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不透明-2型玉米胚乳中氨基酸积累的遗传分析

Genetic analysis of amino acid accumulation in opaque-2 maize endosperm.

作者信息

Wang X, Larkins B A

机构信息

Department of Plant Sciences, University of Arizona, Tucson, Arizona 85721, USA.

出版信息

Plant Physiol. 2001 Apr;125(4):1766-77. doi: 10.1104/pp.125.4.1766.

Abstract

The opaque-2 mutation in maize (Zea mays) is associated with an increased level of free amino acids (FAA) in the mature endosperm. In particular, there is a high concentration of lysine, the most limiting essential amino acid. To investigate the basis for the high-FAA phenotype of opaque-2 maize, we characterized amino acid accumulation during endosperm development of several wild-type and opaque-2 inbreds. Oh545o2 was found to have an exceptionally high level of FAA, in particular those derived from aspartate (Asp) and intermediates of glycolysis. The FAA content in Oh545o2 is 12 times greater than its wild-type counterpart, and three and 10 times greater than in Oh51Ao2 and W64Ao2, respectively. We crossed Oh545o2 to Oh51Ao2 and analyzed the F(2:3) progeny to identify genetic loci linked with the high FAA level in these mutants. Quantitative trait locus mapping identified four significant loci that account for about 46% of the phenotypic variance. One locus on the long arm of chromosome 2 is coincident with genes encoding a monofunctional Asp kinase 2 and a bifunctional Asp kinase-homo-Ser dehydrogenase-2, whereas another locus on the short arm of chromosome 3 is linked with a cytosolic triose phosphate isomerase 4. The results suggest an alternation of amino acid and carbon metabolism leads to overproduction and accumulation of FAA in opaque-2 mutants.

摘要

玉米(Zea mays)中的不透明2突变与成熟胚乳中游离氨基酸(FAA)水平的升高有关。特别是,赖氨酸(最具限制性的必需氨基酸)浓度很高。为了研究不透明2玉米高FAA表型的基础,我们对几个野生型和不透明2自交系胚乳发育过程中的氨基酸积累进行了表征。发现Oh545o2的FAA水平异常高,特别是那些源自天冬氨酸(Asp)和糖酵解中间产物的氨基酸。Oh545o2中的FAA含量比其野生型对应物高12倍,分别比Oh51Ao2和W64Ao2高3倍和10倍。我们将Oh545o2与Oh51Ao2杂交,并分析了F(2:3)后代,以鉴定与这些突变体中高FAA水平相关的遗传位点。数量性状基因座定位确定了四个重要位点,约占表型变异的46%。2号染色体长臂上的一个位点与编码单功能天冬氨酸激酶2和双功能天冬氨酸激酶-高丝氨酸脱氢酶-2的基因一致,而3号染色体短臂上的另一个位点与胞质磷酸丙糖异构酶4相关。结果表明,氨基酸和碳代谢的改变导致不透明2突变体中FAA的过量产生和积累。

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