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首页> 外文期刊>Theoretical and Applied Genetics >Entity evidence for differentiation between Tia and Tib types of soybean Kunitz trypsin inhibitor: detection of a novel transitional variant type between Tia and Tib in wild soybean (Glycine soja Sieb. & Zucc.)
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Entity evidence for differentiation between Tia and Tib types of soybean Kunitz trypsin inhibitor: detection of a novel transitional variant type between Tia and Tib in wild soybean (Glycine soja Sieb. & Zucc.)

机译:区分大豆Tia和Tib类型的实体证据Kunitz胰蛋白酶抑制剂:在野生大豆中检测Tia和Tib之间的新型过渡变体类型(Glycine soja Sieb。&Zucc。)

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摘要

Soybean Kunit trypsin inhibitor (SKTI) has several polymorphic types. Of these SKTI, there are large differences of nine amino acid substitutions between Tia and Tib. So far no transitional type between them has been found. A novel transitional intermediate variant between Tia and Tib was detected in 11 lines from 720 Japanese wild soybeans (Glycine soja Sieb. & Zucc.). This variant showed identical electrophoretic mobility to Tib in the Davis system polyacrylamide gel electrophoresis (PAGE), but higher electric points than other SKTI proteins (Tia, Tib, Tic) in isoelectric focusing PAGE. The genetic analysis of SKTI in F2 seeds from a cross between the novel variant type and Tib showed that this variant type is inherited as codominant alleles in a multiple allelic system at an SKTI locus. This variant also showed inhibitory activity to trypsin. We propose the genetic symbol Ti b i5 for this novel variant. The sequence analysis of Tib i5 revealed that six nucleotides were different between Tib i5 and Tia, and the nucleotides of these mutated positions were identical to Tib. This causes substitution of five amino acids at the residue position 62 (Tyr→Phe), 74 (Ser→Arg), 114 (Met→Val), 120 (Leu→Ile) and 137 (Pro→Thr). These substitutive amino acids are completely in accord with the amino acids of Tib, showing that Tib i5 is an intermediate between Tia and Tib types. Tib i5 type is widely distributed throughout seven separate areas from northeast to southwest Japan with a 1.5% frequency of total materials examined. This indicated that Tib i5 type did not originate from a recent mutation event, but had spread in wild soybean from ancient times.
机译:大豆Kunit胰蛋白酶抑制剂(SKTI)具有几种多态类型。在这些SKTI中,Tia和Tib之间存在9个氨基酸取代的较大差异。到目前为止,尚未找到它们之间的过渡类型。在来自720种日本野生大豆(Glycine soja Sieb。&Zucc。)的11个品系中检测到Tia和Tib之间的新型过渡中间变体。该变体在Davis系统聚丙烯酰胺凝胶电泳(PAGE)中显示与Tib相同的电泳迁移率,但在等电聚焦PAGE中比其他SKTI蛋白(Tia,Tib,Tic)具有更高的电点。从新的变种类型和Tib之间杂交得到的F2 种子中SKTI的遗传分析表明,该变种类型在SKTI基因座的多个等位基因系统中作为共性等位基因遗传。该变体还显示出对胰蛋白酶的抑制活性。我们提出了该新变体的遗传符号Ti b i5 。 Tib i5 的序列分析表明,Tib i5 和Tia之间有6个核苷酸不同,这些突变位点的核苷酸与Tib相同。这引起在残基位置62(Tyr→Phe),74(Ser→Arg),114(Met→Val),120(Leu→Ile)和137(Pro→Thr)的残基位置处的五个氨基酸的取代。这些取代氨基酸与Tib氨基酸完全一致,表明Tib i5 是Tia和Tib类型之间的中间体。 Tib i5 类型广泛分布于从日本东北到西南的七个不同地区,占被检材料总数的1.5%。这表明Tib i5 型不是起源于最近的突变事件,而是自古以来就在野生大豆中传播。

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