Sunisha C, Sowmya H D, Usharani T R, Umesha M, Gopalkrishna H R, Sriram S
Division of Biotechnology, ICAR-Indian Institute of Horticultural Research, Hessaraghatta, Bangalore, 560 089 India.
Department of Biotechnology and Biochemistry, Centre for Postgraduate Studies, Jain University, Bangalore, India.
3 Biotech. 2020 Aug;10(8):371. doi: 10.1007/s13205-020-02357-4. Epub 2020 Aug 3.
Anti-apoptotic gene Ced-9 enhanced resistance against f. sp. (Foc) in the susceptible banana cultivar Rasthali by arresting tissue necrosis. The embryogenic cell suspension of banana cultivar Rasthali was stably transformed with Ced-9 gene and transformed lines were regenerated independently. The putative transgenic lines were analyzed with PCR using gene primers and further subjected to Southern blot to estimate copy number. The root-challenge bioassay with Foc showed 17-51% Vascular Discoloration Index in independent transformants compared to untransformed banana cv Rasthali (98% VDI). Four transgenic events showed a higher level of resistance over a period of 6 months. Overcoming tissue necrosis is the most ideal method to avoid Fusarium multiplication and spread in banana. Oxidative stress-induced cell necrosis is prevented by the activation of antiapoptotic pathways by Ced-9 and is proving to be an effective method to control this dreaded disease. This is the first report from India on the generation of transgenic banana cultivar Rasthali expressing antiapoptotic Ced-9 gene for resistance to Fusarium wilt.
抗凋亡基因Ced-9通过抑制组织坏死,增强了易感香蕉品种Rasthali对尖孢镰刀菌古巴专化型(Foc)的抗性。用Ced-9基因对香蕉品种Rasthali的胚性细胞悬浮液进行稳定转化,并独立再生转化株系。使用基因引物通过PCR分析推定的转基因株系,并进一步进行Southern杂交以估计拷贝数。用Foc进行的根部挑战生物测定表明,与未转化的香蕉品种Rasthali(98%的维管束变色指数)相比,独立转化体的维管束变色指数为17%-51%。四个转基因事件在6个月的时间里表现出更高水平的抗性。克服组织坏死是避免镰刀菌在香蕉中繁殖和传播的最理想方法。Ced-9激活抗凋亡途径可防止氧化应激诱导的细胞坏死,这被证明是控制这种可怕疾病的有效方法。这是印度关于表达抗凋亡Ced-9基因的转基因香蕉品种Rasthali对枯萎病抗性的首次报道。