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豌豆中核酮糖-1,5-二磷酸羧化酶/加氧酶及其小亚基 mRNA 含量的遗传变异性。

Genetic variability in the amount of ribulose-1,5-bisphosphate carboxylase/oxygenase and its small subunit mRNA in pea.

机构信息

Plant Biotechnology Institute, National Research Council of Canada, 110 Gymnasium Road, S7N OW9, Saskatoon, Sask, Canada.

出版信息

Planta. 1990 Mar;180(4):510-6. doi: 10.1007/BF02411448.

Abstract

The amount of ribulose-1,5-bisphosphate carboxylase/oxygenase (Rubisco; EC 4.1.1.39) was studied during greening in 12Pisum sativum L. genotypes. The proportion of mRNA coding for the small subunit of Rubisco (SSU mRNA) was also monitored by hybridization with a cDNA (complementary DNA) probe from one of the nuclear genes coding for SSU (rbcS). Both the SSU mRNA and Rubisco (in g·FW)(-1)) contents rapidly increased in all genotypes on illumination of dark-grown seedlings. Natural genetic variability was found in the amounts of SSU mRNA, Rubisco· (g FW)(-1), total RNA·(g FW)(-1) and mRNA·(μg total RNA)(-1). Differences among genotypes in SSU mRNA were apparently the result of differences in the rate of light-induced accumulation of therbcS gene transcripts. Genotype means for SSU mRNA and Rubisco· (g FW)(-1) amounts during greening were significantly correlated (r=0.788;P<0.01). This indicates a relationship between genetic differences in the rate of light-induced accumulation of therbcS gene transcripts and the Rubisco amount, and establishes a link between natural genetic variability at the molecular and the physiological levels. Genotypic variability in SSU mRNA during greening was also positively correlated to the Rubisco content per unit leaf area in fully greened leaves. Although Southern-blot analysis indicated that there was also natural genetic variability in the copy number of therbcS genes, this difference in copy number could not account for the differences in SSU mRNA production.

摘要

在 12 个豌豆品种的绿体形成过程中,研究了核酮糖-1,5-二磷酸羧化酶/加氧酶(Rubisco;EC 4.1.1.39)的含量。Rubisco 的小亚基(SSU)mRNA 的比例也通过杂交用来自编码 SSU 的核基因之一的 cDNA(互补 DNA)探针进行监测(rbcS)。在黑暗生长的幼苗光照下,所有品种的 SSU mRNA 和 Rubisco(以 g·FW(-1)表示)含量均迅速增加。在 SSU mRNA、Rubisco·(g FW)(-1)、总 RNA·(g FW)(-1)和 mRNA·(μg 总 RNA)(-1)的含量中发现了自然遗传变异。SSU mRNA 之间的基因型差异显然是由于 rbcS 基因转录物的光诱导积累率的差异所致。在绿体形成过程中,SSU mRNA 和 Rubisco·(g FW)(-1)的基因型平均值呈显著正相关(r=0.788;P<0.01)。这表明 rbcS 基因转录物的光诱导积累率的遗传差异与 Rubisco 含量之间存在关系,并在分子和生理水平上建立了自然遗传变异之间的联系。在绿体形成过程中,SSU mRNA 的基因型变异性与完全绿色叶片中每单位叶面积的 Rubisco 含量也呈正相关。尽管 Southern 印迹分析表明 rbcS 基因的拷贝数也存在自然遗传变异,但这种拷贝数的差异不能解释 SSU mRNA 产生的差异。

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