Matches in SemOpenAlex for { <https://semopenalex.org/work/W4220983604> ?p ?o ?g. }
- W4220983604 endingPage "603" @default.
- W4220983604 startingPage "603" @default.
- W4220983604 abstract "In the present study, genome-wide CNVs were detected in a total of 301 samples from 10 Chinese indigenous horse breeds using the Illumina Equine SNP70 Bead Array, and the candidate genes related to adaptability to high temperature and humidity in Jinjiang horses were identified and validated. We determined a total of 577 CNVs ranging in size from 1.06 Kb to 2023.07 Kb on the 31 pairs of autosomes. By aggregating the overlapping CNVs for each breed, a total of 495 CNVRs were detected in the 10 Chinese horse breeds. As many as 211 breed-specific CNVRs were determined, of which 64 were found in the Jinjiang horse population. By removing repetitive CNV regions between breeds, a total of 239 CNVRs were identified in the Chinese indigenous horse breeds including 102 losses, 133 gains and 4 of both events (losses and gains in the same region), in which 131 CNVRs were novel and only detected in the present study compared with previous studies. The total detected CNVR length was 41.74 Mb, accounting for 1.83% of the total length of equine autosomal chromosomes. The coverage of CNVRs on each chromosome varied from 0.47% to 15.68%, with the highest coverage on ECA 12, but the highest number of CNVRs was detected on ECA1 and ECA24. A total of 229 genes overlapping with CNVRs were detected in the Jinjiang horse population, which is an indigenous horse breed unique to the southeastern coast of China exhibiting adaptability to high temperature and humidity. The functional annotation of these genes showed significant relation to cellular heat acclimation and immunity. The expression levels of the candidate genes were validated by heat shock treatment of various durations on fibroblasts of horses. The results show that the expression levels of HSPA1A were significantly increased among the different heat shock durations. The expression level of NFKBIA and SOCS4 declined from the beginning of heat shock to 2 h after heat shock and then showed a gradual increase until it reached the highest value at 6 h and 10 h of heat shock, respectively. Breed-specific CNVRs of Chinese indigenous horse breeds were revealed in the present study, and the results facilitate mapping CNVs on the whole genome and also provide valuable insights into the molecular mechanisms of adaptation to high temperature and humidity in the Jinjiang horse." @default.
- W4220983604 created "2022-04-03" @default.
- W4220983604 creator A5001013713 @default.
- W4220983604 creator A5015102287 @default.
- W4220983604 creator A5018073672 @default.
- W4220983604 creator A5026842195 @default.
- W4220983604 creator A5033210183 @default.
- W4220983604 creator A5035730492 @default.
- W4220983604 creator A5042831456 @default.
- W4220983604 creator A5053767047 @default.
- W4220983604 creator A5074627981 @default.
- W4220983604 date "2022-03-28" @default.
- W4220983604 modified "2023-10-18" @default.
- W4220983604 title "Genome-Wide Detection of Copy Number Variants in Chinese Indigenous Horse Breeds and Verification of CNV-Overlapped Genes Related to Heat Adaptation of the Jinjiang Horse" @default.
- W4220983604 cites W1965464733 @default.
- W4220983604 cites W1970433764 @default.
- W4220983604 cites W1987439982 @default.
- W4220983604 cites W1992722091 @default.
- W4220983604 cites W1996403993 @default.
- W4220983604 cites W2003156526 @default.
- W4220983604 cites W2013752456 @default.
- W4220983604 cites W2015876437 @default.
- W4220983604 cites W2027847170 @default.
- W4220983604 cites W2035380874 @default.
- W4220983604 cites W2044801701 @default.
- W4220983604 cites W2045886931 @default.
- W4220983604 cites W2047547145 @default.
- W4220983604 cites W2063911564 @default.
- W4220983604 cites W2064497209 @default.
- W4220983604 cites W2081155723 @default.
- W4220983604 cites W2083751216 @default.
- W4220983604 cites W2085755265 @default.
- W4220983604 cites W2089515237 @default.
- W4220983604 cites W2102619694 @default.
- W4220983604 cites W2103181510 @default.
- W4220983604 cites W2106877484 @default.
- W4220983604 cites W2107277218 @default.
- W4220983604 cites W2132885074 @default.
- W4220983604 cites W2134520741 @default.
- W4220983604 cites W2141372231 @default.
- W4220983604 cites W2149681218 @default.
- W4220983604 cites W2159881533 @default.
- W4220983604 cites W2164947706 @default.
- W4220983604 cites W2166781237 @default.
- W4220983604 cites W2192080449 @default.
- W4220983604 cites W2288314472 @default.
- W4220983604 cites W2310742581 @default.
- W4220983604 cites W2331176038 @default.
- W4220983604 cites W2473811666 @default.
- W4220983604 cites W2503087175 @default.
- W4220983604 cites W2744892122 @default.
- W4220983604 cites W2749190293 @default.
- W4220983604 cites W2774764825 @default.
- W4220983604 cites W2883504445 @default.
- W4220983604 cites W2899009117 @default.
- W4220983604 cites W2902625844 @default.
- W4220983604 cites W2912054264 @default.
- W4220983604 cites W2924909643 @default.
- W4220983604 cites W2973024498 @default.
- W4220983604 cites W2982095735 @default.
- W4220983604 cites W3016568293 @default.
- W4220983604 cites W3022490421 @default.
- W4220983604 cites W3033849126 @default.
- W4220983604 cites W3197070906 @default.
- W4220983604 cites W4200301520 @default.
- W4220983604 cites W4205247356 @default.
- W4220983604 doi "https://doi.org/10.3390/genes13040603" @default.
- W4220983604 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/35456409" @default.
- W4220983604 hasPublicationYear "2022" @default.
- W4220983604 type Work @default.
- W4220983604 citedByCount "3" @default.
- W4220983604 countsByYear W42209836042022 @default.
- W4220983604 crossrefType "journal-article" @default.
- W4220983604 hasAuthorship W4220983604A5001013713 @default.
- W4220983604 hasAuthorship W4220983604A5015102287 @default.
- W4220983604 hasAuthorship W4220983604A5018073672 @default.
- W4220983604 hasAuthorship W4220983604A5026842195 @default.
- W4220983604 hasAuthorship W4220983604A5033210183 @default.
- W4220983604 hasAuthorship W4220983604A5035730492 @default.
- W4220983604 hasAuthorship W4220983604A5042831456 @default.
- W4220983604 hasAuthorship W4220983604A5053767047 @default.
- W4220983604 hasAuthorship W4220983604A5074627981 @default.
- W4220983604 hasBestOaLocation W42209836041 @default.
- W4220983604 hasConcept C104317684 @default.
- W4220983604 hasConcept C120821319 @default.
- W4220983604 hasConcept C134925867 @default.
- W4220983604 hasConcept C141231307 @default.
- W4220983604 hasConcept C151730666 @default.
- W4220983604 hasConcept C2776482104 @default.
- W4220983604 hasConcept C2778604835 @default.
- W4220983604 hasConcept C2780762169 @default.
- W4220983604 hasConcept C2908647359 @default.
- W4220983604 hasConcept C30481170 @default.
- W4220983604 hasConcept C54355233 @default.
- W4220983604 hasConcept C69991583 @default.
- W4220983604 hasConcept C71924100 @default.
- W4220983604 hasConcept C78458016 @default.
- W4220983604 hasConcept C86803240 @default.