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Effect of soybean ureases on seed germination and plant development

机译:大豆脲酶对种子发芽和植物发育的影响

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摘要

Urease catalyzes the hydrolysis of urea to ammonia and carbon dioxide. The ammonia (nitrogen (N) product of urease activity) is incorporated into organic compounds. Thus, urease is involved in N remobilization, as well as in primary N assimilation. Two urease isoforms have been described for soybean: the embryo-specific, encoded by the Eu1 gene, and the ubiquitous urease, encoded by Eu4. A third urease-encoding gene was recently identified, designated Eu5, which encodes the putative protein product SBU-III. The present study aimed to evaluate the contribution of soybean ureases to seed germination and plant development. Analyses were performed using Eu1/Eu4/Eu5-co-suppressed transgenic plants and mutants of the Eu1 and Eu4 urease structural genes, as well as a urease-null mutant (eu3-a) that activates neither the ubiquitous nor embryo-specific ureases. The co-suppressed plants presented a developmental delay during the first month after germination; shoots and roots were significantly smaller and lighter. Slower development was observed for the double eu1-a/eu4-a mutant and the eu3-a single mutant. The N content in transgenic plants was significantly lower than in non-transgenic plants. Among the mutants, eu3-a presented the lowest and eu1-a the highest N content. Altogether, these results indicate that increased ureolytic activity plays an important role in plant development.
机译:脲酶催化尿素水解成氨和二氧化碳。将氨(脲酶活性的氮(N)产物)掺入有机化合物中。因此,脲酶参与了氮的迁移以及初级氮的吸收。已经针对大豆描述了两种脲酶同工型:由Eu1基因编码的胚特异性酶和由Eu4编码的普遍存在的脲酶。最近鉴定出第三个编码脲酶的基因,称为Eu5,它编码假定的蛋白质产物SBU-III。本研究旨在评估大豆脲酶对种子发芽和植物发育的贡献。使用Eu1 / Eu4 / Eu5-co共同抑制的转基因植物和Eu1和Eu4脲酶结构基因的突变体,以及不激活普遍存在的或特定于胚芽的脲酶的脲酶无效突变体(eu3-a)进行了分析。共同抑制的植物在发芽后的第一个月内出现发育迟缓。芽和根明显更小,更轻。对于双eu1-a / eu4-a突变体和eu3-a单突变体,观察到较慢的发育。转基因植物中的氮含量显着低于非转基因植物。在突变体中,eu3 -a 的N含量最低,而 eu 1-a的N含量最高。总而言之,这些结果表明增加的尿素分解活性在植物发育中起重要作用。

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