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32 result(s) for "Ghosh, Sampat"
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Foraging behaviour and preference of pollen sources by honey bee (Apis mellifera) relative to protein contents
Background Pollen is an important source of protein and lipids for many animals including honey bees. In order to understand the foraging behaviour of honey bee colonies and preference among the available floral resources, pollen collections from three experimental healthy colonies of honey bees were analysed in the month of June. Results The amount of pollen collections were related to the colony’s need which was indicated by the number of larval and adult bees present in the hive. Interesting was the sequence of pollen collection from different floral sources. All honey bee colonies collected pollens from Trifolium repens first, then Erigeron annus and the third choice was Coreopsis drummondii and Oenothera biennis flowers. Total protein content of Trifolium pollen was the highest (20.0 g/100 g DM), and the others were in the range of 8.9–11.4 g/100 g DM. Conclusion The results indicated that the first criteria for honey bee foraging preference of pollens would be the nutritional contents of protein and the resource availability of the lesser nutritious floral sources. This information can help pollinator protection programmes of habitat manipulation using flowering plants for nectar and pollen sources.
Chemical Composition, Nutrient Quality and Acceptability of Edible Insects Are Affected by Species, Developmental Stage, Gender, Diet, and Processing Method
Edible insects have been considered as either nutritious food itemsper se, or as wholesome ingredients to various dishes and components of traditional subsistence. Protein, fat, mineral and vitamin contents in insects generally satisfy the requirements of healthy food, although there is considerable variation associated with insect species, collection site, processing method, insect life stage, rearing technology and insect feed. A comparison of available data(based on dry weight) showed that processing can improve the nutrient content, taste, flavour, appearance and palatability of insects, but that there are additional factors, which can impact the content and composition of insect species that have been recommended for consumption by humans. This review focuses on factors that have received little attention in connection with the task to improve acceptability or choice of edible insects and suggests ways to guarantee food security in countries where deficiencies in protein and minerals are an acute and perpetual problem. This review is meant to assist the food industry to select the most suitable species as well as processing methods for insect-based food products.
Chemical Composition and Nutritional Value of Royal Jelly Samples Obtained from Honey Bee (Apis mellifera) Hives Fed on Oak and Rapeseed Pollen Patties
Young workers, i.e., nurse honey bees, synthesize and secrete royal jelly to feed the brood and queen. Since royal jelly is a protein-rich substance, the quality of royal jelly may be influenced by the consumption of feed with varying protein content. We tested whether honey bee (Apis mellifera) colonies compensates for the nutritional quality to produce royal jelly by feeding different pollen patties made of oak or rapeseed pollen. After harvesting royal jelly, we examined the chemical composition including proximate nutrients, amino acids, proteins, fatty acids, and minerals of royal jelly samples obtained from two treatments. The results revealed that pollen patties with different nutritional levels did not influence the nutritional composition except for the crude fat. The levels of 10-HDA, which serves as an indicator of the royal jelly quality, showed no significant difference between the oak and rapeseed treatments, with values of 1.9 and 2.1 g/100 g, respectively. However, we found some differences in the protein intensity, particularly the MRJP3 precursor, MRJP3-like, and glucose oxidase. This study suggests that honey bees may have mechanisms to compensate for nutritional standards to meet the brood’s and queen’s nutritional requirements during bee pollen collection, preserving bee bread and royal jelly secretion.
Honey Quality Control: Review of Methodologies for Determining Entomological Origin
Honey is a widely consumed natural product, and its entomological origin can significantly influence its market value. Therefore, traceability of the entomological origin of honey should also be considered in honey quality control protocols. Although several methods exist, such as physicochemical characterization and bioactivity profiling of honey of different entomological origins, the most promising three methods for entomological authentication of honey include protein-based identification, chemical profiling, and a DNA-based method. All of these methods can be applied for reliable identification of the entomological origin of honey. However, as the honey is a complex matrix, the inconsistency of the results obtained by these methods is a pragmatic challenge, and therefore, the use of each method in all the cases is questionable. Most of these methodologies can be used for authentication of newly harvested honey and it is worth understanding the possibility of using these methods for authentication of relatively old samples. Most probably, using DNA-based methods targeting small fragments of DNA can provide the best result in old samples, however, the species-specific primers targeting short fragments are limited and not available for all species. Therefore, using universal primers in combination with a DNA metabarcoding approach can be a good solution that requires further investigation. This present article describes the applications of different methods, their pros, and their cons to identify honey based on entomological origin.
Dietary pollen and carbohydrate sources influence longevity, physiology, and gut microbiota in honey bee (Apis mellifera)
The Western honey bee ( Apis mellifera ) is essential for crop pollination and ecosystem stability and production for beekeepers as well, yet rising colony losses are a major concern. Poor nutrition is a key stressor, prompting beekeepers to supplement carbohydrates and proteins during nectar and pollen shortages. This study was conducted under controlled laboratory cage conditions to evaluate the interaction effects of two carbohydrate sources, regular corn syrup (rich in maltose) and sucrose syrup; and three pollen types (rapeseed, kiwi, and mixed pollen) on honey bee longevity and physiological performance. Bees fed corn syrup lived longer and developed larger hypopharyngeal glands (HPG) than those fed sucrose syrup. Among pollen treatments, mixed pollen produced the most favorable outcomes, including increased survival, larger HPG acini, and higher vitellogenin levels. The combination of corn syrup and mixed pollen (CS–MP) yielded the longest lifespan, and lowest food consumption, indicating improved nutritional efficiency. Gut microbiota composition varied with diet: RP and KP diets showed higher relative abundances of Sondgrassella and Gilliamella compared with MP whereas the mixed pollen diet promoted a higher relative abundance of Lactobacillus . These results demonstrate that optimizing carbohydrate and pollen combinations can significantly enhance honey bee health, longevity, and colony resilience, providing practical insights for nutritional management in apiculture.
Impact of carbohydrate sources on the longevity and physiological traits of the European honey bee workers
Carbohydrates are vital for honey bee energy, fitness, and survival, influencing colony dynamics and resilience. This study examined the effects of various carbohydrate sources on honeybee longevity, hypopharyngeal gland size, gene expression, and gut microbiome composition. Newly emerged bees were fed white sugar, brown sugar, corn syrup (CS), maltose, acacia honey, chestnut honey, and oligosaccharide ad libitum. Bees fed CS showed the highest longevity, followed by acacia honey and white sugar, while oligosaccharide-fed bees had the lowest longevity. CS-fed bees also exhibited larger hypopharyngeal glands, correlating with improved survival. Gene expression analysis revealed upregulation of Ilp2 and Vg and downregulation of Ilp1 in 14-day-old bees fed with CS which may be linked to enhanced longevity. Gut microbiome analysis showed the higher composition of Frischella in honey fed treatment groups and Bartonella in processed carbohydrates treated groups, potentially compensating for dietary amino acid deficiencies. However, the absence of core symbionts like Snodgrassella in CS-fed bees may weaken immunity and heighten disease susceptibility. These findings suggest starch-derived corn syrup as a promising carbohydrate source under laboratory conditions, however, long-term colony-level studies are essential to fully understand its benefits and potential risks. This research provides valuable insights for honey bee management and conservation strategies.
Differential Bacterial Community of Bee Bread and Bee Pollen Revealed by 16s rRNA High-Throughput Sequencing
We investigated the bacterial community of bee bread and bee pollen samples using an approach through 16 s rRNA high-throughput sequencing. The results revealed a higher bacterial diversity in bee bread than in bee pollen as depicted in taxonomic profiling, as well as diversity indices such as the Shannon diversity index (3.7 to 4.8 for bee bread and 1.1 to 1.7 for bee pollen samples) and Simpson’s index (>0.9 for bee bread and 0.4–0.5 for bee pollen). Principal component analysis showed a distinct difference in bacterial communities. The higher bacterial diversity in the bee bread than bee pollen could presumably be due to factors such as storage period, processing of food, fermentation, and high sugar environment. However, no effect of the feed (rapeseed or oak pollen patties or even natural inflow) was indicated on the bacterial composition of bee bread, presumably because of the lack of restriction of foraged pollen inflow in the hive. The diverse bacterial profile of the bee bread could contribute to the nutritional provisioning as well as enhance the detoxification process; however, a thorough investigation of the functional role of individual bacteria genera remains a task for future studies.
Embracing Tradition: The Vital Role of Traditional Foods in Achieving Nutrition Security
In a press release from the Convention on Biological Diversity (CBD) in 2019, it was reported that, currently, a mere 12 plants and 5 animal species account for approximately 75% of global food production [...]
Nutrient Composition and Quality Assessment of Royal Jelly Samples Relative to Feed Supplements
Royal jelly is a substance secreted by the hypopharyngeal and mandibular glands of nurse honey bees, serving as crucial nutritional source for young larvae, queen honey bees, and also valuable product for humans. In this study, the effect of the feed supplements on the nutritional composition and qualities of royal jelly was investigated. Two types of royal jelly samples were acquired: one from honey bees fed with sugar syrup as a feed supplement and the other from honey bees fed with honey. The production, harvesting, and storage of all royal jelly samples followed standard procedures. Parameters for quality assessment and nutritional value, including stable carbon isotopic ratio, moisture content, 10-hydroxy-2-decenoic acid (10-HDA) level, carbohydrate composition, amino acid composition, and mineral contents, were analyzed. The results revealed that despite variability in moisture content and carbohydrate composition, fructose was lower (2.6 and 4.1 g/100 g as is for sugar-fed and honey-fed royal jelly, respectively) and sucrose was higher (7.5 and 2.7 g/100 g as is for sugar-fed and honey-fed royal jelly, respectively) in the sugar-fed group. The stable isotope ratio (−16.4608‰ for sugar-fed and −21.9304‰ for honey-fed royal jelly) clearly distinguished the two groups. 10-HDA, amino acid composition, and total protein levels were not significantly different. Certain minerals, such as potassium, iron, magnesium, manganese, and phosphorus were higher in the honey-fed group. Hierarchical analysis based on moisture, sugar composition, 10-HDA, and stable carbon isotopes categorized the samples into two distinct groups. This study demonstrated that the feed source could affect the nutritional quality of royal jelly.
Comparative Physicochemical and Functional Properties of Monofloral Honeys from South Korea
Monofloral honeys are widely recognized for their distinct chemical characteristics which are largely influenced by botanical origin. This study aimed to compare the physicochemical and functional properties of monofloral honeys produced in South Korea. Five monofloral honey types, Castanea crenata, Robinia pseudoacacia, Toxicodendron spp., Hovenia dulcis, and Styrax japonicus, were analyzed, and their floral origins were confirmed through melissopalynological analysis. Physicochemical parameters (moisture content, total soluble solids, hydroxymethylfurfural content, stable carbon isotope ratio, free acidity, pH, color, and sugar composition), along with amino acid profiles, predicted glycemic index (GI), and antioxidant activity, were determined. Most physicochemical parameters showed statistically significant differences among honey types. Amino acid composition differed markedly among honey types, with Castanea honey exhibiting higher levels of proline, phenylalanine, and leucine compared to Robinia and Styrax honeys. Predicted GI values were predominantly within the low-GI range, with no statistically significant differences observed among floral origins. Antioxidant activity showed a similar trend to amino acid content, with Castanea honey displaying the highest antioxidant values. These findings demonstrate that botanical origin is a key determinant of the physicochemical and in vitro functional attributes of honey, including antioxidant activity and predicted GI, and provide a scientific basis for the characterization of South Korean monofloral honeys.