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Increased Lysine Synthesis Coupled with a Knockout of Its Catabolism Synergistically Boosts Lysine Content and Also Transregulates the Metabolism of Other Amino Acids in Arabidopsis Seeds

机译:赖氨酸合成的增加加上其分解代谢的协同作用可提高赖氨酸含量并且还调节拟南芥种子中其他氨基酸的代谢。

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摘要

To elucidate the relative significance of Lys synthesis and catabolism in determining Lys level in plant seeds, we expressed a bacterial feedback-insensitive dihydrodipicolinate synthase (DHPS) in a seed-specific manner in wild-type Arabidopsis as well as in an Arabidopsis knockout mutant in the Lys catabolism pathway. Transgenic plants expressing the bacterial DHPS, or the knockout mutant, contained ∼12-fold or ∼5-fold higher levels, respectively, of seed free Lys than wild-type plants. However, the combination of these two traits caused a synergistic ∼80-fold increase in seed free Lys level. The dramatic increase in free Lys in the knockout mutant expressing the bacterial DHPS was associated with a significant reduction in the levels of Glu and Asp but also with an unexpected increase in the levels of Gln and Asn. This finding suggested a special regulatory interaction between Lys metabolism and amide amino acid metabolism in seeds. Notably, the level of free Met, which competes with Lys for Asp and Glu as precursors, was increased unexpectedly by up to ∼38-fold in the various transgenic and knockout plants. Together, our results show that Lys catabolism plays a major regulatory role in Lys accumulation in Arabidopsis seeds and reveal novel regulatory networks of seed amino acid metabolism.
机译:为了阐明Lys合成和分解代谢在确定植物种子Lys水平方面的相对重要性,我们在野生型拟南芥以及拟南芥基因敲除突变体中以种子特异性方式表达了细菌反馈不敏感的二氢二吡啶甲酸酯合酶(DHPS)。 Lys分解代谢途径。表达细菌DHPS或敲除突变体的转基因植物,其无种子Lys含量分别比野生型植物高约12倍或约5倍。然而,这两个性状的结合导致无种子赖氨酸水平的协同增效约80倍。表达细菌DHPS的敲除突变体中游离Lys的急剧增加与Glu和Asp水平的显着降低有关,但与Gln和Asn水平的出乎意料的增加有关。该发现表明种子中Lys代谢和酰胺氨基酸代谢之间存在特殊的调节相互作用。值得注意的是,在各种转基因和敲除植物中,与Lys竞争Asp和Glu作为前体的游离Met的水平出乎意料地增加了约38倍。总之,我们的结果表明,Lys分解代谢在拟南芥种子中Lys积累中起主要调控作用,并揭示了种子氨基酸代谢的新型调控网络。

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