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Association of the Brazil Nut Protein Gene and Kunitz Trypsin Inhibitor Alleles with Soybean Protease Inhibitor Activity and Agronomic Traits

机译:巴西坚果蛋白基因和库尼兹胰蛋白酶抑制剂等位基因与大豆蛋白酶抑制剂活性和农艺性状的关联

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The use of soybean [Glycine max (L.) Merr.] in animal feed without heat treatment may be possible by reducing protease inhibitors. The objectives of this study were to determine to what extent soybean protease inhibitors would be reduced genetically by combining the Brazil nut protein (BNP) gene from the transgenic line BX4P9341B6 with the ti allele for the Kunitz trypsin inhibitor from the cultivar Kunitz and their effect on agronomic traits. Soybean seed from 42 F2-derived lines from the cross BX4P9341B6 ?— Kunitz were evaluated in replicated trials in 1995 for trypsin inhibitor (TI), chymotrypsin inhibitor (CI) activity, and agronomic traits. There were six lines homogeneous for presence of the BNP gene and the Ti allele (BNP+, Ti), 18 lines homogeneous for presence of the BNP gene and the ti allele (BNP+, ti), six lines homogeneous for absence of the BNP gene and presence of the Ti allele (BNPa?’, Ti), and 12 lines homogeneous for absence of the BNP gene and presence of the ti allele (BNPa?’, ti). The mean TI activity of the BNP+, ti lines was 85.1% less than for the BNPa?’, Ti lines representative of conventional soybean cultivars. The mean CI activity of the BNP+, ti lines was 61.4% less than the BNPa?’, Ti lines. The means of the four genotypic classes were not significantly different (P 0.05) for seed yield, maturity, lodging, and protein content. It should be possible to develop high-yielding cultivars with the BNP+, ti genotype that have major reductions in TI and CI activity.
机译:通过减少蛋白酶抑制剂,可以在未经热处理的动物饲料中使用大豆[Glycine max(L.)Merr。]。这项研究的目的是通过将转基因品系BX4P9341B6的巴西坚果蛋白(BNP)基因与来自品种Kunitz的Kunitz胰蛋白酶抑制剂的ti等位基因结合起来,确定在何种程度上将大豆蛋白酶抑制剂遗传还原。农艺性状。 1995年在重复试验中评估了来自BX4P9341B6?-Kunitz杂交的42个F2衍生品系的大豆种子的胰蛋白酶抑制剂(TI),胰凝乳蛋白酶抑制剂(CI)活性和农艺性状。存在BNP基因和Ti等位基因(BNP +,Ti)的6个同系品系,存在BNP基因和ti等位基因(BNP +,ti)的同质品系18个品系,不存在BNP基因和存在Ti等位基因(BNPaβ,Ti),以及12个均质的BNP基因缺失和ti等位基因(BNPaβ,ti)。 BNP +,ti品系的平均TI活性比代表常规大豆品种的BNPa?’(Ti品系)的平均TI活性低85.1%。 BNP +,ti系的平均CI活性比BNPa ?, Ti系低61.4%。四个基因型类别的平均值在种子产量,成熟度,倒伏和蛋白质含量上均无显着差异(P> 0.05)。应该有可能开发出BNP +,ti基因型,TI和CI活性大大降低的高产品种。

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