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Association of a Soybean Raffinose Synthase Gene with Low Raffinose and Stachyose Seed Phenotype

机译:大豆棉子糖合酶基因与低棉子糖和水苏糖种子表型的关联

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Oligosaccharides are an important component of soybean [Glycine max (L.) Merr.] meal in terms of metabolizable energy for monogastric animals. Sucrose, raffinose, and stachyose are the three main oligosaccharides present in soybean meal. Of the three, only sucrose is nutritionally useful. When raffinose and stachyose are fermented by microbes present in the gut, the results are flatulence and discomfort, which ultimately lead to poor weight gain. The long term objective of this research is ultimately to increase the nutritional value of soybean meal by elevating the metabolizable energy at the expense of raffinose and stachyose through the manipulation of soybean raffinose synthase, the key enzyme for raffinose and stachyose biosynthesis. The objectives of this work were to develop molecular genetic information about soybean raffinose synthases and to evaluate the candidate raffinose synthase genes in a soybean germplasm accession (PI 200508) that contains low levels of raffinose and stachyose. Our results indicate the soybean genome contains at least two expressed genes similar to other characterized raffinose synthases. A novel allele of one of these putative soybean raffinose synthase genes was discovered from the PI 200508 that completely associates with the low raffinose and stachyose phenotype. Molecular marker assays specific for the PI 200508 allele were developed to allow direct selection for the low raffinose and low stachyose phenotype.
机译:就单胃动物而言,低聚糖是大豆[Glycine max(L.)Merr。]粕的重要组成部分。蔗糖,棉子糖和水苏糖是豆粕中存在的三种主要寡糖。在这三种中,只有蔗糖在营养上有用。当通过肠道中存在的微生物发酵棉子糖和水苏糖时,结果是肠胃气胀和不适,最终导致体重增加不佳。这项研究的长期目标最终是通过操纵大豆棉子糖合酶,即棉子糖和水苏糖生物合成的关键酶,通过增加棉子糖和水苏糖的代谢能来增加豆粕的营养价值。这项工作的目的是开发有关大豆棉子糖合酶的分子遗传信息,并评估包含低含量棉子糖和水苏糖的大豆种质保藏号(PI 200508)中的候选棉子糖合酶基因。我们的结果表明,大豆基因组包含至少两个与其他表征的棉子糖合酶相似的表达基因。从PI 200508中发现了这些推定的大豆棉子糖合酶基因之一的新等位基因,该基因与低棉子糖和水苏糖表型完全相关。开发了对PI 200508等位基因特异的分子标记测定法,以允许直接选择低棉子糖和低水苏糖表型。

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