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1845 2
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1868 1
1870 1
1872 6
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1881 4
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1884 6
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1895 4
1896 4
1897 1
1898 3
1899 2
1901 3
1902 5
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1904 2
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1913 1
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1917 11
1918 8
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1922 12
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1924 14
1925 17
1926 15
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1930 15
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1934 30
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1937 29
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1939 20
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1942 24
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1948 206
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1950 404
1951 521
1952 615
1953 793
1954 754
1955 581
1956 408
1957 433
1958 508
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Page 1
Insights into Land Plant Evolution Garnered from the Marchantia polymorpha Genome.
Bowman JL, Kohchi T, Yamato KT, Jenkins J, Shu S, Ishizaki K, Yamaoka S, Nishihama R, Nakamura Y, Berger F, Adam C, Aki SS, Althoff F, Araki T, Arteaga-Vazquez MA, Balasubrmanian S, Barry K, Bauer D, Boehm CR, Briginshaw L, Caballero-Perez J, Catarino B, Chen F, Chiyoda S, Chovatia M, Davies KM, Delmans M, Demura T, Dierschke T, Dolan L, Dorantes-Acosta AE, Eklund DM, Florent SN, Flores-Sandoval E, Fujiyama A, Fukuzawa H, Galik B, Grimanelli D, Grimwood J, Grossniklaus U, Hamada T, Haseloff J, Hetherington AJ, Higo A, Hirakawa Y, Hundley HN, Ikeda Y, Inoue K, Inoue SI, Ishida S, Jia Q, Kakita M, Kanazawa T, Kawai Y, Kawashima T, Kennedy M, Kinose K, Kinoshita T, Kohara Y, Koide E, Komatsu K, Kopischke S, Kubo M, Kyozuka J, Lagercrantz U, Lin SS, Lindquist E, Lipzen AM, Lu CW, De Luna E, Martienssen RA, Minamino N, Mizutani M, Mizutani M, Mochizuki N, Monte I, Mosher R, Nagasaki H, Nakagami H, Naramoto S, Nishitani K, Ohtani M, Okamoto T, Okumura M, Phillips J, Pollak B, Reinders A, Rövekamp M, Sano R, Sawa S, Schmid MW, Shirakawa M, Solano R, Spunde A, Suetsugu N, Sugano S, Sugiyama A, Sun R, Suzuki Y, Takenaka M, Takezawa D, Tomogane H, Tsuzuki M, Ueda T, Umeda M, Ward JM, Watana… See abstract for full author list ➔ Bowman JL, et al. Cell. 2017 Oct 5;171(2):287-304.e15. doi: 10.1016/j.cell.2017.09.030. Cell. 2017. PMID: 28985561 Free article.
The evolution of land flora transformed the terrestrial environment. Land plants evolved from an ancestral charophycean alga from which they inherited developmental, biochemical, and cell biological attributes. ...Relative to charophycean algae, land plant genomes a …
The evolution of land flora transformed the terrestrial environment. Land plants evolved from an ancestral charophycean alga f …
The greening ashore.
Schreiber M, Rensing SA, Gould SB. Schreiber M, et al. Trends Plant Sci. 2022 Sep;27(9):847-857. doi: 10.1016/j.tplants.2022.05.005. Epub 2022 Jun 20. Trends Plant Sci. 2022. PMID: 35739050 Free article. Review.
This pioneering step enabled the subsequent evolution of all complex life on land, and the past decade has uncovered that many traits, both morphological and genetic, once thought to be unique to land plants, are conserved across some streptophyte algae. They provid …
This pioneering step enabled the subsequent evolution of all complex life on land, and the past decade has uncovered that many traits, both …
RAF-like protein kinases mediate a deeply conserved, rapid auxin response.
Kuhn A, Roosjen M, Mutte S, Dubey SM, Carrillo Carrasco VP, Boeren S, Monzer A, Koehorst J, Kohchi T, Nishihama R, Fendrych M, Sprakel J, Friml J, Weijers D. Kuhn A, et al. Cell. 2024 Jan 4;187(1):130-148.e17. doi: 10.1016/j.cell.2023.11.021. Epub 2023 Dec 20. Cell. 2024. PMID: 38128538 Free PMC article.
The plant-signaling molecule auxin triggers fast and slow cellular responses across land plants and algae. The nuclear auxin pathway mediates gene expression and controls growth and development in land plants, but this pathway is absent from algal sist …
The plant-signaling molecule auxin triggers fast and slow cellular responses across land plants and algae. The nuclear auxin p …
Origin and early evolution of the plant terpene synthase family.
Jia Q, Brown R, Köllner TG, Fu J, Chen X, Wong GK, Gershenzon J, Peters RJ, Chen F. Jia Q, et al. Proc Natl Acad Sci U S A. 2022 Apr 12;119(15):e2100361119. doi: 10.1073/pnas.2100361119. Epub 2022 Apr 8. Proc Natl Acad Sci U S A. 2022. PMID: 35394876 Free PMC article.
Systematic analysis of an array of transcriptomes and sequenced genomes indicated that the TPS family originated after the divergence of land plants from charophytic algae. Phylogenetic and biochemical analyses support the hypothesis that the ancestral TPS gene enco …
Systematic analysis of an array of transcriptomes and sequenced genomes indicated that the TPS family originated after the divergence of …
Carotenoid Biosynthesis in Liverworts.
Takemura M, Misawa N. Takemura M, et al. Adv Exp Med Biol. 2021;1261:115-119. doi: 10.1007/978-981-15-7360-6_9. Adv Exp Med Biol. 2021. PMID: 33783734 Review.
In higher plants, there are many studies on carotenoid biosynthetic pathways and their relevant genes. On the other hand, few researches exist on carotenoid biosynthesis in early-land plants containing liverworts, mosses, and ferns. Thus, the evolution …
In higher plants, there are many studies on carotenoid biosynthetic pathways and their relevant genes. On the other hand, few …
The origin and evolution of stomata.
Clark JW, Harris BJ, Hetherington AJ, Hurtado-Castano N, Brench RA, Casson S, Williams TA, Gray JE, Hetherington AM. Clark JW, et al. Curr Biol. 2022 Jun 6;32(11):R539-R553. doi: 10.1016/j.cub.2022.04.040. Curr Biol. 2022. PMID: 35671732 Free article. Review.
The acquisition of stomata is one of the key innovations that led to the colonisation of the terrestrial environment by the earliest land plants. However, our understanding of the origin, evolution and the ancestral function of stomata is incomplete. ...We also conc …
The acquisition of stomata is one of the key innovations that led to the colonisation of the terrestrial environment by the earliest land
The origin of a land flora.
Bowman JL. Bowman JL. Nat Plants. 2022 Dec;8(12):1352-1369. doi: 10.1038/s41477-022-01283-y. Epub 2022 Dec 22. Nat Plants. 2022. PMID: 36550365 Review.
About 470 million years ago, one lineage of charophycean alga evolved complex multicellularity via developmental innovations in both haploid and diploid generations and became land plants (embryophytes), which rapidly diversified to dominate most terrestrial habitat …
About 470 million years ago, one lineage of charophycean alga evolved complex multicellularity via developmental innovations in both haploid …
Evolution of the plant body plan.
Szövényi P, Waller M, Kirbis A. Szövényi P, et al. Curr Top Dev Biol. 2019;131:1-34. doi: 10.1016/bs.ctdb.2018.11.005. Epub 2018 Dec 14. Curr Top Dev Biol. 2019. PMID: 30612613 Review.
Land plants evolved about 470 million years ago or even earlier, in a biological crust-dominated terrestrial flora. ...Since all land plants have biphasic life cycles, in contrast to the haplontic life cycle of Charophytes, the evolution of land
Land plants evolved about 470 million years ago or even earlier, in a biological crust-dominated terrestrial flora. ...Since a
The evolutionary emergence of land plants.
Donoghue PCJ, Harrison CJ, Paps J, Schneider H. Donoghue PCJ, et al. Curr Biol. 2021 Oct 11;31(19):R1281-R1298. doi: 10.1016/j.cub.2021.07.038. Curr Biol. 2021. PMID: 34637740 Free article. Review.
We consider the evolution of anatomy, genes, genomes and of development within this phylogenetic context, concluding that many vascular plant (tracheophytes) novelties were already present in a comparatively complex last common ancestor of living land plants (embryo …
We consider the evolution of anatomy, genes, genomes and of development within this phylogenetic context, concluding that many vascular plan …
The evolution of flavonoid biosynthesis.
Davies KM, Andre CM, Kulshrestha S, Zhou Y, Schwinn KE, Albert NW, Chagné D, van Klink JW, Landi M, Bowman JL. Davies KM, et al. Philos Trans R Soc Lond B Biol Sci. 2024 Nov 18;379(1914):20230361. doi: 10.1098/rstb.2023.0361. Epub 2024 Sep 30. Philos Trans R Soc Lond B Biol Sci. 2024. PMID: 39343026 Free PMC article. Review.
The flavonoid pathway is characteristic of land plants and a central biosynthetic component enabling life in a terrestrial environment. ...Analyses of the wide range of whole-plant genome sequences now available, particularly for archegoniate plants, have ena …
The flavonoid pathway is characteristic of land plants and a central biosynthetic component enabling life in a terrestrial env …
566,252 results
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