2018
DOI: 10.1016/j.jinsphys.2017.04.007
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Elevated chaperone proteins are a feature of winter freeze avoidance by larvae of the goldenrod gall moth, Epiblema scudderiana

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Cited by 11 publications
(8 citation statements)
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References 43 publications
(57 reference statements)
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“…Significant SNPs were identified in or close to three genes encoding putative chaperone proteins. Regulation of mitochondrial chaperone proteins has been identified in association with temperature adaptation in diverse organisms such as the moth Epiblema scudderiana and the fungus S. cerevisiae (Schmitt, 1996 ; Lyons et al, 2015 ; Zhang et al, 2018 ). As chaperone proteins have also been discussed as important for cold tolerance in plants as well, this result demonstrates an interesting basis for further studies of chaperone importance in cold stress in C. rosea (Al-Whaibi, 2011 ).…”
Section: Discussionmentioning
confidence: 99%
“…Significant SNPs were identified in or close to three genes encoding putative chaperone proteins. Regulation of mitochondrial chaperone proteins has been identified in association with temperature adaptation in diverse organisms such as the moth Epiblema scudderiana and the fungus S. cerevisiae (Schmitt, 1996 ; Lyons et al, 2015 ; Zhang et al, 2018 ). As chaperone proteins have also been discussed as important for cold tolerance in plants as well, this result demonstrates an interesting basis for further studies of chaperone importance in cold stress in C. rosea (Al-Whaibi, 2011 ).…”
Section: Discussionmentioning
confidence: 99%
“…Accumulating sufficient lipids is essential for insects to successfully complete diapause 37–40 . sHSPs assist in ensuring the correct folding of nascent proteins and help to refold stress‐accumulated misfolded proteins, they may affect insect development and stress tolerance 41–45 . Hence, the gene functions of FAS, HSP19.8, and HSP18.9 were further validated by RNAi.…”
Section: Resultsmentioning
confidence: 99%
“…DAPI, DAPI staining; FITC, antibody staining; scale bar, 10 μm the quantities of Hsf1 and chaperones or their mRNAs. For example, active (phosphorylated) and inactive forms of Hsf1 increase in the cold hardy larvae of the goldenrod gall moth, Epiblema scudderiana as winter approaches and the insect enters diapause, this increase coinciding with augmentation of several molecular chaperones (Zhang et al 2018). In the larvae of another cold hardy goldenrod gall moth, Eurosta solidaginis, activated Hsf1 increases in coordination with several molecular chaperones as temperatures cool and diapause ensues, but unlike in E. scudderiana, Hsf1 declines in midwinter and remains low until spring (Zhang et al 2011).…”
Section: Discussionmentioning
confidence: 99%