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lb400  (ATCC)


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    Structured Review

    ATCC lb400
    Bioaugmentation with Paraburkholderia xenovorans <t>LB400</t> significantly decreased airborne PCBs from both shaken (AVL_S) and nonshaken (AVL_NS) Altavista sediment microcosms. Panel A: Total airborne PCBs after 35–75 days (AVL_S; blue triangles) and 75 days (AVL_NS; green squares); Panel B: LC-PCBs; Panel C: PCB 4 (2,2’-dichlorobiphenyl); Panel D: PCB 19 (2,2’,6-trichlorobiphenyl). Data points are the average of 3 replicates and the error bars represent the standard deviation. PCB reactive transport model predictions for PCB 4 and PCB 19 concentrations are shown as solid lines (control; green for nonshaken, blue for shaken) or dashed lines (LB400 bioaugmentation; green for nonshaken, blue for shaken).
    Lb400, supplied by ATCC, used in various techniques. Bioz Stars score: 90/100, based on 10 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/result/lb400/product/ATCC
    Average 90 stars, based on 10 article reviews
    lb400 - by Bioz Stars, 2026-02
    90/100 stars

    Images

    1) Product Images from "Paraburkholderia Xenovorans Strain LB400 Significantly Decreased Volatilization of Polychlorinated Biphenyls (PCBs) from Freshwater and Saline Sediments"

    Article Title: Paraburkholderia Xenovorans Strain LB400 Significantly Decreased Volatilization of Polychlorinated Biphenyls (PCBs) from Freshwater and Saline Sediments

    Journal: ACS Es&t Water

    doi: 10.1021/acsestwater.5c00423

    Bioaugmentation with Paraburkholderia xenovorans LB400 significantly decreased airborne PCBs from both shaken (AVL_S) and nonshaken (AVL_NS) Altavista sediment microcosms. Panel A: Total airborne PCBs after 35–75 days (AVL_S; blue triangles) and 75 days (AVL_NS; green squares); Panel B: LC-PCBs; Panel C: PCB 4 (2,2’-dichlorobiphenyl); Panel D: PCB 19 (2,2’,6-trichlorobiphenyl). Data points are the average of 3 replicates and the error bars represent the standard deviation. PCB reactive transport model predictions for PCB 4 and PCB 19 concentrations are shown as solid lines (control; green for nonshaken, blue for shaken) or dashed lines (LB400 bioaugmentation; green for nonshaken, blue for shaken).
    Figure Legend Snippet: Bioaugmentation with Paraburkholderia xenovorans LB400 significantly decreased airborne PCBs from both shaken (AVL_S) and nonshaken (AVL_NS) Altavista sediment microcosms. Panel A: Total airborne PCBs after 35–75 days (AVL_S; blue triangles) and 75 days (AVL_NS; green squares); Panel B: LC-PCBs; Panel C: PCB 4 (2,2’-dichlorobiphenyl); Panel D: PCB 19 (2,2’,6-trichlorobiphenyl). Data points are the average of 3 replicates and the error bars represent the standard deviation. PCB reactive transport model predictions for PCB 4 and PCB 19 concentrations are shown as solid lines (control; green for nonshaken, blue for shaken) or dashed lines (LB400 bioaugmentation; green for nonshaken, blue for shaken).

    Techniques Used: Standard Deviation, Control

    Aqueous phase PCBs were higher in nonshaken LB400-bioaugmented Altavista sediment (AVL_NS) compared to shaken Altavista sediment (AVL_S). Panel A: Total PCBs (all 209 congeners) accumulated on SPME after 35 days (AVL_S; blue triangles) and 75 days (AVL_NS; green squares), Panel B: LC-PCBs. Panel C: PCB 4, Panel D: PCB 19. The data points are the average of 3 replicates and the error bars represent the standard deviation. PCB reactive transport model predictions for PCB 4 and PCB 19 concentrations are shown as solid lines (control; green for nonshaken, blue for shaken) or dashed lines (LB400 bioaugmentation; green for nonshaken, blue for shaken).
    Figure Legend Snippet: Aqueous phase PCBs were higher in nonshaken LB400-bioaugmented Altavista sediment (AVL_NS) compared to shaken Altavista sediment (AVL_S). Panel A: Total PCBs (all 209 congeners) accumulated on SPME after 35 days (AVL_S; blue triangles) and 75 days (AVL_NS; green squares), Panel B: LC-PCBs. Panel C: PCB 4, Panel D: PCB 19. The data points are the average of 3 replicates and the error bars represent the standard deviation. PCB reactive transport model predictions for PCB 4 and PCB 19 concentrations are shown as solid lines (control; green for nonshaken, blue for shaken) or dashed lines (LB400 bioaugmentation; green for nonshaken, blue for shaken).

    Techniques Used: Standard Deviation, Control

    Bioaugmentation with Paraburkholderia xenovorans LB400 significantly decreased airborne PCBs from nonshaken New Bedford Harbor (NBH_NS) sediment microcosms. Panel A: Total PCBs (all 209 congeners) accumulated on PUF after 75 days; Panel B: Lower-chlorinated (LC)-PCBs (congeners with <4 Cl atoms; ng/g sediment); Panel C: PCB 4, Panel D: PCB 19. Data points are the average of 3 replicates and the error bars represent the standard deviation. PCB reactive transport model predictions for PCB 4 and PCB 19 concentrations are shown as solid lines (control) or dashed lines (LB400 bioaugmentation).
    Figure Legend Snippet: Bioaugmentation with Paraburkholderia xenovorans LB400 significantly decreased airborne PCBs from nonshaken New Bedford Harbor (NBH_NS) sediment microcosms. Panel A: Total PCBs (all 209 congeners) accumulated on PUF after 75 days; Panel B: Lower-chlorinated (LC)-PCBs (congeners with <4 Cl atoms; ng/g sediment); Panel C: PCB 4, Panel D: PCB 19. Data points are the average of 3 replicates and the error bars represent the standard deviation. PCB reactive transport model predictions for PCB 4 and PCB 19 concentrations are shown as solid lines (control) or dashed lines (LB400 bioaugmentation).

    Techniques Used: Standard Deviation, Control



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    Image Search Results


    Bioaugmentation with Paraburkholderia xenovorans LB400 significantly decreased airborne PCBs from both shaken (AVL_S) and nonshaken (AVL_NS) Altavista sediment microcosms. Panel A: Total airborne PCBs after 35–75 days (AVL_S; blue triangles) and 75 days (AVL_NS; green squares); Panel B: LC-PCBs; Panel C: PCB 4 (2,2’-dichlorobiphenyl); Panel D: PCB 19 (2,2’,6-trichlorobiphenyl). Data points are the average of 3 replicates and the error bars represent the standard deviation. PCB reactive transport model predictions for PCB 4 and PCB 19 concentrations are shown as solid lines (control; green for nonshaken, blue for shaken) or dashed lines (LB400 bioaugmentation; green for nonshaken, blue for shaken).

    Journal: ACS Es&t Water

    Article Title: Paraburkholderia Xenovorans Strain LB400 Significantly Decreased Volatilization of Polychlorinated Biphenyls (PCBs) from Freshwater and Saline Sediments

    doi: 10.1021/acsestwater.5c00423

    Figure Lengend Snippet: Bioaugmentation with Paraburkholderia xenovorans LB400 significantly decreased airborne PCBs from both shaken (AVL_S) and nonshaken (AVL_NS) Altavista sediment microcosms. Panel A: Total airborne PCBs after 35–75 days (AVL_S; blue triangles) and 75 days (AVL_NS; green squares); Panel B: LC-PCBs; Panel C: PCB 4 (2,2’-dichlorobiphenyl); Panel D: PCB 19 (2,2’,6-trichlorobiphenyl). Data points are the average of 3 replicates and the error bars represent the standard deviation. PCB reactive transport model predictions for PCB 4 and PCB 19 concentrations are shown as solid lines (control; green for nonshaken, blue for shaken) or dashed lines (LB400 bioaugmentation; green for nonshaken, blue for shaken).

    Article Snippet: Paraburkholderia xenovorans LB400 (ATCC #43038) , was grown in liquid K1 medium , (recipe in SI Section S1 ) using biphenyl crystals (0.76–1.5 g/L; TCI America, Portland, Oregon) as the sole carbon and energy source, at 30 °C in a shaking incubator set to 150 rpm.

    Techniques: Standard Deviation, Control

    Aqueous phase PCBs were higher in nonshaken LB400-bioaugmented Altavista sediment (AVL_NS) compared to shaken Altavista sediment (AVL_S). Panel A: Total PCBs (all 209 congeners) accumulated on SPME after 35 days (AVL_S; blue triangles) and 75 days (AVL_NS; green squares), Panel B: LC-PCBs. Panel C: PCB 4, Panel D: PCB 19. The data points are the average of 3 replicates and the error bars represent the standard deviation. PCB reactive transport model predictions for PCB 4 and PCB 19 concentrations are shown as solid lines (control; green for nonshaken, blue for shaken) or dashed lines (LB400 bioaugmentation; green for nonshaken, blue for shaken).

    Journal: ACS Es&t Water

    Article Title: Paraburkholderia Xenovorans Strain LB400 Significantly Decreased Volatilization of Polychlorinated Biphenyls (PCBs) from Freshwater and Saline Sediments

    doi: 10.1021/acsestwater.5c00423

    Figure Lengend Snippet: Aqueous phase PCBs were higher in nonshaken LB400-bioaugmented Altavista sediment (AVL_NS) compared to shaken Altavista sediment (AVL_S). Panel A: Total PCBs (all 209 congeners) accumulated on SPME after 35 days (AVL_S; blue triangles) and 75 days (AVL_NS; green squares), Panel B: LC-PCBs. Panel C: PCB 4, Panel D: PCB 19. The data points are the average of 3 replicates and the error bars represent the standard deviation. PCB reactive transport model predictions for PCB 4 and PCB 19 concentrations are shown as solid lines (control; green for nonshaken, blue for shaken) or dashed lines (LB400 bioaugmentation; green for nonshaken, blue for shaken).

    Article Snippet: Paraburkholderia xenovorans LB400 (ATCC #43038) , was grown in liquid K1 medium , (recipe in SI Section S1 ) using biphenyl crystals (0.76–1.5 g/L; TCI America, Portland, Oregon) as the sole carbon and energy source, at 30 °C in a shaking incubator set to 150 rpm.

    Techniques: Standard Deviation, Control

    Bioaugmentation with Paraburkholderia xenovorans LB400 significantly decreased airborne PCBs from nonshaken New Bedford Harbor (NBH_NS) sediment microcosms. Panel A: Total PCBs (all 209 congeners) accumulated on PUF after 75 days; Panel B: Lower-chlorinated (LC)-PCBs (congeners with <4 Cl atoms; ng/g sediment); Panel C: PCB 4, Panel D: PCB 19. Data points are the average of 3 replicates and the error bars represent the standard deviation. PCB reactive transport model predictions for PCB 4 and PCB 19 concentrations are shown as solid lines (control) or dashed lines (LB400 bioaugmentation).

    Journal: ACS Es&t Water

    Article Title: Paraburkholderia Xenovorans Strain LB400 Significantly Decreased Volatilization of Polychlorinated Biphenyls (PCBs) from Freshwater and Saline Sediments

    doi: 10.1021/acsestwater.5c00423

    Figure Lengend Snippet: Bioaugmentation with Paraburkholderia xenovorans LB400 significantly decreased airborne PCBs from nonshaken New Bedford Harbor (NBH_NS) sediment microcosms. Panel A: Total PCBs (all 209 congeners) accumulated on PUF after 75 days; Panel B: Lower-chlorinated (LC)-PCBs (congeners with <4 Cl atoms; ng/g sediment); Panel C: PCB 4, Panel D: PCB 19. Data points are the average of 3 replicates and the error bars represent the standard deviation. PCB reactive transport model predictions for PCB 4 and PCB 19 concentrations are shown as solid lines (control) or dashed lines (LB400 bioaugmentation).

    Article Snippet: Paraburkholderia xenovorans LB400 (ATCC #43038) , was grown in liquid K1 medium , (recipe in SI Section S1 ) using biphenyl crystals (0.76–1.5 g/L; TCI America, Portland, Oregon) as the sole carbon and energy source, at 30 °C in a shaking incubator set to 150 rpm.

    Techniques: Standard Deviation, Control