يعرض 1 - 20 نتائج من 69 نتيجة بحث عن '"Photosynthetic pathways"', وقت الاستعلام: 0.54s تنقيح النتائج
  1. 1
    Academic Journal
  2. 2
    Academic Journal

    المصدر: Mediterranean Botany; Vol. 45 No. 2 (2024); e94654 ; Mediterranean Botany; Vol. 45 Núm. 2 (2024); e94654 ; 2603-9109

    وصف الملف: application/pdf

    Relation: https://revistas.ucm.es/index.php/MBOT/article/view/94654/4564456570454; Akhani, H., G. Edwards & Roalson, E. H. 2007. Diversification of the Old World Salsoleae s.l. (chenopodiaceae): Molecular phylogenetic analysis of nuclear and chloroplast data sets and a revised classification. Int. J. Plant Sci. 168(6): 931-956. doi:10.1086/518263 Akhani, H. & Ghasemkhani, M. 2007. Diversity of photosynthetic organs in Chenopodiaceae from Golestan National Park (NE Iran) based on carbon isotope composition and anatomy of leaves and cotyledons. Nova Hedwigia Supplement. 131: 265-277. Akhani, H., R. Khoshravesh & Malekmohammadi, M. 2016. Taxonomic novelties from Irano-Turanian region and NE Iran: Oreosalsola, a new segregate from Salsola s.l., two new species in Anabasis and Salvia, and two new combinations in Caroxylon and Seseli. Phytotaxa 249(1): 159-180. doi:10.11646/phytotaxa.249.1.7. Akhani, H., P. Trimborn & Ziegler, H. 1997. Photosynthetic pathways in Chenopodiaceae from Africa, Asia and Europe with their ecological, phytogeographical and taxonomical importance. Pl. Syst. Evol. 206 (1-4): 187-221. doi:10.1007/BF00987948 Ball, P., J. R. Akeroyd &P. Aellen 1993. Chenopodiaceae. Flora Europaea. T. G. Tutin, N. A. Burges, A. O. Chater et al. Cambridge, Cambridge University Press. 1: 108-130. Botschantzev, V. P. 1976. Conspectus specierum sectionis Coccosalsola Fenzl Generis Salsola L. Novitates Systematicae Plantarum Vascularium. 13: 74-102. Botschantzev, V. P. 1989. De genere Darniella Maire et Weiller et relation ejus ad genus Salsola L. (Chenopodiaceae). Novosti sistematiki vysshikh rastenij, Akad. Nauk, Bot. Inst. Komar. 26: 79-90. Boulos, L., I. Friis &M. G. Gilbert 1991. Notes on the Chenopodiaceae of Ethiopia, Somalia and Southern Arabia. Nord. J. Bot. 11: 309-316. doi:10.1111/j.1756-1051.1991.tb01409.x Brullo, S. 1982. Notes on the Genus Salsola (Chenopodiaceae). 1. The Salsola oppositifolia and S. longifolia Groups. Willdenowia 12(2): 241-247. Brullo, S. 1984. Taxonomic consideration on the genus «Darniella» (Chenopodiaceae). Webbia. 38: 301-328. doi.org/10.1080/00837792.1984.10670309. Buch, L. V. 1825. Physicalische beschreibung der Canarischen Inseln. Berlin, K. Akademie der wissenschaften. Byng, J. W., M. W. Chase, M. J. M. Christenhusz, M. F. Fay, W. S. Judd, D. J. Mabberley, A. N. Sennikov, D. E. Soltis, P. S. Soltis, P. F. Stevens, B. Briggs, S. Brockington, A. Chautems, J. C. Clark, J. Conran, E. Haston, M. Moller, M. Moore, R. Olmstead, M. Perret, L. Skog, J. Smith, D. Tank, M. Vorontsova & Weber, A. 2016. An update of the Angiosperm Phylogeny Group classification for the orders and families of flowering plants: APG IV. Bot J Linn Soc. 181(1): 1-20. doi:10.1111/boj.12385 Castroviejo, S. & Luceno, M. 1992. Salsola marujae, sp. nov., de las islas Canarias. Anales del Jardin Botánico de Madrid. 50(2): 259-260. Francisco-Ortega, J., A. Santos-Guerra, M. A. Carine & Jarvis, C. E. 2008. Plant hunting in Macaronesia by Francis Masson: the plants sent to Linnaeus and Linnaeus filius. Bot. J. Linn. Soc. 157(3): 393-428.10.1111/j.1095-8339.2008.00822.x Fuentes-Bazan, S., P. Uotila &T. Borsch 2012. A novel phylogeny-based generic classification for Chenopodium sensu lato, and a tribal rearrangement of Chenopodioideae (Chenopodiaceae). Willdenowia. 42(1): 5-24. doi:10.3372/wi.42.42101 Hedge, I. C., H. Akhani, H. Freitag, G. Kothe-Heinrich, D. Podlech, S. Rilke & Uotila, P. 1997. Chenopodiaceae. Flora Iranica. K. H. Rechinger. Graz. 172. Akademische Druck u. Verlagsanstalt. Iljin, M. M. 1936. Chenopodiaceae. Flora SSSR. B. K. Siskin. Leningrad, Izdatel’stvo Akademii Nauk SSSR. 6: 2–354. Kadereit, G., T. Borsch, K. Weising & Freitag, H. 2003. Phylogeny of Amaranthaceae and Chenopodiaceae and the evolution of C-4 photosynthesis. Int J Plant Sci. 164(6): 959-986. doi:10.1086/378649 Kadereit, G., E. V. Mavrodiev, E. H. Zacharias & Sukhorukov, A. P. 2010. Molecular Phylogeny of Atripliceae (Chenopodioideae, Chenopodiaceae): Implications for Systematics, Biogeography, Flower and Fruit Evolution, and the Origin of C-4 Photosynthesis. Am. J. Bot. 97(10): 1664-1687. doi:10.3732/ajb.1000169 Kapralov, M. V., H. Akhani, E. V. Voznesenskaya, G. Edwards, V. Franceschi & Roalson, E. H. 2006. Phylogenetic relationships in the Salicornioideae/Suaedoideae/Salsoloideae s.l. (Chenopodiaceae) Clade and a clarification of the phylogenetic position of Bienertia and Alexandra using multiple DNA sequence datasets. Syst. Bot. 31(3): 571-585. doi:10.1600/06-01.1 Kühn, U., V. Bittrich, R. Carolin, H. Freitag, I. C. Hedge, P. Uotila & Wilson, P. G. 1993. Chenopodiaceae. The families and genera of vascular plants. Vol 2. Flowering plants: dicotyledons. . K. Kubitzki. Berlin, Springer: 253–281. doi:10.1007/978-3-662-02899-5_26 Mucina, L. 2017. Caroxylon (Chenopodiaceae s. str.) in continental southern Africa and Madagascar: a preliminary nomenclatural synopsis and biogeographical considerations. Phytotaxa 312(2): 151-178.10.11646/phytotaxa.312.2.1. Piirainen, M., O. Liebisch & Kadereit, G. 2017. Phylogeny, biogeography, systematics and taxonomy of Salicornioideae (Amaranthaceae/Chenopodiaceae) - A cosmopolitan, highly specialized hygrohalophyte lineage dating back to the Oligocene. Taxon 66(1): 109-132. doi:10.12705/661.6. Pyankov, V., H. Ziegler, A. Kuz'min & Edwards, G. 2001. Origin and evolution of C-4 photosynthesis in the tribe Salsoleae (Chenopodiaceae) based on anatomical and biochemical types in leaves and cotyledons. Pl. Syst. Evol. 230 (1-2): 43-74. doi:10.1007/s006060170004 Pyankov, V. I., E. G. Artyusheva, G. E. Edwards, C. C. Black & Soltis, P. S. 2001. Phylogenetic analysis of tribe Salsoleae (Chenopodiaceae) based on ribosomal ITS sequences: Implications for the evolution of photosynthesis types. Am. J. Bot. 88(7): 1189-1198. doi:10.2307/3558329 Rudov, A., M. Mashkour, M. Djamali & Akhani, H. 2020. A Review of C-4 Plants in Southwest Asia: An ecological, geographical and taxonomical analysis of a region with high diversity of C4 Eudicots. Front. Plant Sci. 11.10.3389/fpls.2020.546518. Sage, R. F., P. A. Christin & Edwards, E. J. 2011. The C4 plant lineages of planet Earth. J Exp Bot. 62(9): 3155-3169. doi:10.1093/jxb/err048 Schüssler, C., H. Freitag, N. Koteyeva, D. Schmidt, G. Edwards, E. Voznesenskaya & Kadereit, G. 2017. Molecular phylogeny and forms of photosynthesis in tribe Salsoleae (Chenopodiaceae). J. Exp. Bot. 68 (2): 207-223.10.1093/jxb/erw432. Schütze, P. W., H. Freitag & Weising, K. 2003. An integrated molecular and morphological study of the subfamily Suaedoideae Ulbr. (Chenopodiaceae). Pl. Syst. Evol. 239(3-4): 257-286. doi:10.1007/s00606-003-0013-2 Sukhorukov, A. P., A. V. Fedorova, M. Kushunina & Mavrodiev, E. V. 2022. Akhania, a new genus for Salsola daghestanica, Caroxylon canescens and C. carpathum (Salsoloideae, Chenopodiaceae, Amaranthaceae). Phytokeys (211): 45-61.10.3897/phytokeys.211.89408. Tefarikis, D. T., H. Freitag & Kadereit, G. 2017. East meets West-Geographic groups of Salsola divaricata (Chenopodiaceae) on the Canary Islands and closely related species in Morocco. 23rd International Symposium ‘Biodiversity and Evolutionary Biology’ of the German Botanical Society in Munich, Sep 8-11, 2016. Tefarikis, D. T., D. F. Morales-Briones, Y. Yang, G. Edwards & Kadereit, G. 2022. On the hybrid origin of the C-2 Salsola divaricata agg. (Amaranthaceae) from C3 and C4 parental lineages. New Phytol. 234(5): 1876-1890. doi:10.1111/nph.18098. Voznesenskaya, E. V., V. R. Franceschi, V. I. Pyankov & Edwards, G. E. 1999. Anatomy, chloroplast structure and compartmentation of enzymes relative to photosynthetic mechanisms in leaves and cotyledons of species in the tribe Salsoleae (Chenopodiaceae). J. Exp. Bot. 50(341): 1779-1795. doi:10.1093/jxb/50.341.1779 Voznesenskaya, E. V., N. K. Koteyeva, H. Akhani, E. H. Roalson & Edwards, G. E. 2013. Structural and physiological analyses in Salsoleae (Chenopodiaceae) indicate multiple transitions among C-3, intermediate, and C4 photosynthesis. J. Exp. Bot. 64(12): 3583-3604. doi:10.1093/jxb/ert191; https://revistas.ucm.es/index.php/MBOT/article/view/94654

  3. 3
    Academic Journal
  4. 4
    Academic Journal
  5. 5
    Academic Journal
  6. 6
  7. 7
    Academic Journal

    المؤلفون: Keeley, J. E.

    المصدر: Functional Ecology, 1999 Feb 01. 13(1), 106-118.

  8. 8
    Academic Journal

    المؤلفون: Raven, J. A., Mercy, M. A., Lenton, T.

    المصدر: Philosophical Transactions: Biological Sciences, 1998 Jan . 353(1365), 19-28.

  9. 9
    Academic Journal
  10. 10
    Academic Journal
  11. 11
    Academic Journal
  12. 12
    Academic Journal
  13. 13
    Academic Journal
  14. 14
    Academic Journal

    المؤلفون: Keeley, Jon E., Rundel, Philip W.

    المصدر: International Journal of Plant Sciences, 2003 May . 164(S3), S55-S77.

    Relation: Author for correspondence and reprints; fax 559‐565‐3170; e‐mail jon_keeley@usgs.gov .; Thirty years ago I recall standing in front of the chalk board in George Laties’ laboratory at UCLA with James Bassham, there experiencing first‐hand the pervasive influence of the Benson‐Calvin cycle as I discussed evidence for the primary labeling of C‐4 in malic acid. (C. B. Osmond 1997)

  15. 15
  16. 16
    Academic Journal
  17. 17
    Academic Journal

    المصدر: Folia Geobotanica & Phytotaxonomica, 1993 Jan 01. 28(3), 247-260.

  18. 18
    Academic Journal
  19. 19
    Academic Journal
  20. 20
    Academic Journal

    المصدر: Proceedings of the National Academy of Sciences of the United States of America, 1988 Sep . 85(18), 6733-6737.