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首页> 外文期刊>Planta: An International Journal of Plant Biology >Brassinolide-improved development of Brassica napus microspore-derived embryos is associated with increased activities of purine and pyrimidine salvage pathways
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Brassinolide-improved development of Brassica napus microspore-derived embryos is associated with increased activities of purine and pyrimidine salvage pathways

机译:油菜素内酯改善的甘蓝型油菜小孢子来源胚胎发育与嘌呤和嘧啶挽救途径的活性增加有关

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Cellular brassinolide (BL) levels regulate the development of Brassica napus microspore-derived embryos (MDEs). Synthesis and degradation of nucleotides were measured on developing MDEs treated with BL or brassinazole (BrZ), a biosynthetic inhibitor of BL. Purine metabolism was investigated by following the metabolic fate of ~(14)C-labelled adenine and adenosine, substrates of the salvage pathway, and inosine, an intermediate of both salvage and degradation pathways. For pyrimidine, orotic acid, uridine and uracil were employed as markers for the de novo (orotic acid), salvage (uridine and uracil), and degradation (uracil) pathways. Our results indicate that utilization of adenine, adenosine, and uridine for nucleotides and nucleic acids increased significantly in BL-treated embryos at day 15 and remained high throughout the culture period. These metabolic changes were ascribed to the activities of the respective salvage enzymes: adenine phosphoribosyltransferase (EC 2.4.2.7), adenosine kinase (EC 2.7.1.20), and uridine kinase (EC 2.7.1.48), which were induced by BL applications. The BL promotion of salvage synthesis was accompanied by a reduction in the activities of the degradation pathways, suggesting the presence of competitive anabolic and catabolic mechanisms utilizing the labelled precursors. In BrZ-treated embryos, with depleted BL levels, the salvage activity of both purine and pyrimidine nucleotides was reduced and this was associated to structural abnormalities and poor embryonic performance. In these embryos, the activities of major salvage enzymes were consistently lower to those measured in their control (untreated) counterparts.
机译:细胞油菜素内酯(BL)的水平调节甘蓝型油菜小孢子来源的胚胎(MDEs)的发展。在用BL或BL的生物合成抑制剂Braskinazole(BrZ)处理的发育中的MDE上测量核苷酸的合成和降解。通过追踪〜(14)C标记的腺嘌呤和腺苷(挽救途径的底物)和肌苷(挽救和降解途径的中间产物)的代谢命运来研究嘌呤的代谢。对于嘧啶,乳清酸,尿苷和尿嘧啶被用作从头(乳清酸),挽救(尿苷和尿嘧啶)和降解(尿嘧啶)途径的标记。我们的结果表明,在第15天,BL处理的胚胎中腺嘌呤,腺苷和尿苷对核苷酸和核酸的利用显着增加,并且在整个培养期间均保持较高水平。这些代谢变化归因于各自的抢救酶的活性:腺嘌呤应用引起的腺嘌呤磷酸核糖基转移酶(EC 2.4.2.7),腺苷激酶(EC 2.7.1.20)和尿苷激酶(EC 2.7.1.48)的活性。 BL促进挽救性合成伴随着降解途径活性的降低,这表明存在利用标记前体的竞争性合成代谢和分解代谢机制。在Br水平降低的BrZ处理的胚胎中,嘌呤和嘧啶核苷酸的挽救活性均降低,这与结构异常和较差的胚胎性能有关。在这些胚胎中,主要挽救酶的活性始终低于在其对照(未处理)对应物中测得的活性。

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