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应用稳健的 MALDI 质谱方法研究蜂花粉。

Application of a robust MALDI mass spectrometry approach for bee pollen investigation.

机构信息

Dipartimento di Scienze e Tecnologie Agro-Alimentari (DISTAL), Università di Bologna, Viale Fanin 42, 40127, Bologna, Italia.

Unione Nazionale Associazioni Apicoltori Italiani (UNA API), Via Pietro Boselli 2, Firenze, Italia.

出版信息

Anal Bioanal Chem. 2024 Aug;416(19):4315-4324. doi: 10.1007/s00216-024-05368-9. Epub 2024 Jun 15.

Abstract

Pollen collected by pollinators can be used as a marker of the foraging behavior as well as indicate the botanical species present in each environment. Pollen intake is essential for pollinators' health and survival. During the foraging activity, some pollinators, such as honeybees, manipulate the collected pollen mixing it with salivary secretions and nectar (corbicular pollen) changing the pollen chemical profile. Different tools have been developed for the identification of the botanical origin of pollen, based on microscopy, spectrometry, or molecular markers. However, up to date, corbicular pollen has never been investigated. In our work, corbicular pollen from 5 regions with different climate conditions was collected during spring. Pollens were identified with microscopy-based techniques, and then analyzed in MALDI-MS. Four different chemical extraction solutions and two physical disruption methods were tested to achieve a MALDI-MS effective protocol. The best performance was obtained using a sonication disruption method after extraction with acetic acid or trifluoroacetic acid. Therefore, we propose a new rapid and reliable methodology for the identification of the botanical origin of the corbicular pollens using MALDI-MS. This new approach opens to a wide range of environmental studies spanning from plant biodiversity to ecosystem trophic interactions.

摘要

传粉媒介采集的花粉可用作觅食行为的标志物,并指示每种环境中存在的植物种类。花粉摄入对传粉媒介的健康和生存至关重要。在觅食活动中,一些传粉媒介,如蜜蜂,会将采集的花粉与唾液分泌物和花蜜(颊囊花粉)混合,从而改变花粉的化学成分。已经开发出不同的工具来识别花粉的植物来源,这些工具基于显微镜、光谱学或分子标记。然而,迄今为止,从未研究过颊囊花粉。在我们的工作中,在春季采集了来自 5 个具有不同气候条件的地区的颊囊花粉。使用基于显微镜的技术对花粉进行鉴定,然后使用 MALDI-MS 进行分析。测试了四种不同的化学提取溶液和两种物理破碎方法,以制定 MALDI-MS 有效方案。使用乙酸或三氟乙酸提取后进行超声破碎方法的效果最佳。因此,我们提出了一种使用 MALDI-MS 鉴定颊囊花粉植物来源的快速可靠的新方法。这种新方法为从植物生物多样性到生态系统营养相互作用的广泛环境研究开辟了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11dc/11271380/092aea7f6fc7/216_2024_5368_Fig1_HTML.jpg

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