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Data from: Membrane proteins are dramatically less conserved than water-soluble proteins across the tree of life
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关键词:
DOI:
doi:10.5061/dryad.00731
摘要:
ria, and eukaryotes. Our findings point to a fundamental evolutionary principle: membrane proteins evolve faster due to stronger adaptive selecti
Data from: Microbial eukaryotes have adapted to hypoxia by horizontal acquisitions of a gene involved in rhodoquinone biosynthesis
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关键词:
DOI:
doi:10.5061/dryad.qp745
摘要:
(RQ). To clarify the origins of RQ-mediated fumarate reduction in eukaryotes, we investigated the origin and function of rqua, a gene encoding an RQ
Data from: Gene transfer from bacteria and archaea facilitated evolution of an extremophilic eukaryote
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关键词:
extremophile;eukaryotic genome;Galdieria sulphuraria;Evolution;Horizontal gene transfer
DOI:
doi:10.5061/dryad.84r5q
摘要:
and metabolism. Thus, our findings show that a pan-domain gene pool has facilitated environmental adaptation in this unicellular eukaryote.
Data from: Inferring the mode of origin of polyploid species from next-generation sequence data
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关键词:
approximate Bayesian computation;Capsella;Polyploidization;Disomic inheritance;speciation
DOI:
doi:10.5061/dryad.g611t
摘要:
Many eucaryote organisms are polyploid. However, despite their importance, evolutionary inference of polyploid origins and modes of inheritance ha
Data from: Evidence for a genetic sex determination in Cnidaria, the Mediterranean red coral (Corallium rubrum)
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关键词:
RAD-Sequencing;Cnidaria;Corallium rubrum;genetic sex-determination
DOI:
doi:10.5061/dryad.rs7bm
摘要:
Sexual reproduction is widespread among eukaryotes, and the sex-determining processes vary greatly among species. While genetic sex determinati
Data from: Genome-scale phylogenetic analysis finds extensive gene transfer among fungi
负责人:
关键词:
birth\u2013death models;gene transfer;gene tree-species tree;gene duplication;genomics;statistics
DOI:
doi:10.5061/dryad.r2t49
摘要:
among eukaryotes. To explore this hypothesis, we compare the dynamics of genome evolution in two groups of organisms: cyanobacteria and fungi. Ancestral
hout evolution despite frequent loss of RGS proteins in plants
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关键词:
Heterotrimeric G-proteins;monocots;Monocot RGS;Evolution;RGS proteins;Adaptive coevolution;G-protein phylogeny;Angiosperms;Urochloa
DOI:
doi:10.5061/dryad.4jp82
摘要:
ins was proposed to enable the loss of RGS in monocots. We used a combination of evolutionary and biochemical analyses and homology modeling of the G? and RGS prote
Data from: Metabolically similar cohorts of bacteria exhibit strong co-occurrence patterns with diet items and eukaryotic microbes in lizard guts
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关键词:
Holcosus undulatus;Gut microbiome;Fungi;Anolis sericeus
DOI:
doi:10.5061/dryad.r1h8gm4
摘要:
w metabolic demands can be met from an existing set of bacteria. To differentiate between these scenarios, we examine the gut bacteria and resident eukaryotes
Data from: Specificity in diversity: single origin of a widespread ciliate-bacteria symbiosis
负责人:
Seah, Brandon
关键词:
symbiosis thiotrophy ciliate Gammaproteobacteria
DOI:
doi:10.5061/dryad.nc5dp
摘要:
d in at least eight classes of metazoan animals, almost nothing is known about the evolution of thiotrophic symbioses in microbial eukaryotes (proti
Data from: Assessing the effects of a sequestered germline on interdomain lateral gene transfer in Metazoa
负责人:
Katz, Laura
关键词:
Lateral Gene Transfer Horizontal Gene Transfer weak link model gene loss Metazoa Animals
DOI:
doi:10.5061/dryad.6d3v0
摘要:
) as systematic errors in single gene tree reconstruction create uncertainties for interpreting eukaryote-to-eukaryotes transfers. The breadth of the sampled Metazoa

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