Vigo
Campus
China Agricultural University
Haidian, ChinaPublicacións en colaboración con investigadores/as de China Agricultural University (17)
2023
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Effect of irrigation levels on the physiological responses of petunia cultivars for selection
Acta Ecologica Sinica
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Enhancing Lettuce Growth and Cadmium and Lead Tolerance Through Biochar and Bacteria
Gesunde Pflanzen, Vol. 75, Núm. 6, pp. 2685-2696
2022
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Enzyme-Loaded Hemin/G-Quadruplex-Modified ZIF-90 Metal–Organic Framework Nanoparticles: Bioreactor Nanozymes for the Cascaded Oxidation of N-hydroxy-l-arginine and Sensing Applications
Small, Vol. 18, Núm. 11
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Epic narratives of the Green Revolution in Brazil, China, and India
Agriculture and Human Values, Vol. 39, Núm. 1, pp. 249-267
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Exploring the potential effect of Achnatherum splendens L.–derived biochar treated with phosphoric acid on bioavailability of cadmium and wheat growth in contaminated soil
Environmental Science and Pollution Research, Vol. 29, Núm. 25, pp. 37676-37684
2018
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Slow Pyrolysis as a Promising Approach for Producing Biochar from Sunflower Straw
BioResources, Vol. 13, Núm. 4, pp. 7455-7469
2017
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Characteristics and potential values of bio-products derived from switchgrass grown in a saline soil using a fixed-bed slow pyrolysis system
BioResources, Vol. 12, Núm. 3, pp. 6529-6544
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The database of the PREDICTS (Projecting Responses of Ecological Diversity In Changing Terrestrial Systems) project
Ecology and Evolution, Vol. 7, Núm. 1, pp. 145-188
2016
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Characteristics and potential values of bio-oil, syngas and biochar derived from Salsola collina Pall. in a fixed bed slow pyrolysis system
Bioresource Technology, Vol. 220, pp. 378-383
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Co-production of Biochar, Bio-oil, and Syngas from Tamarix chinensis Biomass under Three Different Pyrolysis Temperatures
BioResources, Vol. 11, Núm. 4, pp. 8929-8940
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Co-production of biochar, bio-oil and syngas from halophyte grass (Achnatherum splendens L.) under three different pyrolysis temperatures
Bioresource Technology, Vol. 211, pp. 457-463
2009
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The bifidobacterium dentium Bd1 genome sequence reflects its genetic adaptation to the human oral cavity
PLoS Genetics, Vol. 5, Núm. 12
2007
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Exploiting Bifidobacterium genomes: The molecular basis of stress response
International Journal of Food Microbiology, Vol. 120, Núm. 1-2, pp. 13-24
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GANNPhos: A new phosphorylation site predictor based on a genetic algorithm integrated neural network
Protein Engineering, Design and Selection, Vol. 20, Núm. 8, pp. 405-412
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Molecular characterization of hsp20, encoding a small heat shock protein of Bifidobacterium breve UCC2003
Applied and Environmental Microbiology, Vol. 73, Núm. 14, pp. 4695-4703
2006
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How high G+C Gram-positive bacteria and in particular bifidobacteria cope with heat stress: Protein players and regulators
FEMS Microbiology Reviews, Vol. 30, Núm. 5, pp. 734-759
2005
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The ClgR protein regulates transcription of the clpP operon in Bifidobacterium breve UCC 2003
Journal of Bacteriology, Vol. 187, Núm. 24, pp. 8411-8426