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Fusarium solani f. sp. cucurbitae race 2: An opportunistic pathogen of plants and people.

机译:枯萎镰刀菌f。 sp。葫芦科植物2:植物和人的机会病原体。

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摘要

In two recent studies, clinical and hospital environmental isolates in the Fusarium solani species complex (FSSC) were sequenced; one of the most common lineages was FSSC Group 1, a phylogenetic species conspecific with F. solani f. sp. cucurbitae race 2 (Fsc2), a plant pathogen that causes fruit rot of cucurbits. The first objective of this work was to study Fsc2 and the related but distinct species Fsc race 1 (Fsc1) as plant pathogens; because clean seed is critical for disease control, experiments were conducted to determine if visual inspection of fruits could predict whether seeds would be infected. Since Fsc1 and Fsc2 are not easily distinguished morphologically, taxon-specific primers were designed from translation elongation factor 1-alpha sequences. Isolates from pumpkin fruits and seeds were identified as Fsc1 based on PCR; Fsc2 was not isolated. No infected seeds were recovered from lesion-free fruit, so visual inspection and exclusion of symptomatic fruit is sufficient to obtain uninfected seed.;The second objective was to determine if clinical, hospital environmental, and sewage isolates conspecific with Fsc2 are plant pathogenic and members of the same biological species as Fsc2 from cucurbits, and to determine if these isolates can tolerate 37°C. Isolates from the different sources did not differ in virulence on zucchini fruits and all were sexually compatible with plant isolates. All isolates germinated, grew, and sporulated equally well at 37°C. FSSC Group 1 and Fsc2 are apparently synonyms.;Environmental sources of FSSC Group 1(=Fsc2) are important to the epidemiology of both human and plant diseases caused by this organism. The third objective was to further identify and quantify FSSC Group 1 in the environment. FSSC Group 1 was detected in five and six of 14 community shower drains by culturing and PCR, respectively. F. solani was detected from all drains, and, based on quantification with real-time PCR, was a major component of the total Fusarium. FSSC Group 1 was detected from sewage but did not survive the wastewater treatment process. FSSC Group 1 was rarely isolated from post-harvest cucurbit fruits and was not found in cucurbit fields in California.
机译:在两项最新研究中,对茄枯萎菌种复合物(FSSC)中的临床和医院环境分离株进行了测序。最常见的血统之一是FSSC第1组,这是与F. solani f。 sp。葫芦科植物2(Fsc2),一种植物病原体,引起葫芦科的果实腐烂。这项工作的首要目标是研究Fsc2和相关但独特的Fsc第1种物种(Fsc1)作为植物病原体。由于干净的种子对于控制疾病至关重要,因此进行了实验以确定目视检查水果是否可以预测种子是否会被感染。由于Fsc1和Fsc2在形态上不易区分,因此根据翻译延伸因子1-alpha序列设计了分类群特异性引物。根据PCR,将南瓜果实和种子的分离物鉴定为Fsc1。未隔离Fsc2。从无病害的果实中没有发现受感染的种子,因此目视检查和排除有症状的果实足以获得未感染的种子。第二个目的是确定与Fsc2特异的临床,医院环境和污水分离株是否是植物病原体和成员与葫芦科植物Fsc2具有相同的生物种类,并确定这些分离物是否可以耐受37°C。来自不同来源的分离株对西葫芦果实的毒力没有差异,并且都与植物分离株具有性相容性。在37°C时,所有分离株均发芽,生长并形成孢子。 FSSC第1组和Fsc2显然是同义词。; FSSC第1组的环境来源(= Fsc2)对于由该生物引起的人类和植物疾病的流行病学都很重要。第三个目标是进一步识别和量化环境中的FSSC第1组。通过培养和PCR分别在14个社区淋浴排水管中的5个和6个中检测到FSSC第1组。从所有排水沟中检测到茄形镰刀菌,基于实时PCR的定量分析,其为镰刀菌总含量的主要成分。 FSSC组1是从污水中检出的,但在废水处理过程中无法幸免。 FSSC第1组很少从收获后的葫芦果实中分离出来,并且在加利福尼亚的葫芦田中没有发现。

著录项

  • 作者

    Mehl, Hillary Laureen.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Biology Microbiology.;Health Sciences Public Health.;Agriculture Plant Pathology.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 100 p.
  • 总页数 100
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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