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大麦sex6突变体缺乏淀粉合酶IIa活性,并含有具有新特性的淀粉。

Barley sex6 mutants lack starch synthase IIa activity and contain a starch with novel properties.

作者信息

Morell Matthew K, Kosar-Hashemi Behjat, Cmiel Mark, Samuel Michael S, Chandler Peter, Rahman Sadequr, Buleon Alain, Batey Ian L, Li Zhongyi

机构信息

CSIRO Plant Industry, GPO Box 1600, Canberra 2600, Australia.

出版信息

Plant J. 2003 Apr;34(2):173-85. doi: 10.1046/j.1365-313x.2003.01712.x.

DOI:10.1046/j.1365-313x.2003.01712.x
PMID:12694593
Abstract

Analysis of barley shrunken grain mutants has identified lines with a novel high amylose starch phenotype. The causal mutation is located at the sex6 locus on chromosome 7H, suggesting the starch synthase IIa (ssIIa) gene as a candidate gene altered by the mutation. Consistent with this hypothesis, no evidence of SSIIa protein expression in either the starch granule or soluble fractions of the endosperm was found. Sequences of the starch synthase IIa gene, ssIIa, from three independent sex6 lines showed the presence of a stop codon preventing translation of the ssIIa transcript in each line. Perfect segregation of the starch phenotype with the presence of stop codons in the ssIIa gene was obtained, providing strong evidence for the lesion in the ssIIa gene being the causal mutation for the sex6 phenotype. The loss of SSIIa activity in barley leads to novel and informative phenotypes. First, a decrease in amylopectin synthesis to less than 20% of the wild-type levels indicates that SSIIa accounts for the majority of the amylopectin polymer elongation activity in barley. Secondly, in contrast to high amylose starches resulting from branching enzyme downregulation, the sex6 starches have a shortened amylopectin chain length distribution and a reduced gelatinisation temperature. Thirdly, the mutation leads to pleiotropic effects on other enzymes of the starch biosynthesis pathway, abolishing the binding of SSI, branching enzyme IIa and branching enzyme IIb to the starch granules of sex6 mutants, while not significantly altering their expression levels in the soluble fraction.

摘要

对大麦皱缩粒突变体的分析鉴定出了具有新型高直链淀粉淀粉表型的品系。因果突变位于7H染色体上的sex6位点,这表明淀粉合酶IIa(ssIIa)基因是因突变而改变的候选基因。与该假设一致的是,在胚乳的淀粉颗粒或可溶部分中均未发现SSIIa蛋白表达的证据。来自三个独立的sex6品系的淀粉合酶IIa基因ssIIa的序列显示存在终止密码子,阻止了每个品系中ssIIa转录本的翻译。获得了淀粉表型与ssIIa基因中终止密码子的存在的完美分离,这为ssIIa基因中的损伤是sex6表型的因果突变提供了有力证据。大麦中SSIIa活性的丧失导致了新的且具有信息价值的表型。首先,支链淀粉合成减少至野生型水平的不到20%,这表明SSIIa在大麦支链淀粉聚合物延伸活性中占大部分。其次,与因分支酶下调导致的高直链淀粉不同,sex6淀粉的支链淀粉链长分布缩短且糊化温度降低。第三,该突变对淀粉生物合成途径的其他酶产生多效性影响,消除了SSI、分支酶IIa和分支酶IIb与sex6突变体淀粉颗粒的结合,同时在可溶部分中未显著改变它们的表达水平。

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