An Algal Greening of Land.
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Summary
The Chara braunii genome details a decisive step linking plant origins with Earth's history, as part of efforts to understand how photosynthetic eukaryotes arose and evolved for a billion years before one lineage finally colonized land.
- Type
- letter
- Published
- 2018-07-01
- Cited by
- 18
- References
- 10
- Access
- Open access
- OpenAlex
- https://openalex.org/W2884930261
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:206569178
Keywords
Biology, Greening, Ecology
References
- A timeline for terrestrialization: consequences for the carbon cycle in the Palaeozoic
- The Evolutionary Origin of a Terrestrial Flora.
- Evolution of Oxygenic Photosynthesis
- Biochemistry and Evolution of Anaerobic Energy Metabolism in Eukaryotes
- Evolutionary rewiring: a modified prokaryotic gene-regulatory pathway in chloroplasts
- Earliest land plants created modern levels of atmospheric oxygen
- The monoplastidic bottleneck in algae and plant evolution
- A record of deep-ocean dissolved O2 from the oxidation state of iron in submarine basalts
- The biomass distribution on Earth
- The Chara Genome: Secondary Complexity and Implications for Plant Terrestrialization.
Cited by
- Chloroplast ultrastructure in plants.
- Energy metabolism in anaerobic eukaryotes and Earth's late oxygenation
- Nitrogenase Inhibition Limited Oxygenation of Earth's Proterozoic Atmosphere.
- Comprehensive analysis of polygalacturonase genes offers new insights into their origin and functional evolution in land plants.
- Structure-function correlations and system dynamics in oxygenic photosynthesis: classical perspectives and murburn precepts
- Insight into the central and nodal cells transcriptome of the streptophyte green alga Chara braunii S276
- Microalgae–material hybrid for enhanced photosynthetic energy conversion: a promising path towards carbon neutrality
- Insight into the nodal cells transcriptome of the streptophyte green alga Chara braunii S276.
- Large-scale analysis of trihelix transcription factors reveals their expansion and evolutionary footprint in plants.
- Retinoic acid induced specific changes in the phosphoproteome of C17.2 neural stem cells
- Polymeric phenylpropanoid derivatives crosslinked by hydroxyl fatty acids form the core structure of rape sporopollenin
- Biomass Refined: 99% of Organic Carbon in Soils
- Duckweed Evolution: from Land back to Water
- Microalgal sporopollenin from Chlorella vulgaris cultivated using coal power plant CO2
- Transcriptomic landscape of Marchantia polymorpha sexual organs at single-nucleus resolution.
- Duckweed evolution: from land back to water
- Seaweed Bioprocessing for Production of Biofuels and Biochemicals
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