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SACPD-C基因的突变会导致大豆种子中硬脂酸浓度升高。

Mutations in SACPD-C result in a range of elevated stearic acid concentration in soybean seed.

作者信息

Carrero-Colón Militza, Abshire Nathan, Sweeney Daniel, Gaskin Erik, Hudson Karen

机构信息

Crop Production and Pest Control Research Unit, Agricultural Research Service (ARS), United States Department of Agriculture (USDA), West Lafayette, Indiana, United States of America.

Department of Agronomy, Purdue University, West Lafayette, Indiana, United States of America.

出版信息

PLoS One. 2014 May 20;9(5):e97891. doi: 10.1371/journal.pone.0097891. eCollection 2014.

Abstract

Soybean oil has a wide variety of uses, and stearic acid, which is a relatively minor component of soybean oil is increasingly desired for both industrial and food applications. New soybean mutants containing high levels of the saturated fatty acid stearate in seeds were recently identified from a chemically mutagenized population. Six mutants ranged in stearate content from 6-14% stearic acid, which is 1.5 to 3 times the levels contained in wild-type seed of the Williams 82 cultivar. Candidate gene sequencing revealed that all of these lines carried amino acid substitutions in the gene encoding the delta-9-stearoyl-acyl-carrier protein desaturase enzyme (SACPD-C) required for the conversion of stearic acid to oleic acid. Five of these missense mutations were in highly conserved residues clustered around the predicted di-iron center of the SACPD-C enzyme. Co-segregation analysis demonstrated a positive association of the elevated stearate trait with the SACPD-C mutation for three populations. These missense mutations may provide additional alleles that may be used in the development of new soybean cultivars with increased levels of stearic acid.

摘要

大豆油有多种用途,而硬脂酸作为大豆油中相对较少的成分,在工业和食品应用中越来越受到青睐。最近从化学诱变群体中鉴定出了种子中含有高水平饱和脂肪酸硬脂酸盐的新型大豆突变体。六个突变体的硬脂酸盐含量范围为6%-14%的硬脂酸,是威廉姆斯82品种野生型种子中含量的1.5至3倍。候选基因测序表明,所有这些品系在编码将硬脂酸转化为油酸所需的δ-9-硬脂酰-酰基载体蛋白去饱和酶(SACPD-C)的基因中都携带氨基酸替换。其中五个错义突变位于围绕SACPD-C酶预测的双铁中心聚集的高度保守残基中。共分离分析表明,三个群体中硬脂酸盐性状升高与SACPD-C突变呈正相关。这些错义突变可能提供额外的等位基因,可用于培育硬脂酸含量增加的新型大豆品种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/039e/4028252/9f30468e4744/pone.0097891.g001.jpg

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