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A T-DNA insertion knockout of the bifunctional lysine-ketoglutarate reductase/saccharopine dehydrogenase gene elevates lysine levels in Arabidopsis seeds

机译:双功能赖氨酸-酮戊二酸还原酶/糖碱脱氢酶基因的T-DNA插入敲除提高了拟南芥种子中的赖氨酸水平

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摘要

Plants possess both anabolic and catabolic pathways for the essential amino acid lysine (Lys). However, although the biosynthetic pathway was clearly shown to regulate Lys accumulation in plants, the functional significance of Lys catabolism has not been experimentally elucidated. To address this issue, we have isolated an Arabidopsis knockout mutant with a T-DNA inserted into exon 13 of the gene encoding Lys ketoglutarate reductase/saccharopine dehydrogenase. This bifunctional enzyme controls the first two steps of Lys catabolism. The phenotype of the LKR/SDH knockout was indistinguishable from wild-type plants under normal growth conditions, suggesting that Lys catabolism is not an essential pathway under standard growth conditions. However, mature seeds of the knockout mutant over-accumulated Lys compared with wild-type plants. This report provides the first direct evidence for the functional significance of Lys catabolism in regulating Lys accumulation in seeds. Such a knockout mutant may also provide new perspectives to improve the level of the essential amino acid Lys in plant seeds.
机译:植物具有必需氨基酸赖氨酸(Lys)的合成代谢和分解代谢途径。然而,尽管清楚地显示了生物合成途径调节植物中Lys的积累,但尚未通过实验阐明Lys分解代谢的功能意义。为了解决这个问题,我们分离了一个拟南芥基因敲除突变体,该突变体的T-DNA插入了编码Lys酮戊二酸还原酶/糖精脱氢酶的基因的外显子13中。这种双功能酶控制Lys分解代谢的前两个步骤。在正常生长条件下,LKR / SDH基因敲除的表型与野生型植物没有区别,这表明在标准生长条件下,Lys分解代谢不是必不可少的途径。然而,与野生型植物相比,敲除突变体的成熟种子会过度积累Lys。该报告提供了Lys分解代谢在调节种子中Lys积累中的功能意义的第一个直接证据。这种敲除突变体也可以提供新的观点来改善植物种子中必需氨基酸Lys的水平。

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