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we decrease » _ decrease (Expand Search), nn decrease (Expand Search), teer decrease (Expand Search)
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39361
Image_4_Transcriptomic and Epigenomic Dynamics of Honey Bees in Response to Lethal Viral Infection.tif
Published 2020“…We identify the temporal dynamics of the transcriptomic response to with more genes differentially expressed in the replicative and terminal phases than in the pre-replicative phase. …”
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39362
Image_10_Transcriptomic and Epigenomic Dynamics of Honey Bees in Response to Lethal Viral Infection.tif
Published 2020“…We identify the temporal dynamics of the transcriptomic response to with more genes differentially expressed in the replicative and terminal phases than in the pre-replicative phase. …”
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39363
Table_6_Transcriptomic and Epigenomic Dynamics of Honey Bees in Response to Lethal Viral Infection.XLSX
Published 2020“…We identify the temporal dynamics of the transcriptomic response to with more genes differentially expressed in the replicative and terminal phases than in the pre-replicative phase. …”
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39364
Table_4_Transcriptomic and Epigenomic Dynamics of Honey Bees in Response to Lethal Viral Infection.XLSX
Published 2020“…We identify the temporal dynamics of the transcriptomic response to with more genes differentially expressed in the replicative and terminal phases than in the pre-replicative phase. …”
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39365
Image_9_Transcriptomic and Epigenomic Dynamics of Honey Bees in Response to Lethal Viral Infection.png
Published 2020“…We identify the temporal dynamics of the transcriptomic response to with more genes differentially expressed in the replicative and terminal phases than in the pre-replicative phase. …”
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39366
Image_3_Transcriptomic and Epigenomic Dynamics of Honey Bees in Response to Lethal Viral Infection.PNG
Published 2020“…We identify the temporal dynamics of the transcriptomic response to with more genes differentially expressed in the replicative and terminal phases than in the pre-replicative phase. …”
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39367
Table_8_Transcriptomic and Epigenomic Dynamics of Honey Bees in Response to Lethal Viral Infection.XLSX
Published 2020“…We identify the temporal dynamics of the transcriptomic response to with more genes differentially expressed in the replicative and terminal phases than in the pre-replicative phase. …”
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39368
Table_1_Transcriptomic and Epigenomic Dynamics of Honey Bees in Response to Lethal Viral Infection.XLSX
Published 2020“…We identify the temporal dynamics of the transcriptomic response to with more genes differentially expressed in the replicative and terminal phases than in the pre-replicative phase. …”
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39369
Table_2_Transcriptomic and Epigenomic Dynamics of Honey Bees in Response to Lethal Viral Infection.XLSX
Published 2020“…We identify the temporal dynamics of the transcriptomic response to with more genes differentially expressed in the replicative and terminal phases than in the pre-replicative phase. …”
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39370
Image_1_Transcriptomic and Epigenomic Dynamics of Honey Bees in Response to Lethal Viral Infection.PNG
Published 2020“…We identify the temporal dynamics of the transcriptomic response to with more genes differentially expressed in the replicative and terminal phases than in the pre-replicative phase. …”
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39371
Image_8_Transcriptomic and Epigenomic Dynamics of Honey Bees in Response to Lethal Viral Infection.png
Published 2020“…We identify the temporal dynamics of the transcriptomic response to with more genes differentially expressed in the replicative and terminal phases than in the pre-replicative phase. …”
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39372
Data_Sheet_1_Transcriptomic and Epigenomic Dynamics of Honey Bees in Response to Lethal Viral Infection.docx
Published 2020“…We identify the temporal dynamics of the transcriptomic response to with more genes differentially expressed in the replicative and terminal phases than in the pre-replicative phase. …”
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39373
Image_7_Transcriptomic and Epigenomic Dynamics of Honey Bees in Response to Lethal Viral Infection.tif
Published 2020“…We identify the temporal dynamics of the transcriptomic response to with more genes differentially expressed in the replicative and terminal phases than in the pre-replicative phase. …”
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39374
Table_3_Transcriptomic and Epigenomic Dynamics of Honey Bees in Response to Lethal Viral Infection.XLSX
Published 2020“…We identify the temporal dynamics of the transcriptomic response to with more genes differentially expressed in the replicative and terminal phases than in the pre-replicative phase. …”
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39375
Image_11_Transcriptomic and Epigenomic Dynamics of Honey Bees in Response to Lethal Viral Infection.tif
Published 2020“…We identify the temporal dynamics of the transcriptomic response to with more genes differentially expressed in the replicative and terminal phases than in the pre-replicative phase. …”
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39376
Table_5_Transcriptomic and Epigenomic Dynamics of Honey Bees in Response to Lethal Viral Infection.XLSX
Published 2020“…We identify the temporal dynamics of the transcriptomic response to with more genes differentially expressed in the replicative and terminal phases than in the pre-replicative phase. …”
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39377
Image_6_Transcriptomic and Epigenomic Dynamics of Honey Bees in Response to Lethal Viral Infection.tif
Published 2020“…We identify the temporal dynamics of the transcriptomic response to with more genes differentially expressed in the replicative and terminal phases than in the pre-replicative phase. …”
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39378
Table_7_Transcriptomic and Epigenomic Dynamics of Honey Bees in Response to Lethal Viral Infection.XLSX
Published 2020“…We identify the temporal dynamics of the transcriptomic response to with more genes differentially expressed in the replicative and terminal phases than in the pre-replicative phase. …”
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39379
Image_2_Transcriptomic and Epigenomic Dynamics of Honey Bees in Response to Lethal Viral Infection.PNG
Published 2020“…We identify the temporal dynamics of the transcriptomic response to with more genes differentially expressed in the replicative and terminal phases than in the pre-replicative phase. …”
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39380
Table_3_Weight loss improves β-cell function independently of dietary carbohydrate restriction in people with type 2 diabetes: A 6-week randomized controlled trial.PDF
Published 2022“…Furthermore, compared with the CD diet, the CRHP diet borderline increased basal glucagon concentration (16 [−0.1, 34]%, P = 0.05), but decreased glucagon net AUC (−2.0 [−3.4, −0.6] mmol/L ×240 min, P < 0.01), decreased basal triglyceride and total AUC (~20%, P < 0.01 for both), and increased gastric inhibitory polypeptide total AUC (14%, P = 0.01).…”