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不同碎屑环境如何影响共生容器蚊子白纹伊蚊、埃及伊蚊和致倦库蚊雌雄个体之间的营养化学计量。

How Diverse Detrital Environments Influence Nutrient Stoichiometry between Males and Females of the Co-Occurring Container Mosquitoes Aedes albopictus, Ae. aegypti, and Culex quinquefasciatus.

作者信息

Yee Donald A, Kaufman Michael G, Ezeakacha Nnaemeka F

机构信息

Department of Biological Sciences, University of Southern Mississippi, Hattiesburg, Mississippi, United States of America.

Department of Entomology, Michigan State University, East Lansing, Michigan, United States of America.

出版信息

PLoS One. 2015 Aug 5;10(8):e0133734. doi: 10.1371/journal.pone.0133734. eCollection 2015.

Abstract

Allocation patterns of carbon and nitrogen in animals are influenced by food quality and quantity, as well as by inherent metabolic and physiological constraints within organisms. Whole body stoichiometry also may vary between the sexes who differ in development rates and reproductive allocation patterns. In aquatic containers, such as tree holes and tires, detrital inputs, which vary in amounts of carbon and nitrogen, form the basis of the mosquito-dominated food web. Differences in development times and mass between male and female mosquitoes may be the result of different reproductive constraints, which could also influence patterns of nutrient allocation. We examined development time, survival, and adult mass for males and females of three co-occurring species, Aedes albopictus, Ae. aegypti, and Culex quinquefasciatus, across environments with different ratios of animal and leaf detritus. We quantified the contribution of detritus to biomass using stable isotope analysis and measured tissue carbon and nitrogen concentrations among species and between the sexes. Development times were shorter and adults were heavier for Aedes in animal versus leaf-only environments, whereas Culex development times were invariant across detritus types. Aedes displayed similar survival across detritus types whereas C. quinquefasciatus showed decreased survival with increasing leaf detritus. All species had lower values of 15N and 13C in leaf-only detritus compared to animal, however, Aedes generally had lower tissue nitrogen compared to C. quinquefasciatus. There were no differences in the C:N ratio between male and female Aedes, however, Aedes were different than C. quinquefasciatus adults, with male C. quinquefasciatus significantly higher than females. Culex quinquefasciatus was homeostatic across detrital environments. These results allow us to hypothesize an underlying stoichiometric explanation for the variation in performance of different container species under similar detrital environments, and if supported may assist in explaining the production of vector populations in nature.

摘要

动物体内碳和氮的分配模式受食物质量和数量以及生物体内固有代谢和生理限制的影响。由于发育速率和生殖分配模式不同,两性之间的全身化学计量也可能存在差异。在树洞和轮胎等水生容器中,碳氮含量各异的碎屑输入构成了以蚊子为主的食物网的基础。雄蚊和雌蚊发育时间和体重的差异可能是不同生殖限制的结果,这也可能影响营养分配模式。我们研究了三种共生物种白纹伊蚊、埃及伊蚊和致倦库蚊的雄蚊和雌蚊在不同动物碎屑与树叶碎屑比例环境中的发育时间、存活率和成虫体重。我们使用稳定同位素分析量化了碎屑对生物量的贡献,并测量了不同物种之间以及两性之间的组织碳和氮浓度。在有动物碎屑的环境中,伊蚊的发育时间比只有树叶碎屑的环境中短,成虫体重也更重,而库蚊的发育时间在不同类型的碎屑环境中不变。伊蚊在不同碎屑类型中的存活率相似,而致倦库蚊的存活率随着树叶碎屑的增加而降低。与动物碎屑相比,所有物种在只有树叶碎屑的环境中15N和13C的值都较低,然而,伊蚊的组织氮含量通常比致倦库蚊低。伊蚊两性之间的C:N比没有差异,然而,伊蚊与致倦库蚊成虫不同,致倦库蚊雄蚊的C:N比显著高于雌蚊。致倦库蚊在不同碎屑环境中保持稳态。这些结果使我们能够假设一个潜在的化学计量学解释,说明在相似碎屑环境下不同容器物种表现的差异,如果得到证实,可能有助于解释自然界中病媒种群的产生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0444/4526359/fa834675851d/pone.0133734.g001.jpg

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