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Ecology, distribution, toxigenicity and diversity of aflatoxin-producing fungal communities in maize fields of Mexico and interactions of these fungi with native maize landraces.

机译:墨西哥玉米田中产黄曲霉毒素的真菌群落的生态,分布,产毒性和多样性,以及这些真菌与玉米本地种的相互作用。

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摘要

Aflatoxins are carcinogenic mycotoxins most frequently associated with the filamentous fungus, Aspergillus flavus. These potent toxins pose serious health threats and their concentrations in foods are widely regulated. Maize, a critical staple of billions, is frequently contaminated with aflatoxins. Development of commercial maize hybrids with superior resistance to aflatoxin contamination has been sought for over 30 years without success. Analyses of native maize land races (MLRs) from Mexico revealed several accessions with significant resistance to both aflatoxin contamination and fungal reproduction. Physical barriers are important components of MLRs resistance. Traditional use of MLRs may reduce human exposure to aflatoxins. MLRs may contribute resistant genes of significant value in breeding for aflatoxin resistance.;In Mexico, maize is produced from <10 to over 2,000 masl. Elevation had only minor influence on community compositions of aflatoxin-producing fungi associated with maize over three years in Sonora, Mexico. Most variation in community structure occurred between years. Dominant vegetative compatibility groups (VCGs) differed among years but were detected in similar frequencies across four agroecological zones. Multiple locations and multiple years must be sampled to obtain realistic assessments of the most successful VCGs.;Elevated frequencies of VCG YV150 throughout Sonora during 2006 led to investigate genetic diversity within this VCG using microsatellite loci. The 2006 increases were attributed to rapid increase of a single clone. Examination of YV150 isolates collected over 20 years in the US and Mexico revealed several haplotypes and two genetically distinct populations, which were composed of isolates containing only a population specific mating-type idiomorph. Microsatellite loci in each population were in gametic equilibrium. Gene flow between isolates with different idiomorphs was not detected.;VCG YV36, to which the biocontrol agent AF36 belongs, was found to be endemic to Mexico. Microsatellite loci revealed diversity within YV36 from Mexico, but all isolates harbored the single nucleotide polymorphism in the aflatoxin polyketide synthase gene, pksA, that confers atoxigenicity to AF36. Three YV36 isolates also had deletions in pksA suggesting continued degradation. Presence of endemic YV36 isolates in Mexico may facilitate rapid regulatory approval of AF36 for use in prevention of aflatoxin contamination of maize in Mexico.
机译:黄曲霉毒素是致癌性真菌毒素,最常与丝状真菌黄曲霉(Aspergillus flavus)相关。这些有力的毒素对健康构成严重威胁,其在食品中的浓度受到广泛监管。数十亿美元的重要主食玉米经常被黄曲霉毒素污染。已经寻求开发对黄曲霉毒素污染具有优异抗性的商业玉米杂交体,但没有成功,已有30多年的历史。来自墨西哥的本地玉米陆生种(MLR)的分析显示,一些种对黄曲霉毒素的污染和真菌的繁殖均具有显着的抵抗力。物理屏障是MLR抗性的重要组成部分。传统使用MLR可能会减少人类接触黄曲霉毒素的机会。 MLR可能在抗黄曲霉毒素抗性育种中贡献具有重要价值的抗性基因。在墨西哥,玉米的产量从<10到超过2,000 masl。在墨西哥的索诺拉地区,海拔升高对与玉米相关的黄曲霉毒素生产真菌的社区组成影响很小。社区结构的大多数变化发生在数年之间。主要的植物相容性组(VCG)在年份之间有所不同,但在四个农业生态区中以相似的频率被检测到。必须采样多个位置和多个年份才能获得最成功的VCG的真实评估。2006年整个索诺拉(Sonora)VCG YV150的频率升高,导致使用微卫星基因座调查了该VCG内的遗传多样性。 2006年的增长归因于单个克隆的快速增长。检查在美国和墨西哥20多年来收集的YV150分离株,发现了几种单倍型和两个遗传上不同的种群,它们由仅包含特定于群体的交配型独特型的分离株组成。每个人群中的微卫星基因座处于配子平衡状态。未检测到具有不同独特型的分离株之间的基因流。生物控制剂AF36所属的VCG YV36被发现是墨西哥特有的。微卫星基因座揭示了来自墨西哥的YV36内的多样性,但所有分离株在黄曲霉毒素聚酮化合物合酶基因pksA中都具有单核苷酸多态性,赋予AF36一定的毒原性。三个YV36分离株在pksA中也有缺失,表明其继续降解。墨西哥地方性YV36分离株的存在可能有助于AF36迅速获得监管部门的批准,可用于预防墨西哥玉米中的黄曲霉毒素污染。

著录项

  • 作者

    Ortega-Beltran, Alejandro.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Agriculture Plant Pathology.;Biology Microbiology.;Agriculture Agronomy.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 199 p.
  • 总页数 199
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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