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Phytic Acid and Inorganic Phosphate Composition in Soybean Lines with Independent IPK1 Mutations

机译:具有独立IPK1突变的大豆品系中的植酸和无机磷酸盐组成

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Soybean seeds contain a large amount of P, which is stored as phytic acid (PA). Phytic acid is indigestible by nonruminant livestock and considered an antinutritional factor in soybean meal. Several low PA soybean lines have been discovered, but many of these lines have either minor reductions in PA or inadequate germination and emergence. The reduced PA phenotype of soybean line Gm-lpa-ZC-2 was previously shown to be the result of a mutation in a gene encoding an inositol pentakisphosphate 2-kinase on chromosome 14 (14IPK1). While the 14IPK1 mutation was shown to have no impact on germination and emergence, the reduction in PA was modest (up to 50%). Our objective was to determine the effect on seed P partitioning for a novel mutation of an independent IPK1 gene on chromosome six (06IPK1) on its own and in combination with mutant alleles of the 14IPK1. We developed soybean populations and conducted genotype and phenotype association analyses based on the genotype of the 06IPK1 and 14IPK1 genes and the seed P partitioning profile. The lines with both mutant IPK1 genes had very low PA levels, moderate accumulation of inorganic phosphate (Pi), and accumulation of high amounts of P in lower inositols. The developed lines did not have significant reductions in germination or field emergence. In addition, characterization of the lower inositols produced in the mutant lines suggests that IPK1 is a polyphosphate kinase and provides some insight into the PA biosynthesis pathway in soybean seeds.
机译:大豆种子含有大量P,以植酸(PA)的形式存储。植酸是非反刍动物无法消化的,被认为是豆粕中的抗营养因子。已经发现了几种低PA大豆品系,但其中许多品系要么PA含量降低很少,要么发芽和出苗不足。大豆品系Gm-1pa-ZC-2的PA表型降低先前被证明是14号染色体上编码肌醇五磷酸2-激酶的基因突变的结果(14IPK1)。虽然显示出14IPK1突变对发芽和出苗没有影响,但PA的降低幅度不大(高达50%)。我们的目标是确定第6号染色体上一个独立IPK1基因的新突变(06IPK1)对种子P分配的影响,并与14IPK1的突变等位基因结合。我们开发了大豆种群,并根据06IPK1和14IPK1基因的基因型和种子P分配模式进行了基因型和表型关联分析。具有两个突变IPK1基因的品系的PA水平非常低,无机磷酸盐(Pi)适度积累,而较低的肌醇中P的积累较高。所开发的品系没有显着减少发芽或田间出苗。此外,突变株中产生的低级肌醇的特征表明IPK1是一种多磷酸激酶,可为大豆种子中PA生物合成途径提供一些见识。

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