蛋氨酸锌或硫酸锌对蜜蜂下咽腺发育和主要蜂王浆蛋白基因表达的调节作用

IF 1.6 4区 农林科学 Q2 ENTOMOLOGY
Giovanna do Prado Ribeiro, Samir Moura Kadri, Luis Antônio Justulin, Paulo Eduardo Martins Ribolla, Ricardo de Oliveira Orsi
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引用次数: 0

摘要

我们分析了锌的来源(无机和有机)是否会影响6岁时哺乳蜜蜂的下咽腺(HPG)形态和主要蜂王浆蛋白(MRJP)基因的相对表达 天的年龄。为此,对15个意大利蜜蜂群落进行以下处理:Zn0(对照)、蛋氨酸锌(50 ppm)和硫酸锌一水合物(50 ppm)(以食物减少为特征)。在显微镜下使用实时PCR和HPG切片分析MRJP1和MRJP5基因表达。对30只蜜蜂的死亡率和种群发展也进行了评估 天。据观察,蜜蜂食用了所有含有有机和无机锌的糖浆,这不会增加死亡率或影响种群发展。关于HPG形态计量学,观察到锌,无论来源如何,对腺泡面积的促进作用都明显大于对照。与无机来源相比,锌蛋氨酸促进了HPG面积的显著增加。与对照组相比,MRJP1和MRJP5的相对表达没有显著影响。我们得出的结论是,矿物Zn促进HPG面积的增加,并且不会改变MRJP1和MRJP5基因的表达模式,并且矿物的有机来源呈现出最好的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Zinc methionine or zinc sulphate supplementation modulate the development of the hypopharyngeal gland and expression of major royal jelly protein genes in Apis mellifera L. bees

We analysed whether the source of zinc (inorganic and organic) influences the morphology of the hypopharyngeal gland (HPG) and the relative expression of major royal jelly protein (MRJP) genes in nursing bees at 6 days of age. For this, 15 colonies of Apis mellifera bees were subjected to the following treatments: Zn0 (control), zinc methionine (50 ppm) and zinc sulphate monohydrate (50 ppm) during the off-season (characterized by food reduction). MRJP1 and MRJP5 gene expression was analysed using real-time PCR and HPG sections under a microscope. Bee mortality and population development were also evaluated for 30 days. It was observed that the honeybees consumed all sugar syrup containing zinc both in its organic and inorganic forms, which did not promote mortality or affect population development. Regarding HPG morphometry, it was observed that zinc, regardless of the source, promoted the acini area significantly greater than that of the control. Zn methionine promoted a significant increase in HPG area compared with that of an inorganic source. The relative expression of MRJP1 and MRJP5 was not significantly affected compared with the control. We conclude that the mineral Zn promotes an increase in the HPG area and does not alter the pattern of expression of the MRJP1 and MRJP5 genes, and that the organic source of the mineral presents the best results.

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来源期刊
Physiological Entomology
Physiological Entomology 生物-昆虫学
CiteScore
2.80
自引率
6.70%
发文量
21
审稿时长
>12 weeks
期刊介绍: Physiological Entomology broadly considers “how insects work” and how they are adapted to their environments at all levels from genes and molecules, anatomy and structure, to behaviour and interactions of whole organisms. We publish high quality experiment based papers reporting research on insects and other arthropods as well as occasional reviews. The journal thus has a focus on physiological and experimental approaches to understanding how insects function. The broad subject coverage of the Journal includes, but is not limited to: -experimental analysis of behaviour- behavioural physiology and biochemistry- neurobiology and sensory physiology- general physiology- circadian rhythms and photoperiodism- chemical ecology
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