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181
Table 4_Epizootic shell disease induces systemic transcriptomic shifts in Homarus americanus, characterized by increased shell degradation and impaired energy metabolism across tis...
Published 2025“…The expression of the anti-lipopolysaccharide factor gene was increased in all tissues, indicating a systemic immune response to bacterial infection. …”
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182
Table 3_Epizootic shell disease induces systemic transcriptomic shifts in Homarus americanus, characterized by increased shell degradation and impaired energy metabolism across tis...
Published 2025“…The expression of the anti-lipopolysaccharide factor gene was increased in all tissues, indicating a systemic immune response to bacterial infection. …”
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183
Table 2_Epizootic shell disease induces systemic transcriptomic shifts in Homarus americanus, characterized by increased shell degradation and impaired energy metabolism across tis...
Published 2025“…The expression of the anti-lipopolysaccharide factor gene was increased in all tissues, indicating a systemic immune response to bacterial infection. …”
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184
Table 7_Epizootic shell disease induces systemic transcriptomic shifts in Homarus americanus, characterized by increased shell degradation and impaired energy metabolism across tis...
Published 2025“…The expression of the anti-lipopolysaccharide factor gene was increased in all tissues, indicating a systemic immune response to bacterial infection. …”
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185
Table 5_Epizootic shell disease induces systemic transcriptomic shifts in Homarus americanus, characterized by increased shell degradation and impaired energy metabolism across tis...
Published 2025“…The expression of the anti-lipopolysaccharide factor gene was increased in all tissues, indicating a systemic immune response to bacterial infection. …”
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186
Low temperature reduces byssus adhesion of highly invasive golden mussels: Influencing mechanisms and antifouling implications
Published 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. …”