Pornon André, Escaravage Nathalie, Burrus Monique, Holota Hélène, Khimoun Aurélie, Mariette Jérome, Pellizzari Charlène, Iribar Amaia, Etienne Roselyne, Taberlet Pierre, Vidal Marie, Winterton Peter, Zinger Lucie, Andalo Christophe
Laboratoire Evolution and Diversité Biologique EDB, Université Toulouse III Paul Sabatier, F-31062 Toulouse, France.
CNRS, EDB, UMR 5174, F-31062 Toulouse, France.
Sci Rep. 2016 Jun 3;6:27282. doi: 10.1038/srep27282.
Given the ongoing decline of both pollinators and plants, it is crucial to implement effective methods to describe complex pollination networks across time and space in a comprehensive and high-throughput way. Here we tested if metabarcoding may circumvent the limits of conventional methodologies in detecting and quantifying plant-pollinator interactions. Metabarcoding experiments on pollen DNA mixtures described a positive relationship between the amounts of DNA from focal species and the number of trnL and ITS1 sequences yielded. The study of pollen loads of insects captured in plant communities revealed that as compared to the observation of visits, metabarcoding revealed 2.5 times more plant species involved in plant-pollinator interactions. We further observed a tight positive relationship between the pollen-carrying capacities of insect taxa and the number of trnL and ITS1 sequences. The number of visits received per plant species also positively correlated to the number of their ITS1 and trnL sequences in insect pollen loads. By revealing interactions hard to observe otherwise, metabarcoding significantly enlarges the spatiotemporal observation window of pollination interactions. By providing new qualitative and quantitative information, metabarcoding holds great promise for investigating diverse facets of interactions and will provide a new perception of pollination networks as a whole.
鉴于传粉者和植物数量都在持续减少,实施有效的方法以全面且高通量的方式描述跨时空的复杂传粉网络至关重要。在此,我们测试了代谢条形码技术是否可以规避传统方法在检测和量化植物 - 传粉者相互作用方面的局限性。对花粉DNA混合物进行的代谢条形码实验表明,目标物种的DNA量与产生的trnL和ITS1序列数量之间存在正相关关系。对在植物群落中捕获的昆虫的花粉负载进行研究发现,与观察访花情况相比,代谢条形码技术揭示出参与植物 - 传粉者相互作用的植物物种数量多出2.5倍。我们还进一步观察到昆虫类群的花粉携带能力与trnL和ITS1序列数量之间存在紧密的正相关关系。每个植物物种所接受的访花次数也与昆虫花粉负载中其ITS1和trnL序列的数量呈正相关。通过揭示其他方式难以观察到的相互作用,代谢条形码技术显著扩大了传粉相互作用的时空观察窗口。通过提供新的定性和定量信息,代谢条形码技术在研究相互作用的各个方面具有巨大潜力,并将为整个传粉网络提供新的认识。