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Data from: A microbiotic survey of lichen-associated bacteria reveals a new lineage from the Rhizobiales
负责人:
关键词:
Alphaproteobacteria;backbone constraint;microbiota;Acetobacteraceae;Methylobacterium;16S;non-photosynthetic bacteria;Rhizobiales;Brucellaceae;Acidobacteria;LAR1;maximum likelihood;lichens;Bayesian inference;nitrogen fixation;primers
DOI:
doi:10.5061/dryad.g35nt67k
摘要:
, and was found to be present in all examined lichens that are associated with green algae. There is evidence to suggest that members of this lineage may both account
Data from: Evolutionary history of Daphnia drives divergence in grazing selectivity and alters temporal community dynamics of producers
负责人:
关键词:
Chlamydomonas moewusii;Mougeotia sp.;Asterionella sp.;Daphnia ambigua;Navicula sp.;Cyclotella quillensis
DOI:
doi:10.5061/dryad.hg53s
摘要:
-term (24 hours) and long-term (27 days) grazing experiments in equal polycultures consisting of 3 diatom and 2 green algae species, treated with
Data from: Diurnal transcriptional regulation of endosymbiotically derived genes in the chlorarachniophyte Bigelowiella natans
负责人:
关键词:
Secondary plastid;RNA-seq;endosymbiosis;Algae;Nucleomorph;cell cycle;Bigelowiella natans
DOI:
doi:10.5061/dryad.6n332
摘要:
Chlorarachniophyte algae possess complex plastids acquired by the secondary endosymbiosis of a green alga, and the plastids harbor a relict nucleus
Data from: Fitness change in relation to mutation number in spontaneous mutation accumulation lines of Chlamydomonas reinhardtii
负责人:
关键词:
Chlamydomonas reinhardtii;spontaneous mutations;mutational effects;mutation accumulation;Chlamydomonas
DOI:
doi:10.5061/dryad.4sg14
摘要:
mutation accumulation (MA) lines derived from five genetic backgrounds of the green algae Chlamydomonas reinhardtii that have been previously subjected
Data from: Evolution and diversification of the organellar release factor family
负责人:
关键词:
plastid;Eukaryota;translation termination;Evolution;release factor;genetic code;Mitochondrion
DOI:
doi:10.5061/dryad.2br48
摘要:
es green algae use UGA stop codons in their mitochondria without having a mitochondrial type RF2. For the latter we put forward a “stop-codon re-invent
Data from: Evolution of a soft-tissue foraging adaptation in African cichlids: roles for novelty, convergence, and constraint
负责人:
关键词:
novelty;convergence;cichlid;constraint;ligament
DOI:
doi:10.5061/dryad.2df6h8k
摘要:
for feeding behavior, with snout depth being important for algae scraping and snout length for sand sifting. Indeed, the deep snout of some algivores is achieved vi
Data from: Early photosynthetic eukaryotes inhabited low-salinity habitats
负责人:
关键词:
Cyanothece sp. PCC8801;Gloeomargarita lithophora;Volvox carteri nagariensis UTE2908;Fistulifera sp. JPCC DA0580;Pseudendoclonium akinetum;Pyramimonas parkeae;Precambrian;Anabaena cylindrica PCC7122;Photosynthetic eukaryotes;Cyanophora paradoxa;Prochlorococcus marinus str. MIT9515;Parachlorella kessleri;Synechococcus sp. WH8016;Synechococcus sp. PCC7002;Cyanidium caldarium;Cycas taitungensis;Pedinomonas minor;Chlamydomonas reinhardtii;Psilotum nudum;relaxed molecular clock.;Gloeobacter violaceus PCC7421;Prochloron didemni P2 Fiji;Anthoceros formosae;Mesoproterozoic;Thermosynechococcus elongatus BP1;Welwitschia mirabilis;Prasinoderma colonial;Pseudanabaena biceps PCC7429;Cyanothece sp. PCC7425;Angiopteris evecta;Cyanothece sp. PCC7424;Chlorokybus atmophyticus;Synechococcus sp. JA-3-3Ab;Coccomyxa sp. C169;Floydiella terrestris;Schizomeris leibleinii;Richelia intracellularis HH01;Microcystis aeruginosa NIES843 Micromonas sp. RCC299;Nodularia spumigena CCY9414;Porphyra purpurea;Adiantum capillus veneris;Buus microphylla;Calycanthus floridus;Nymphaea alba;Phaeodactylum tricornutum;Spinacia oleracea;Nodosilinea nodulosa PCC7104;Odontella sinensis;Chloroplast;Physcomitrella patens subsp patens;Great Oxidation Event;Aneura mirabilis;Cyanobacteria;Leptolyngbya sp. PCC7375;Synedra acus;Prochlorococcus marinus str. MIT9211;Cyanobium sp. PCC7001;Leptolyngbya sp. PCC7376;Verdigellas peltata;Bryopsis hypnoides;Gracilaria tenuistipitata;Synechococcus sp. RCC307;Ptilidium pulcherrimum;Prasinococcus sp. CCMP1194;Dunaliella salina;Nostoc azollae 0708;Ranunculus macranthus;Microcoleus vaginatus FGP2;Scenedesmus obliques;Synechococcus sp. PCC7335;Chaetosphaeridium globosum;Oscillatoria sp. PCC6506;Pseudanabaena sp. PCC7367;Raphidiopsis brookii D9;Richelia intracellularis HM01;Trichodesmium erythraeum IMS101;Prochloron didemni P3 Solomon;primary endosymbiotic event;Klebsormidium flaccidum;Acaryochloris marina MBIC11017;Arthrospira sp. PCC8005;Marchantia polymorpha;Staurastrum punctulatum;Coffea arabica;Porphyra yezoensis;Crocosphaera watsonii WH0003;Stigeoclonium helveticum;Pleurocapsa sp. PCC7327;Proterozoic;Gnetum parvifolium;Thalassiosira oceanica CCMP1005;Chara vulgaris;Leptosira terrestris;Cyanidioschyzon merolae strain 10D;Synechococcus sp. CB0101;Paulinella chromatophora;Nostoc punctiforme PCC73102;Pycnococcus provasolii;Illicium oligandrum;Prochlorococcus marinus str. AS9601;Nostoc sp. PCC7120;Fischerella sp. JSC11;Synechocystis sp. PCC6803;Cyanobium gracile PCC6307;Zygnema circumcarinatum;Microcoleus chthonoplastes PCC7420;Neoproterozoic;Pinus contorta;Calothrix sp. PCC6303;Ephedra equisetina;Synechococcus elongatus PCC6301;Amborella trichopoda;Cryptomeria japonica;Monomasti sp. OKE1;Pseudanabaena sp. PCC6802;phylogenomics;Lyngbya sp. PCC8106;Pre-Cambrian;Synechococcus sp. JA-2-3B'a(2-13);Oltmannsiellopsis viridis Oocystis solitaria SAG83 80;Syntrichia ruralis;Nephroselmis olivacea;Synechococcus sp. CC9605;Mesostigma viride;Ostreococcus tauri;Lyngbya majuscula 3L;Oedogonium cardiacum;Prochlorococcus marinus str. MIT9303;Cyanothece sp. CCY0110
DOI:
doi:10.5061/dryad.421p2
摘要:
in low-salinity environments. Both red and green algae colonized marine environments early in their histories, with prasinophyte green phytoplankton
Data from: Plasticity predicts evolution in a marine alga
负责人:
关键词:
oceanography;Phenotypic Plasticity;Ostreococcus tauri;Adaptation;climate change
DOI:
doi:10.5061/dryad.gf067
摘要:
in green algae is to increase cell division rates, but the evolutionary response here is to decrease cell division rates over 400 generations until cells ar

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