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南瓜黄单胞菌引起留尼汪岛南瓜细菌性叶斑病的首次报道。

First Report of Xanthomonas cucurbitae Causing Bacterial Leaf Spot of Pumpkin on Réunion Island.

作者信息

Pruvost O, Robène-Soustrade I, Ah-You N, Jouen E, Boyer C, Waller F, Hostachy B

机构信息

CIRAD-Université de la Réunion, UMR PVBMT, Saint Pierre, La Réunion, F-97410 France.

LNPV, Pôle de Protection des Plantes, Saint Pierre, La Réunion, F-97410 France.

出版信息

Plant Dis. 2008 Nov;92(11):1591. doi: 10.1094/PDIS-92-11-1591A.

Abstract

Bacterial leaf spot of cucurbits caused by Xanthomonas cucurbitae (3) can be of economic importance in tropical and subtropical production areas, most often within the Cucumis, Cucurbita, and Citrullus genera. The bacterium induces angular, water-soaked leaf spots, which sometimes turn necrotic with a chlorotic halo. Scab-like lesions on fruit may also be observed (1). During 2000, water-soaked, angular leaf lesions were collected from pumpkin (Cucurbita pepo) in a production field located at Petit Serré, Réunion Island. Yellow-pigmented Xanthomonas-like bacterial colonies were isolated on yeast peptone glucose agar. Amplified fragment length polymorphism analysis was performed on four pumpkin isolates together with reference strains of X. cucurbitae (LMG 690 [type strain] and LMG 8663) and the type strain of all other valid Xanthomonas species using SacI/MspI and four primer pairs (unlabeled MspI + 1 [A, C, T, or G] primers and 5'-labeled - SacI + C primer for the selective amplification step) (N. Ah-You, L. Gagnevin, P. A. D. Grimont, S. Brisse, X. Nesme, F. Chiroleu, L. Bui Thi Ngoc, E. Jouen, P. Lefeuvre, C. Verniére, and O. Pruvost, personal communication). The four isolates from pumpkin showed identical fingerprints and were most closely related to X. cucurbitae, with evolutionary genome divergences ≤0.05 (N. Ah-You et al., personal communication). One strain from diseased pumpkin (JW210-1) was further analyzed by multilocus sequence analysis using three housekeeping gene portions (atpD, dnaK, and gyrB) as described previously (N. Ah-You et al., personal communication). Although not fully identical, this strain displayed a similarity of >99% to the two reference strains of X. cucurbitae. Pumpkin and bottle-gourd (C. maxima), squash cv. aurore (C. pepo), cucumber cv. L-04 (Cucumis sativus), melon cv. cezanne (Cucumis melo), and watermelon cv. fou-nan (Citrullus lanatus) leaves were infiltrated (10 inoculation sites per leaf; three replicates) with bacterial suspensions prepared from strains JW210-1, LMG 690, and LMG 8663 and containing approximately 1 × 10 CFU ml. Negative controls consisted of leaves infiltrated with sterile tris buffer. Typical, water-soaked lesions that developed into necrotic spots were observed 6 to 8 days after inoculation for all inoculated plant species-strain combinations, but not for negative controls. One month after inoculation, mean Xanthomonas population sizes recovered from leaf lesions on KC semiselective medium (2) ranged from 1 × 10 to 1 × 10 CFU per lesion, typical of a compatible interaction. The reported outbreak was circumscribed to a single field and did not affect the local industry. No major outbreak of bacterial leaf spot of cucurbits has been reported on Réunion Island since 2000 on any host species of X. cucurbitae. References: (1) J. F. Bradbury. Page 309 in: Guide to Plant Pathogenic Bacteria. CAB International, Slough, UK, 1986. (2) O. Pruvost et al. J. Appl. Microbiol. 99:803, 2005. (3) L. Vauterin et al. Int. J. Syst. Bacteriol. 45:472, 1995.

摘要

由西瓜黄单胞菌(Xanthomonas cucurbitae)(3)引起的葫芦科细菌性叶斑病在热带和亚热带产区可能具有经济重要性,最常发生在黄瓜属(Cucumis)、南瓜属(Cucurbita)和西瓜属(Citrullus)植物中。该细菌会诱发角状、水渍状叶斑,这些叶斑有时会变成带有褪绿晕圈的坏死斑。果实上也可能出现疮痂状病斑(1)。2000年期间,在留尼汪岛小塞雷的一个生产田的南瓜(Cucurbita pepo)上采集到了水渍状、角状叶斑。在酵母蛋白胨葡萄糖琼脂上分离出了黄色色素沉着的类黄单胞菌菌落。使用SacI/MspI和四对引物(未标记的MspI + 1 [A、C、T或G]引物以及用于选择性扩增步骤的5'-标记的 - SacI + C引物),对四个南瓜分离株以及西瓜黄单胞菌的参考菌株(LMG 690 [模式菌株]和LMG 8663)和所有其他有效黄单胞菌物种的模式菌株进行了扩增片段长度多态性分析(N. Ah-You、L. Gagnevin、P. A. D. Grimont、S. Brisse、X. Nesme、F. Chiroleu、L. Bui Thi Ngoc、E. Jouen、P. Lefeuvre、C. Verniére和O. Pruvost,个人交流)。来自南瓜的四个分离株显示出相同的指纹图谱,并且与西瓜黄单胞菌关系最为密切,进化基因组差异≤0.05(N. Ah-You等人,个人交流)。使用如前所述的三个管家基因部分(atpD、dnaK和gyrB),通过多位点序列分析对一株患病南瓜菌株(JW210-1)进行了进一步分析(N. Ah-You等人,个人交流)。尽管不完全相同,但该菌株与西瓜黄单胞菌的两个参考菌株显示出>99%的相似性。用从菌株JW210-1、LMG 690和LMG 8663制备的细菌悬液(约含1×10 CFU/ml)对南瓜、瓠瓜(C. maxima)、南瓜品种奥罗尔(C. pepo)、黄瓜品种L-04(Cucumis sativus)、甜瓜品种塞尚(Cucumis melo)和西瓜品种福南(Citrullus lanatus)的叶片进行了浸润接种(每片叶10个接种位点;三个重复)。阴性对照由用无菌Tris缓冲液浸润的叶片组成。对于所有接种的植物物种 - 菌株组合,接种后6至8天观察到典型的、发展为坏死斑的水渍状病斑,但阴性对照未出现。接种后一个月,在KC半选择性培养基(2)上从叶斑中回收的平均黄单胞菌种群大小范围为每个病斑1×10至1×10 CFU,这是亲和性互作的典型表现。报道的疫情局限于一个单一田块,未影响当地产业。自2000年以来,留尼汪岛未报告过任何西瓜黄单胞菌寄主物种上葫芦科细菌性叶斑病的重大疫情。参考文献:(1)J. F. Bradbury。载于《植物病原细菌指南》第309页。CAB国际,英国斯劳,1986年。(2)O. Pruvost等人。《应用微生物学杂志》99:803,2005年。(3)L. Vauterin等人。《国际系统细菌学杂志》45:472,1995年。

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