Shavrova Anastasia J, Buzatto Bruno A, Kasumovic Michael M
Evolution and Ecology Research Centre, School of Biological, Earth and Environmental Sciences UNSW Sydney Sydney New South Wales Australia.
College of Science and Engineering, Flinders University Bedford Park South Australia Australia.
Ecol Evol. 2024 Nov 5;14(11):e70525. doi: 10.1002/ece3.70525. eCollection 2024 Nov.
Our understanding of sexual selection is advancing with new technologies that tag individuals or their sperm, revealing how females use post-copulatory processes to discriminate between competing mates. Many tagging methods have been devised primarily for model insect organisms like or Gryllidae. Developing such novel methods, however, is expensive and requires intensive investment. In this experiment, we trial the use of Rhodamine B (RhB) and Rhodamine 110 (Rh110) in a small arachnid, the bulb mite , for pre- and post-copulatory observations as it is a relatively inexpensive and simple way to tag individuals and their ejaculate proteins. First, we tested whether RhB and Rh110 applied to food can be used as a tagging method to track and distinguish between individuals. Second, we explored whether Rhodamine applied in this way can be used to track sperm transfer. We found that both tagging probes worked well in tagging individuals and that we were able to distinguish between individuals using both LED and fluorescent microscopy. We also found that Rhodamine degraded rapidly in the animals, likely due to their fast metabolism. Due to the rapid degradation, we observed variable results in the sperm transfer trials. We suggest multiple uses for Rhodamine and highlight other invertebrates where this method may come into use for the study of sexual selection.
我们对性选择的理解正随着标记个体或其精子的新技术而不断推进,这些技术揭示了雌性如何利用交配后的过程来区分竞争配偶。许多标记方法主要是为果蝇或蟋蟀科等模式昆虫设计的。然而,开发这种新方法成本高昂且需要大量投入。在本实验中,我们尝试在一种小型蛛形纲动物——球螨中使用罗丹明B(RhB)和罗丹明110(Rh110)进行交配前和交配后的观察,因为这是标记个体及其射精蛋白的一种相对廉价且简单的方法。首先,我们测试了应用于食物的RhB和Rh110是否可以用作追踪和区分个体的标记方法。其次,我们探究了以这种方式应用的罗丹明是否可用于追踪精子转移。我们发现两种标记探针在标记个体方面都效果良好,并且我们能够使用LED和荧光显微镜区分个体。我们还发现罗丹明在动物体内迅速降解,这可能是由于它们的新陈代谢速度快。由于快速降解,我们在精子转移试验中观察到了不同的结果。我们提出了罗丹明的多种用途,并强调了这种方法可能用于性选择研究的其他无脊椎动物。