Page 31 - Read Online
P. 31
Yakovleva et al. Microbiome Res Rep 2024;3:19 https://dx.doi.org/10.20517/mrr.2023.56 Page 17 of 18
6. Trinder M, Daisley BA, Dube JS, Reid G. Drosophila melanogaster as a high-throughput model for host-microbiota interactions.
Front Microbiol 2017;8:751. DOI PubMed PMC
7. Douglas AE. The Drosophila model for microbiome research. Lab Anim 2018;47:157-64. DOI PubMed PMC
8. Te Velde JH, Molthoff CFM, Scharloo W. The function of anal papillae in salt adaptation of Drosophila melanogaster larvae. J
Evolution Biol 1988;1:139-53. DOI
9. Stergiopoulos K, Cabrero P, Davies SA, Dow JAT. Salty dog, an SLC5 symporter, modulates Drosophila response to salt stress. Physiol
Genomics 2009;37:1-11. DOI PubMed PMC
10. Waddington CH. Canalization of development and genetic assimilation of acquired characters. Nature 1959;183:1654-5. DOI
PubMed
11. Long TAF, Rowe L, Agrawal AF. The effects of selective history and environmental heterogeneity on inbreeding depression in
experimental populations of Drosophila melanogaster. Am Nat 2013;181:532-44. DOI PubMed
12. Arbuthnott D, Rundle HD. Misalignment of natural and sexual selection among divergently adapted Drosophila melanogaster
populations. Animal Behaviour 2014;87:45-51. DOI
13. Broderick NA, Lemaitre B. Gut-associated microbes of Drosophila melanogaster. Gut Microbes 2012;3:307-21. DOI PubMed PMC
14. Zheng J, Wittouck S, Salvetti E, et al. A taxonomic note on the genus Lactobacillus: description of 23 novel genera, emended
description of the genus Lactobacillus Beijerinck 1901, and union of Lactobacillaceae and Leuconostocaceae. Int J Syst Evol
Microbiol 2020;70:2782-858. DOI PubMed
15. Wong ACN, Chaston JM, Douglas AE. The inconstant gut microbiota of Drosophila species revealed by 16S rRNA gene analysis.
ISME J 2013;7:1922-32. DOI PubMed PMC
16. Blum JE, Fischer CN, Miles J, Handelsman J. Frequent replenishment sustains the beneficial microbiome of Drosophila melanogaster.
mBio 2013;4:e00860-13. DOI PubMed PMC
17. Obadia B, Güvener ZT, Zhang V, et al. Probabilistic invasion underlies natural gut microbiome stability. Curr Biol 2017;27:1999-
2006.e8. DOI PubMed PMC
18. Pais IS, Valente RS, Sporniak M, Teixeira L. Drosophila melanogaster establishes a species-specific mutualistic interaction with
stable gut-colonizing bacteria. PLoS Biol 2018;16:e2005710. DOI PubMed PMC
19. Vandehoef C, Molaei M, Karpac J. Dietary adaptation of microbiota in Drosophila requires NF-κB-dependent control of the
translational regulator 4E-BP. Cell Rep 2020;31:107736. DOI PubMed PMC
20. Charroux B, Royet J. Gut-microbiota interactions in non-mammals: what can we learn from Drosophila? Semin Immunol 2012;24:17-
24. DOI PubMed
21. Shin SC, Kim SH, You H, et al. Drosophila microbiome modulates host developmental and metabolic homeostasis via insulin
signaling. Science 2011;334:670-4. DOI PubMed
22. Brummel T, Ching A, Seroude L, Simon AF, Benzer S. Drosophila lifespan enhancement by exogenous bacteria. Proc Natl Acad Sci
U S A 2004;101:12974-9. DOI PubMed PMC
23. Sannino DR, Dobson AJ, Edwards K, Angert ER, Buchon N. The Drosophila melanogaster gut microbiota provisions thiamine to its
host. mBio 2018;9:e00155-18. DOI PubMed PMC
24. Schretter CE, Vielmetter J, Bartos I, et al. A gut microbial factor modulates locomotor behaviour in Drosophila. Nature 2018;563:402-
6. DOI PubMed PMC
25. Mair W, Piper MDW, Partridge L. Calories do not explain extension of life span by dietary restriction in Drosophila. PLoS Biol
2005;3:e223. DOI PubMed PMC
26. Lee KP, Simpson SJ, Clissold FJ, et al. Lifespan and reproduction in Drosophila: new insights from nutritional geometry. Proc Natl
Acad Sci U S A 2008;105:2498-503. DOI PubMed PMC
27. Anagnostou C, Dorsch M, Rohlfs M. Influence of dietary yeasts on Drosophila melanogaster life-history traits. Entomol Exp Appl
2010;136:1-11. DOI
28. Carvalho M, Schwudke D, Sampaio JL, et al. Survival strategies of a sterol auxotroph. Development 2010;137:3675-85. DOI PubMed
PMC
29. Piper MDW, Blanc E, Leitão-Gonçalves R, et al. A holidic medium for Drosophila melanogaster. Nat Methods 2014;11:100-5. DOI
PubMed PMC
30. Sohal RS, Forster MJ. Caloric restriction and the aging process: a critique. Free Radic Biol Med 2014;73:366-82. DOI PubMed PMC
31. Wu Q, Yu G, Cheng X, et al. Sexual dimorphism in the nutritional requirement for adult lifespan in Drosophila melanogaster. Aging
Cell 2020;19:e13120. DOI PubMed PMC
32. Zanco B, Mirth CK, Sgrò CM, Piper MDW. A dietary sterol trade-off determines lifespan responses to dietary restriction in Drosophila
melanogaster females. Elife 2021;10:e62335. DOI PubMed PMC
33. Henry Y, Overgaard J, Colinet H. Dietary nutrient balance shapes phenotypic traits of Drosophila melanogaster in interaction with gut
microbiota. Comp Biochem Physiol A Mol Integr Physiol 2020;241:110626. DOI PubMed
34. Klepsatel P, Wildridge D, Gáliková M. Temperature induces changes in Drosophila energy stores. Sci Rep 2019;9:5239. DOI
PubMed PMC
35. Osborne AJ, Dearden PK. A ‘phenotypic hangover’: the predictive adaptive response and multigenerational effects of altered nutrition
on the transcriptome of Drosophila melanogaster. Environ Epigenet 2017;3:dvx019. DOI PubMed PMC
36. Duxbury EML, Chapman T. Sex-specific responses of life span and fitness to variation in developmental versus adult diets in

