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Novogene bacterial 16s rdna amplicon sequencing
Results of <t>16S</t> rDNA amplification and <t>sequencing</t> of broiler bronchial obstruction specimens. (A)Relative abundance diagrams of dominant bacterial families in the specimens; (B) relative abundance diagrams of dominant bacterial genera; (C) clustering heat map of bacterial family species abundance; (D)clustering heat map of bacterial genus species abundance.
Bacterial 16s Rdna Amplicon Sequencing, supplied by Novogene, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 86 stars, based on 1 article reviews
bacterial 16s rdna amplicon sequencing - by Bioz Stars, 2026-06
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1) Product Images from "Pathogen identification and analysis of broiler bronchial obstruction syndrome using high-throughput sequencing technology"

Article Title: Pathogen identification and analysis of broiler bronchial obstruction syndrome using high-throughput sequencing technology

Journal: Poultry Science

doi: 10.1016/j.psj.2026.107032

Results of 16S rDNA amplification and sequencing of broiler bronchial obstruction specimens. (A)Relative abundance diagrams of dominant bacterial families in the specimens; (B) relative abundance diagrams of dominant bacterial genera; (C) clustering heat map of bacterial family species abundance; (D)clustering heat map of bacterial genus species abundance.
Figure Legend Snippet: Results of 16S rDNA amplification and sequencing of broiler bronchial obstruction specimens. (A)Relative abundance diagrams of dominant bacterial families in the specimens; (B) relative abundance diagrams of dominant bacterial genera; (C) clustering heat map of bacterial family species abundance; (D)clustering heat map of bacterial genus species abundance.

Techniques Used: Amplification, Sequencing



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Image Search Results


Results of 16S rDNA amplification and sequencing of broiler bronchial obstruction specimens. (A)Relative abundance diagrams of dominant bacterial families in the specimens; (B) relative abundance diagrams of dominant bacterial genera; (C) clustering heat map of bacterial family species abundance; (D)clustering heat map of bacterial genus species abundance.

Journal: Poultry Science

Article Title: Pathogen identification and analysis of broiler bronchial obstruction syndrome using high-throughput sequencing technology

doi: 10.1016/j.psj.2026.107032

Figure Lengend Snippet: Results of 16S rDNA amplification and sequencing of broiler bronchial obstruction specimens. (A)Relative abundance diagrams of dominant bacterial families in the specimens; (B) relative abundance diagrams of dominant bacterial genera; (C) clustering heat map of bacterial family species abundance; (D)clustering heat map of bacterial genus species abundance.

Article Snippet: Bacterial 16S rDNA amplicon sequencing was performed by Beijing Novogene Technology Co., Ltd. (Beijing, China)( ).

Techniques: Amplification, Sequencing

FMT which induce by TENS improves ankle function and bone quality via the gut-knee joint axis in rats with ATFL injuries. (A,B) The virus tracing of gut in ATFL rat was stained by IF after 3 weeks of virus tracing. Positive GFP label was color green. (C) The intestinal microbiota expressions of FMT was analyzed by qPCR. The fold change (FC) was compared to the 16S rRNA (defined FC = 1). (D) The weight of ATFL rats after 1, 2, 3 weeks of treatment with FMT. (E) The ankle swelling degree of ATFL rats after 1, 2, 3 weeks of treatment with FMT. (F) The step number of 25 cm in ATFL rat after 1, 2, 3 weeks of treatment with FMT. (G,H) The angle of varus and valgus ankle in ATFL rat after 1, 3 days and 1, 2, 3 weeks of treatment with FMT. (I) The degree of inclined plane test in ATFL rat after 1, 3 days and 1, 2, 3 weeks of treatment with FMT. (J–M) The average step length, step frequency, average ankle angle of ATFL rat which analyzed by AI gait analysis after 1, 2, 3 weeks of treatment with FMT. (N–P) The bio-mechanical distance, max power, stiffness in ATFL rat after 1, 2, 3 weeks of treatment with FMT. The values are presented as the mean ± standard deviation. * p < 0.05 vs. the model control group, n = 3.

Journal: Frontiers in Microbiology

Article Title: Transcutaneous electrical nerve stimulation treated anterior talo-fibular ligament injured rat through the gut-joint axis and intestinal microbiota

doi: 10.3389/fmicb.2026.1770614

Figure Lengend Snippet: FMT which induce by TENS improves ankle function and bone quality via the gut-knee joint axis in rats with ATFL injuries. (A,B) The virus tracing of gut in ATFL rat was stained by IF after 3 weeks of virus tracing. Positive GFP label was color green. (C) The intestinal microbiota expressions of FMT was analyzed by qPCR. The fold change (FC) was compared to the 16S rRNA (defined FC = 1). (D) The weight of ATFL rats after 1, 2, 3 weeks of treatment with FMT. (E) The ankle swelling degree of ATFL rats after 1, 2, 3 weeks of treatment with FMT. (F) The step number of 25 cm in ATFL rat after 1, 2, 3 weeks of treatment with FMT. (G,H) The angle of varus and valgus ankle in ATFL rat after 1, 3 days and 1, 2, 3 weeks of treatment with FMT. (I) The degree of inclined plane test in ATFL rat after 1, 3 days and 1, 2, 3 weeks of treatment with FMT. (J–M) The average step length, step frequency, average ankle angle of ATFL rat which analyzed by AI gait analysis after 1, 2, 3 weeks of treatment with FMT. (N–P) The bio-mechanical distance, max power, stiffness in ATFL rat after 1, 2, 3 weeks of treatment with FMT. The values are presented as the mean ± standard deviation. * p < 0.05 vs. the model control group, n = 3.

Article Snippet: All samples are placed in sterile PBS and analyzed with 16S rDNA sequencing (Novogene Ltd., China).

Techniques: Virus, Staining, Standard Deviation, Control