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用于评估芋头对芋疫霉抗性的离体叶片生物测定法

Detached-Leaf Bioassay for Evaluating Taro Resistance to Phytophthora colocasiae.

作者信息

Brooks F E

机构信息

Community and Natural Resources Division, American Samoa Community College, Pago Pago, AS 96799.

出版信息

Plant Dis. 2008 Jan;92(1):126-131. doi: 10.1094/PDIS-92-1-0126.

Abstract

Taro leaf blight disease, caused by Phytophthora colocasiae, is a major limiting factor in taro production worldwide. P. colocasiae is an aerial pathogen similar to P. infestans, causal agent of potato late blight disease, but occurs in warmer climates. In the year-round subsistence cropping systems of the Pacific Islands, resistant cultivars are essential. Breeding lines from Southeast Asia and Oceania were tested in American Samoa for resistance to taro leaf blight using a detached-leaf bioassay and field trials. Mean lesion diameters from bioassays were highly correlated with field estimates of the number of healthy leaves per plant and yield (corm weight). However, the bioassay did not adequately assess infection efficiency. Additional experiments revealed that attached leaves had smaller lesion diameters than detached leaves incubated in closed containers, but both were very highly correlated. Taro resistance increased with plant age and the second-oldest leaf was more resistant than the third-oldest leaf. The bioassay was a fast, space-saving, effective method of screening taro lines for post-penetration resistance to P. colocasiae. It also provided an easily standardized method of evaluating host-pathogen interactions under controlled conditions.

摘要

由芋疫霉引起的芋叶疫病是全球芋头生产的主要限制因素。芋疫霉是一种气传病原菌,与马铃薯晚疫病的病原菌致病疫霉相似,但发生在温暖的气候条件下。在太平洋岛屿的全年自给作物种植系统中,抗性品种至关重要。利用离体叶片生物测定法和田间试验,对来自东南亚和大洋洲的育种系在美国萨摩亚进行了抗芋叶疫病测试。生物测定的平均病斑直径与田间对单株健康叶片数量和产量(球茎重量)的估计高度相关。然而,生物测定不能充分评估感染效率。额外的实验表明,附着叶片的病斑直径比在密闭容器中培养的离体叶片小,但两者相关性非常高。芋头的抗性随植株年龄增加,第二老的叶片比第三老的叶片更具抗性。生物测定是一种快速、节省空间、有效的筛选芋头品系对芋疫霉穿透后抗性的方法。它还提供了一种在可控条件下评估寄主-病原菌相互作用的易于标准化的方法。

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