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酵母促进果蝇细菌共生体的繁殖,但对泰勒定律的形式或参数没有影响。

Yeast facilitates the multiplication of Drosophila bacterial symbionts but has no effect on the form or parameters of Taylor's law.

机构信息

CBGP, INRAE, CIRAD, IRD, Montpellier SupAgro, Univ Montpellier, Montpellier, France.

Laboratory of Populations, Rockefeller University, New York, New York, United States of America.

出版信息

PLoS One. 2020 Nov 23;15(11):e0242692. doi: 10.1371/journal.pone.0242692. eCollection 2020.

Abstract

Interactions between microbial symbionts influence their demography and that of their hosts. Taylor's power law (TL)-a well-established relationship between population size mean and variance across space and time-may help to unveil the factors and processes that determine symbiont multiplications. Recent studies suggest pervasive interactions between symbionts in Drosophila melanogaster. We used this system to investigate theoretical predictions regarding the effects of interspecific interactions on TL parameters. We assayed twenty natural strains of bacteria in the presence and absence of a strain of yeast using an ecologically realistic set-up with D. melanogaster larvae reared in natural fruit. Yeast presence led to a small increase in bacterial cell numbers; bacterial strain identity largely affected yeast multiplication. The spatial version of TL held among bacterial and yeast populations with slopes of 2. However, contrary to theoretical prediction, the facilitation of bacterial symbionts by yeast had no detectable effect on TL's parameters. These results shed new light on the nature of D. melanogaster's symbiosis with yeast and bacteria. They further reveal the complexity of investigating TL with microorganisms.

摘要

微生物共生体之间的相互作用会影响它们的种群动态及其宿主的种群动态。泰勒幂律(TL)——一种在空间和时间上普遍存在的种群大小均值和方差之间的关系——可能有助于揭示决定共生体繁殖的因素和过程。最近的研究表明,在黑腹果蝇中存在共生体之间普遍存在的相互作用。我们利用这个系统来研究关于种间相互作用对 TL 参数影响的理论预测。我们在存在和不存在酵母菌株的情况下,使用一种具有生态现实意义的设置,在自然果实中饲养黑腹果蝇幼虫,来检测二十种天然细菌菌株。酵母的存在导致细菌细胞数量略有增加;细菌菌株的身份在很大程度上影响了酵母的繁殖。TL 在细菌和酵母种群之间的空间版本具有 2 的斜率。然而,与理论预测相反,酵母对细菌共生体的促进作用对 TL 参数没有可检测到的影响。这些结果为黑腹果蝇与酵母和细菌的共生关系的本质提供了新的线索。它们进一步揭示了用微生物研究 TL 的复杂性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6fa0/7682849/d96cc787824b/pone.0242692.g001.jpg

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