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在烟草中异源表达宽叶吊兰鲨烯环氧酶调节植物甾醇的产生并改变营养生长和生殖生长。

Heterologous expression of Chlorophytum borivilianum Squalene epoxidase in tobacco modulates stigmasterol production and alters vegetative and reproductive growth.

机构信息

Department of Biotechnology, BMS Block I, Panjab University, Sector 25, Chandigarh, 160014, India.

UMN · College of Food, Agricultural and Natural Resource Sciences, University of Minnesota Twin Cities, Minneapolis, MN, 55455, USA.

出版信息

Plant Cell Rep. 2023 May;42(5):909-919. doi: 10.1007/s00299-023-03000-1. Epub 2023 Mar 9.

Abstract

CbSE overexpression increased stigmasterol levels and altered plant morphology. The genes upstream and downstream of CbSE were found to be upregulated, which confirms its regulatory role in the saponin biosynthetic pathway. Chlorophytum borivilianum is a high-value medicinal plant with many promising preclinical applications that include saponins as a major active ingredient. Squalene epoxidase (SE) is one of the major rate-limiting enzymes of the saponin biosynthetic pathway. Here, we functionally characterized C. borivilianum SE (CbSE) by over-expressing heterologously in Nicotiana tabacum. The heterologous expression of CbSE resulted in stunted pant growth with altered leaf and flower morphology. Next, RT-qPCR analysis of transgenic plants overexpressing CbSE revealed increased expression levels of Cycloartenol synthase (CAS), Beta amyrin synthase (βAS), and cytochrome P450 monooxygenase 51 (CYP51) (Cytochrome P450), which encode key enzymes for triterpenoid and phytosterol biosynthesis in C. borivilianum. Further, Methyl Jasmonate (MeJa) treatment upregulated Squalene synthase (SQS), SE, and Oxidosqualene cyclases (OSCs) to a significant level. GC-MS analysis of the leaf and hairy roots of the transformants showed an increased stigmasterol content (0.5-1.0 fold) compared to wild type (WT) plants. These results indicate that CbSE is a rate-limiting gene, which encodes an efficient enzyme responsible for phytosterol and triterpenoid production in C. borivilianum.

摘要

CbSE 的过表达增加了豆甾醇的水平并改变了植物形态。发现 CbSE 的上下游基因被上调,这证实了它在皂苷生物合成途径中的调节作用。狸尾草是一种具有高价值的药用植物,具有许多有前途的临床前应用,其中皂苷是主要的活性成分。鲨烯环氧化酶 (SE) 是皂苷生物合成途径中的主要限速酶之一。在这里,我们通过在烟草中异源过表达来功能表征狸尾草 SE (CbSE)。CbSE 的异源表达导致植物生长受阻,叶片和花朵形态发生改变。接下来,对过表达 CbSE 的转基因植物进行 RT-qPCR 分析,发现 Cycloartenol synthase (CAS)、Beta amyrin synthase (βAS) 和 cytochrome P450 monooxygenase 51 (CYP51)(细胞色素 P450)的表达水平升高,这些基因编码在狸尾草中三萜和植物甾醇生物合成的关键酶。此外,茉莉酸甲酯 (MeJa) 处理可显著上调鲨烯合酶 (SQS)、SE 和 Oxidosqualene cyclases (OSCs) 的表达。对转化体的叶片和毛状根进行 GC-MS 分析表明,与野生型 (WT) 植物相比,豆甾醇含量增加了 0.5-1.0 倍。这些结果表明 CbSE 是一个限速基因,它编码一种有效的酶,负责狸尾草中植物甾醇和三萜的产生。

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