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Diversity and movement of indoor Alternaria alternata across the mainland USA

机译:美国大陆上室内链格孢的多样性和运动

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Alternaria spp. from sect. Alternaria are frequently associated with hypersensitivity pneumonitis, asthma and allergic fungal rhinitis and sinusitis. Since Alternaria is omnipresent in the outdoor environment, it is thought that the indoor spore concentration is mainly influenced by the outdoor spore concentration. However, few studies have investigated indoor Alternaria isolates, or attempted a phylogeographic or population genetic approach to investigate their movement. Therefore, the aim of the current study was to investigate the molecular diversity of indoor Alternaria isolates in the USA, and to test for recombination, using these approaches. Alternaria isolates collected throughout the USA were identified using ITS, gapdh and endoPG gene sequencing. This was followed by genotyping and population genetic inference of isolates belonging to Alternaria sect. Alternaria together with 37 reference isolates, using five microsatellite markers. Phylogenetic analyses revealed that species of Alternaria sect. Alternaria represented 98% (153 isolates) of the indoor isolates collected throughout the USA, of which 137 isolates could be assigned to A. alternata, 15 to the A. arborescens species complex and a single isolate to A. burnsii. The remaining 2% (3 isolates) represented sect. Infectoriae (single isolate) and sect. Pseudoulocladium (2 isolates). Population assignment analyses of the 137 A. alternata isolates suggested that subpopulations did not exist within the sample. The A. alternata isolates were thus divided into four artificial subpopulations to represent four quadrants of the USA. Forty-four isolates representing the south-western quadrant displayed the highest level of uniqueness based on private alleles, while the highest level of gene flow was detected between the south-eastern (32 isolates) and south-western quadrants. Genotypic diversity was high for all quadrants, and a test for linkage disequilibrium suggested that A. alternata has a cryptic sexual cycle. These statistics could be correlated with environmental factors, suggesting that indoor A. alternata isolates, although extremely diverse, have a continental distribution and high levels of gene flow over the continent. (C) 2015 The Authors. Published by Elsevier Inc.
机译:链格孢属来自宗派。交链孢菌常与过敏性肺炎,哮喘和过敏性真菌性鼻炎和鼻窦炎有关。由于链格孢菌在室外环境中无处不在,因此认为室内孢子浓度主要受室外孢子浓度影响。但是,很少有研究调查室内链格孢菌的分离物,或尝试采用系统地理学或种群遗传学方法研究其运动。因此,当前研究的目的是研究美国室内室内链格孢菌的分子多样性,并使用这些方法测试重组。使用ITS,gapdh和endoPG基因测序鉴定了在美国各地收集到的交链孢菌。其次是属于链格孢属的分离株的基因分型和群体遗传推断。使用五个微卫星标记,将链格孢菌与37个参考菌株分离。系统发育分析表明该种为链格孢属。在整个美国收集的室内分离株中,链格孢属占98%(153个分离株),其中137个分离株可归入链霉曲霉,15个归为乔木拟南芥物种群,单个分离株归为伯氏拟杆菌。其余2%(3个分离株)代表该宗派。感染科(单个分离株)和菌种。假单胞菌(2个分离株)。 137株交替链霉菌的种群分配分析表明,样品中不存在亚群。因此,交替链霉菌分离物被分为四个人工亚群,代表了美国的四个象限。代表西南象限的44个分离株显示出基于私人等位基因的最高水平的唯一性,而在东南(32个分离株)和西南象限之间检测到最高水平的基因流。所有象限的基因型多样性都很高,连锁不平衡的测试表明,链格孢菌具有隐性性周期。这些统计数据可能与环境因素相关,这表明室内的链球菌分离株尽管极为多样,但在整个大陆上却具有大陆分布和高水平的基因流动。 (C)2015作者。由Elsevier Inc.发布

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