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追踪微小者中的最小者——利用纳米技术追踪浮游动物。

Tracking the small with the smallest--using nanotechnology in tracking zooplankton.

机构信息

Institute of Biology, Limnology, Lund University, Lund, Sweden.

出版信息

PLoS One. 2010 Oct 29;5(10):e13516. doi: 10.1371/journal.pone.0013516.

Abstract

A major problem when studying behavior and migration of small organisms is that many of the questions addressed for larger animals are not possible to formulate due to constraints on tracking smaller animals. In aquatic ecosystems, this problem is particularly problematic for zoo- and phytoplankton, since tracking devices are too heavy to allow the organism to act naturally. However, recent advances in nanotechnology have made it possible to track individual animals and thereby to focus on important and urgent questions which previously have not been possible to address. Here we report on a novel approach to track movement and migratory behavior of millimeter sized aquatic animals, particularly Daphnia magna, using the commercially available nanometer sized fluorescent probes known as quantum dots. Experimental trials with and without quantum dots showed that they did not affect behavior, reproduction or mortality of the tested animals. Compared to previously used methods to label small animals, the nano-labeling method presented here offers considerable improvements including: 24 h fluorescence, studies in both light and darkness, much improved optical properties, potential to study large volumes and even track animals in semi-natural conditions. Hence, the suggested method, developed in close cooperation between biologists, chemists and physicists, offers new opportunities to routinely study zooplankton responses to light, food and predation, opening up advancements within research areas such as diel vertical/horizontal migration, partial migration and other differences in intra- and interspecific movements and migration.

摘要

研究小型生物的行为和迁移时,一个主要问题是,由于难以追踪小型动物,许多针对大型动物提出的问题无法被提出。在水生生态系统中,这个问题对于浮游动物和浮游植物来说尤为突出,因为追踪设备过于沉重,无法让生物体自然活动。然而,纳米技术的最新进展使得追踪个体动物成为可能,从而可以关注之前无法解决的重要和紧迫问题。在这里,我们报告了一种新的方法,使用市售的纳米级荧光探针(即量子点)来追踪毫米级水生动物,特别是大型溞的运动和迁移行为。有和没有量子点的实验表明,它们不会影响测试动物的行为、繁殖或死亡率。与之前用于标记小型动物的方法相比,这里提出的纳米标记方法具有显著的改进,包括:24 小时荧光、在光和黑暗条件下的研究、光学性能大大提高、研究大容量的潜力,甚至可以在半自然条件下追踪动物。因此,该方法是由生物学家、化学家与物理学家密切合作开发的,为常规研究浮游动物对光、食物和捕食的反应提供了新的机会,为昼夜垂直/水平迁移、部分迁移以及种内和种间运动和迁移的其他差异等研究领域的发展开辟了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b55/2966396/f1637ae24fe4/pone.0013516.g001.jpg

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