Honey bee protein and lipid nutrition in avocado and blueberry agroecosystems with conventional and organic management

IF 1.2 3区 农林科学 Q3 ENTOMOLOGY
Tsiri Diaz, Ek del-Val, Ernesto Vega, Jorge Contreras-Garduño, John Larsen
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引用次数: 0

Abstract

Honey bees play a crucial role in agricultural production. Farmers rely on commercial bee pollination to obtain optimal yields, and beekeepers on the income from pollination fees. However, commercial pollination confronts honey bees with pests and pathogens, pesticides, and low-quality food, which in many cases do not fulfill the minimal nutritional requirements of honey bees. In this work, we evaluated honey bee nutrition in avocado and blueberry plantations under organic and conventional management, by assessing the nutritional quality of pollen and bee bread based on their protein, fatty acid, and microbial content, and by analyzing honey bee health through the examination of abdominal fatty acid profiles and head protein content. Low protein content in honey bee hemolymph was evident under conventional management. Regardless of management, avocado pollen showed higher protein levels, which were translated into higher honey bee head protein levels being 60% higher in avocado under conventional management when compared to blueberry under the same management. However, higher protein levels in avocado pollen were also translated into lower amounts of fatty acids in bee bread and in honey bee fat. In particular, the total amount of fatty acids in bee bread from conventional management was 50% lower than that from organic management. Additionally, the saturated fatty acids in conventional blueberries were lower compared to that of organic blueberries. Crop system and bee bread microbial composition altered the plant-honey bee nutrition cascades transforming pollen to bee bread with increased amount of saturated, unsaturated, and total fatty acids. In conclusion, both crop species and crop systems determine honey bee nutrition through alterations in the pollen transformation, affecting protein and fatty acid assimilation.

采用常规和有机管理的鳄梨和蓝莓农业生态系统中的蜜蜂蛋白质和脂质营养
蜜蜂在农业生产中发挥着至关重要的作用。农民依靠商业蜜蜂授粉获得最佳产量,养蜂人依靠授粉费获得收入。然而,商业授粉使蜜蜂面临害虫、病原体、杀虫剂和劣质食物的威胁,在很多情况下,这些都不能满足蜜蜂的最低营养需求。在这项工作中,我们评估了有机和常规管理下牛油果和蓝莓种植园中蜜蜂的营养状况,根据蛋白质、脂肪酸和微生物含量评估了花粉和蜂粮的营养质量,并通过检查腹部脂肪酸谱和头部蛋白质含量分析了蜜蜂的健康状况。在常规管理下,蜜蜂血淋巴中的蛋白质含量明显偏低。无论采用哪种管理方式,牛油果花粉都显示出较高的蛋白质含量,从而转化为较高的蜜蜂头部蛋白质含量,在传统管理方式下,牛油果的蜜蜂头部蛋白质含量比相同管理方式下的蓝莓高 60%。然而,牛油果花粉中较高的蛋白质含量也导致蜜蜂面包和蜜蜂脂肪中较低的脂肪酸含量。特别是,常规管理下的蜜蜂面包中的脂肪酸总量比有机管理下的低 50%。此外,常规蓝莓中的饱和脂肪酸也低于有机蓝莓。作物系统和蜜蜂面包微生物组成改变了从花粉到蜜蜂面包的植物-蜜蜂营养级联,增加了饱和脂肪酸、不饱和脂肪酸和总脂肪酸的含量。总之,作物种类和作物系统通过改变花粉转化过程来决定蜜蜂的营养,影响蛋白质和脂肪酸的同化。
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来源期刊
Arthropod-Plant Interactions
Arthropod-Plant Interactions 生物-昆虫学
CiteScore
3.00
自引率
6.20%
发文量
58
审稿时长
6 months
期刊介绍: Arthropod-Plant Interactions is dedicated to publishing high quality original papers and reviews with a broad fundamental or applied focus on ecological, biological, and evolutionary aspects of the interactions between insects and other arthropods with plants. Coverage extends to all aspects of such interactions including chemical, biochemical, genetic, and molecular analysis, as well reporting on multitrophic studies, ecophysiology, and mutualism. Arthropod-Plant Interactions encourages the submission of forum papers that challenge prevailing hypotheses. The journal encourages a diversity of opinion by presenting both invited and unsolicited review papers.
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