C4 photosynthesis promoted species diversification during the Miocene grassland expansion
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Confluence, synnovation, and depauperons in plant diversificationExamining Plant Physiological Responses to Climate Change through an Evolutionary LensSelaginella and the Satyr: Euptychia westwoodi (Lepidoptera: Nymphalidae) Oviposition Preference and Larval PerformanceRange expansion and habitat shift triggered elevated diversification of the rice genus (Oryza, Poaceae) during the PleistoceneDefense mutualisms enhance plant diversificationEvolutionary bursts in Euphorbia (Euphorbiaceae) are linked with photosynthetic pathway.A macro-ecological perspective on crassulacean acid metabolism (CAM) photosynthesis evolution in Afro-Madagascan drylands: Eulophiinae orchids as a case study.Climate change is projected to outpace rates of niche change in grasses.Recently evolved diversity and convergent radiations of rainforest mahoganies (Meliaceae) shed new light on the origins of rainforest hyperdiversity.From museums to genomics: old herbarium specimens shed light on a C3 to C4 transition.On the complexity of triggering evolutionary radiations.Evolutionary histories determine DNA barcoding success in vascular plants: seven case studies using intraspecific broad sampling of closely related species.Preference for C4 shade grasses increases hatchling performance in the butterfly, Bicyclus safitzaTemperate radiations and dying embers of a tropical past: the diversification of Viburnum.Photosynthetic innovation broadens the niche within a single species.Despite phylogenetic effects, C3-C4 lineages bridge the ecological gap to C4 photosynthesis.Are diversification rates and chromosome evolution in the temperate grasses (Pooideae) associated with major environmental changes in the Oligocene-Miocene?Genome-Guided Phylo-Transcriptomic Methods and the Nuclear Phylogentic Tree of the Paniceae Grasses.Global grass (Poaceae) success underpinned by traits facilitating colonization, persistence and habitat transformation.Variations in nitrogen use efficiency reflect the biochemical subtype while variations in water use efficiency reflect the evolutionary lineage of C4 grasses at inter-glacial CO2.C4 photosynthesis evolved in warm climates but promoted migration to cooler ones.The Amount of Nitrogen Used for Photosynthesis Modulates Molecular Evolution in Plants.AnnotationBustR: an R package to extract subsequences from GenBank annotations.Global monocot diversification: geography explains variation in species richness better than environment or biologyFuture of African terrestrial biodiversity and ecosystems under anthropogenic climate change
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P2860
C4 photosynthesis promoted species diversification during the Miocene grassland expansion
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2014 թուականին հրատարակուած գիտական յօդուած
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2014 թվականին հրատարակված գիտական հոդված
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2014年の論文
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2014年論文
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2014年論文
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2014年論文
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2014年論文
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C4 photosynthesis promoted species diversification during the Miocene grassland expansion
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C4 photosynthesis promoted species diversification during the Miocene grassland expansion
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C4 photosynthesis promoted species diversification during the Miocene grassland expansion
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C4 photosynthesis promoted species diversification during the Miocene grassland expansion
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C4 photosynthesis promoted species diversification during the Miocene grassland expansion
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C4 photosynthesis promoted species diversification during the Miocene grassland expansion
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C4 photosynthesis promoted species diversification during the Miocene grassland expansion
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C4 photosynthesis promoted species diversification during the Miocene grassland expansion
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C4 photosynthesis promoted species diversification during the Miocene grassland expansion
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P3181
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P1476
C4 photosynthesis promoted species diversification during the Miocene grassland expansion
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P2093
Elizabeth L Spriggs
Erika J Edwards
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P304
P3181
P356
10.1371/JOURNAL.PONE.0097722
P407
P577
2014-01-01T00:00:00Z