An Assessment of the Microbial Diversity Present on the Surface of Naturally Incubated House Wren Eggs

Q3 Agricultural and Biological Sciences Open Ornithology Journal Pub Date : 2013-09-20 DOI:10.2174/1874453220130815001
Beth A. Potter, B. Carlson, A. E. Adams, M. Voss
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引用次数: 16

Abstract

During ovipositioning, avian eggshells become susceptible to bacterial and fungal growth and studies have shown that a community of these microorganisms, or microflora, is maintained on eggshells throughout the incubation process. To determine the possible role of these microorganisms on embryonic development, it is first important to under- stand the composition of the microbial community present on the surface of the egg. A limited amount of studies have been published in this area; thus, the objective of this study was to broaden this area of study and determine what bacterial communities are found on the surface of naturally-incubated House Wren eggs across three stages of incubation (pre, early, and late) as defined by egg temperature. Our data uniquely suggest that the eggshell microflora is dynamic and that this may be regulated by temperature fluctuations due to intermittent incubation behavior. Using culture-based techniques, 46 different bacterial species were identified belonging to 13 bacterial families and 20 genera. The majority of bacteria be- longed to the Pseudomonas, Staphylococcus, Stenotrophomonas, or Burkholderia genera and have been previously asso- ciated with avian eggs and nests. Bacteria within the Pseudomonas genus were the most predominant and we hypothesize that their maintenance may be linked to their ability to produce antibiotic substances called bacteriocins. The bacterial composition of the microflora isolated in this study also suggests that avian egg microfloras are derived from environ- mental origins.
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自然孵化的鹪鹩卵表面微生物多样性的评价
在产卵过程中,禽类蛋壳容易受到细菌和真菌生长的影响,研究表明,在整个孵化过程中,蛋壳上保持着这些微生物或微生物群的群落。为了确定这些微生物在胚胎发育中的可能作用,首先要了解存在于卵表面的微生物群落的组成。在这一领域发表的研究数量有限;因此,本研究的目的是拓宽这一研究领域,并确定自然孵化的鹪鹩卵在孵育的三个阶段(前、早期和后期)表面上发现了哪些细菌群落,这些阶段由卵的温度决定。我们的数据独特地表明,蛋壳微生物群是动态的,这可能是由间歇性孵化行为引起的温度波动调节的。利用基于培养的技术,鉴定出46种不同的细菌,隶属于13个细菌科和20个属。大多数细菌属于假单胞菌、葡萄球菌、窄养单胞菌或伯克氏菌属,以前曾与鸟蛋和鸟巢有关。假单胞菌属的细菌是最占优势的,我们假设它们的维持可能与它们产生称为细菌素的抗生素物质的能力有关。本研究中分离的微生物群的细菌组成也表明,鸟蛋微生物群来源于环境。
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Open Ornithology Journal
Open Ornithology Journal Agricultural and Biological Sciences-Animal Science and Zoology
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期刊介绍: The Open Ornithology Journal is an Open Access online journal, which publishes research articles, reviews/mini-reviews, letters and guest edited single topic issues in all important areas of ornithology including avian behaviour,genetics, phylogeography , conservation, demography, ecology, evolution, and morphology. The Open Ornithology Journal, a peer-reviewed journal, is an important and reliable source of current information on developments in the field. The emphasis will be on publishing quality papers rapidly and making them freely available to researchers worldwide.
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