The Black Queen Hypothesis: evolution of dependencies through adaptive gene loss

scientific article (publication date: 2012)

The Black Queen Hypothesis: evolution of dependencies through adaptive gene loss is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1128/MBIO.00036-12
P3181OpenCitations bibliographic resource ID616592
P932PMC publication ID3315703
P698PubMed publication ID22448042
P5875ResearchGate publication ID221976736

P50authorRichard LenskiQ713637
J. Jeffrey MorrisQ81335709
P2093author name stringErik R Zinser
P2860cites workPatterns and implications of gene gain and loss in the evolution of ProchlorococcusQ21092491
The Sorcerer II Global Ocean Sampling expedition: northwest Atlantic through eastern tropical PacificQ21092763
Phylogenetic distribution of catalase-peroxidases: Are there patches of order in chaos?Q59053085
Accelerated evolution associated with genome reduction in a free-living prokaryoteQ21999766
Genome Streamlining in a Cosmopolitan Oceanic BacteriumQ22065795
Photochemical formation of hydrogen peroxide in natural waters exposed to sunlightQ22330832
Prochlorococcus, a marine photosynthetic prokaryote of global significanceQ24548557
Ecological genomics of marine picocyanobacteriaQ24644523
Unique glycine-activated riboswitch linked to glycine-serine auxotrophy in SAR11Q24650852
Developmental cheating in the social bacterium Myxococcus xanthusQ28141858
Coincidence, coevolution, or causation? DNA content, cell size, and the C-value enigmaQ28185889
Economy, speed and size matter: evolutionary forces driving nuclear genome miniaturization and expansionQ28651142
Bacterial iron homeostasisQ29615095
Toward an ecological classification of soil bacteria.Q33289307
Emergence of spatial structure in cell groups and the evolution of cooperationQ33545212
The stabilisation potential of individual and mixed assemblages of natural bacteria and microalgaeQ33745083
Dependence of the cyanobacterium Prochlorococcus on hydrogen peroxide scavenging microbes for growth at the ocean's surface.Q33815345
Bacterial genome size reduction by experimental evolutionQ33922858
Hydrogen peroxide fluxes and compartmentalization inside growing Escherichia coliQ33997234
Mechanisms causing rapid and parallel losses of ribose catabolism in evolving populations of Escherichia coli B.Q34011353
Distribution and diversity of natural product genes in marine and freshwater cyanobacterial cultures and genomesQ34143215
SAR11 clade dominates ocean surface bacterioplankton communities.Q34165899
Structured habitats and the evolution of anticompetitor toxins in bacteriaQ34276495
The natural history of nitrogen fixationQ34286055
The complete genome sequence of Lactobacillus bulgaricus reveals extensive and ongoing reductive evolutionQ34534856
SAR11 marine bacteria require exogenous reduced sulphur for growthQ34761326
The sociobiology of biofilms.Q34899346
The consequences of genetic drift for bacterial genome complexityQ34985390
Oxidative stress in Synechococcus sp. strain PCC 7942: various mechanisms for H2O2 detoxification with different physiological rolesQ35021101
Streamlining and simplification of microbial genome architectureQ36528800
Social evolution theory for microorganisms.Q36538101
In vivo role of catalase-peroxidase in synechocystis sp. strain PCC 6803Q39494740
Coexistence of two competitors on one resource and one inhibitor: a chemostat model based on bacteria and antibioticsQ39800210
Siderophores from neighboring organisms promote the growth of uncultured bacteriaQ41846710
Genome sequence of Lactobacillus helveticus, an organism distinguished by selective gene loss and insertion sequence element expansionQ41911592
The dynamics and time scale of ongoing genomic erosion in symbiotic bacteriaQ46347662
The molecular evolution of catalatic hydroperoxidases: evidence for multiple lateral transfer of genes between prokaryota and from bacteria into eukaryota.Q47872656
Heterotrophic pioneers facilitate phototrophic biofilm developmentQ48080778
P433issue2
P407language of work or nameEnglishQ1860
P921main subjectgene lossQ115957864
P304page(s)435-442
P577publication date2012-05-02
P1433published inmBioQ15817061
P1476titleThe Black Queen Hypothesis: evolution of dependencies through adaptive gene loss
P478volume3

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