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孵化可减少蛋壳上微生物的生长和跨壳感染的机会。

Incubation reduces microbial growth on eggshells and the opportunity for trans-shell infection.

机构信息

Ecosystem Sciences Division, Department of Environmental Science, Policy and Management, 151 Hilgard Hall No. 3110, University of California, Berkeley, CA 94720, USA Department of Biology, PO Box 23360, University of Puerto Rico, San Juan, PR 0093, Puerto Rico USDA Forest Service, International Institute of Tropical Forestry, Sabana Research Station, HC2 Box 6205, Luquillo PR 00773, Puerto Rico.

出版信息

Ecol Lett. 2005 May;8(5):532-7. doi: 10.1111/j.1461-0248.2005.00748.x.

Abstract

Avian eggshells harbour microbes shortly after laying, and under appropriate ambient conditions they can multiply rapidly, penetrate through shell pores, infect egg contents and cause embryo mortality. We experimentally examined how incubation affects bacterial processes on the eggshells of pearl-eyed thrashers Margarops fuscatus nesting in tropical montane and lowland forests in Puerto Rico. Bacteria and fungi grew rapidly on shells of newly laid, unincubated eggs exposed to ambient conditions, but declined to low levels on shells of eggs incubated by thrashers. Divergence in bacterial growth between incubated and exposed eggs was more marked at the montane forest than at the lowland site. Pathogenic microorganisms became increasingly dominant on shells of exposed eggs, but these groups were relatively rare on incubated eggs, where more benign, less invasive groups prevailed. Some incubation during laying may be necessary to decrease the probability of trans-shell infection by reducing the growth of harmful bacteria and fungi on eggshells, although it may increase hatching asynchrony and the likelihood of brood reduction.

摘要

鸟类蛋壳在刚产下后就会滋生微生物,如果环境适宜,这些微生物会迅速繁殖,并通过蛋壳上的微孔渗透进去,感染蛋内的物质,导致胚胎死亡。我们通过实验检测了孵化对珍珠眼噪鹛(Margarops fuscatus)在波多黎各的热带山地森林和低地森林筑巢时蛋壳上细菌过程的影响。在暴露于环境条件下的刚产下的、未孵化的蛋壳上,细菌和真菌迅速生长,但在被噪鹛孵化的蛋壳上则降至低水平。与暴露的蛋相比,在山地森林中,孵化和暴露的蛋之间的细菌生长差异更为显著。在暴露的蛋壳上,致病性微生物变得越来越占优势,但在孵化的蛋上这些菌群相对较少,而更良性、侵袭性较小的菌群则占优势。在产卵期间进行一些孵化可能有助于减少蛋壳感染的可能性,因为这可以减少有害细菌和真菌在蛋壳上的生长,但这可能会增加孵化的不同步性和雏鸟减少的可能性。

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