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首页> 外文期刊>BMC Plant Biology >Mutant alleles of FAD2-1A and FAD2-1B combine to produce soybeans with the high oleic acid seed oil trait
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Mutant alleles of FAD2-1A and FAD2-1B combine to produce soybeans with the high oleic acid seed oil trait

机译:FAD2-1A和FAD2-1B的突变等位基因结合产生具有高油酸种子油性状的大豆

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Background The alteration of fatty acid profiles in soybean [ Glycine max (L.) Merr.] to improve soybean oil quality is an important and evolving theme in soybean research to meet nutritional needs and industrial criteria in the modern market. Soybean oil with elevated oleic acid is desirable because this monounsaturated fatty acid improves the nutrition and oxidative stability of the oil. Commodity soybean oil typically contains 20% oleic acid and the target for high oleic acid soybean oil is approximately 80% of the oil; previous conventional plant breeding research to raise the oleic acid level to just 50-60% of the oil was hindered by the genetic complexity and environmental instability of the trait. The objective of this work was to create the high oleic acid trait in soybeans by identifying and combining mutations in two delta-twelve fatty acid desaturase genes, FAD2-1A and FAD2-1B . Results Three polymorphisms found in the FAD2-1B alleles of two soybean lines resulted in missense mutations. For each of the two soybean lines, there was one unique amino acid change within a highly conserved region of the protein. The mutant FAD2-1B alleles were associated with an increase in oleic acid levels, although the FAD2-1B mutant alleles alone were not capable of producing a high oleic acid phenotype. When existing FAD2-1A mutations were combined with the novel mutant FAD2-1B alleles, a high oleic acid phenotype was recovered only for those lines which were homozygous for both of the mutant alleles. Conclusions We were able to produce conventional soybean lines with 80% oleic acid in the oil in two different ways, each requiring the contribution of only two genes. The high oleic acid soybean germplasm developed contained a desirable fatty acid profile, and it was stable in two production environments. The presumed causative sequence polymorphisms in the FAD2-1B alleles were developed into highly efficient molecular markers for tracking the mutant alleles. The resources described here for the creation of high oleic acid soybeans provide a framework to efficiently develop soybean varieties to meet changing market demands.
机译:背景技术改变大豆[Glycine max(L.)Merr。]中的脂肪酸谱以提高大豆油质量是大豆研究中重要的且不断发展的主题,以满足现代市场的营养需求和工业标准。具有高油酸的豆油是理想的,因为这种单不饱和脂肪酸改善了油的营养和氧化稳定性。商品大豆油通常含有20%的油酸,而高油酸大豆油的目标含量约为该油的80%;以前的常规植物育种研究将油酸水平提高到仅油的50-60%,这是该特性的遗传复杂性和环境不稳定性所致。这项工作的目的是通过鉴定和组合两个Δ12脂肪酸脱氢酶基因FAD2-1A和FAD2-1B的突变来在大豆中创建高油酸性状。结果在两个大豆品系的FAD2-1B等位基因中发现三个多态性导致错义突变。对于两种大豆品系中的每一种,在蛋白质的高度保守区域内均存在一个独特的氨基酸变化。尽管仅FAD2-1B突变等位基因不能产生高油酸表型,但突变的FAD2-1B等位基因与油酸水平的增加有关。当现有的FAD2-1A突变与新型突变FAD2-1B等位基因结合时,仅对两个突变等位基因都是纯合的品系才恢复到高油酸表型。结论我们能够以两种不同的方式生产油中80%油酸的常规大豆品系,每种方式仅需要两个基因的贡献。所开发的高油酸大豆种质包含理想的脂肪酸谱,并且在两种生产环境中均稳定。 FAD2-1B等位基因中推测的致病性序列多态性已发展成为跟踪突变等位基因的高效分子标记。此处描述的用于创建高油酸大豆的资源提供了有效开发大豆品种以满足不断变化的市场需求的框架。

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