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Betula platyphylla Sukaczev

FAMÍLIABetulaceae

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61 referências consultadas para esta espécie.

  • BIBLIOGRAFIA 2026
    [Response of non-structural carbohydrates in leaves of different life-form plants to altitude in secondary Betula platyphylla forests in mountainous area of northern Hebei, China]
  • BIBLIOGRAFIA 2026
    [Spatial distribution and interspecific associations of dominant species in natural secondary forests of Xiao-xing'an Mountains, China]
  • BIBLIOGRAFIA 2026
    A BpbZIP4 transcription factor enhances drought resistance and root development in <i>Betula platyphylla</i>: insights into a gene regulatory network.
  • BIBLIOGRAFIA 2026
    Analysis of BpbHLH Gene Family Responsive to MeJA Signalling in Betula platyphylla Suk. and Functional Mechanisms of BpbHLH42/44 in Genetic Improvement and Triterpenoid Biosynthesis
  • BIBLIOGRAFIA 2026
    BpFLC coordinates seasonal and age-related flowering in Betula platyphylla through environmental cues and epigenetic regulation
  • BIBLIOGRAFIA 2026
    Effects of different harvesting methods on soil bacterial diversity in Betula platyphylla secondary forest in Daxing 'an Mountains, inner Mongolia
  • BIBLIOGRAFIA 2026
    Genome-Wide Identification and Expression Analysis of the C3H Gene Family in Betula platyphylla
  • BIBLIOGRAFIA 2026
    Identification of probable pectinesterase as a major allergen of pollen of the Asian white birch (Betula platyphylla)in northern China.
  • BIBLIOGRAFIA 2026
    Overexpression of BpWOX4 Enhances Salt Stress Tolerance in Betula platyphylla
  • BIBLIOGRAFIA 2026
    Rapid changes in major nutrients and fungal community during early decomposition of <i>Betula platyphylla</i> litter on volcanic lava plateau.
  • BIBLIOGRAFIA 2026
    Responses and driving mechanisms of leaf functional traits of Betula platyphylla along an elevational gradient in the Niyang River Basin, southeastern Tibetan Plateau
  • BIBLIOGRAFIA 2026
    The bp-miR156c-BpSPL2 module positive regulates drought tolerance by mediating lateral root development and reactive oxygen species scavenging in Betula platyphylla
  • BIBLIOGRAFIA 2026
    The BpFLA1 and BpFLA2 genes are involved in regulating secondary xylem development in Betula platyphylla and respond to artificial bending.
  • BIBLIOGRAFIA 2025
    Betulin, an active component from Chinese herb birch bark, suppresses tumor angiogenesis and tumor growth by inhibiting the PAX2/VEGF-A/VEGR2 signaling pathway in non-small cell lung cancer
  • BIBLIOGRAFIA 2025
    BpGRAS1 confers salt tolerance by mediating osmotic potential and reactive oxygen species scavenging capacity in Betula platyphylla.
  • BIBLIOGRAFIA 2025
    Cold-Temperate Betula platyphylla Sukaczev Forest Can Provide More Soil Nutrients to Increase Microbial Alpha Diversity and Microbial Necromass Carbon
  • BIBLIOGRAFIA 2025
    Different Types of Planted Forest Accumulate Specific Heavy Metals in Western Beijing
  • BIBLIOGRAFIA 2025
    Ectomycorrhizal fungal community varies across broadleaf species and developmental stages.
  • BIBLIOGRAFIA 2025
    Effects of drought on the xylem formation process and growth of Betula platyphylla and Fraxinus mandshurica
  • BIBLIOGRAFIA 2025
    Elucidating the Role and Regulatory Mechanism of BpbZIP5 in the Saline-Alkaline Stress Response in Betula platyphylla.
  • BIBLIOGRAFIA 2025
    Functional Characterization of BpYAB1 in Birch: Overexpression Leads to Leaf Curling, Developmental Defects, and Elevated Water Loss
  • BIBLIOGRAFIA 2025
    Geo-climatic factors and soil properties affect phenolic compound synthesis and antioxidant activities in Betula platyphylla in Northeast China
  • BIBLIOGRAFIA 2025
    Induced photosynthesis significantly influences biomass in Betula platyphylla seedlings compared to steady-state photosynthesis under different nitrogen forms
  • BIBLIOGRAFIA 2025
    Integrated metabolome-transcriptome analyses reveal key pathways regulating staminate catkin development and pollen maturation in <i>Betula platyphylla</i>.
  • BIBLIOGRAFIA 2025
    Nonlinear hysteretic behavior and anchorage performance of <i>Betula platyphylla</i> roots under cyclic loading.
  • BIBLIOGRAFIA 2025
    Self-incompatibility in monoecious Betula platyphylla involves S-RNase mechanisms
  • BIBLIOGRAFIA 2025
    Stem CO2 efflux characteristics and their response to environmental factors in a boreal Betula platyphylla secondary forest in China
  • BIBLIOGRAFIA 2025
    Stochastic processes dominate the community assembly of ectomycorrhizal fungi associated with Betula platyphylla in Inner Mongolia, China
  • BIBLIOGRAFIA 2025
    The GRAS transcription factor BpGRAS34 functions as a positive regulator of salt stress response in Betula platyphylla.
  • BIBLIOGRAFIA 2025
    The WUSCHEL-Related Homeobox 4 (BpWOX4) Promotes Secondary Growth Through Lignin Biosynthesis Activation in Betula platyphylla
  • BIBLIOGRAFIA 2025
    Unraveling cadmium tolerance mechanisms in Betula platyphylla through a hierarchical gene regulatory network in hormone signaling.
  • BIBLIOGRAFIA 2025
    Warming aggravates physiological drought in Betula platyphylla during the winter–spring transitional period in Greater Khingan Mountains
  • BIBLIOGRAFIA 2024
    BpTCP19 targets BpWRKY53 to negatively regulate jasmonic acid- and dark-induced leaf senescence in Betula platyphylla
  • BIBLIOGRAFIA 2024
    Diversity of Microbial Functional Genes Promotes Soil Nitrogen Mineralization in Boreal Forests
  • BIBLIOGRAFIA 2024
    Effects of phenological changes on non-structural carbohydrates in leaves of dominant species in the cold temperate forest
  • BIBLIOGRAFIA 2024
    The miR156-SPL4/SPL9 module regulates leaf and lateral branch development in Betula platyphylla
  • BIBLIOGRAFIA 2024
    The overexpression of the BpTCP20 gene enhances cell proliferation and improves tolerance to drought and salt stress in Betula platyphylla
  • BIBLIOGRAFIA 2023
    Tissue Metabolic Responses to Artificial Bending and Gravitation Stimuli in Betula platyphylla
  • BIBLIOGRAFIA 2022
    Additive Root Biomass Equations for Betula platyphylla Suk. Plantations in Northeast China
  • BIBLIOGRAFIA 2022
    Alternating processes of dry and wet nitrogen deposition have different effects on the function of canopy leaves: Implications for leaf photosynthesis
  • BIBLIOGRAFIA 2022
    Genome-level analysis of BpR2R3-MYB family genes transcribed in seedlings of Betula platyphylla and BpR2R3- MYB15 enhanced flavonoid production
  • BIBLIOGRAFIA 2021
    A R2R3-MYB Transcription Factor Gene, BpMYB123, Regulates BpLEA14 to Improve Drought Tolerance in Betula platyphylla
  • BIBLIOGRAFIA 2021
    BpTCP3 Transcription Factor Improves Salt Tolerance of Betula platyphylla by Reducing Reactive Oxygen Species Damage
  • BIBLIOGRAFIA 2021
    Genome sequence and evolution of<i>Betula platyphylla</i>
  • BIBLIOGRAFIA 2021
    Increased Litter Greatly Enhancing Soil Respiration in Betula platyphylla Forests of Permafrost Region, Northeast China
  • BIBLIOGRAFIA 2020
    Overexpression of BplERD15 Enhances Drought Tolerance in Betula platyphylla Suk.
  • BIBLIOGRAFIA 2020
    Transcriptome Sequencing Analysis of Birch (Betula platyphylla Sukaczev) under Low-Temperature Stress
  • BIBLIOGRAFIA 2019
    Genome Survey Sequencing of Betula platyphylla
  • BIBLIOGRAFIA 2019
    Physiological and Transcriptome Analysis of a Yellow-Green Leaf Mutant in Birch (Betula platyphylla × B. Pendula)
  • BIBLIOGRAFIA 2018
    Bioactivity evaluations of betulin identified from the bark of Betula platyphylla var. japonica for cancer therapy
  • BIBLIOGRAFIA 2018
    Complete chloroplast genome sequence of Betula platyphylla: gene organization, RNA editing, and comparative and phylogenetic analyses
  • BIBLIOGRAFIA 2016
    Cryptosporella platyphylla, a new species associated with Betula platyphylla in China
  • BIBLIOGRAFIA 2016
    Expression of the <scp>MYB</scp> transcription factor gene <i>Bpl<scp>MYB</scp>46</i> affects abiotic stress tolerance and secondary cell wall deposition in <i>Betula platyphylla</i>
  • BIBLIOGRAFIA 2014
    Overexpression of <i><scp>BpAP1</scp></i> induces early flowering and produces dwarfism in <i>Betula platyphylla</i> × <i>Betula pendula</i>
  • BIBLIOGRAFIA 2005
    Reciprocal distribution of two congeneric trees, <i>Betula platyphylla</i> var. <i>japonica</i> and <i>Betula maximowicziana</i>, in a landscape dominated by anthropogenic disturbances in northeastern
  • BIBLIOGRAFIA 2004
    Antioxidant and anticancer activity of extract from Betula platyphylla var. japonica
  • BIBLIOGRAFIA 2004
    INTERVASCULAR PITTING ACROSS THE ANNUAL RING BOUNDARY IN BETULA PLATYPHYLLA VAR. JAPONICA AND FRAXINUS MANDSHURICA VAR. JAPONICA
  • BIBLIOGRAFIA 2003
    Ozone Bleaching of Atmospheric Acetic Acid Hardwood Pulp from Betula platyphylla var. japonica Hara
  • BIBLIOGRAFIA 2001
    Manganese toxicity as indicated by visible foliar symptoms of Japanese white birch (Betula platyphylla var. japonica)
  • BIBLIOGRAFIA 1985
    Comparison of the photosynthetic responses to temperature and light of <i>Betula</i><i>maximowicziana</i> and <i>Betula</i><i>platyphylla</i> var. <i>japonica</i>
  • BIBLIOGRAFIA
    Comparative RNA-Seq analysis of Betula platyphylla under low and high temperature stresses