Biblio
Found 441 results
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“Sequencing of 15 622 gene-bearing BACs clarifies the gene-dense regions of the barley genome”, The Plant Journal, vol. 84, no. 1, pp. 216 - 227, 2015.
, “Significant improvements in the characterization of volatile compound profiles in squid using simultaneous distillation-extraction and GC×GC-TOFMS”, CyTA - Journal of Food, vol. 131445922113024, no. 3315, pp. 434 - 444, 2015.
, “Significant improvements in the characterization of volatile compound profiles in squid using simultaneous distillation-extraction and GC×GC-TOFMS”, CyTA - Journal of Food, vol. 131445922113024, no. 3315, pp. 434 - 444, 2015.
, “Synthesis and characterization of novel trialdehyde, tribenzylamine, and triamine from triolein”, European Journal of Lipid Science and Technology, vol. 117217411221101261482892892055113751374667048, no. 8, pp. 1179 - 1184, 2015.
, “Synthesis and characterization of novel trialdehyde, tribenzylamine, and triamine from triolein”, European Journal of Lipid Science and Technology, vol. 117217411221101261482892892055113751374667048, no. 8, pp. 1179 - 1184, 2015.
, “Textural and rheological properties of Pacific whiting surimi as affected by nano-scaled fish bone and heating rates.”, Food Chem, vol. 180, pp. 42-7, 2015.
, “Trinexapac-ethyl rate and application timing effects on seed yield and yield components in tall fescue”, Field Crops Research, vol. 173, no. Complete, pp. 8 - 13, 2015.
, “The avian embryo and its antioxidant defence system”, World's Poultry Science Journal, vol. 70, no. 03, pp. 563 - 574, 2014.
, “Bed Bugs”, Arizona Cooperative Extension publication AZ1625 (refereed), 2014.
, “Blueberry leaf extracts incorporated chitosan coatings for preserving postharvest quality of fresh blueberries”, Postharvest Biology and Technology, vol. 92, pp. 46 - 53, 2014.
, “Blueberry leaf extracts incorporated chitosan coatings for preserving postharvest quality of fresh blueberries”, Postharvest Biology and Technology, vol. 92, pp. 46 - 53, 2014.
, “Caffeic acid phenethyl ester, a major component of propolis, suppresses high fat diet-induced obesity through inhibiting adipogenesis at the mitotic clonal expansion stage.”, J Agric Food Chem, vol. 62, no. 19, pp. 4306-12, 2014.
, “Caffeic acid phenethyl ester, a major component of propolis, suppresses high fat diet-induced obesity through inhibiting adipogenesis at the mitotic clonal expansion stage.”, J Agric Food Chem, vol. 62, no. 19, pp. 4306-12, 2014.
, “’Columbia Star’ thornless trailing blackberry”, HortScience, vol. 49, pp. 1108-1112, 2014.
, “‘Columbia Star’thornless trailing blackberry”, HortScience, vol. 49, pp. 1108–1112, 2014.
, “A comprehensive collection of systems biology data characterizing the host response to viral infection”, Scientific Data, vol. 1, p. 140033, 2014.
, “A comprehensive collection of systems biology data characterizing the host response to viral infection”, Scientific Data, vol. 1, p. 140033, 2014.
, “Drying-induced protein and microstructure damages of squid fillets affected moisture distribution and rehydration ability during rehydration”, Journal of Food Engineering, vol. 123, pp. 23 - 31, 2014.
, “Drying-induced protein and microstructure damages of squid fillets affected moisture distribution and rehydration ability during rehydration”, Journal of Food Engineering, vol. 123, pp. 23 - 31, 2014.
, “Early life perfluorooctanesulphonic acid (PFOS) exposure impairs zebrafish organogenesis.”, Aquat Toxicol, vol. 150, pp. 124-32, 2014.
, “Early life perfluorooctanesulphonic acid (PFOS) exposure impairs zebrafish organogenesis”, Aquatic Toxicology, vol. 150, pp. 124 - 132, 2014.
, “Effects of nano-scaled fish bone on the gelation properties of Alaska pollock surimi.”, Food Chem, vol. 150, pp. 463-8, 2014.
, “An evaluation of US strawberry producers trait prioritization: Evidence from audience surveys”, HortScience, vol. 49, pp. 188–193, 2014.
“The founding charter of the Genomic Observatories Network”, GigaScience, vol. 3, no. 1, 2014.
, “Fungal but not bacterial soil communities recover after termination of decadal nitrogen additions to boreal forest”, Soil Biology and Biochemistry, vol. 72, pp. 35 - 43, 2014.
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