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硝酸还原酶转录本在玉米对环境硝酸盐的初级反应中表达。

Nitrate reductase transcript is expressed in the primary response of maize to environmental nitrate.

作者信息

Gowri G, Kenis J D, Ingemarsson B, Redinbaugh M G, Campbell W H

机构信息

Phytotechnology Research Center, Michigan Technological University, Houghton 49931.

出版信息

Plant Mol Biol. 1992 Jan;18(1):55-64. doi: 10.1007/BF00018456.

Abstract

The nitrate induction of NADH:nitrate reductase mRNA in maize roots, scutella and leaves was investigated in the presence and absence of inhibitors of protein synthesis. In the absence of inhibitors, nitrate treatment caused a fairly rapid (2 to 3 h) increase in the level of the nitrate reductase transcript in all tissues. When cytoplasmic protein synthesis was inhibited by cycloheximide, nitrate reductase mRNA was induced by nitrate in all tissues to levels equal to or greater than those found with nitrate treatment alone. Treatment of maize tissues with cycloheximide in the absence of nitrate had only a small effect on the accumulation of the nitrate reductase mRNA. Inhibition of organellar protein synthesis with chloramphenicol also had little or no effect on nitrate-induced nitrate reductase mRNA accumulation in roots and scutella, but did appear to partially inhibit appearance of transcript in leaves. Excision of scutella in the absence of nitrate was sufficient to cause some accumulation of the nitrate reductase transcript. Since cytoplasmic protein synthesis was not required for expression of nitrate reductase transcripts, induction of these transcripts by nitrate is a primary response of maize to this environmental signal. Thus, it appears that the signal transduction system mediating this response is constitutively expressed in roots, scutella and leaves of maize.

摘要

在有或没有蛋白质合成抑制剂存在的情况下,研究了硝酸盐对玉米根、盾片和叶片中NADH:硝酸还原酶mRNA的诱导作用。在没有抑制剂的情况下,硝酸盐处理导致所有组织中硝酸还原酶转录本水平相当迅速地(2至3小时)增加。当用环己酰亚胺抑制细胞质蛋白质合成时,硝酸盐在所有组织中诱导硝酸还原酶mRNA达到与单独硝酸盐处理时相等或更高的水平。在没有硝酸盐的情况下用环己酰亚胺处理玉米组织,对硝酸还原酶mRNA的积累只有很小的影响。用氯霉素抑制细胞器蛋白质合成对根和盾片中硝酸盐诱导的硝酸还原酶mRNA积累也几乎没有影响,但似乎部分抑制了叶片中转录本的出现。在没有硝酸盐的情况下切除盾片足以导致硝酸还原酶转录本的一些积累。由于细胞质蛋白质合成不是硝酸还原酶转录本表达所必需的,硝酸盐对这些转录本的诱导是玉米对这种环境信号的主要反应。因此,介导这种反应的信号转导系统似乎在玉米的根、盾片和叶片中组成性表达。

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