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野油菜黄单胞菌海棠致病变种引起的丽格海棠细菌性叶斑病在中国的首次报道

First Report of Bacterial Leaf Spot of Rieger Begonia Caused by Xanthomonas campestris pv. begoniae in China.

作者信息

Zhou L H, Ji G H

机构信息

College of Plant Protection, Yunnan Agricultural University, China.

出版信息

Plant Dis. 2013 Feb;97(2):282. doi: 10.1094/PDIS-04-12-0391-PDN.

Abstract

Rieger begonia are collectively referred to as a begonia hybrid group. Its global annual sales is 90,000,000 cutting seedlings. It is one of the top ten potted plants. In the summer of 2011, serious outbreaks of a suspected bacterial leaf spot disease were observed on five Rieger begonia cultivars (Dark Britt, Rebecca, Blitz, Barkos, and Borias). These plants were grown for potted cutting seedling production in commercial nurseries located in Shilin county of Yunnan Province, China. The initial symptoms of the disease were small circular or polygonal water-soaked needle spots on leaf margin that later these spots expanded and joined together, forming bigger inverted V-shaped necrotic specks (4). Yellow-pigmented bacterial colonies were consistently isolated from diseased leaves and stems on NA agar medium and incubated at 28°C. Twelve bacterial strains were isolated and used for further studies. All the isolates were Gram-negative, rod-shaped, motile, aerobic, and non-sporing. All of the bacterial strains isolated in the present study were identified as Xanthomonas campestris pv. begoniae (Xcb) based on biochemical and physiological identification (Biolog carbon source utilization analysis) and 16S rDNA sequences analysis and further pathogenicity determination (1). The results show that the sequence homology rate of HT1-1 (GenBank Accession No. JN648097) and X. euvesicatoria (syn. X. campestris pv vesicatoria) (GeneBank Accession No. AM039952) is 99%. This strongly suggests that the Rieger begonia isolates belong to X. campestris pv. begoniae (2). For Koch's postulates, 10 surface-disinfected young leaves from five susceptible Rieger begonia plants (cv. Dark Britt) were inoculated by spraying a phosphate-buffered saline suspension of each bacterial isolate (3.0 × 10 CFU/ml) onto the leaves (3). Controls were inoculated similarly with phosphate-buffered saline solution. All inoculated plants were covered with polyethylene bags for 24 h at 25°C and then put in the greenhouse. After inoculation, water-soaked and necrotic symptoms were observed on inoculated Rieger begonia leaves within 7 to 9 days. No symptoms were observed on controls. Bacteria were reisolated and confirmed to be identical to the original isolates by the methods described above. To our knowledge, this is the first report of Xcb causing leaf spot on Rieger begonia plants in China. The infection process of Xcb on Rieger begonia plants and rapid detection of this pathogen are underway. References: (1) M. R. Gillings et al. PNAS 12:102, 2005. (2) C. L. Oliver et al. Plant Dis. 4:96, 2012. (3) H. Ornek et al. New Dis. Rep. 13:40, 2006. (4) O. Pruvost et al. Plant Dis. 4:96, 2012.

摘要

丽格海棠被统称为海棠杂交品种群。其全球年销售量为9000万株扦插苗。它是十大盆栽植物之一。2011年夏季,在中国云南省石林县的商业苗圃中,观察到5个丽格海棠品种(Dark Britt、Rebecca、Blitz、Barkos和Borias)严重爆发疑似细菌性叶斑病。这些植株是为盆栽扦插苗生产而种植在商业苗圃中的。该病的初始症状是叶缘出现小的圆形或多边形水渍状针尖大小的斑点,随后这些斑点扩大并融合在一起,形成更大的倒V形坏死斑(4)。在NA琼脂培养基上,从患病叶片和茎中持续分离出黄色色素沉着的细菌菌落,并在28°C下培养。分离出12株细菌菌株用于进一步研究。所有分离株均为革兰氏阴性、杆状、具运动性、需氧且不产芽孢。基于生化和生理鉴定(Biolog碳源利用分析)、16S rDNA序列分析以及进一步的致病性测定(1),本研究中分离出的所有细菌菌株均被鉴定为野油菜黄单胞菌海棠致病变种(Xcb)。结果表明,HT1-1(GenBank登录号JN648097)与丁香假单胞菌(同义词:野油菜黄单胞菌番茄致病变种)(GeneBank登录号AM039952)的序列同源率为99%。这有力地表明丽格海棠分离株属于野油菜黄单胞菌海棠致病变种(2)。为了进行柯赫氏法则验证,从5株易感丽格海棠植株(品种Dark Britt)上选取10片表面消毒的幼叶,通过将每种细菌分离株的磷酸盐缓冲盐水悬浮液(3.0×10 CFU/ml)喷洒在叶片上进行接种(3)。对照组用磷酸盐缓冲盐水溶液进行类似接种。所有接种的植株在25°C下用聚乙烯袋覆盖24小时,然后放入温室。接种后,在7至9天内,接种的丽格海棠叶片上观察到水渍状和坏死症状。对照组未观察到症状。通过上述方法重新分离细菌,并确认其与原始分离株相同。据我们所知,这是Xcb在中国引起丽格海棠植株叶斑病的首次报道。Xcb在丽格海棠植株上的侵染过程以及该病原菌的快速检测正在进行中。参考文献:(1)M. R. Gillings等人,《美国国家科学院院刊》12:102,2005年。(2)C. L. Oliver等人,《植物病害》4:96,2012年。(3)H. Ornek等人,《新病害报道》13:40,2006年。(4)O. Pruvost等人,《植物病害》4:96,2012年。

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