Showing 301 - 320 results of 1,027 for search '"vascular plants"', query time: 0.12s Refine Results
  1. 301

    Flora of the city of Podgorica, Montenegro: Taxonomic analysis by Stešević Danijela, Jovanović S.

    Published 2008-01-01
    “…The check-list of spontaneously growing vascular plants includes 1227 species and subspecies belonging to 545 genera and 118 families. …”
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    Article
  2. 302

    THE VEGETATION AROUND OSOI LAKE (BACĂU COUNTY) by OPREA ADRIAN, SÎRBU CULIŢĂ

    Published 2009-12-01
    “…A study about the flora and vegetation of the Osoi lake in Goşman-Tarcău Mountains (Eastern Carpathians, Romania) was made. Some of the vascular plants, previously cited in region, have been confirmed by us. …”
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    Article
  3. 303

    <it>Erwinia carotovora </it>elicitors and <it>Botrytis cinerea </it>activate defense responses in <it>Physcomitrella patens</it> by Bentancor Marcel, Gaggero Carina, Castro Alexandra, Oliver Juan, Ponce de León Inés, Vidal Sabina

    Published 2007-10-01
    “…<p>Abstract</p> <p>Background</p> <p>Vascular plants respond to pathogens by activating a diverse array of defense mechanisms. …”
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    Article
  4. 304

    Current and past climate co‐shape community‐level plant species richness in the Western Siberian Arctic by Vitalii Zemlianskii, Philipp Brun, Niklaus E. Zimmermann, Ksenia Ermokhina, Olga Khitun, Natalia Koroleva, Gabriela Schaepman‐Strub

    Published 2024-03-01
    “…We investigated the relative importance of environmental and anthropogenic predictors of community‐level plant species richness in the Western Siberian Arctic using macroecological models trained with an extensive geobotanical dataset. We included vascular plants, mosses and lichens in our analysis, as non‐vascular plants substantially contribute to species richness and ecosystem functions in the Arctic. …”
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    Article
  5. 305

    Effects of Protein Level on the Production and Growth Performance of Juvenile Chinese Mitten Crab (<i>Eriocheir sinensis</i>) and Environmental Parameters in Paddy Fields by Yilin Yu, Jiwu Wan, Xiaochen Liang, Yuquan Wang, Xueshen Liu, Jie Mei, Na Sun, Xiaodong Li

    Published 2022-06-01
    “…The biomass and species of phytoplankton, zooplankton, aquatic vascular plants, and zoobenthos in the paddy field were affected by crabs and their diet. …”
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    Article
  6. 306

    The Plant Short-Chain Dehydrogenase (SDR) superfamily: genome-wide inventory and diversification patterns by Moummou Hanane, Kallberg Yvonne, Tonfack Libert Brice, Persson Bengt, van der Rest Benoît

    Published 2012-11-01
    “…The multiplicity of SDRs in plant kingdom is mainly explained by the diversification of large families involved in different secondary metabolism pathways, suggesting that the chemical diversification that accompanied the emergence of vascular plants acted as a driving force for SDR evolution.…”
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    Article
  7. 307

    Evolutionary and Structural Analysis of PP16 in Viridiplantae by Domingo Jiménez-López, Beatriz Xoconostle-Cázares, Berenice Calderón-Pérez, Brenda Yazmín Vargas-Hernández, Leandro Alberto Núñez-Muñoz, José Abrahán Ramírez-Pool, Roberto Ruiz-Medrano

    Published 2024-02-01
    “…These proteins contain a membrane-binding C2 domain shared with PP16 proteins in vascular plants. In silico analysis of the predicted structure of the PP16 protein family identified several β-sheets, one α-helix, and intrinsically disordered regions. …”
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    Article
  8. 308

    Cultural importance, availability and conservation status of Spanish wild medicinal plants: Implications for sustainability by J. Mateo‐Martín, G. Benítez, A. Gras, M. Molina, V. Reyes‐García, J. Tardío, A. Verde, M. Pardo‐de‐Santayana

    Published 2023-10-01
    “…We focus on Spain, located in one of the world's 25 biodiversity hotspots and the most diverse country in Europe regarding vascular plants (7071 species, 1357 endemic), while also being culturally and linguistically diverse. …”
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    Article
  9. 309

    Physcomitrium patens CAD1 has distinct roles in growth and resistance to biotic stress by Shan Jiang, Xu Tian, Xiaolong Huang, Jiankang Xin, Huiqing Yan

    Published 2022-11-01
    “…Abstract Background Physcomitrium patens provides an evolutionary link between green algae and vascular plants. Although the genome of P. patens includes orthologs of all the core lignin biosynthetic enzymes, the occurrence of lignin in moss is very controversial. …”
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    Article
  10. 310

    Initial carbon storage in new tephra layers of Mt. Talang in Sumatra as affected by pioneer plants by Fiantis, Dian, Nelson, Malik, Jusop, Shamshuddin, Tee, Boon Goh, Van Ranst, Eric

    Published 2016
    “…After 16 months, the surface was transformed into a green biofilm of lichen. Vascular plants (grasses and shrubs) started to be established after 2 years. …”
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    Article
  11. 311

    ANALYSIS OF THE FLORA OF RESIDENTIAL AND TECHNOGENIC AREAS OF GROZNY CITY by M. Kh. Alikhadzhiev, R. S. Erzhapova

    Published 2014-11-01
    “…The process of territorial expansion of the city is accompanied by intensive construction of industrial and social facilities, road network is actively developed, that leads to the transformation of natural vegetation, the appearance of manmade habitats which are actively colonized by segetal-ruderal species.Aim of the work is inventory of flora of disturbed habitats and the study of its current state, identify the taxonomic composition of phytocenoses.Field works were carried with help of route-floristic method in different growing seasons 2010-2012., technogenic and residential area of the city were studied.According to research a list of vascular plants of disturbed habitats numbering 237 species was compiled. …”
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    Article
  12. 312

    Global and Regional IUCN Red List Assessments: 4 by Giuseppe Fenu, Giulio Ferretti, Matilde Gennai, Agustín Lahora, Antonio J. Mendoza-Fernández, Juan Mota, Jesús Robles, Lluís Serra, Hedwig Schwarzer, Pedro Sanchez-Gomez, Daniele Viciani, Simone Orsenigo

    Published 2017-11-01
    “…In this contribution, the conservation status assessments of three vascular plants are presented following to IUCN categories and criteria. …”
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    Article
  13. 313

    Sequestration and Transport of Lignin Monomeric Precursors by Ke-Wei Zhang, Yu-Chen Miao, Chang-Jun Liu

    Published 2011-01-01
    “…It is essential for the viability of vascular plants. Lignin precursors, the monolignols, are synthesized within the cytosol of the cell. …”
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    Article
  14. 314

    Global and Regional IUCN Red List Assessments: 14 by Giuseppe Fenu, Hayder M. Al-Rammahi, Salvatore Cambria, Antonia E. Cristaudo, Bekhruz S. Khabibullaev, Mohammad K. Mohammad, Khabibullo F. Shomurodov, Gianmarco Tavilla, Simone Orsenigo

    Published 2022-11-01
    “…In this contribution, the conservation status assessment of three vascular plants according to IUCN categories and criteria are presented. …”
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    Article
  15. 315

    KNOX genes: versatile regulators of plant development and diversity. by Hay, A, Tsiantis, M

    Published 2010
    “…Knotted1-like homeobox (KNOX) proteins are homeodomain transcription factors that maintain an important pluripotent cell population called the shoot apical meristem, which generates the entire above-ground body of vascular plants. KNOX proteins regulate target genes that control hormone homeostasis in the meristem and interact with another subclass of homeodomain proteins called the BELL family. …”
    Journal article
  16. 316

    A checklist of the flora of Budongo Forest Reserve, Uganda, with notes on ecology and phenology by Synnott, T

    Published 1985
    “…<p>All species of vascular plants known to occur in the Forest Reserve, including wooded grassland, are listed with local names, collection numbers, seasons of flowering and fruiting, and habitats.…”
    Working paper
  17. 317

    Relationship between Species Richness, Biomass and Structure of Vegetation and Mycobiota along an Altitudinal Transect in the Polar Urals by Anton G. Shiryaev, Ursula Peintner, Vladimir V. Elsakov, Svetlana Yu. Sokovnina, Denis A. Kosolapov, Olga S. Shiryaeva, Nadezhda M. Devi, Andrei A. Grigoriev

    Published 2020-12-01
    “…Aboveground species richness patterns of vascular plants, aphyllophoroid macrofungi, bryophytes and lichens were compared along an altitudinal gradient (80–310 m a.s.l.) on the Slantsevaya mountain at the eastern macroslope of the Polar Urals (Russia). …”
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    Article
  18. 318

    Nanopore sequencing of organellar genomes revealed heteroplasmy in simple thalloid and leafy liverworts by Jakub Sawicki, Katarzyna Krawczyk, Mateusz Kurzyński, Mateusz Maździarz, Łukasz Paukszto, Paweł Sulima, Monika Szczecińska

    Published 2023-09-01
    “…In this study, we investigate the presence of heteroplasmy and genomic variation in liverworts, a group of non-vascular plants, using nanopore sequencing technology. …”
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    Article
  19. 319
  20. 320

    Elevational trends in photosynthetic capacity and trait relationships of subtropical montane understorey bryophytes by Zhe Wang, Chunyan Pi, Weikai Bao, Maaike Y. Bader

    Published 2022-09-01
    “…More detailed modelling than for vascular plants may be needed to account for the alternative solutions bryophytes use to adjust to their environment.…”
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    Article