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鉴定和描述玉米的莽草酸脱氢酶基因家族。

Identification and characterization of the maize arogenate dehydrogenase gene family.

机构信息

Center for Plant Science Innovation, University of Nebraska, 1901 Vine St., Lincoln, NE 68588, USA.

出版信息

J Exp Bot. 2010 Aug;61(13):3663-73. doi: 10.1093/jxb/erq179. Epub 2010 Jun 17.

DOI:10.1093/jxb/erq179
PMID:20558569
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2921203/
Abstract

In plants, the amino acids tyrosine and phenylalanine are synthesized from arogenate by arogenate dehydrogenase and arogenate dehydratase, respectively, with the relative flux to each being tightly controlled. Here the characterization of a maize opaque endosperm mutant (mto140), which also shows retarded vegetative growth, is described The opaque phenotype co-segregates with a Mutator transposon insertion in an arogenate dehydrogenase gene (zmAroDH-1) and this led to the characterization of the four-member family of maize arogenate dehydrogenase genes (zmAroDH-1-zmAroDH-4) which share highly similar sequences. A Mutator insertion at an equivalent position in AroDH-3, the most closely related family member to AroDH-1, is also associated with opaque endosperm and stunted vegetative growth phenotypes. Overlapping but differential expression patterns as well as subtle mutant effects on the accumulation of tyrosine and phenylalanine in endosperm, embryo, and leaf tissues suggest that the functional redundancy of this gene family provides metabolic plasticity for the synthesis of these important amino acids. mto140/arodh-1 seeds shows a general reduction in zein storage protein accumulation and an elevated lysine phenotype typical of other opaque endosperm mutants, but it is distinct because it does not result from quantitative or qualitative defects in the accumulation of specific zeins but rather from a disruption in amino acid biosynthesis.

摘要

在植物中,色氨酸和苯丙氨酸分别由芳香酸脱氢酶和芳香酸脱水酶从芳香酸合成而来,每种氨基酸的相对通量都受到严格控制。本文描述了一个玉米不透明胚乳突变体(mto140)的特征,该突变体也表现出生长迟缓。不透明表型与 Mutator 转座子插入芳香酸脱氢酶基因(zmAroDH-1)共分离,这导致了玉米芳香酸脱氢酶基因(zmAroDH-1-zmAroDH-4)的四个成员家族的特征,它们具有高度相似的序列。在 AroDH-3 中插入 Mutator 与 AroDH-1 最密切相关的家族成员,也与不透明胚乳和生长迟缓的表型相关。重叠但不同的表达模式以及对胚乳、胚胎和叶片组织中酪氨酸和苯丙氨酸积累的细微突变效应表明,该基因家族的功能冗余为这些重要氨基酸的合成提供了代谢灵活性。mto140/arodh-1 种子显示出 zein 贮藏蛋白积累的普遍减少和其他不透明胚乳突变体典型的赖氨酸表型升高,但它是独特的,因为它不是由于特定 zein 积累的定量或定性缺陷,而是由于氨基酸生物合成的中断。

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