يعرض 181 - 186 نتائج من 186 نتيجة بحث عن '(( significant decrease decrease ) OR ( ((significant all) OR (significant anti)) decrease ))~', وقت الاستعلام: 0.35s تنقيح النتائج
  1. 181

    Table 4_Epizootic shell disease induces systemic transcriptomic shifts in Homarus americanus, characterized by increased shell degradation and impaired energy metabolism across tis... حسب Minseo Kim (773205)

    منشور في 2025
    "…The expression of the anti-lipopolysaccharide factor gene was increased in all tissues, indicating a systemic immune response to bacterial infection. …"
  2. 182

    Table 3_Epizootic shell disease induces systemic transcriptomic shifts in Homarus americanus, characterized by increased shell degradation and impaired energy metabolism across tis... حسب Minseo Kim (773205)

    منشور في 2025
    "…The expression of the anti-lipopolysaccharide factor gene was increased in all tissues, indicating a systemic immune response to bacterial infection. …"
  3. 183

    Table 2_Epizootic shell disease induces systemic transcriptomic shifts in Homarus americanus, characterized by increased shell degradation and impaired energy metabolism across tis... حسب Minseo Kim (773205)

    منشور في 2025
    "…The expression of the anti-lipopolysaccharide factor gene was increased in all tissues, indicating a systemic immune response to bacterial infection. …"
  4. 184

    Table 7_Epizootic shell disease induces systemic transcriptomic shifts in Homarus americanus, characterized by increased shell degradation and impaired energy metabolism across tis... حسب Minseo Kim (773205)

    منشور في 2025
    "…The expression of the anti-lipopolysaccharide factor gene was increased in all tissues, indicating a systemic immune response to bacterial infection. …"
  5. 185

    Table 5_Epizootic shell disease induces systemic transcriptomic shifts in Homarus americanus, characterized by increased shell degradation and impaired energy metabolism across tis... حسب Minseo Kim (773205)

    منشور في 2025
    "…The expression of the anti-lipopolysaccharide factor gene was increased in all tissues, indicating a systemic immune response to bacterial infection. …"
  6. 186

    Low temperature reduces byssus adhesion of highly invasive golden mussels: Influencing mechanisms and antifouling implications حسب Miaolian Zhang (21974951)

    منشور في 2025
    "…Our results showed that low-temperature exposures significantly reduced adhesion rates of golden mussels, primarily by limiting byssus production associated with impaired synthesis and secretion of byssal proteins and decreasing byssus breaking force. …"