Spatial Reconfiguration of Living Stems and Snags Reveals Stand Structural Simplification During Moso Bamboo (<i>Phyllostachys edulis</i> (Carrière) J.Houz.) Invasion into Coniferbroad-Leaf Forests. [PDF]
Chen X, Zhou X, Jin S, Bai S.
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Effects of Different Soil Phosphorus Levels on the Physiological and Growth Characteristics of <i>Phyllostachys edulis</i> (Moso Bamboo) Seedlings. [PDF]
Yang Z, Zhou B.
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Effects of Simulated Nitrogen Deposition on the Physiological and Growth Characteristics of Seedlings of Two Typical Subtropical Tree Species. [PDF]
Yang Z, Zhou B.
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Research on bamboo strip density control technology based on deep learning. [PDF]
Liu Z +6 more
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Genomics reveal population structure, genetic diversity and evolutionary history of <i>Phyllostachys edulis</i> (moso bamboo) in global natural distribution. [PDF]
Li F +5 more
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Genome-wide identification, characterization, and expression pattern analysis of the glyoxalase gene family in Phyllostachys pubescens during abiotic stresses. [PDF]
Kumari A +5 more
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The six-year decomposition of coarse woody debris drives shifts in soil fungal communities in subtropical forests. [PDF]
Wang N +7 more
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Effects of Moso bamboo tubes on color, aroma, physicochemical properties and composition of bitter buckwheat liquor. [PDF]
Du J +10 more
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Nitrogen trade-offs between roots and leaves of Moso bamboo and different effects of management practices on root traits and processes in subtropical forests. [PDF]
Jiang J +6 more
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Genome-wide identification, characterization and expression analysis of CNGC Genes in moso bamboo (Phyllostachys edulis). [PDF]
Tan J +5 more
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