The high oleate trait in the cultivated peanut [Arachis hypogaea L.]. I. Isolation and characterization of two genes encoding microsomal oleoyl-PC desaturases.

S Jung, D Swift, E Sengoku, M Patel, F Teulé, G Powell, K Moore, A Abbott
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引用次数: 136

Abstract

Plant oils rich in oleate are considered superior products compared to oils rich in polyunsaturated fatty acids. Peanut (Arachis hypogaea L.) is one of the major oilseed crops, and high oleate mutant varieties with as much as 85% oleate have been reported. We examined the possibility that this mutant phenotype resulted from reduction in the activity or the transcript level of microsomal oleoyl-PC desaturase. Two independently generated high oleate mutants, M2-225 and 8-2122, and their partially isogenic lines with a normal oleate phenotype were used in this study. Two cDNA sequences coding for microsomal oleoyl-PC desaturases, ahFAD2A and ahFAD2B, have been isolated from the developing peanut seed with a normal oleate phenotype. Cultivated peanut is an allotetraploid, and sequence comparisons with the genes from the putative diploid progenitor species suggested that ahFAD2A and ahFAD2B are non-allelic, but homeologous genes originating from two different diploid species. Northern analysis showed that the transcripts of oleoyl-PC desaturases are highly abundant in both normal and high oleate peanut seeds in the second stage of development. Differential digestion of the RT-PCR products revealed a restriction site polymorphism between ahFAD2A and ahFAD2B, and allowed us to examine the level of transcript expressed from each gene. The results indicate that ahFAD2A is expressed in both normal and high oleate peanut seeds, but the steady state level of the ahFAD2B transcript is severely reduced in the high oleate peanut varieties. These data suggested that the reduction in ahFAD2B transcript level in the developing seeds is correlated with the high oleate trait.

栽培花生的高油酸性状[arachhis hypogaea L.]。1 .两个编码微粒体油酰- pc去饱和酶的基因的分离和鉴定。
与富含多不饱和脂肪酸的油相比,富含油酸的植物油被认为是优质产品。花生(arachhis hypogaea L.)是主要的油料作物之一,已报道了含油量高达85%的高油酸突变品种。我们研究了这种突变表型是由于微粒体油酰- pc去饱和酶活性或转录水平降低的可能性。本研究使用了两个独立产生的高油酸突变体M2-225和8-2122,以及它们的部分等基因系,具有正常的油酸表型。从发育中的正常油酸表型花生种子中分离到两个编码微体油酰pc去饱和酶的cDNA序列ahFAD2A和ahFAD2B。花生是一种异源四倍体,ahFAD2A和ahFAD2B基因序列与推测的二倍体祖先物种的基因序列比较表明,ahFAD2A和ahFAD2B基因不是等位基因,而是同源基因,来自两个不同的二倍体物种。Northern分析表明,在发育第二阶段的正常和高油酸花生种子中,油酰pc去饱和酶的转录本都非常丰富。RT-PCR产物的差异消化揭示了ahFAD2A和ahFAD2B之间的限制性位点多态性,并使我们能够检查每个基因表达的转录物水平。结果表明,ahFAD2A在正常和高油酸花生种子中均有表达,但ahFAD2B在高油酸花生品种中的稳态表达水平严重降低。这些数据表明,发育中的种子中ahFAD2B转录水平的降低与高油酸性状有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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