Info: Zenodo’s user support line is staffed on regular business days between Dec 23 and Jan 5. Response times may be slightly longer than normal.

Published March 13, 2015 | Version v1
Dataset Open

Data from: Whole transcriptome analysis reveals changes in expression of immune related genes during and after bleaching in a reef-building coral

  • 1. The University of Texas at Arlington
  • 2. Pennsylvania State University
  • 3. Cornell University
  • 4. University of Puerto Rico at Mayagüez

Description

Climate change is negatively affecting the stability of natural ecosystems, especially coral reefs. The dissociation of the symbiosis between reef-building corals and their algal symbiont, or coral bleaching, has been linked to increased sea surface temperatures. Coral bleaching has significant impacts on corals, including an increase in disease outbreaks that can permanently change the entire reef ecosystem. Yet, little is known about the impacts of coral bleaching on the coral immune system. In this study, whole transcriptome analysis of the coral holobiont and each of the associate components (i.e. coral host, algal symbiont and other associated microorganisms) was used to determine changes in gene expression in corals affected by a natural bleaching event as well as during the recovery phase. The main findings include evidence that the coral holobiont and the coral host have different responses to bleaching, and the host immune system appears suppressed even a year after a bleaching event. These results support the hypothesis that coral bleaching changes the expression of innate immune genes of corals, and these effects can last even after recovery of symbiont populations. Research on the role of immunity on coral's resistance to stressors can help make informed predictions on the future of corals and coral reefs.

Notes

Files

ESM6_Annotations_Metatranscriptome.txt

Files (1.8 GB)

Name Size Download all
md5:d05728f3415021287db5f3fc9fa9d60b
799.4 MB Download
md5:ef4ba611723a97c3853b8a1b34b0e22d
460.1 MB Download
md5:3b74d6ba30964192609403d6e02d6c74
234.1 MB Download
md5:fb31961ead98c8eb4666de4cc4cf26c9
177.6 MB Download
md5:90df1884d4b0182c85f3266b95178241
151.6 MB Download
md5:b89c9016ac754d4e35ad27d32193d946
13.3 MB Preview Download
md5:de0dcc69a520ec9cea4751d759ada613
52.0 kB Preview Download

Additional details

Related works

Is cited by
10.1098/rsos.140214 (DOI)