首页> 外文期刊>Planta: An International Journal of Plant Biology >Promotion of nicotine biosynthesis in transgenic tobacco by overexpressing allene oxide cyclase from Hyoscyamus niger
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Promotion of nicotine biosynthesis in transgenic tobacco by overexpressing allene oxide cyclase from Hyoscyamus niger

机译:通过过量表达黑潮草的氧化烯环化酶促进转基因烟草中尼古丁的生物合成

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摘要

Plant secondary metabolites are a wide variety of low-molecular weight compounds whose productions are often enhanced in response to both biotic and abiotic stresses. Many of the responses are mediated by a class of hormones, named as jasmonates. In jasmonate biosynthetic pathway of plants, allene oxide cyclase (AOC, EC 5.3.99.6) catalyzes the most crucial step. Here a heterologous AOC gene from Hyoscyamus niger L. (black henbane), named HnAOC (GenBank accession No. AY708383), was overexpressed in Nicotiana tabacum cv. Petit Havana to investigate the consequence on nicotine content. This study revealed that the transcription of HnAOC in tobacco resulted in overexpression of nicotine biosynthetic pathway genes and higher yield of nicotine, with the maximum of 4.8-fold over control. Therefore, it indicated that without the cost of extrinsic hormones, genetic manipulation of jasmonate biosynthetic pathway genes could be an alternative approach in metabolic engineering for the production of valuable secondary metabolites, which were induced by jasmonates.
机译:植物次生代谢产物是各种各样的低分子量化合物,它们的产生通常响应于生物和非生物胁迫而增加。许多反应是由一类激素(称为茉莉酸酯)介导的。在植物的茉莉酸酯生物合成途径中,氧化烯环化酶(AOC,EC 5.3.99.6)催化最关键的步骤。在此,来自Hyoscyamus niger L.(黑henbane)的异源AOC基因,称为HnAOC(GenBank登录号AY708383),在烟草(Nicotiana tabacum)cv中过表达。小哈瓦那(Petit Havana)调查尼古丁含量的后果。这项研究表明,烟草中HnAOC的转录导致尼古丁生物合成途径基因的过表达和尼古丁的更高产量,其最高值比对照高4.8倍。因此,它表明,在没有外部激素成本的情况下,茉莉酸酯生物合成途径基因的基因操作可能是代谢工程中由茉莉酸酯诱导的有价值的次级代谢产物生产的另一种方法。

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