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玉米(Zea mays L.)籽粒灌浆期间籽粒和源叶中ADP-葡萄糖焦磷酸化酶的表达

Expression of ADP-glucose pyrophosphorylase in maize (Zea mays L.) grain and source leaf during grain filling.

作者信息

Prioul J L, Jeannette E, Reyss A, Grégory N, Giroux M, Hannah L C, Causse M

机构信息

Institut de Recherche sur les Plantes, Associé au Centre National de la Recherche Scientifique (Unité Recherche Associée 1128), Université de Paris-Sud, Orsay, France.

出版信息

Plant Physiol. 1994 Jan;104(1):179-87. doi: 10.1104/pp.104.1.179.

Abstract

The time course of ADP-glucose pyrophosphorylase activity and of starch accumulation rate measured in grain, from pollination to maturity, in Zea mays L. plants grown outdoors, was coincident for 2 years. No such correlation was observed in the adjacent leaf, which, furthermore, presented large year-to-year differences in starch accumulation pattern. Analysis of the expression of ADP-glucose synthase at the protein levels, using antibodies directed against the Bt2 or Sh2 subunits, established that the variation of activity in the grain was explained by parallel changes in the content of both subunits. The cDNA for Bt2 and Sh2 subunits were used as probes to quantify the corresponding messenger. In grain, the time course of Bt2 and Sh2 mRNA accumulation anticipated, with a similar pattern, the specific peptide variations, which suggests a transcriptional control of expression. By contrast, the control of leaf activity by protein content was less obvious than in the grain, and changes in leaf enzyme specific activity were suggested during the first 20 d after pollination. A clone homologous to the grain Bt2 subunit cDNA was isolated from a maize leaf cDNA library, and a sequence comparison showed that the leaf clone (L2) was a partial cDNA representing one-third of the mature peptide. A 97% homology was observed between Bt2 and L2 in their coding region, but homology was poor in the 3' noncoding border. This result demonstrates that Bt2 and L2 arise from different genes presenting a tissue-specific expression pattern and provides an explanation for the earlier reported differences between leaf and grain in the size of peptide and mRNA for the Bt2-homologous subunit.

摘要

在室外种植的玉米植株中,从授粉到成熟期间,对籽粒中ADP - 葡萄糖焦磷酸化酶活性和淀粉积累速率的时间进程进行了连续两年的测定,结果显示二者变化趋势一致。而在相邻叶片中未观察到这种相关性,并且相邻叶片的淀粉积累模式在不同年份间存在很大差异。利用针对Bt2或Sh2亚基的抗体,对ADP - 葡萄糖合酶在蛋白质水平的表达进行分析,结果表明籽粒中酶活性的变化是由这两个亚基含量的平行变化所解释的。以Bt2和Sh2亚基的cDNA作为探针来定量相应的信使RNA。在籽粒中,Bt2和Sh2 mRNA积累的时间进程以相似的模式先于特定肽段的变化,这表明存在转录水平的表达调控。相比之下,叶片中酶活性受蛋白质含量的调控不如籽粒中明显,并且在授粉后的前20天内叶片酶比活性发生了变化。从玉米叶片cDNA文库中分离出一个与籽粒Bt2亚基cDNA同源的克隆,序列比较显示叶片克隆(L2)是一个部分cDNA,代表成熟肽的三分之一。在编码区,Bt2和L2之间观察到97%的同源性,但在3'非编码区边界同源性较差。这一结果表明Bt2和L2来自不同基因,呈现组织特异性表达模式,并为先前报道的叶片和籽粒中Bt2同源亚基的肽段和mRNA大小差异提供了解释。

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