer. This and other enzyme characteristics indicated that the leaf isozyme corresponded to the type A aleurone alpha-amylase (low pI group). Crossing experiments indicated that leaf and type A aleurone isozymes resulted from expression of the same genes.In unwatered seedlings, leaf alpha-amylase increased as leaf water potential decreased and ABA increased. Water stress had no effect on beta-amylase. alpha-Amylase occurred uniformly along the length of the leaf but beta-amylase was concentrated in the basal half of the leaf. Cell fractionation studies indicated that none of the leaf alpha-amylase occurred inside chloroplasts.Leaf radiolabeling experiments followed by extraction of alpha-amylase by affinity chromatography and immunoprecipitation showed that increase of alpha-amylase activity involved synthesis of the enzyme. However, water stress caused no major change in total protein synthesis. Hybridization of a radiolabeled alpha-amylase-related cDNA clone to size fractionated RNA showed that water-stressed leaves contained much more alpha-amylase mRNA than unstressed plants. The results of these and other studies indicate that regulation of gene expression may be a component in water-stress induced metabolic changes.

摘要

大麦幼苗(Hordeum vulgare L. cv Betzes)第二叶的淀粉酶通过等电聚焦被解析为八种同工酶,其中七种为β-淀粉酶,另一种为α-淀粉酶。α-淀粉酶的等电点与糊粉层中赤霉素诱导的α-淀粉酶同工酶之一相同。这一酶学特征以及其他酶学特征表明,该叶同工酶对应于 A 型糊粉层α-淀粉酶(低 pI 组)。杂交实验表明,叶片同工酶和 A 型糊粉层同工酶是由相同基因表达而来的。

在未浇水的幼苗中,随着叶片水势的降低和 ABA 的增加,叶片α-淀粉酶增加。水分胁迫对β-淀粉酶没有影响。α-淀粉酶在叶片长度上均匀分布,但β-淀粉酶集中在叶片的基部。细胞分级研究表明,叶片中的任何α-淀粉酶都不在叶绿体中。

通过放射性标记叶片实验,随后通过亲和层析和免疫沉淀提取α-淀粉酶,结果表明α-淀粉酶活性的增加涉及到该酶的合成。然而,水分胁迫不会导致总蛋白合成发生重大变化。放射性标记的α-淀粉酶相关 cDNA 克隆与大小分级 RNA 的杂交表明,受到水分胁迫的叶片比未受到胁迫的植物含有更多的α-淀粉酶 mRNA。这些研究以及其他研究的结果表明,基因表达的调控可能是水分胁迫诱导代谢变化的一个组成部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbf9/1075116/5284eef3c7c8/plntphys00597-0064-a.jpg

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