首页> 外文期刊>Indian Phytopathology >Characterization of leaf, neck and finger blast pathogen populations from Eleusine coracana and elucidating their interrelationships in Eleusine-Magnaporthe pathosystem.
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Characterization of leaf, neck and finger blast pathogen populations from Eleusine coracana and elucidating their interrelationships in Eleusine-Magnaporthe pathosystem.

机译:表征叶色锦蛇(Eleusine coracana)的叶,颈和手指胚芽病原菌种群,并阐明它们在叶色亮氨酸-Magnaporthe病理系统中的相互关系。

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摘要

Magnaporthe grisea causes blast disease in rice, finger millet and more than 50 members of gramineae family. Blast is characteristically a leaf disease, but can also infect panicle and neck. Organ specificity of leaf, neck and panicle-derived M. grisea isolates was assessed by inoculation of leaf-derived isolates on acetone based panicle and neck tissue extracts; panicle-derived isolates on leaf and neck tissue extracts and neck-derived isolates on leaf and panicle tissue extracts in OMA medium, and through pathogenicity assays. No organ specificity was found between a particular isolate and plant part inoculated. Leaf-derived isolates were able to grow on the media fortified separately with all the leaf, panicle and neck extracts. Similar behaviour was shown by panicle and neck-derived isolates. Cross inoculation experiments clearly showed that leaf, panicle and neck-derived isolates had ability to cross infect all the three plant parts i.e. leaf-derived isolate could infect leaves, panicle and necks; similarly, panicle and neck-derived isolates could also infect leaf, panicle and neck. The study offers the first experimental proof of cross infectivity of finger millet derived M. grisea isolates at the three plant growth stages.
机译:稻瘟病菌在稻米,小米和禾本科科的50多个成员中引起稻瘟病。疾风通常是一种叶病,但也可以感染圆锥花序和脖子。通过在丙酮基圆锥花序和颈部组织提取物上接种叶片衍生的分离株,评估了叶片,颈部和圆锥形分离的稻瘟病菌的器官特异性。在OMA培养基中,通过病原性测定,从叶片和颈部组织提取物中提取出的圆锥花序分离株,以及在叶片和圆锥体组织提取物中提取的颈部分株。在特定的分离株和接种的植物部分之间未发现器官特异性。叶分离株能够在所有叶,穗和颈部提取物分别强化的培养基上生长。穗和颈部来源的分离株显示出相似的行为。交叉接种实验清楚地表明,叶,穗和颈部的分离株具有交叉感染所有三个植物部分的能力,即,叶分离株可以感染叶片,穗和颈部。同样,圆锥花序和颈部的分离株也可以感染叶片,圆锥花序和颈部。该研究提供了在三个植物生长阶段从小米衍生的稻瘟病菌分离株的交叉感染性的第一个实验证据。

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