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首页> 外文期刊>Microbial Ecology: An International Journal >Differences in Culturable Microbial Communities in Bird Nestboxes According to Orientation and Influences on Offspring Quality in Great Tits (Parus major).
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Differences in Culturable Microbial Communities in Bird Nestboxes According to Orientation and Influences on Offspring Quality in Great Tits (Parus major).

机译:鸟类巢箱中可培养的微生物群落的差异,根据其取向及其对大山雀(大对虾)后代质量的影响。

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Although bird-microbial interactions have become a topic of increasing research, the influence of nest-site characteristics, such as cavity orientation, on nest microbial communities in free-living passerines has not, to our knowledge, been investigated. This is despite the possibility of microbial differences explaining non-random patterns in nest-site selection and offspring quality, such as those exhibited by great tits (Parus major). We swabbed great tit nestboxes that faced either south-southwest (180-269degrees) or north-northeast (0-89degrees). Overall, 28 bacterial species and 11 fungal species were isolated, but the culturable microbial community differed substantially between different orientations-indeed nestboxes could be classified to their orientation group with high accuracy using microbial data. Nestboxes facing south-southwest had a significantly higher fungal load (typically double) than those facing north-northeast due to a higher abundance of two species, Epicoccum purpurascens and Cladosporium cladosporioides. There was no relationship between total bacterial load and orientation, although the abundance of one species, Pseudomonas veronii, was significantly lower in south-southwest boxes. The abundance of the allergen E. purpurascens explained almost 20% of the variation in offspring quality, being significantly and inversely related to chick size (high loads associated with small, poor quality, chicks). Our results provide empirical evidence for a correlation between nestbox orientation and culturable microbial load and a further correlation between abundance of one species, E. purpurascens, and offspring quality. Thus, microbial load, which is itself influenced by nest cavity parameters, could be the proximate factor that influences nest-site choice through its effect on offspring quality (and thus, overall fecundity).
机译:尽管鸟类与微生物之间的相互作用已成为越来越多的研究课题,但据我们所知,尚未研究鸟巢特征(例如空腔的方向)对自由生活的雀形目鸟巢微生物群落的影响。尽管存在微生物差异可能解释巢位选择和后代质量的非随机模式,例如大山雀(大山雀)所表现出的那些。我们擦拭了面对西南(180-269度)或东北(0-89度)的山雀巢箱。总体上,分离出28个细菌物种和11个真菌物种,但是可培养的微生物群落在不同方向之间存在显着差异-实际上,可以使用微生物数据将巢箱高精度地分类为它们的方向组。面对西南偏南的巢箱具有比面对东北偏北的巢箱显着更高的真菌负荷(通常是两倍),这是因为紫Epi(Epicoccum purpurascens)和克氏梭状芽孢(Cladosporium cladosporioides)这两种物种的丰度更高。总细菌载量和方向之间没有关系,尽管西南偏南一盒中的一种假单胞菌veronii veronii的丰度明显降低。过敏原紫癜的丰富性解释了近20%的后代质量变化,与雏鸡大小显着成反比关系(高负荷与小的,劣质的雏鸡相关)。我们的结果为巢箱定向与可培养微生物负荷之间的相关性以及一种物种的丰富度(E. purpurascens)与后代质量之间的进一步相关性提供了经验证据。因此,本身受巢腔参数影响的微生物负荷可能是通过影响后代质量(进而影响整体繁殖力)而影响巢址选择的最直接因素。

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