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茉莉酸敏感性辅助筛选及烟草激活标签群体尼古丁合成突变体的鉴定

Jasmonate-Sensitivity-Assisted Screening and Characterization of Nicotine Synthetic Mutants from Activation-Tagged Population of Tobacco ( L.).

作者信息

Yin Guoying, Wang Wenjing, Niu Haixia, Ding Yongqiang, Zhang Dingyu, Zhang Jie, Liu Guanshan, Wang Sangen, Zhang Hongbo

机构信息

College of Agronomy and Biotechnology, Southwest University Chongqing, China.

Tobacco Research Institute, Chinese Academy of Agricultural Sciences Qingdao, China.

出版信息

Front Plant Sci. 2017 Feb 13;8:157. doi: 10.3389/fpls.2017.00157. eCollection 2017.

Abstract

Nicotine is a secondary metabolite that is important to the defense system and commercial quality of tobacco ( L.). Jasmonate and its derivatives (JAs) are phytohormone regulators of nicotine formation; however, the underlying molecular mechanism of this process remains largely unclear. Owing to the amphitetraploid origin of , research on screening and identification of nicotine-synthetic mutants is relatively scarce. Here, we describe a method based on JA-sensitivity for screening nicotine mutants from an activation-tagged population of tobacco. In this approach, the mutants were first screened for abnormal JA responses in seed germination and root elongation, and then the levels of nicotine synthesis and expression of nicotine synthetic genes in the mutants with altered JA-response were measured to determine the nicotine-synthetic mutants. We successfully obtained five mutants that maintained stable nicotine contents and JA responses for three generations. This method is simple, effective and low-cost, and the finding of transcriptional changes of nicotine synthetic genes in the mutants shows potentials for identifying novel regulators involved in JA-regulated nicotine biosynthesis.

摘要

尼古丁是一种次生代谢产物,对烟草(L.)的防御系统和商业品质至关重要。茉莉酸及其衍生物(JAs)是尼古丁形成的植物激素调节剂;然而,这一过程的潜在分子机制仍 largely unclear。由于烟草的双二倍体起源,关于尼古丁合成突变体的筛选和鉴定研究相对较少。在此,我们描述了一种基于茉莉酸敏感性从激活标签烟草群体中筛选尼古丁突变体的方法。在这种方法中,首先筛选突变体在种子萌发和根伸长过程中茉莉酸反应的异常情况,然后测量茉莉酸反应改变的突变体中尼古丁合成水平和尼古丁合成基因的表达,以确定尼古丁合成突变体。我们成功获得了五个在三代中保持稳定尼古丁含量和茉莉酸反应的突变体。这种方法简单、有效且成本低,并且在突变体中发现尼古丁合成基因的转录变化显示了识别参与茉莉酸调节尼古丁生物合成的新调节因子的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b87/5303748/a1a68ecf6e29/fpls-08-00157-g0001.jpg

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