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菘蓝异源植物基因增强了黄花蒿的免疫反应。

Enhanced Nicotiana benthamiana immune responses caused by heterologous plant genes from Pinellia ternata.

机构信息

Department of Plant Pathology, College of Plant Science and Technology and the Key Lab of Crop Disease Monitoring & Safety Control in Hubei Province, Huazhong Agricultural University, Wuhan, 430070, Hubei Province, China.

出版信息

BMC Plant Biol. 2018 Dec 17;18(1):357. doi: 10.1186/s12870-018-1598-5.

Abstract

BACKGROUND

Pinellia ternata is a Chinese traditional medicinal herb, used to cure diseases including insomnia, eclampsia and cervical carcinoma, for hundreds of years. Non-self-recognition in multicellular organisms can initiate the innate immunity to avoid the invasion of pathogens. A design for pathogen independent, heterosis based, fresh resistance can be generated in F hybrid was proposed.

RESULTS

By library functional screening, we found that P. ternata genes, named as ptHR375 and ptHR941, were identified with the potential to trigger a hypersensitive response in Nicotiana benthamiana. Significant induction of ROS and Callose deposition in N. benthamiana leaves along with activation of pathogenesis-related genes viz.; PR-1a, PR-5, PDF1.2, NPR1, PAL, RBOHB and ERF1 and antioxidant enzymes was observed. After transformation into N. benthamiana, expression of pathogenesis related genes was significantly up-regulated to generate high level of resistance against Phytophthora capsici without affecting the normal seed germination and morphological characters of the transformed N. benthamiana. UPLC-QTOF-MS analysis of ptHR375 transformed N. benthamiana revealed the induction of Oxytetracycline, Cuelure, Allantoin, Diethylstilbestrol and 1,2-Benzisothiazol-3(2H)-one as bioactive compounds. Here we also proved that F hybrids, produced by crossing of the ptHR375 and ptHR941 transformed and non-transformed N. benthamiana, show significant high levels of PR-gene expressions and pathogen resistance.

CONCLUSIONS

Heterologous plant genes can activate disease resistance in another plant species and furthermore, by generating F hybrids, fresh pathogen independent plant immunity can be obtained. It is also concluded that ptHR375 and ptHR941 play their role in SA and JA/ET defense pathways to activate the resistance against invading pathogens.

摘要

背景

半夏是一种中国传统药用植物,数百年来一直被用于治疗失眠、子痫和宫颈癌等疾病。多细胞生物中的非自我识别可以启动先天免疫,以避免病原体的入侵。提出了一种在 F 杂种中产生与自身无关、杂种优势的新鲜抗性的设计。

结果

通过文库功能筛选,我们发现半夏基因,命名为 ptHR375 和 ptHR941,具有在本氏烟中触发过敏反应的潜力。在本氏烟叶片中观察到 ROS 和胼胝质沉积的显著诱导,以及与病程相关基因(如 PR-1a、PR-5、PDF1.2、NPR1、PAL、RBOHB 和 ERF1)和抗氧化酶的激活。转化为本氏烟后,病程相关基因的表达显著上调,在不影响转化本氏烟正常种子萌发和形态特征的情况下,产生高水平的对辣椒疫霉的抗性。UPLC-QTOF-MS 分析表明,ptHR375 转化的本氏烟中诱导了土霉素、Cuelure、尿囊素、己烯雌酚和 1,2-苯并异噻唑-3(2H)-酮等生物活性化合物。在这里,我们还证明了由 ptHR375 和 ptHR941 转化和非转化本氏烟杂交产生的 F 杂种表现出显著高水平的 PR 基因表达和病原体抗性。

结论

异源植物基因可以在另一种植物物种中激活抗病性,并且通过生成 F 杂种,可以获得新的与自身无关的植物免疫力。还得出结论,ptHR375 和 ptHR941 在 SA 和 JA/ET 防御途径中发挥作用,以激活对入侵病原体的抗性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c30c/6296014/cb8d5dad4120/12870_2018_1598_Fig1_HTML.jpg

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