Department of Animal Health, Complutense University of Madrid, 28040, Madrid, Spain.
Departamento de Biología Vegetal y Ecología, Universidad de Sevilla, 41012, Seville, Spain.
Microb Ecol. 2023 Jul;86(1):377-391. doi: 10.1007/s00248-022-02088-4. Epub 2022 Aug 5.
The floral nectar of angiosperms harbors a variety of microorganisms that depend predominantly on animal visitors for their dispersal. Although some members of the genus Acinetobacter and all currently known species of Rosenbergiella are thought to be adapted to thrive in nectar, there is limited information about the response of these bacteria to variation in the chemical characteristics of floral nectar. We investigated the growth performance of a diverse collection of Acinetobacter (n = 43) and Rosenbergiella (n = 45) isolates obtained from floral nectar and the digestive tract of flower-visiting bees in a set of 12 artificial nectars differing in sugar content (15% w/v or 50% w/v), nitrogen content (3.48/1.67 ppm or 348/167 ppm of total nitrogen/amino nitrogen), and sugar composition (only sucrose, 1/3 sucrose + 1/3 glucose + 1/3 fructose, or 1/2 glucose + 1/2 fructose). Growth was only observed in four of the 12 artificial nectars. Those containing elevated sugar concentration (50% w/v) and low nitrogen content (3.48/1.67 ppm) were limiting for bacterial growth. Furthermore, phylogenetic analyses revealed that the ability of the bacteria to grow in different types of nectar is highly conserved between closely related isolates and genotypes, but this conservatism rapidly vanishes deeper in phylogeny. Overall, these results demonstrate that the ability of Acinetobacter spp. and Rosenbergiella spp. to grow in floral nectar largely depends on nectar chemistry and bacterial phylogeny.
被子植物的花蜜中蕴藏着各种微生物,它们主要依靠动物访客来传播。虽然某些不动杆菌属成员和所有已知的罗森伯格氏菌属物种都被认为适应在花蜜中茁壮成长,但关于这些细菌对花蜜化学特性变化的反应的信息有限。我们研究了从花蜜和访花蜜蜂消化道中获得的多样化的不动杆菌属(n = 43)和罗森伯格氏菌属(n = 45)分离株在 12 种人工花蜜中的生长性能,这些花蜜在糖含量(15% w/v 或 50% w/v)、氮含量(3.48/1.67 ppm 或 348/167 ppm 总氮/氨基氮)和糖组成(仅蔗糖、1/3 蔗糖+1/3 葡萄糖+1/3 果糖,或 1/2 葡萄糖+1/2 果糖)方面存在差异。只有在 12 种人工花蜜中的 4 种中观察到了生长。那些含有高糖浓度(50% w/v)和低氮含量(3.48/1.67 ppm)的花蜜限制了细菌的生长。此外,系统发育分析表明,细菌在不同类型花蜜中生长的能力在密切相关的分离株和基因型之间高度保守,但这种保守性在系统发育中迅速消失。总的来说,这些结果表明,不动杆菌属和罗森伯格氏菌属在花蜜中生长的能力在很大程度上取决于花蜜化学和细菌的系统发育。