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Differential response to sulfur nutrition of two common bean genotypes differing in storage protein composition

机译:两种常见的贮藏蛋白组成不同的基因型对硫营养的差异响应

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摘要

It has been hypothesized that the relatively low concentration of sulfur amino acids in legume seeds might be an ecological adaptation to nutrient poor, marginal soils. SARC1 and SMARC1N-PN1 are genetically related lines of common bean (dry bean, Phaseolus vulgaris) differing in seed storage protein composition. In SMARC1N-PN1, the lack of phaseolin and major lectins is compensated by increased levels of sulfur-rich proteins, resulting in an enhanced concentration of cysteine and methionine, mostly at the expense of the abundant non-protein amino acid, S-methylcysteine. To identify potential effects associated with an increased concentration of sulfur amino acids in the protein pool, the response of the two genotypes to low and high sulfur nutrition was evaluated under controlled conditions. Seed yield was increased by the high sulfate treatment in SMARC1N-PN1. The seed concentrations of sulfur, sulfate, and S-methylcysteine were altered by the sulfur treatment in both genotypes. The concentration of total cysteine and extractible globulins was increased specifically in SMARC1N-PN1. Proteomic analysis identified arcelin-like protein 4, lipoxygenase-3, albumin-2, and alpha amylase inhibitor beta chain as having increased levels under high sulfur conditions. Lipoxygenase-3 accumulation was sensitive to sulfur nutrition only in SMARC1N-PN1. Under field conditions, both SARC1 and SMARC1N-PN1 exhibited a slight increase in yield in response to sulfur treatment, typical for common bean.
机译:据推测,豆类种子中相对较低的硫氨基酸浓度可能是对营养不良,边缘土壤的生态适应。 SARC1和SMARC1N-PN1是与遗传相关的普通豆(干豆,菜豆)品系,其种子贮藏蛋白组成不同。在SMARC1N-PN1中,富硫蛋白水平的增加弥补了菜豆蛋白和主要凝集素的缺乏,导致半胱氨酸和蛋氨酸浓度的增加,主要是以丰富的非蛋白氨基酸S-甲基半胱氨酸为代价。为了确定与蛋白质库中硫氨基酸浓度增加相关的潜在影响,在受控条件下评估了两种基因型对低硫和高硫营养的反应。通过在SMARC1N-PN1中进行高硫酸盐处理,提高了种子产量。两种基因型均通过硫处理改变了硫,硫酸盐和S-甲基半胱氨酸的种子浓度。在SMARC1N-PN1中,总半胱氨酸和可提取球蛋白的浓度特别增加。蛋白质组学分析表明,在高硫条件下,arcelin样蛋白4,脂氧合酶3,白蛋白2和α淀粉酶抑制剂β链具有增加的水平。脂氧合酶3的积累仅对SMARC1N-PN1中的硫营养敏感。在田间条件下,SARC1和SMARC1N-PN1均表现出响应硫处理的单产略有增加,这对普通豆来说很典型。

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