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18 results on '"Colobinae microbiology"'

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1. Unveiling the Gut Microbiome of Malaysia's Colobine Monkeys : Insights into Health and Evolution.

2. Assessment of health risk of antibiotics resistance genes from human disturbed habitat to wild animals: Metagenomic insights into availability and functional changes of gut microbiome.

3. First report of Streptococcus agalactiae isolated from a healthy captive sichuan golden snub-nosed monkey (Rhinopithecus roxellana) in China.

4. Comparing the gut microbiota of Sichuan golden monkeys across multiple captive and wild settings: roles of anthropogenic activities and host factors.

5. Species variations in the gut microbiota of captive snub-nosed monkeys.

6. Comparative study of the gut microbiota in three captive Rhinopithecus species.

7. Gut microbiome variations in Rhinopithecus roxellanae caused by changes in the environment.

8. Age-Based Variations in the Gut Microbiome of the Shennongjia (Hubei) Golden Snub-Nosed Monkey ( Rhinopithecus roxellana hubeiensis ).

9. Differences in the gut microbiota between Cercopithecinae and Colobinae in captivity.

10. Gut microbiota in wild and captive Guizhou snub-nosed monkeys, Rhinopithecus brelichi.

11. Bacterial community structure and function distinguish gut sites in captive red-shanked doucs (Pygathrix nemaeus).

12. First report of foregut microbial community in proboscis monkeys: are diverse forests a reservoir for diverse microbiomes?

13. Diarrhea-Associated Intestinal Microbiota in Captive Sichuan Golden Snub-Nosed Monkeys (Rhinopithecus roxellana).

14. Fecal bacterial diversity of wild Sichuan snub-nosed monkeys (Rhinopithecus roxellana).

15. Diet Versus Phylogeny: a Comparison of Gut Microbiota in Captive Colobine Monkey Species.

16. High prevalence of Enterocytozoon bieneusi zoonotic genotype D in captive golden snub-nosed monkey (Rhinopithecus roxellanae) in zoos in China.

17. Molecular and Biochemical Characterization of a Novel Xylanase from Massilia sp. RBM26 Isolated from the Feces of Rhinopithecus bieti.

18. Metagenomic analysis of the Rhinopithecus bieti fecal microbiome reveals a broad diversity of bacterial and glycoside hydrolase profiles related to lignocellulose degradation.

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