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Pekar, S.

Publications and source records attributed to Pekar, S..

3 recordsLinked to original sources

Cultures of Tyrophagus putrescentiae experimentally infected with Cardinium and Wolbachia presented reduced fitness

Tyrophagus putrescentiae is a cosmopolitan pest of stored food and animal feed. Mite populations differ in their microbiome composition, resulting in variability in their fitness. Cultures of the stored-product mite T. putrescentiae are often singly infected by one of intracellular bacterial genera Cardinium and Wolbachia. No naturally occurring multi-infected (Cardinium/Wolbachia) cultures have been observed. Under laboratory conditions, we mixed two singly infected mite cultures, i.e., Cardinium-infected (5L and 5S) and Wolbachia-infected (5N and 5P) cultures, to obtain four experimental cultures (5LN, 5LP, 5SN and 5SP), each infected with each of the endosymbionts. Population growth was used as a fitness indicator, and PCR with specific primers for a single mite was used to identify the prevalence of Cardinium and Wolbachia in the parental and mixed cultures. The population growth of the experimental cultures was lower than that of the parents at the beginning of the experiment. After six months, 5SN and 5SP exhibited greater fitness than 5LP and 5LN. The population growth of the 5SN and 5SP cultures did not differ from that of the parental cultures 5P and 5S. Cardinium-infected mites prevailed in 6 cultures, Wolbachia-infected mites in 5 cultures, and asymbiotic individuals in 1 culture after six months. The proportion of Cardinium-infected individuals (45%) was greater than that of Wolbachia-infected individuals (25%), indicating that Cardinium had the ability to overcome Wolbachia. Although the cultures were multi-infected, doubly infected mites were rare (7%). These results suggest that Cardinium is responsible for cytoplasmic incompatibility in T. putrescentiae. The results revealed that the presence of the intracellular symbionts Cardinium and Wolbachia strongly influenced mite population growth in the experiments. These data support the importance of the microbiome in this pest.

zoology↗

Habituation to visual stimuli is personality-independent in a jumping spider

1Jumping spiders display some of the richest visually-mediated behaviors in nature. Vision is indeed the most important sensory modality in these spiders where motion detection and response to visual stimuli allow key behaviors such as hunting, escaping from predators, and mating. These spiders have been used in various experiments demonstrating the existence of good associative learning and memory abilities, whose mechanism parallels that found in vertebrates. Here we focused on the habituation and dis-habituation (H/DH) paradigm, indicating either a gradual decrease in responsiveness to repeated visual stimuli (H), or a recovery of the habituated stimulus (DH). H is an elementary form of non-associative learning and memory, which is expected to vary from individual to individual. The link between personality and H/DH has been shown in many vertebrates, but rarely in invertebrates. To tackle this question we tested whether personality affects H/DH in the jumping spider Menemerus semilimbatus. In our protocol, habituation was assessed by presenting repeatedly a visual stimulus on a screen to spiders tethered on a locomotor compensator. In the same individuals, personality (namely boldness) was assessed in a walking arena equipped with a shelter. We found that M. semilimbatus habituated and dishabituated to our visual stimulus and that they differed in personality along a shy-bold axis. However, contrary to our expectations, personality was not related to learning. We discussed the results and speculated that the nature (neutral value) of the stimulus might have played a role in making learning independent from personality.

animal behavior and cognition↗

arakno - An R package for effective spider nomenclature, distribution and trait data retrieval from online resources

Online open databases are increasing in number, usefulness, and ease of use. There are currently two main global databases exclusive for spiders, the World Spider Catalogue (WSC) and the World Spider Trait (WST) database. Both are regularly used by thousands of researchers. Computational tools that allow effective processing of large data are now part of the workflow of any researcher and R is becoming a de facto standard for data manipulation, analysis, and presentation. Here we present an R package, arakno, that allows interface with the two databases. Implemented tools include checking species names against nomenclature of the WSC, obtaining and mapping data on distribution of species from both WST and the Global Biodiversity Information Facility (GBIF), and downloading trait data from the WST. A set of tools are also provided to prepare data for further statistical analysis.

zoology↗