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9 results for “Sousa chinensis”
Fig. 2 in The Effects Of Human-Dolphin Interaction Programmes On The Behaviour Of Three Captive Indo-Pacific Humpback Dolphins (Sousa Chinensis)
Fig. 2. Proportion of behaviours exhibited by the individual dolphins before and after the SWD programme. *P<0.05; **P<0.01; ***P<0.001.
Fig. 1 in The Effects Of Human-Dolphin Interaction Programmes On The Behaviour Of Three Captive Indo-Pacific Humpback Dolphins (Sousa Chinensis)
Fig. 1. Diagram of the dolphin lagoon consisting of the main pool (Length: 37 m, Width: 20 m, Depth: 3.5 m) alongside three holding pools. Locations that were utilised during scan sampling are marked out (1–3).
Fig. 3 in The Effects Of Human-Dolphin Interaction Programmes On The Behaviour Of Three Captive Indo-Pacific Humpback Dolphins (Sousa Chinensis)
Fig. 3. Proportion of behaviours exhibited by the individual dolphins before and after the MWD programme. *P<0.05; **P<0.01; ***P<0.001.
Fig. 6 in The Effects Of Human-Dolphin Interaction Programmes On The Behaviour Of Three Captive Indo-Pacific Humpback Dolphins (Sousa Chinensis)
Fig. 6. Association index of each dyad before and after each programme.
Fig. 5 in The Effects Of Human-Dolphin Interaction Programmes On The Behaviour Of Three Captive Indo-Pacific Humpback Dolphins (Sousa Chinensis)
Fig. 5. Average SPI before and after the MWD programme. *P<0.05; **P<0.01; ***P<0.001.
Fig. 4 in The Effects Of Human-Dolphin Interaction Programmes On The Behaviour Of Three Captive Indo-Pacific Humpback Dolphins (Sousa Chinensis)
Fig. 4. Average SPI before and after the SWD programme. *P<0.05; **P<0.01; ***P<0.001.
Data from: Low major histocompatibility complex class II variation in the endangered Indo-Pacific humpback dolphin (Sousa chinensis): inferences about the role of balancing selection
It has been widely reported that the major histocompatibility complex (MHC) is under balancing selection due to its immune function across terrestrial and aquatic mammals. The comprehensive studies at MHC and other neutral loci could give us a synthetic evaluation about the major force determining genetic diversity of species. Previously, a low level of genetic diversity has been reported among the Indo-Pacific humpback dolphin (Sousa chinensis) in the Pearl River Estuary (PRE) using both mitochondrial marker and microsatellite loci. Here, the expression and sequence polymorphism of 2 MHC class II genes (DQB and DRB) in 32 S. chinensis from PRE collected between 2003 and 2011 were investigated. High ratios of non-synonymous to synonymous substitution rates, codon-based selection analysis, and trans-species polymorphism (TSP) support the hypothesis that balancing selection acted on S. chinensis MHC sequences. However, only 2 haplotypes were detected at either DQB or DRB loci. Moreover, the lack of deviation from the Hardy–Weinberg expectation at DRB locus combined with the relatively low heterozygosity at both DQB locus and microsatellite loci suggested that balancing selection might not be sufficient, which further suggested that genetic drift associated with historical bottlenecks was not mitigated by balancing selection in terms of the loss of MHC and neutral variation in S. chinensis. The combined results highlighted the importance of maintaining the genetic diversity of the endangered S. chinensis.
On following pages: 11. Long-beaked Common Dolphin (Delphinus capensis); 12. Fraser's Dolphin (Lagenodelphis hosel); 13. Tucuxi (Sotalia fluviatilis); 14. Guiana Dolphin (Sotalia guianensis); 15. Indo-Pacific Humpback Dolphin (Sousa chinensis); 16. Atlantic Humpback Dolphin (Sousa teuszii). in Delphinidae
On following pages: 11. Long-beaked Common Dolphin (Delphinus capensis); 12. Fraser's Dolphin (Lagenodelphis hosel); 13. Tucuxi (Sotalia fluviatilis); 14. Guiana Dolphin (Sotalia guianensis); 15. Indo-Pacific Humpback Dolphin (Sousa chinensis); 16. Atlantic Humpback Dolphin (Sousa teuszii).
Data from: Low major histocompatibility complex class II variation in the endangered Indo-Pacific humpback dolphin (Sousa chinensis): inferences about the role of balancing selection
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