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Enhanced resistance to Phoma tracheiphila and Botrytis cinerea in transgenic lemon plants expressing a Trichoderma harzianum chitinase gene.

机译:表达哈茨木霉几丁质几丁质酶基因的转基因柠檬植物对气管和灰霉菌的抗性增强。

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摘要

Antifungal genes from micro-organisms were inserted into the genome of a number of plant species, representing a promising strategy for conferring genetic disease resistance against a broad range of plant pathogenic fungi. In the present study, the chit42 gene from Trichoderma harzianum (codifying the antifungal protein endochitinase) was introduced into the 'Femminello siracusano' lemon by Agrobacterium tumefaciens, in order to regenerate transgenic plants resistant to fungal disease. Three polymerase chain reaction (PCR)-positive clones were obtained. Southern blot confirmed the integration of the transgene in the lemon genome and revealed that one or two copies had been inserted. Reverse transcriptase-PCR, Northern blot and Western analysis were performed and the results confirmed the expression of the inserted gene. The transgenic clones were tested in vitro and in vivo for disease resistance. Conidia germination and fungal growth of Phoma tracheiphila were strongly inhibited in vitro by the transgenic foliar proteins, while no effects were observed with the controls. Disease resistance assays were performed in vivo with Botrytis cinerea, the causal agent of grey mould in fruit. Transgenic lemon plants, inoculated with lemon petals infected by a single-conidial isolate of B. cinerea, showed significantly less lesion development than the controls. On the whole, the results indicate that the transformation with the antifungal endochitinase gene may represent a strategy for disease control in citrus crops..
机译:来自微生物的抗真菌基因被插入到许多植物物种的基因组中,代表了赋予针对广泛的植物病原性真菌的遗传疾病抗性的有前途的策略。在本研究中,根癌农杆菌将来自哈茨木霉的chit42基因(编码抗真菌蛋白内切几丁质酶)引入到'Femminello siracusano'柠檬中,以再生对真菌病害具有抗性的转基因植物。获得了三个聚合酶链反应(PCR)阳性克隆。 Southern印迹证实了转基因在柠檬基因组中的整合,并表明已经插入了一两个拷贝。进行逆转录PCR-PCR,Northern印迹和Western分析,结果证实了插入基因的表达。在体外和体内测试转基因克隆的抗病性。转基因叶蛋白在体外强烈地抑制了气孔菌分生孢子的萌发和真菌的生长,而对照组则没有观察到任何作用。在体内用灰葡萄孢(Botrytis cinerea)(水果中灰霉病的病因)进行了抗病性测定。用单孢子分离的灰葡萄孢菌感染的柠檬花瓣接种的转基因柠檬植物显示出与对照相比明显更少的病斑发展。总体而言,结果表明,用抗真菌内切几丁质酶基因进行的转化可能代表了柑橘类作物的疾病控制策略。

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