Blood transcriptome analysis revealed the immune changes and immunological adaptation of wildness training giant pandas
The giant panda ( Ailuropoda melanoleuca ) is a global flagship species for biodiversity conservation. As the time for captive giant pandas to be released into the wild matures, wildness training is provided to allow adaptation to their natural environment. It is assumed that changes in the immune s...
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Veröffentlicht in: | Molecular genetics and genomics : MGG 2022, Vol.297 (1), p.227-239 |
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Zusammenfassung: | The giant panda (
Ailuropoda melanoleuca
) is a global flagship species for biodiversity conservation. As the time for captive giant pandas to be released into the wild matures, wildness training is provided to allow adaptation to their natural environment. It is assumed that changes in the immune system would be integral in this adaptation from captive to wild, where many more pathogens would be encountered in their natural habitats. Therefore, this study aims to determine the expression changes of immune-related genes and their potential as immunoassay markers for adaptation monitoring in wildness training giant pandas, and then to understand the adaptation strategy of wildness training giant pandas to the wild environment, thereby improving the success rate of panda reintroduction. We obtained 300 differentially expressed genes (DEGs) by RNA-seq, with 239 up-regulated and 61 down-regulated DEGs in wildness training giant pandas compared to captive pandas. Functional enrichment analysis indicated that up-regulated DEGs were enriched in several immune-related terms and pathways. There were 21 immune-related DEGs, in which most of them were up-regulated in wildness training giant pandas, including several critical innate and cellular immune genes.
IL1R2
was the most significantly up-regulated gene and is a signature of homeostasis within the immune system. In the protein–protein interaction (PPI) analysis,
CXCL8
,
CXCL10,
and
CCL5
were identified as the hub immune genes. Our results suggested that wildness training giant pandas have stronger innate and cellular immunity than captive giant pandas, and we proposed that a gene set of
CXCL8
,
CXCL10
,
CCL5
,
CD3D
,
NFKBIA
,
TBX21
,
IL12RB2,
and
IL1R2
may serve as potential immunoassay markers to monitor and assess the immune status of wildness training giant pandas. Our study offers the first insight into immune alterations of wildness training giant pandas, paving the way for monitoring and evaluating the immune status of giant pandas when reintroducing them into the wild. |
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ISSN: | 1617-4615 1617-4623 |
DOI: | 10.1007/s00438-021-01841-7 |