Pesquisas alternativas:
revolves. » evolves. (Expandir a Pesquisa), resolves. (Expandir a Pesquisa), evolved. (Expandir a Pesquisa)
revolvesdsssds. » evolvesdsssds. (Expandir a Pesquisa), resolvesdsssds. (Expandir a Pesquisa), evolveddsssds. (Expandir a Pesquisa)
resolve. » resolved. (Expandir a Pesquisa)
revolves. » evolves. (Expandir a Pesquisa), resolves. (Expandir a Pesquisa), evolved. (Expandir a Pesquisa)
revolvesdsssds. » evolvesdsssds. (Expandir a Pesquisa), resolvesdsssds. (Expandir a Pesquisa), evolveddsssds. (Expandir a Pesquisa)
resolve. » resolved. (Expandir a Pesquisa)
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1821
Data_Sheet_2_CircRNA-ceRNA Network Revealing the Potential Regulatory Roles of CircRNA in Alzheimer’s Disease Involved the cGMP-PKG Signal Pathway.DOCX
Publicado em 2021“...The characteristic pathologies include extracellular senile plaques formed by β-amyloid protein deposition, neurofibrillary tangles formed by hyperphosphorylation of tau protein, and neuronal loss with glial cell hyperplasia. ...”
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Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) flow diagram.
Publicado em 2023Assuntos: -
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Image_1_Genome-wide identification and characterization of OVATE family proteins in Betula luminifera reveals involvement of BlOFP3 and BlOFP5 genes in leaf development.tif
Publicado em 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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Table_1_Genome-wide identification and characterization of OVATE family proteins in Betula luminifera reveals involvement of BlOFP3 and BlOFP5 genes in leaf development.xlsx
Publicado em 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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Image_3_Genome-wide identification and characterization of OVATE family proteins in Betula luminifera reveals involvement of BlOFP3 and BlOFP5 genes in leaf development.tif
Publicado em 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. ...”