Showing 20,721 - 20,740 results of 109,021 for search '(( 5 ((a decrease) OR (mean decrease)) ) OR ( a ((nn decrease) OR (point decrease)) ))', query time: 1.10s Refine Results
  1. 20721

    Data_Sheet_1_Fertilization drives distinct biotic and abiotic factors in regulating functional groups of protists in a 5-year fertilization system.docx by Siyu Zhang (469556)

    Published 2022
    “…</p>Methods<p>We investigated the impacts of fertilization regimes on the diversity, composition and functional groups of protists and further disentangled the effects of multiple factors shaping the community composition of functional groups in a 5-year fertilization regime (CK, no fertilization; M, organic fertilization; MNPK, combined inorganic and organic fertilization; NPK, inorganic fertilization).…”
  2. 20722

    Table_5_Chemotaxis and Shorter O-Antigen Chain Length Contribute to the Strong Desiccation Tolerance of a Food-Isolated Cronobacter sakazakii Strain.xlsx by Chengqian Qian (5721260)

    Published 2022
    “…Integrated analyses of these omics suggested that 331 genes were found regulated at both transcriptional and protein levels (≥2.0- and ≥1.5-fold, respectively). Deletion of chemotaxis system encoded genes cheA and cheW resulted in decreased tolerance in both short- and long-term desiccation. …”
  3. 20723
  4. 20724
  5. 20725
  6. 20726
  7. 20727

    Table_1_Alterations of Striatal Subregions in a Prion Protein Gene V180I Mutation Carrier Presented as Frontotemporal Dementia With Parkinsonism.docx by Zhongyun Chen (11405870)

    Published 2022
    “…Sequence analysis disclosed a valine to isoleucine at codon 180 in PRNP. Compared to controls, this patient had a severe reduction (> 2SD) of standard uptake value ratio (SUVR) in the limbic and executive subregions but relative retention of metabolism in rostral motor and caudal motor subregions using [<sup>18</sup>F]-FDG PET/MRI, and the SUVR decreased significantly across the striatal in [<sup>18</sup>F]-DTBZ PET/CT, especially in the rostral motor and caudal motor subregions.…”
  8. 20728
  9. 20729
  10. 20730
  11. 20731
  12. 20732
  13. 20733
  14. 20734
  15. 20735
  16. 20736

    Data_Sheet_3_Two DNA Methyltransferases for Site-Specific 6mA and 5mC DNA Modification in Xanthomonas euvesicatoria.pdf by Hye-Jee Park (3594245)

    Published 2021
    “…Xe(XvDMT2) was more tolerant to EtOH than Xe(XvDMT1), which had enhanced tolerance to sorbitol but decreased tolerance to polymyxin B. Using single-molecule real-time sequencing and methylation-sensitive restriction enzymes, we successfully predicted putative motifs methylated by XvDMT1 and XvDMT2, which are previously uncharacterized 6mA and 5mC DNA MTases, respectively. …”
  17. 20737

    Data_Sheet_4_Two DNA Methyltransferases for Site-Specific 6mA and 5mC DNA Modification in Xanthomonas euvesicatoria.PDF by Hye-Jee Park (3594245)

    Published 2021
    “…Xe(XvDMT2) was more tolerant to EtOH than Xe(XvDMT1), which had enhanced tolerance to sorbitol but decreased tolerance to polymyxin B. Using single-molecule real-time sequencing and methylation-sensitive restriction enzymes, we successfully predicted putative motifs methylated by XvDMT1 and XvDMT2, which are previously uncharacterized 6mA and 5mC DNA MTases, respectively. …”
  18. 20738
  19. 20739

    DataSheet1_Refinement of SARS-CoV-2 envelope protein structure in a native-like environment by molecular dynamics simulations.docx by Rui Yang (293531)

    Published 2022
    “…<p>COVID-19 has become an unprecedented threat to human health. The SARS-CoV-2 envelope (E) protein plays a critical role in the viral maturation process and pathogenesis. …”
  20. 20740

    Data_Sheet_2_Two DNA Methyltransferases for Site-Specific 6mA and 5mC DNA Modification in Xanthomonas euvesicatoria.pdf by Hye-Jee Park (3594245)

    Published 2021
    “…Xe(XvDMT2) was more tolerant to EtOH than Xe(XvDMT1), which had enhanced tolerance to sorbitol but decreased tolerance to polymyxin B. Using single-molecule real-time sequencing and methylation-sensitive restriction enzymes, we successfully predicted putative motifs methylated by XvDMT1 and XvDMT2, which are previously uncharacterized 6mA and 5mC DNA MTases, respectively. …”