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Journal Abstract Search
83 related items for PubMed ID: 29280581
1. Changes in thermotolerance and Hsp70 expression with domestication in Drosophila melanogaster. Krebs RA, Roberts SP, Bettencourt BR, Feder ME. J Evol Biol; 2001 Jan 08; 14(1):75-82. PubMed ID: 29280581 [Abstract] [Full Text] [Related]
2. NATURAL VARIATION IN THE EXPRESSION OF THE HEAT-SHOCK PROTEIN HSP70 IN A POPULATION OF DROSOPHILA MELANOGASTER AND ITS CORRELATION WITH TOLERANCE OF ECOLOGICALLY RELEVANT THERMAL STRESS. Krebs RA, Feder ME. Evolution; 1997 Feb 08; 51(1):173-179. PubMed ID: 28568793 [Abstract] [Full Text] [Related]
3. HERITABILITY OF EXPRESSION OF THE 70KD HEAT-SHOCK PROTEIN IN DROSOPHILA MELANOGASTER AND ITS RELEVANCE TO THE EVOLUTION OF THERMOTOLERANCE. Krebs RA, Feder ME, Lee J. Evolution; 1998 Jun 08; 52(3):841-847. PubMed ID: 28565246 [Abstract] [Full Text] [Related]
4. EXPERIMENTAL EVOLUTION OF HSP70 EXPRESSION AND THERMOTOLERANCE IN DROSOPHILA MELANOGASTER. Bettencourt BR, Feder ME, Cavicchi S. Evolution; 1999 Apr 08; 53(2):484-492. PubMed ID: 28565421 [Abstract] [Full Text] [Related]
5. Evolvability of Hsp70 expression under artificial election for inducible thermotolerance in independent populations of Drosophila melanogaster. Feder ME, Bedford TB, Albright DR, Michalak P. Physiol Biochem Zool; 2002 Apr 08; 75(4):325-34. PubMed ID: 12324888 [Abstract] [Full Text] [Related]
6. Adult heat tolerance variation in Drosophila melanogaster is not related to Hsp70 expression. Jensen LT, Cockerell FE, Kristensen TN, Rako L, Loeschcke V, McKechnie SW, Hoffmann AA. J Exp Zool A Ecol Genet Physiol; 2010 Jan 01; 313(1):35-44. PubMed ID: 19739085 [Abstract] [Full Text] [Related]
7. Inducible and constitutive heat shock gene expression responds to modification of Hsp70 copy number in Drosophila melanogaster but does not compensate for loss of thermotolerance in Hsp70 null flies. Bettencourt BR, Hogan CC, Nimali M, Drohan BW. BMC Biol; 2008 Jan 22; 6():5. PubMed ID: 18211703 [Abstract] [Full Text] [Related]
8. [Evolution of the response to heat shock in genus Drosophila]. Garbuz DG, Molodtsov VB, Velikodvorskaia VV, Evgen'ev MB, Zatsepina OG. Genetika; 2002 Aug 22; 38(8):1097-109. PubMed ID: 12244694 [Abstract] [Full Text] [Related]
11. Expression of thermal tolerance genes in two Drosophila species with different acclimation capacities. Sørensen JG, Giribets MP, Tarrío R, Rodríguez-Trelles F, Schou MF, Loeschcke V. J Therm Biol; 2019 Aug 22; 84():200-207. PubMed ID: 31466754 [Abstract] [Full Text] [Related]
12. Temporal specific coevolution of Hsp70 and co-chaperone stv expression in Drosophila melanogaster under selection for heat tolerance. Telonis-Scott M, Ali Z, Hangartner S, Sgrò CM. J Therm Biol; 2021 Dec 22; 102():103110. PubMed ID: 34863477 [Abstract] [Full Text] [Related]
13. Selection on knockdown performance in Drosophila melanogaster impacts thermotolerance and heat-shock response differently in females and males. Folk DG, Zwollo P, Rand DM, Gilchrist GW. J Exp Biol; 2006 Oct 22; 209(Pt 20):3964-73. PubMed ID: 17023590 [Abstract] [Full Text] [Related]
16. Hsp70 and larval thermotolerance in Drosophila melanogaster: how much is enough and when is more too much? Krebs RA, Feder ME. J Insect Physiol; 1998 Nov 22; 44(11):1091-1101. PubMed ID: 12770408 [Abstract] [Full Text] [Related]
17. Genetic variation in the heat-stress survival of embryos is largely decoupled from adult thermotolerance in an intercontinental set of recombinant lines of Drosophila melanogaster. Borda MA, Gomez FH, Sambucetti P, Norry FM. J Therm Biol; 2021 Dec 22; 102():103119. PubMed ID: 34863482 [Abstract] [Full Text] [Related]