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特立尼达南瓜上由胶孢炭疽菌引起的炭疽病首次报道

First Report of Anthracnose Caused by Colletotrichum gloeosporioides in Pumpkin in Trinidad.

作者信息

Rampersad S N

机构信息

The University of the West Indies, Department of Life Sciences, Biotechnology Laboratory, St. Augustine, Trinidad and Tobago, West Indies.

出版信息

Plant Dis. 2010 Aug;94(8):1062. doi: 10.1094/PDIS-94-8-1062A.

Abstract

In Trinidad, pumpkin (Cucurbita pepo L. and C. moschata L.) is extensively grown for local and international export markets. In November 2008, symptoms of foliar chlorosis and necrosis were observed in 15 commercial pumpkin fields located in the main production areas of St. George East, Caroni, Victoria, and St. Patrick counties. Severely infected plants were unable to support fruit maturation, which resulted in yield loss. The pathogen was isolated from surface-sterilized tissues of symptomatic plants. Colonies on potato dextrose agar (PDA) were white to cream with gray spore masses in the center. Conidia were hyaline, cylindrical with rounded ends, aseptate, and measured 12.5 to 16.5 μm × 3.5 to 5.0 μm. PCR amplification was carried out with ITS4/5 universal primers (4) and species-specific primers, CgInt/ITS4 (1), using a positive control of Colletotrichum gloeosporioides (courtesy of D. Perez-Brito). Species-specific primers generated a single amplicon, ~450 bp long, which corresponded with the positive control. The ITS1 region (1) of pumpkin isolates (GenBank No. GU320190) was 100% identical to cognate sequences of C. gloeosporioides isolates (GenBank Nos. AY841136 and FJ624257). Phylogenetic analyses (MEGA 4 - Molecular Evolutionary Genetic Analysis Software version 4 for Windows) using the neighbor-joining (NJ) algorithm placed the pumpkin isolates in a well-supported cluster (>90% bootstrap value based on 1,000 replicates) with other C. gloeosporioides isolates. The tree was rooted with C. crassipes (GenBank No. AJ536230). The pathogen was similar to C. gloeosporioides (Penz.) Penz. & Sacc. (3). In pathogenicity tests, six plants (cv. Jamaican squash) for each of five isolates were spray inoculated to runoff with a conidial suspension (1.0 × 10 conidia/ml). Negative controls were sprayed with sterile distilled water. In repeated tests, plants were symptomatic of infection 7 days postinoculation. There were no symptoms on control plants. Koch's postulates were fulfilled with the reisolation of the pathogen from symptomatic leaf tissues. Anthracnose is a serious threat to cucurbit production; however, infection is not common in pumpkin and squash (2). To my knowledge, this is the first report of C. gloeosporioides causing widespread anthracnose infection in pumpkin in Trinidad. References: (1) A. E. Brown et al. Phytopathology 86:523, 1996. (2) G. Kelly. Acta Hortic. (ISHS) 731:479, 2007. (3) B. C. Sutton. Page 1 in: Colletotrichum: Biology, Pathology and Control. CAB International. Wallingford, UK, 1992. (4) T. J. White et al. Page 315 in: PCR Protocols: A Guide to Methods and Applications. Academic Press, San Diego, 1990.

摘要

在特立尼达,南瓜(西葫芦和南瓜)广泛种植,用于本地和国际出口市场。2008年11月,在圣乔治东部、卡罗尼、维多利亚和圣帕特里克等主要产区的15个商业南瓜田中观察到叶片黄化和坏死症状。严重感染的植株无法支撑果实成熟,导致产量损失。从有症状植株的表面消毒组织中分离出病原体。在马铃薯葡萄糖琼脂(PDA)上的菌落为白色至奶油色,中心有灰色孢子团。分生孢子透明,圆柱形,两端圆形,无隔膜,大小为12.5至16.5μm×3.5至5.0μm。使用ITS4/5通用引物(4)和种特异性引物CgInt/ITS4(1)进行PCR扩增,以胶孢炭疽菌作为阳性对照(由D. Perez-Brito提供)。种特异性引物产生了一个约450bp长的单一扩增子,与阳性对照一致。南瓜分离株(GenBank编号GU320190)的ITS1区域(1)与胶孢炭疽菌分离株(GenBank编号AY841136和FJ624257)的同源序列100%相同。使用邻接法(NJ)算法进行的系统发育分析(MEGA 4 - Windows版分子进化遗传分析软件版本4)将南瓜分离株与其他胶孢炭疽菌分离株置于一个支持良好的聚类中(基于1000次重复的自展值>90%)。该树以厚皮炭疽菌(GenBank编号AJ536230)为根。该病原体与胶孢炭疽菌(Penz.)Penz. & Sacc.相似(3)。在致病性试验中,将五个分离株中的每一个的六个植株(品种为牙买加南瓜)用分生孢子悬浮液(1.0×10分生孢子/ml)喷雾接种至径流状态。阴性对照用无菌蒸馏水喷雾。在重复试验中,接种后7天植株出现感染症状。对照植株无症状。从有症状的叶片组织中重新分离出病原体,从而证实了柯赫氏法则。炭疽病是葫芦科作物生产的严重威胁;然而,南瓜和西葫芦感染并不常见(2)。据我所知,这是胶孢炭疽菌在特立尼达导致南瓜广泛炭疽病感染的首次报道。参考文献:(1)A. E. Brown等人,《植物病理学》86:523,1996年。(2)G. Kelly,《园艺学报》(国际园艺学会)731:479,2007年。(3)B. C. Sutton,《炭疽菌:生物学、病理学与防治》第1页,CAB国际出版社,英国沃灵福德,1992年。(4)T. J. White等人,《PCR实验方案:方法与应用指南》第315页,学术出版社,圣地亚哥,1990年。

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