Changes in gut microbiota and metabolism associated with phenotypic plasticity in the honey bee Apis mellifera

被引:12
作者
Copeland, Duan C. C. [1 ,2 ]
Maes, Patrick W. W. [1 ,3 ,4 ]
Mott, Brendon M. M. [1 ]
Anderson, Kirk E. E. [1 ]
机构
[1] USDA ARS Carl Hayden Bee Res Ctr, Tucson, AZ 85719 USA
[2] Univ Arizona, Sch Anim & Comparat Biomed Sci, Dept Microbiol, Tucson, AZ 85721 USA
[3] Univ Arizona, Dept Entomol, Tucson, AZ USA
[4] Univ Arizona, Ctr Insect Sci, Tucson, AZ USA
关键词
phenotypic plasticity; gut microbiota; precocious foragers; immunity; oxidative stress; vitellogenin; age-polyethism; DIVISION-OF-LABOR; JUVENILE-HORMONE; OXIDATIVE DAMAGE; GENE-EXPRESSION; BEHAVIORAL-DEVELOPMENT; IMMUNE-SYSTEM; AGE; VITELLOGENIN; PROTEIN; BACTERIA;
D O I
10.3389/fmicb.2022.1059001
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Honey bees exhibit an elaborate social structure based in part on an age-related division of labor. Young workers perform tasks inside the hive, while older workers forage outside the hive, tasks associated with distinct diets and metabolism. Critical to colony fitness, the work force can respond rapidly to changes in the environment or colony demography and assume emergency tasks, resulting in young foragers or old nurses. We hypothesized that both task and age affect the gut microbiota consistent with changes to host diet and physiology. We performed two experiments inducing precocious foragers and reverted nurses, then quantified tissue-specific gut microbiota and host metabolic state associated with nutrition, immunity and oxidative stress. In the precocious forager experiment, both age and ontogeny explained differences in midgut and ileum microbiota, but host gene expression was best explained by an interaction of these factors. Precocious foragers were nutritionally deficient, and incurred higher levels of oxidative damage relative to age-matched nurses. In the oldest workers, reverted nurses, the oxidative damage associated with age and past foraging was compensated by high Vitellogenin expression, which exceeded that of young nurses. Host-microbial interactions were evident throughout the dataset, highlighted by an age-based increase of Gilliamella abundance and diversity concurrent with increased carbonyl accumulation and CuZnSOD expression. The results in general contribute to an understanding of ecological succession of the worker gut microbiota, defining the species-level transition from nurse to forager.
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页数:19
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