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大麦抗 S-(2-氨乙基)-半胱氨酸突变体中的赖氨酸代谢。

Lysine metabolism in a barley mutant resistant to S(2-aminoethyl)cysteine.

机构信息

Biochemistry Department, Rothamsted Experimental Station, AL5 2JQ, Harpenden, Herts, U.K..

出版信息

Planta. 1979 Oct;146(5):629-33. doi: 10.1007/BF00388843.

Abstract

Lysine and S(2-aminoethyl)cysteine (AEC) metabolism were investigated in normal barley (Hordeum vulgare L. cv. Bomi) and a hemozygous recessive AEC-resistant mutant (R906). Feedback regulation of lysine and threonine synthesis from [(14)C] acetate was unimpaired in plants of the mutant 3 d after germination. Seeds of Bomi and R906 contained similar total amounts of lysine, threonine, methionine and isoleucine. Concentrations of these amino acids in the soluble fraction of plants grown 6 d without AEC were also similar. The concentration of AEC in R906 plants was less than in the parent variety when both were grown in the presence of 0.25 mM AEC for 6 d. The uptake of [(3)H]AEC and [(3)H]lysine by roots of R906 was, respectively, 33% and 32% of that by Bomi roots whereas the uptake of these compounds into the scutellum was the same in both the mutant and its parent. The uptake of [(3)H]leucine and its incorporation into proteins was also the same in Bomi and R906 plants. These results suggest that a transport system specific for lysine and AEC but not leucine is altered or lost in roots of the mutant R906. AEC is incorporated into protein and this could be the reason for inhibition of growth rather than action as a false-feedback inhibitor of lysine biosynthesis.

摘要

赖氨酸和 S(2-氨乙基)半胱氨酸(AEC)代谢在正常大麦(Hordeum vulgare L. cv. Bomi)和 AEC 完全隐性抗性突变体(R906)中进行了研究。突变体在萌发后 3 天,从[(14)C]乙酸反馈调节赖氨酸和苏氨酸合成的能力未受损。Bomi 和 R906 的种子中赖氨酸、苏氨酸、蛋氨酸和异亮氨酸的总量相似。在没有 AEC 的情况下生长 6 天的植物的可溶性部分中,这些氨基酸的浓度也相似。当 R906 植物和其亲本品种都在 0.25 mM AEC 存在下生长 6 天时,R906 植物中的 AEC 浓度低于亲本品种。R906 根系对[(3)H]AEC 和[(3)H]赖氨酸的摄取分别为 Bomi 根系的 33%和 32%,而这两种突变体和其亲本在盾片中的摄取相同。[(3)H]亮氨酸的摄取及其掺入蛋白质也是相同的。这些结果表明,突变体 R906 根系中一种特异于赖氨酸和 AEC 但不是亮氨酸的转运系统发生了改变或丧失。AEC 被掺入蛋白质中,这可能是生长受到抑制的原因,而不是作为赖氨酸生物合成的假反馈抑制剂的作用。

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