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一种非致病性西瓜嗜酸菌菌株作为葫芦科细菌性果斑病生物防治种子处理剂的效果

Efficacy of a Nonpathogenic Acidovorax citrulli Strain as a Biocontrol Seed Treatment for Bacterial Fruit Blotch of Cucurbits.

作者信息

Johnson K L, Minsavage G V, Le T, Jones J B, Walcott R R

机构信息

Department of Plant Pathology, University of Georgia, Athens 30602.

Department of Plant Pathology, University of Florida, Gainesville 32611.

出版信息

Plant Dis. 2011 Jun;95(6):697-704. doi: 10.1094/PDIS-09-10-0660.

Abstract

Bacterial fruit blotch (BFB), caused by the seedborne, gram-negative bacterium Acidovorax citrulli, is a serious threat to cucurbit seed and fruit production worldwide. Because of the lack of effective management strategies, we investigated the efficacy of a nonpathogenic A. citrulli strain as a biological control seed treatment for BFB. For this study, we generated a type III secretion system mutant of A. citrulli, AAC00-1ΔhrcC, that was nonpathogenic on watermelon but retained its ability to colonize germinating watermelon seed. With watermelon seed naturally infested with A. citrulli, AAC00-1ΔhrcC reduced BFB seedling transmission by 81.8% relative to control seed. In comparison, another A. citrulli antagonist, A. avenae strain AAA 99-2, reduced BFB seedling transmission by 74.6% for seed samples from the same lot. Additionally, when female watermelon blossoms were protected with AAC00-ΔhrcC and subsequently challenged with AAC00-1, the resulting seedlots displayed 8% BFB seedling transmission. This was not significantly different than seed from blossoms protected with AAA 99-2 (4%) but significantly less than those from blossoms protected with 0.1 M phosphate-buffered saline (36%). These results suggest that nonpathogenic A. citrulli has potential as a biological control seed treatment component in a comprehensive BFB management program.

摘要

细菌性果斑病(BFB)由种传革兰氏阴性菌西瓜嗜酸菌引起,对全球葫芦科种子和果实生产构成严重威胁。由于缺乏有效的管理策略,我们研究了一种非致病性西瓜嗜酸菌菌株作为细菌性果斑病生物防治种子处理剂的效果。在本研究中,我们构建了西瓜嗜酸菌的III型分泌系统突变体AAC00-1ΔhrcC,该突变体对西瓜无致病性,但保留了在发芽西瓜种子上定殖的能力。对于自然感染西瓜嗜酸菌的西瓜种子,与对照种子相比,AAC00-1ΔhrcC使细菌性果斑病幼苗传播率降低了81.8%。相比之下,另一种西瓜嗜酸菌拮抗剂燕麦嗜酸菌菌株AAA 99-2,使来自同一批次种子样本的细菌性果斑病幼苗传播率降低了74.6%。此外,当用AAC00-ΔhrcC处理雌性西瓜花,随后用AAC00-1进行接种时,所得到的种子批次细菌性果斑病幼苗传播率为8%。这与用AAA 99-2处理的花所结种子(4%)无显著差异,但显著低于用0.1 M磷酸盐缓冲盐水处理的花所结种子(36%)。这些结果表明,非致病性西瓜嗜酸菌在细菌性果斑病综合管理方案中作为生物防治种子处理成分具有潜力。

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