Spider phylosymbiosis: divergence of widow spider species and their tissues' microbiomes, BMC Ecology and Evolution
Por um escritor misterioso
Last updated 05 fevereiro 2025
![Spider phylosymbiosis: divergence of widow spider species and their tissues' microbiomes, BMC Ecology and Evolution](https://media.springernature.com/lw685/springer-static/image/art%3A10.1186%2Fs12862-020-01664-x/MediaObjects/12862_2020_1664_Fig2_HTML.png)
Background Microbiomes can have profound impacts on host biology and evolution, but to date, remain vastly understudied in spiders despite their unique and diverse predatory adaptations. This study evaluates closely related species of spiders and their host-microbe relationships in the context of phylosymbiosis, an eco-evolutionary pattern where the microbial community profile parallels the phylogeny of closely related host species. Using 16S rRNA gene amplicon sequencing, we characterized the microbiomes of five species with known phylogenetic relationships from the family Theridiidae, including multiple closely related widow spiders (L. hesperus, L. mactans, L. geometricus, S. grossa, and P. tepidariorum). Results We compared whole animal and tissue-specific microbiomes (cephalothorax, fat bodies, venom glands, silk glands, and ovary) in the five species to better understand the relationship between spiders and their microbial symbionts. This showed a strong congruence of the microbiome beta-diversity of the whole spiders, cephalothorax, venom glands, and silk glands when compared to their host phylogeny. Our results support phylosymbiosis in these species and across their specialized tissues. The ovary tissue microbial dendrograms also parallel the widow phylogeny, suggesting vertical transfer of species-specific bacterial symbionts. By cross-validating with RNA sequencing data obtained from the venom glands, silk glands and ovaries of L. hesperus, L. geometricus, S. grossa, and P. tepidariorum we confirmed that several microbial symbionts of interest are viably active in the host. Conclusion Together these results provide evidence that supports the importance of host-microbe interactions and the significant role microbial communities may play in the evolution and adaptation of their hosts.
![Spider phylosymbiosis: divergence of widow spider species and their tissues' microbiomes, BMC Ecology and Evolution](https://onlinelibrary.wiley.com/cms/asset/62dd38cb-5a84-4aeb-be54-f8332e0f4342/cla12182-fig-0002-m.jpg)
The spider tree of life: phylogeny of Araneae based on target‐gene analyses from an extensive taxon sampling - Wheeler - 2017 - Cladistics - Wiley Online Library
![Spider phylosymbiosis: divergence of widow spider species and their tissues' microbiomes, BMC Ecology and Evolution](https://www.biorxiv.org/content/biorxiv/early/2021/02/14/2021.02.13.431100/F7.large.jpg)
Genomes of gut bacteria from Nasonia wasps shed light on phylosymbiosis and microbe-assisted hybrid breakdown
Sara Dunaj - Senior Scientist, Bioinformatics - SeQure Dx
![Spider phylosymbiosis: divergence of widow spider species and their tissues' microbiomes, BMC Ecology and Evolution](https://www.researchgate.net/publication/274453832/figure/tbl2/AS:613982423482377@1523396225677/Sex-ratio-data-and-endosymbiont-infection-status-grouped-by-matriline.png)
Sex ratio data and endosymbiont infection status grouped by matriline.
August, 2020
![Spider phylosymbiosis: divergence of widow spider species and their tissues' microbiomes, BMC Ecology and Evolution](https://www.mdpi.com/microorganisms/microorganisms-09-02358/article_deploy/html/images/microorganisms-09-02358-g002.png)
Microorganisms, Free Full-Text
![Spider phylosymbiosis: divergence of widow spider species and their tissues' microbiomes, BMC Ecology and Evolution](https://binary.pensoft.net/fig/45571/big/file.jpg)
Systematics of the Madagascar Anelosimus spiders: remarkable local richness and endemism, and dual colonization from the Americas
![Spider phylosymbiosis: divergence of widow spider species and their tissues' microbiomes, BMC Ecology and Evolution](https://media.springernature.com/m685/springer-static/image/art%3A10.1038%2Fs41598-017-07388-1/MediaObjects/41598_2017_7388_Fig5_HTML.jpg)
Evolutionary shifts in gene expression decoupled from gene duplication across functionally distinct spider silk glands
![Spider phylosymbiosis: divergence of widow spider species and their tissues' microbiomes, BMC Ecology and Evolution](https://d3i71xaburhd42.cloudfront.net/a42476aac3e47609e4783dac2c5f9ea020d213c8/5-Figure1-1.png)
Species-specific but not phylosymbiotic gut microbiomes of New Guinean passerine birds are shaped by diet and flight-associated gut modifications
![Spider phylosymbiosis: divergence of widow spider species and their tissues' microbiomes, BMC Ecology and Evolution](https://www.biorxiv.org/content/biorxiv/early/2021/02/14/2021.02.13.431100/F2.large.jpg)
Genomes of gut bacteria from Nasonia wasps shed light on phylosymbiosis and microbe-assisted hybrid breakdown
![Spider phylosymbiosis: divergence of widow spider species and their tissues' microbiomes, BMC Ecology and Evolution](https://www.researchgate.net/publication/274453832/figure/fig1/AS:613982419292172@1523396224653/Phylogenetic-position-of-the-Rickettsia-partial-citrate-sequence-endosymbiont-of.png)
Phylogenetic position of the Rickettsia (partial citrate sequence)
![Spider phylosymbiosis: divergence of widow spider species and their tissues' microbiomes, BMC Ecology and Evolution](https://media.springernature.com/m685/springer-static/image/art%3A10.1186%2Fs12862-020-01664-x/MediaObjects/12862_2020_1664_Fig1_HTML.png)
Spider phylosymbiosis: divergence of widow spider species and their tissues' microbiomes, BMC Ecology and Evolution
![Spider phylosymbiosis: divergence of widow spider species and their tissues' microbiomes, BMC Ecology and Evolution](https://www.researchgate.net/publication/253647283/figure/fig1/AS:272539834384399@1441989968564/Hierarchical-clustering-of-the-bacterial-communities-from-the-cuticle-of-Acromyrmex.png)
Hierarchical clustering of the bacterial communities from the cuticle
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