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Deficiency of a pyrroline-5-carboxylate reductase produces the yellowish green cocoon ‘Ryokuken’ of the silkworm Bombyx mori

机译:吡咯啉-5-羧酸还原酶的缺乏会产生家蚕Bombyx mori的黄绿色茧 Ryokuken

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摘要

The silkworm cocoon colour has attracted researchers involved in genetics, physiology and ecology for a long time. ‘Ryokuken’ cocoons are yellowish green in colour due to unusual flavonoids, prolinylflavonols, while ‘Sasamayu’ cocoons are light green and contain only simple flavonol glucosides. We found a novel gene associated with the cocoon colour change resulting from a change in flavonoid composition and named it Lg (light green cocoon). In the middle silk glands of the +Lg/+Lg larvae, 1-pyrroline-5-carboxylic acid (P5C) was found to accumulate due to a decrease in the activity of pyrroline-5-carboxylate reductase (P5CR), an enzyme reducing P5C to proline. Sequence analysis of BmP5CR1, the candidate gene for Lg, revealed a 1.9 kb insertion and a 4 bp deletion within the 1st intron, a 97 bp deletion within the 4th intron, and a > 300 bp insertion within the 3′-UTR, in addition to two amino acid changes on exons 3 and 4 in +Lg/+Lg compared to Lg/Lg. Decreased expression of BmP5CR1 was observed in all of the investigated tissues, including the middle silk glands in +Lg/+Lg, which was probably caused by structural changes in the intronic regions of BmP5CR1. Furthermore, a BmP5CR1 knockout strain exhibited a yellowish green cocoon with the formation of prolinylflavonols. These results indicate that the yellowish green cocoon is produced by a BmP5CR1 deficiency. To our knowledge, this is the first report showing that the defect of an enzyme associated with intermediate metabolism promotes the conjugation of phytochemicals derived from foods with endogenously accumulating metabolites in animal tissues.
机译:长期以来,蚕茧的颜色吸引了从事遗传学,生理学和生态学的研究人员。 “ Ryokuken”茧由于不常见的类黄酮,脯氨酰黄酮醇而呈黄绿色,而“ Sasamayu”茧为浅绿色,仅包含简单的黄酮醇苷。我们发现了与黄酮类成分变化导致的茧颜色变化相关的新基因,并将其命名为Lg(浅绿色茧)。在+ Lg / + Lg 幼虫的中间丝腺中,由于活性降低,发现了1-吡咯啉-5-羧酸(P5C)积累。吡咯啉-5-羧酸还原酶(P5CR),一种将P5C还原为脯氨酸的酶。对Lg候选基因BmP5CR1的序列分析显示,在第一个内含子中插入了1.9 kb,缺失了4个bp,在第4个内含子中缺失了97 bp,在3'-UTR中插入了a> 300 bp。与Lg / Lg相比,+ Lg / + Lg 中外显子3和4的两个氨基酸变化。在所有研究的组织中,包括+ Lg / + Lg 中的中间丝腺,均观察到BmP5CR1的表达降低,这可能是由于内含子区域的结构变化引起的BmP5CR1。此外,BmP5CR1敲除菌株显示出黄绿色的茧,带有脯氨酰黄酮醇。这些结果表明黄绿色的茧是由BmP5CR1缺乏产生的。据我们所知,这是第一份报告,表明与中间代谢相关的酶缺陷促进了源自食物的植物化学物质与动物组织中内源性累积代谢物的结合。

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