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γ射线辐照诱导的无脂氧合酶大豆突变体系的筛选及分子特征分析

Selection and molecular characterization of a lipoxygenase-free soybean mutant line induced by gamma irradiation.

作者信息

Lee Kyung Jun, Hwang Jung Eun, Velusamy Vijayanand, Ha Bo-Keun, Kim Jin-Baek, Kim Sang Hoon, Ahn Joon-Woo, Kang Si-Yong, Kim Dong Sub

机构信息

Advanced Radiation Technology Institute, Korea Atomic Energy Research Institute, 1266 Sinjeong, Jeongeup, Jeonbuk, 580-185, Republic of Korea,

出版信息

Theor Appl Genet. 2014 Nov;127(11):2405-13. doi: 10.1007/s00122-014-2385-9. Epub 2014 Sep 5.

Abstract

A lipoxygenase-free soybean mutant line (H70) induced by gamma ray was selected and its detailed information about the lipoxygenase was analyzed by comparison of DNA sequence. Soybean seeds contain three lipoxygenase enzymes, which induce a beany or grassy flavor. The elimination of lipoxygenases can reduce the poor stability and off-flavors of soybean oil and protein products. In this study, we selected a soybean mutant (H70) in which the three lipoxygenases had been mutated using gamma rays. To obtain detailed information about the lipoxygenase, we investigated the sequences of the Lox1, Lox2 and Lox3 genes in H70 compared to the original cultivar, Hwanggum. Comparisons of the sequences of the Lox1 and Lox2 genes in H70 with those in a line with normal lipoxygenase (HG) showed that the mutations in these genes affected a highly conserved group of six histidine residues necessary for enzymatic activity. Lox1 in H70 contained a 74 bp deletion in exon 8, creating a stop codon that prematurely terminates translation. A single point mutation (T-A) in exon 8 of Lox2 changed histidine (H532, one of the iron-binding ligands essential for Lox2 activity) to glutamine. The mutation in the Lox3 gene in H70 was a single-point mutation in exon 6 (A-G), which changed the amino acid from histidine to arginine. This amino acid alteration in Lox3 was located in the N-terminal barrel, which might play a role in molecular recognition during catalysis and/or proteolysis. These results suggest that gene analysis based on DNA sequencing could be useful for elucidating the lipoxygenase content in soybean mutant lines. Additionally, the soybean mutant line selected in this study could be used to develop soybean cultivars with improved flavor.

摘要

筛选出了由伽马射线诱导产生的无脂氧合酶大豆突变系(H70),并通过DNA序列比较分析了其脂氧合酶的详细信息。大豆种子含有三种脂氧合酶,会产生豆腥味或草腥味。去除脂氧合酶可以降低大豆油和蛋白质产品的稳定性差和异味问题。在本研究中,我们筛选出了一个大豆突变体(H70),其中三种脂氧合酶已通过伽马射线发生突变。为了获得有关脂氧合酶的详细信息,我们研究了H70中Lox1、Lox2和Lox3基因的序列,并与原始品种黄谷进行了比较。将H70中Lox1和Lox2基因的序列与具有正常脂氧合酶的品系(HG)的序列进行比较,结果表明这些基因中的突变影响了酶活性所必需的一组高度保守的六个组氨酸残基。H70中的Lox1在第8外显子中存在74 bp的缺失,产生了一个终止密码子,导致翻译提前终止。Lox2第8外显子中的一个单点突变(T-A)将组氨酸(H532,Lox2活性所必需的铁结合配体之一)变为谷氨酰胺。H70中Lox3基因的突变是第6外显子中的单点突变(A-G),将氨基酸从组氨酸变为精氨酸。Lox3中的这种氨基酸改变位于N端桶状结构中,这可能在催化和/或蛋白水解过程中的分子识别中发挥作用。这些结果表明,基于DNA测序的基因分析可用于阐明大豆突变系中的脂氧合酶含量。此外,本研究中筛选出的大豆突变系可用于培育风味改善的大豆品种。

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