首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Plant growth, metabolism and adaptation in relation to stress conditions. XXVII. Can ascorbic acid modify the adverse effects of NaCl and mannitol on amino acids, nucleic acids and protein patterns in Vicia faba seedlings?
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Plant growth, metabolism and adaptation in relation to stress conditions. XXVII. Can ascorbic acid modify the adverse effects of NaCl and mannitol on amino acids, nucleic acids and protein patterns in Vicia faba seedlings?

机译:与胁迫条件有关的植物生长,代谢和适应。二十七。抗坏血酸可以改变NaCl和甘露醇对蚕豆幼苗氨基酸,核酸和蛋白质模式的不利影响吗?

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The adverse effects of either NaCl or mannitol on amino acids, protein patterns and nucleic acids in Vicia faba seeds were investigated. The exogenous addition of 4 mM ascorbic acid to the stressing media in which the broad bean seeds were germinated in combination with either the ionic (NaCl) or osmotic (mannitol) stressor induced significant protective changes in the total amount and in the relative composition of amino acids in general and in proline, glycine, glutamic, aspartic, alanine and serine in particular. It also induced changes in nucleic acids (RNA and DNA) content. These changes occurred throughout the entire period of the experiments (12 days). Separate administration of NaCl or mannitol enhanced the occurrence of particular novel proteins that were not detected in control bean seeds (water medium). Protein banding patterns of broad bean seedlings treated with NaCl or mannitol in combination with 4 mM ascorbic acid showed different de novo protein bands, with different molecular weights, at different stages of seedlings growth, with lower levels or a nearly complete absence of the major stress proteins. The pattern of changes for amino acids and nucleic acids and the range of protein bands extracted from the variously treated broad bean seedlings indicate a positive role of ascorbic acid in the alleviation of the damage effects induced by NaCl and mannitol. The importance of this role in the stress tolerance of broad beans is discussed.
机译:研究了氯化钠或甘露醇对蚕豆种子氨基酸,蛋白质模式和核酸的不利影响。在胁迫培养基中外源添加4 mM抗坏血酸,蚕豆种子在与离子(NaCl)或渗透性(甘露醇)胁迫源共同发芽的条件下,氨基的总量和相对组成均发生了明显的保护性变化。酸通常是脯氨酸,尤其是甘氨酸,谷氨酸,天冬氨酸,丙氨酸和丝氨酸。它还诱导了核酸(RNA和DNA)含量的变化。这些变化发生在整个实验期间(12天)。单独施用NaCl或甘露醇会增加在对照豆种子(水培养基)中未检测到的特定新型蛋白质的发生。 NaCl或甘露醇结合4 mM抗坏血酸处理的蚕豆幼苗的蛋白质带型显示出不同的从头蛋白质带,分子量不同,在幼苗生长的不同阶段,主要胁迫水平较低或几乎完全没有蛋白质。从各种处理过的蚕豆幼苗中提取的氨基酸和核酸的变化模式以及蛋白质条带的范围表明,抗坏血酸在减轻NaCl和甘露醇诱导的伤害作用中具有积极作用。讨论了在蚕豆抗逆性中这一作用的重要性。

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