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首页> 外文期刊>Plant Biotechnology Journal >Deficiency in the amino aldehyde dehydrogenase encoded by GmAMADH 2, the homologue of rice Os2AP , enhances 2?¢????acetyl?¢????1?¢????pyrroline biosynthesis in soybeans ( Glycine max L.)
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Deficiency in the amino aldehyde dehydrogenase encoded by GmAMADH 2, the homologue of rice Os2AP , enhances 2?¢????acetyl?¢????1?¢????pyrroline biosynthesis in soybeans ( Glycine max L.)

机译:水稻Os2AP的同源物GmAMADH 2编码的氨基醛脱氢酶的缺乏增强了大豆中2 ???????乙酰基??????? 1 ???????吡咯啉的生物合成(Glycine max L.)。

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摘要

2?¢????Acetyl?¢????1?¢????pyrroline (2AP), the volatile compound that provides the ?¢????popcorn?¢????like?¢???? aroma in a large variety of cereal and food products, is widely found in nature. Deficiency in amino aldehyde dehydrogenase (AMADH) was previously shown to be the likely cause of 2AP biosynthesis in rice ( Oryza sativa L.). In this study, the validity of this mechanism was investigated in soybeans ( Glycine max L.). An assay of AMADH activity in soybeans revealed that the aromatic soybean, which contains 2AP, also lacked AMADH enzyme activity. Two genes, GmAMADH1 and GmAMADH2 , which are homologous to the rice Os2AP gene that encodes AMADH, were characterized. The transcription level of GmAMADH2 was lower in aromatic varieties than in nonaromatic varieties, whereas the expression of GmAMADH1 did not differ. A double nucleotide (TT) deletion was found in exon 10 of GmAMADH 2 in all aromatic varieties. This variation caused a frame?¢????shift mutation and a premature stop codon. Suppression of GmAMADH2 by introduction of a GmAMADH2 ?¢????RNA i construct into the calli of the two nonaromatic wild?¢????type varieties inhibited the synthesis of AMADH and induced the biosynthesis of 2AP. These results suggest that deficiency in the GmAMADH 2 product, AMADH, plays a similar role in soybean as in rice, which is to promote 2AP biosynthesis. This phenomenon might be a conserved mechanism among plant species.
机译:2 Ac?1 1 1 1 1吡咯啉(2AP),一种挥发性化合物,可提供pop pop ¢ ¢? ??在自然界中广泛发现多种谷物和食品中的香气。先前已证明氨基醛脱氢酶(AMADH)的缺乏是水稻(Oryza sativa L.)2AP生物合成的可能原因。在这项研究中,研究了大豆中这种机制的有效性。大豆中AMADH活性的测定表明,含有2AP的芳香大豆也缺乏AMADH酶活性。鉴定了两个基因GmAMADH1和GmAMADH2,它们与编码AMADH的水稻Os2AP基因同源。在芳香族品种中,GmAMADH2的转录水平低于非芳香族品种,而GmAMADH1的表达没有差异。在所有芳香族品种的GmAMADH 2外显子10中都发现了一个双核苷酸(TT)缺失。这种变化引起了一个构架的移位突变和一个过早的终止密码子。通过将GmAMADH2αRNA构建体引入两个非芳香族野生型β2α的愈伤组织中来抑制GmAMADH2,抑制了AMADH的合成并诱导了2AP的生物合成。这些结果表明,GmAMADH 2产物AMADH的缺乏在大豆中和水稻中起着相似的作用,从而促进了2AP的生物合成。这种现象可能是植物物种之间的保守机制。

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