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Standard methods for Apis mellifera beeswax research (CROSBI ID 262138)

Prilog u časopisu | pregledni rad (znanstveni) | međunarodna recenzija

Svečnjak, Lidija ; Chesson, Lesley Ann ; Gallina, Albino ; Maia, Miguel ; Martinello, Marianna ; Mutinelli, Franco ; Necati Muz, Mustafa ; Nunes, Fernando M. ; Saucy, Francis ; Tipple, Brett James et al. Standard methods for Apis mellifera beeswax research // Journal of apicultural research, 58 (2019), 2; 1-108

Podaci o odgovornosti

Svečnjak, Lidija ; Chesson, Lesley Ann ; Gallina, Albino ; Maia, Miguel ; Martinello, Marianna ; Mutinelli, Franco ; Necati Muz, Mustafa ; Nunes, Fernando M. ; Saucy, Francis ; Tipple, Brett James ; Wallner, Klaus ; Waś, Ewa ; Waters, Todd Alan

engleski

Standard methods for Apis mellifera beeswax research

Due to its multifuctional and complex role in the honey bee colony functionning and health (construction material allowing food storage, brood rearing, thermoregulation, mediation in chemical and mechanical communication, substrate for pathogens, toxins and waste), Apis mellifera beeswax has been widely studied over the last five decades. This is supported by a comprehensive set of scientific reports covering different aspects of beeswax research. In this paper we present an overview of the methods for studying chemical, biological, constructional, and quality aspects of beeswax. We provide a detailed description of the methods for investigating wax scales, comb construction and growth pattern, cell properties, chemical composition of beeswax using different analytical tools, as well as the analytical procedures for provenancing beeswax and beeswax-derived compounds based on the hydrogen isotope ratio (IRMS). Along with classical physico-chemical and sensory analysis, we describe more precise and accurate methods for detection of adulterants in beeswax (GC-MS and FTIR-ATR). Moreover, we present methods for studying the influence of beeswax (comb foundation) adulteration on comb construction. Analytical protocols for determining the pesticide residues using different chromatographic and spectroscopic techniques are also described. As beeswax is an agent of high risk for the transmission of bee diseases, we present methods for detection of pathogens in beeswax. To ensure the reproducibility of experiments and results, we present best practice approaches and detailed protocols for all methods described, as well as their advantages and disadvantages.

Apis mellifera ; beeswax ; wax scales ; comb construction ; cell properties ; chemical composition ; beeswax provenancing ; adulterants ; pesticide residues ; pathogens

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Podaci o izdanju

58 (2)

2019.

1-108

objavljeno

0021-8839

2078-6913

Povezanost rada

Biologija, Interdisciplinarne prirodne znanosti, Kemija

Indeksiranost