Alternatieven:
revolves. » evolves. (Zoekopdracht uitbreiden), resolves. (Zoekopdracht uitbreiden), evolved. (Zoekopdracht uitbreiden)
revolvesdsssds. » evolvesdsssds. (Zoekopdracht uitbreiden), resolvesdsssds. (Zoekopdracht uitbreiden), evolveddsssds. (Zoekopdracht uitbreiden)
resolve. » resolved. (Zoekopdracht uitbreiden)
revolves. » evolves. (Zoekopdracht uitbreiden), resolves. (Zoekopdracht uitbreiden), evolved. (Zoekopdracht uitbreiden)
revolvesdsssds. » evolvesdsssds. (Zoekopdracht uitbreiden), resolvesdsssds. (Zoekopdracht uitbreiden), evolveddsssds. (Zoekopdracht uitbreiden)
resolve. » resolved. (Zoekopdracht uitbreiden)
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1841
Table_2_Genome-wide identification and characterization of OVATE family proteins in Betula luminifera reveals involvement of BlOFP3 and BlOFP5 genes in leaf development.xlsx
Gepubliceerd in 2022“…In conclusion, our study demonstrates that BlOFP3 and BlOFP5 were involved in leaf shape and thickness regulation by forming a complex with BlKNAT5, BlBLH6 and BlBLH7. …”
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1842
Image_2_Genome-wide identification and characterization of OVATE family proteins in Betula luminifera reveals involvement of BlOFP3 and BlOFP5 genes in leaf development.tif
Gepubliceerd in 2022“…In conclusion, our study demonstrates that BlOFP3 and BlOFP5 were involved in leaf shape and thickness regulation by forming a complex with BlKNAT5, BlBLH6 and BlBLH7. …”
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1843
Image_4_Genome-wide identification and characterization of OVATE family proteins in Betula luminifera reveals involvement of BlOFP3 and BlOFP5 genes in leaf development.tif
Gepubliceerd in 2022“…In conclusion, our study demonstrates that BlOFP3 and BlOFP5 were involved in leaf shape and thickness regulation by forming a complex with BlKNAT5, BlBLH6 and BlBLH7. …”
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1844
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1845
A Photo-Smiles Rearrangement: Mechanistic Investigation of the Formation of Blatter Radical Helicenes
Gepubliceerd in 2025“…Structural analysis of radicals <i>leuco</i> forms by two-dimensional correlation nuclear magnetic resonance methods demonstrated that the photocyclization involves a Smiles rearrangement and exclusive formation of a single rearranged product for all substrates. …”
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1846
Genes with significant differential transcript expression in early and advanced keratoconus.
Gepubliceerd in 2022Onderwerpen: -
1847
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1848
Transcript relative expression of epidermal terminal differentiation genes in control corneal epithelium.
Gepubliceerd in 2022Onderwerpen: -
1849
Variation in KRT14 expression in the corneal epithelium in keratoconus.
Gepubliceerd in 2022Onderwerpen: -
1850
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1851
Cornified envelopes extraction from human abdominal epidermis and human corneal epithelium.
Gepubliceerd in 2022Onderwerpen: -
1852
Differentially expressed transcripts in early and advanced keratoconus.
Gepubliceerd in 2022Onderwerpen: -
1853
Variation in epithelial thickness on the same section of the corneal epithelium in keratoconus.
Gepubliceerd in 2022Onderwerpen: -
1854
Comparative expression of NRF2 pathway genes in early and advanced keratoconus.
Gepubliceerd in 2022Onderwerpen: -
1855
Transcript relative expression of NRF2 pathway genes in control and keratoconus corneal epithelium.
Gepubliceerd in 2022Onderwerpen: -
1856
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1857
Biofilm forming ability of selected strains isolated from infected orthopaedic implants.
Gepubliceerd in 2023Onderwerpen: -
1858
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1859
The raw data shown are the values used to generate the graphs in Fig 4, panels A, B and D.
Gepubliceerd in 2025Onderwerpen: -
1860