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Articles

Effect of four different nutrition regimes on the alpha-amylase gene expression in the Indian moth, Plodia interpunctella

Effet de quatre régimes alimentaires différents sur l’expression du gène de l’alpha-amylase chez la Teigne des fruits secs, Plodia interpunctella

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Pages 65-70 | Accepted 05 Apr 2016, Published online: 10 May 2016

References

  • Afshar K, Dufresne PJ, Pan L, Merkx-Jacques M, Bede JC. 2010. Diet-specific salivary gene expression and glucose oxidase activity in Spodopteraexigua (Lepidoptera: Noctuidae) larvae. Journal of Insect Physiology. 56:1798–1806.
  • Arjamaa O, Vuorisalo T. 2010. Gene-culture coevolution and human diet. American Scientist. 98:140–147.
  • Ashwath SK, Sreekumar S, Toms JT, Dandin SB, Kamble CK. 2010. Identification of RAPD markers linked to digestive amylase genes using near isogenic lines of the silkworm Bombyx mori. Journal of Insect Science. 10:1–10.
  • Baker JE. 1983. Properties of amylases from midguts of larvae of Sitophilus zeamais and Sitophilus granarius. Insect Biochemistry. 13:421–428.
  • Benkel BF, Hickey DA. 1986. Glucose repression of amylase gene expression in Drosophila melanogaster. Genetics. 114:137–144.
  • Bernfeld P. 1955. Amylases, alpha and beta. Methods in Enzymology. 1:149–158.
  • Bouayad N, Rharrabe K, Ghailani N, Sayah F. 2008. Effects of different food commodities on larval development and α-amylase activity of Plodia interpunctella (Hübner) (Lepidoptera: Pyralidae). Journal of Stored Products Research. 44:373–378.
  • Bradford MM. 1976. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Analytical Biochemistry. 72:248–254.
  • Cates RG. 1980. Feeding patterns of monophagous, oligophagous and polyphagous insect herbivores: the effect of resource abundance and plant chemistry. Oecologia. 46:22–31.
  • Cunha AD, Nascimento AM, Guidugli KR, Simoes ZLP, Bitondi MMG. 2005. Molecular clonig and expression of a hexamerin cDNA from the honeybee, Apis mellifera. Journal of Insect Physiology. 51:1135–1147.
  • Fontenot EA, Arthur FH, Nechols JR, Throne JE. 2012. Using a population growth model to simulate response of Plodia interpunctella Hübner to temperature and diet. Journal of Pest Science. 85:163–167.
  • Franco OL, Rigden DJ, Melo FR, Bloch JCP, Grossi de Sà MF. 2000. Activity of wheat α-amylase inhibitors towards bruchid α-amylases and structural explanation of observed specificities. European Journal of Biochemistry. 267:2166–2173.
  • Hickey DA, Benkel B. 1982. Regulation of amylase activity in Drosophila melanogaster: effects of dietary carbohydrate. Genetics. 20:1117–1129.
  • Inomata N, Kanda K, Cariou ML, Tachida H, Yamazaki T. 1995. Evolution of the response patterns to dietary carbohydrates and the developmental differentiation of gene expression of alpha amylase in Drosophila. Journal of Molecular Evolution. 41:1076–1084.
  • Inomata N, Yamazaki T. 2000. Evolution of nucleotide substitutions and gene regulation in the amylase multigenes in Drosophila kikkawai and its sibling species. Molecular Biology and Evolution. 17:601–615.
  • Johnson JA, Valero KA, Hannel MM. 1997. Effect of low temperature storage on survival and reproduction of Indianmeal moth (Lepidoptera: Pyralidae). Crop Protection. 16:519–523.
  • Johnson JA, Wofford PL, Whitehand LC. 1992. Effect of diet and temperature on development rates, survival, and reproduction of the Indianmeal moth (Lepidoptera: Pyralidae). Journal of Economic Entomology. 85:561–566.
  • Karasov WH, Martinez Del Rio C, Caviedes-Vidal E. 2011. Ecological physiology of diet and digestive systems. Annual Review of Physiology. 73:69–93.
  • Kotkar HM, Bhide AJ, Gupta VS, Giri AP. 2012. Amylase gene expression patterns in Helicoverpa armigera upon feeding on a range of host plants. Genome. 50:1–7.
  • Kotkar HM, Sarate PJ, Tamhane VA, Gupta VS, Giri AP. 2009. Responses of midgut amylases of Helicoverpa armigera to feeding on various host plants. Journal of Insect Physiology. 55:663–670.
  • Livak KJ, Schmittgen TD. 2001. Analysis of relative gene expression data using real-time quantitative PCR and the 2−ΔΔCT method. Methods. 25:402–408.
  • Locatelli DP, Limonta L. 1998. Development of Ephestia kuehniella, Plodia interpunctella and Corcyra Cephalonia (Lepidoptera; Pyralidae) on kernls and wholemeal flours of Fagoyrum esculentum and Triticum aestivum L. Journal of Stored Products Research. 34:269–276.
  • MacGregor EA, Bazin SL, Ens EW, Lahnstein JLJ, Macri L, Shirley JNJ, MacGregor AW. 2000. Structural models of limit dextrinase inhibitors from barley. Journal of Cereal Science. 31:79–90.
  • Mendiola-Olaya E, Valencia-Jimenez A, Valdes-Rodriguez S, Delano-Frier J, Blacnco-Labra A. 2000. Digestive amylase from the larger grain borer, Prostephanus truncates (Horn). Comparative Biochemistry and Physiology Part B. 126:425–433.
  • Musa PD, Ren SX. 2005. Development and reproduction of Bemisia tabaci (Homoptera: Aleyrodidae) on three bean species. Insect Science. 12:25–30.
  • Na JH, Ryoo MI. 2000. The influence of temperature on development of Plodia interpunctella (Lepidoptera: Pyralidae) on dried vegetable commodities. Journal of Stored Products Research. 36:125–129.
  • Ngernyuang N, Kobayashi I, Promboon A, Ratanapo S, Tamura T, Ngensiri L. 2011. Cloning and expression analysis of the Bombyx mori alpha amylase gene (Amy) from the indigenous Thai silkworm strain, Nanglai. Journal of Insect Science. 11:38.
  • Parthasarathy R, Gopinathan KP. 2005. Comparative analysis of the development of the mandibular salivary glands and the labial silk glands in the mulberry silkworm, Bombyx mori . Gene Expression Patterns. 5:323–339.
  • Pelegrini PB, Murad AM, Grossi-De-Sa MF, Mello LV, Roméiro LAS, Noronha EF. 2006. Structure and enzyme properties of Zabrotes subfasciatus α-amylase. Archives of Insect Biochemistry and Physiology. 61:77–86.
  • Perry GH. 2007. Diet and the evolution of human amylase gene copy number variation. Nature Genetics. 39:1256–1260.
  • Raubenheimer D, Simpson SJ. 1999. Integrating nutrition a geometrical approach. Entomologic Experimentalism ET Applicator. 91:67–82.
  • Sait SA, Begon M, Thompson DJ, Harvey JA, Hails RS. 1997. Factors affecting host selection in an insect host-parasitoid interaction. Ecological Entomology. 22:225–230.
  • Sakaguchi H, Suzuki MG. 2013. Drosophila melanogaster larvae control amylase secretion according to the hardness of food. Frontiers in Physiology. 4.
  • Silva CP, Terra WR, Desa MFG, Samuels RI, Isejima EM, Bifano TD, Almeida JS. 2001. Induction of digestive alpha amylase in larvae of Zabrotes subfasciatus (Coleoptera: Bruchidae) in response to ingestion of common bean alpha amylase inhibitor 1. Journal of Insect Physiology. 47:1283–1290.
  • Terra WR, Ferreira C. 2005. Biochemistry of digestion. In: Gilbert L I, Iatrou K and Gill S S, editors. Comprehensive molecular insect science biochemistry and molecular biology (Vol. 4). Amsterdam: Elsevier; p. 55–68.

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