Showing 121 - 140 results of 44,329 for search '(((( a large increases ) OR ( b large decrease ))) OR ( ((a large) OR (via large)) decrease ))', query time: 1.33s Refine Results
  1. 121

    Data_Sheet_1_Predictors of sequence capture in a large-scale anchored phylogenomics project.PDF by Renato Nunes (5704595)

    Published 2022
    “…We investigated the impacts of specimen age, preservation method, and DNA concentration on sequence capture (number of captured sequences and sequence quality) while accounting for taxonomy and extracted tissue type in a large-scale butterfly phylogenomics project. …”
  2. 122

    Data_Sheet_2_Predictors of sequence capture in a large-scale anchored phylogenomics project.PDF by Renato Nunes (5704595)

    Published 2022
    “…We investigated the impacts of specimen age, preservation method, and DNA concentration on sequence capture (number of captured sequences and sequence quality) while accounting for taxonomy and extracted tissue type in a large-scale butterfly phylogenomics project. …”
  3. 123

    Data_Sheet_5_Predictors of sequence capture in a large-scale anchored phylogenomics project.PDF by Renato Nunes (5704595)

    Published 2022
    “…We investigated the impacts of specimen age, preservation method, and DNA concentration on sequence capture (number of captured sequences and sequence quality) while accounting for taxonomy and extracted tissue type in a large-scale butterfly phylogenomics project. …”
  4. 124

    Data_Sheet_8_Predictors of sequence capture in a large-scale anchored phylogenomics project.pdf by Renato Nunes (5704595)

    Published 2022
    “…We investigated the impacts of specimen age, preservation method, and DNA concentration on sequence capture (number of captured sequences and sequence quality) while accounting for taxonomy and extracted tissue type in a large-scale butterfly phylogenomics project. …”
  5. 125

    Data_Sheet_10_Predictors of sequence capture in a large-scale anchored phylogenomics project.CSV by Renato Nunes (5704595)

    Published 2022
    “…We investigated the impacts of specimen age, preservation method, and DNA concentration on sequence capture (number of captured sequences and sequence quality) while accounting for taxonomy and extracted tissue type in a large-scale butterfly phylogenomics project. …”
  6. 126

    Data_Sheet_4_Predictors of sequence capture in a large-scale anchored phylogenomics project.PDF by Renato Nunes (5704595)

    Published 2022
    “…We investigated the impacts of specimen age, preservation method, and DNA concentration on sequence capture (number of captured sequences and sequence quality) while accounting for taxonomy and extracted tissue type in a large-scale butterfly phylogenomics project. …”
  7. 127

    Data_Sheet_3_Predictors of sequence capture in a large-scale anchored phylogenomics project.PDF by Renato Nunes (5704595)

    Published 2022
    “…We investigated the impacts of specimen age, preservation method, and DNA concentration on sequence capture (number of captured sequences and sequence quality) while accounting for taxonomy and extracted tissue type in a large-scale butterfly phylogenomics project. …”
  8. 128

    Data_Sheet_6_Predictors of sequence capture in a large-scale anchored phylogenomics project.PDF by Renato Nunes (5704595)

    Published 2022
    “…We investigated the impacts of specimen age, preservation method, and DNA concentration on sequence capture (number of captured sequences and sequence quality) while accounting for taxonomy and extracted tissue type in a large-scale butterfly phylogenomics project. …”
  9. 129

    Data_Sheet_7_Predictors of sequence capture in a large-scale anchored phylogenomics project.PDF by Renato Nunes (5704595)

    Published 2022
    “…We investigated the impacts of specimen age, preservation method, and DNA concentration on sequence capture (number of captured sequences and sequence quality) while accounting for taxonomy and extracted tissue type in a large-scale butterfly phylogenomics project. …”
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  17. 137

    Deletion of murine <i>Rhoh</i> leads to de-repression of <i>Bcl-6</i> via decreased KAISO levels and accelerates a malignancy phenotype in a murine model of lymphoma by Hiroto Horiguchi (3215001)

    Published 2022
    “…RHOH was initially identified as a translocation partner with BCL-6 in non-Hodgkin lymphoma (NHL), and aberrant somatic hypermutation (SHM) in the 5ʹ untranslated region of the RHOH gene has also been detected in Diffuse Large B-Cell Lymphoma (DLBCL). …”
  18. 138

    Table 1_Cholesterol metabolic reprogramming drives the onset of DLBCL and represents a promising therapeutic target.docx by Lili Zhou (265076)

    Published 2025
    “…However, the specific role and underlying molecular mechanisms of cholesterol metabolism alterations in diffuse large B-cell lymphoma (DLBCL) remain poorly understood.…”
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