Quantitative trait loci governing seed protein, oil, and linolenic acid concentration in soybean

IF 1.9 4区 农林科学 Q3 CHEMISTRY, APPLIED
E. R. Moore Ronald, Chris Wyman, Mia J. Cunicelli, Bode Olukolu, Carl E. Sams, Dennis R. West, Vince Pantalone
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引用次数: 0

Abstract

Soybean is one of the most economically important crops in the United States. Produced for its oil and protein concentration, it is readily utilized in food products for both human and livestock consumption. Since soybean was first cultivated in the United States, increased yield has been the driving factor in breeding efforts. Though yield and oil have been observed to be positively correlated, protein concentration is negatively correlated with both. An increased effort has been underway recently to produce high-yielding cultivars that have both elevated oil and protein concentration. This has been accomplished utilizing molecular markers associated with quantitative trait loci (QTL) for both traits. To assist in this effort, more information on QTL associated with quality traits is required. In this study, 180 F4:6 recombinant inbred lines (RILs) segregating for protein, oil, and fatty acids were produced from a cross between TN12-4098 and TN13-4303. These lines were grown across three locations in Tennessee: Research and Education Center at Milan (RECM), Highland Rim Research and Education Center (HRREC), and East Tennessee Research and Education Center (ETREC) in 2018 and 2019. Sixteen QTL were found for protein, oil, linolenic acid, and meal protein concentration. Of these identified QTL, six were novel. Developing molecular markers associated with these QTL will assist in breeding efforts to produce high-quality elite soybean cultivars that meet the demands of both farmers and consumers.

大豆籽粒蛋白质、油脂和亚麻酸含量的数量性状位点
大豆是美国最重要的经济作物之一。由于其油和蛋白质含量高,它很容易被用于人类和牲畜消费的食品中。自从大豆在美国首次种植以来,产量的增加一直是育种努力的驱动因素。虽然产量和油脂已被观察到正相关,但蛋白质浓度与两者呈负相关。最近,人们正在加大努力,以生产高油和高蛋白含量的高产品种。这是利用与数量性状位点(QTL)相关的分子标记来完成的。为了协助这项工作,需要更多与质量性状相关的QTL信息。本研究以TN12-4098和TN13-4303为杂交材料,获得180个F4:6蛋白、油脂和脂肪酸分离重组自交系。这些生产线在田纳西州的三个地点种植:2018年和2019年在米兰研究和教育中心(RECM),高地边缘研究和教育中心(HRREC)和东田纳西州研究和教育中心(ETREC)。发现了16个与蛋白质、油脂、亚麻酸和膳食蛋白质浓度有关的QTL。在这些鉴定的QTL中,有6个是新的QTL。开发与这些QTL相关的分子标记将有助于培育出满足农民和消费者需求的优质优质大豆品种。
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来源期刊
CiteScore
4.10
自引率
5.00%
发文量
95
审稿时长
2.4 months
期刊介绍: The Journal of the American Oil Chemists’ Society (JAOCS) is an international peer-reviewed journal that publishes significant original scientific research and technological advances on fats, oils, oilseed proteins, and related materials through original research articles, invited reviews, short communications, and letters to the editor. We seek to publish reports that will significantly advance scientific understanding through hypothesis driven research, innovations, and important new information pertaining to analysis, properties, processing, products, and applications of these food and industrial resources. Breakthroughs in food science and technology, biotechnology (including genomics, biomechanisms, biocatalysis and bioprocessing), and industrial products and applications are particularly appropriate. JAOCS also considers reports on the lipid composition of new, unique, and traditional sources of lipids that definitively address a research hypothesis and advances scientific understanding. However, the genus and species of the source must be verified by appropriate means of classification. In addition, the GPS location of the harvested materials and seed or vegetative samples should be deposited in an accredited germplasm repository. Compositional data suitable for Original Research Articles must embody replicated estimate of tissue constituents, such as oil, protein, carbohydrate, fatty acid, phospholipid, tocopherol, sterol, and carotenoid compositions. Other components unique to the specific plant or animal source may be reported. Furthermore, lipid composition papers should incorporate elements of year­to­year, environmental, and/ or cultivar variations through use of appropriate statistical analyses.
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