How to explore a new environment: exploratory tactics of the black rat (Rattus rattus)

. 2024 Jun ; 70 (3) : 371-382. [epub] 20240404

Status PubMed-not-MEDLINE Jazyk angličtina Země Anglie, Velká Británie Médium electronic-ecollection

Typ dokumentu časopisecké články

Perzistentní odkaz   https://www.medvik.cz/link/pmid39035763

The black rat (Rattus rattus) is a unique model for studying exploratory tactics due to its enormous colonizing potential. Considerable behavioral variability and consistent interindividual differences might help populations inhabit new environments and persist there even under intense pressure. Additionally, the affinity of the black rat for climbing might be another advantage, widening their potential niche. In this study, we describe the exploratory tactics of the black rats when introduced to a novel environment. In the first experiment, we tested 12 rats and calculated repeatability of their behaviors across 12 sessions of an enriched open-field test. We concluded that climbing is a highly repeatable behavior that serves as an important source of interindividual variability. In the second experiment, we tested 24 black rats in a unique L-shaped arena. Each rat was tested twice. We found that the majority of rats distributed their activity evenly, exploring each part of the apparatus for a similar amount of time, thus maximizing their chances of finding resources. Nevertheless, these "even" explorers still greatly differed in their level of activity, orderliness and affinity for climbing, generating large variability. In contrast, the minority of rats concentrated their activity only on a section of the new environment and were therefore characterized as selective explorers. Overall, we concluded that a combination of such exploratory tactics as well as a bias for even explorers enables black rats to quickly colonize new environments and persist there even under unfavorable conditions.

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Aplin KP, Chesser T, ten Have J, 2003. Evolutionary biology of the genus Rattus: profile of an archetypal rodent pest. In: Singleton GR, Hinds LA, Krebs CJ, Spratt DM editors. Rats, Mice and People: Rodent Biology and Management. ACIAR Monograph no. 96. Canberra: Australian Centre for International Agricultural Research, 440–498

Aplin KP, Suzuki H, Chinen AA, Chesser RT, Ten Have J. et al., 2011. Multiple geographic origins of commensalism and complex dispersal history of black rats. PLoS One 6(11):e26357. PubMed PMC

Archer J, 1973. Tests for emotionality in rats and mice: a review. Anim Behav 21(2):205–235. PubMed

Augustsson H, Meyerson BJ, 2004. Exploration and risk assessment: a comparative study of male house mice (Mus musculus musculus) and two laboratory strains. Physiol Behav 81(4):685–698. PubMed

Barnett SA, 1956. Behaviour components in the feeding of wild and laboratory rats. Behaviour 9(1):24–43.

Barnett SA, 1975. The rat: a study in behavior. Chicago: Transaction Publishers.

Barnett SA, Spencer MM, 1951. Feeding, social behaviour and interspecific competition in wild rats. Behaviour 3:229–242.

Bates D, Maechler M, Bolker B, Walker S, 2015. Fitting linear mixed-effects models using lme4. J Stat Softw 67(1):1–48.

Bell AM, Hankison SJ, Laskowski KL, 2009. The repeatability of behaviour: a meta-analysis. Anim Behav 77(4):771–783. PubMed PMC

Berthier K, Garba M, Leblois R, Navascués M, Tatard C. et al., 2016. Black rat invasion of inland Sahel: insights from interviews and population genetics in south-western Niger. Biol J Linn Soc 119(4):748–765.

Biro PA, Stamps JA, 2015. Using repeatability to study physiological and behavioural traits: Ignore time-related change at your peril. Anim Behav 105:223–230.

Box GE, Cox DR, 1964. An analysis of transformations. J R Stat Soc Series B Methodol 26(2):211–243.

Byers KA, Lee MJ, Patrick DM, Himsworth CG, 2019. Rats about town: a systematic review of rat movement in urban ecosystems. Front Ecol Evol 7:13.

Clapperton BK, Maddigan F, Chinn W, Murphy EC, 2019. Diet, population structure and breeding of Rattus rattus L. in South Island beech forest. N Z J Ecol 43(2):1–8.

Cox MP, Dickman CR, Cox WG, 2000. Use of habitat by the black rat (Rattus rattus) at North Head, New South Wales: an observational and experimental study. Austral Ecol 25(4):375–385.

Eilam D, Golani I, 1989. Home base behavior of rats (Rattus norvegicus) exploring a novel environment. Behav Brain Res 34(3):199–211. PubMed

Ewer RF, 1971. The biology and behaviour of a free-living population of black rats (Rattus rattus). Anim Behav Monogr 4:125–174.

Feng AY, Himsworth CG, 2014. The secret life of the city rat: a review of the ecology of urban Norway and black rats (Rattus norvegicus and Rattus rattus). Urban Ecosyst 17:149–162.

Foster S, King C, Patty B, Miller S, 2011. Tree-climbing capabilities of Norway and ship rats. NZ J Zool 38(4):285–296.

Fox J, Weisberg S, 2019. An {R} Companion to Applied Regression, 3rd edn. Thousand Oaks CA: Sage. https://socialsciences.mcmaster.ca/jfox/Books/Companion/

Friard O, Gamba M, 2016. BORIS: a free, versatile open‐source event‐logging software for video/audio coding and live observations. Methods Ecol Evol 7(11):1325–1330.

Frynta D, Kaftanova-Eliasova B, Žampachova B, Vorackova P, Sadlova J. et al., 2018. Behavioural strategies of three wild-derived populations of the house mouse (Mus m. musculus and M. m. domesticus) in five standard tests of exploration and boldness: searching for differences attributable to subspecies and commensalism. Behav Process 157:133–141. PubMed

Gielman S, Hagbi Z, Dulitzky Y, Blumenfeld-Lieberthal E, Eilam D, 2020. How do rodents explore a three-dimensional environment? Habitat-dependent and direction-dependent differences. Behav Process 178:104183. PubMed

Grobéty MC, Schenk F, 1992. Spatial learning in a three-dimensional maze. Anim Behav 43:1011–1020.

Guenther A, Trillmich F, 2015. Within-litter differences in personality and physiology relate to size differences among siblings in cavies. Physiol Behav 145:22–28. PubMed

Hagbi Z, Dorfman A, Blumenfeld-Lieberthal E, Eilam D, 2020. “It’s all in their head”: hierarchical exploration of a three-dimensional layered pyramid in rats. Anim Cogn 23:277–288. PubMed

Hagbi Z, Eilam D, 2022. On heights and plains: How rodents from different habitats cope with three-dimensional environments? PLoS One 17(3):e0265176. PubMed PMC

Hagbi Z, Gielman S, Dorfman A, Eilam D, 2022. A small step for rats alters spatial behavior: rats on a bi-level arena explore each level separately. Anim Cogn 26:655–666. PubMed

Hall CS, 1934. Emotional behavior in the rat. I. Defecation and urination as measures of individual differences in emotionality. J Comp Psychol 18(3):385–403.

Harper GA, Bunbury N, 2015. Invasive rats on tropical islands: their population biology and impacts on native species. Global Ecol Conserv 3:607–627.

Harper GA, Dickinson KJ, Seddon PJ, 2005. Habitat use by three rat species (Rattus spp.) on Stewart Island/Rakiura, New Zealand. N Z J Ecol 25:1–260.

Horn L, Cimarelli G, Boucherie PH, Šlipogor V, Bugnyar T, 2022. Beyond the dichotomy between field and lab—the importance of studying cognition in context. Curr Opin Behav Sci 46:101172.

Howarth FG, Stone FD, 2020. Impacts of invasive rats on Hawaiian cave resources. Int J Speleol 49(1):5.

Jovalekic A, Hayman R, Becares N, Reid H, Thomas G. et al., 2011. Horizontal biases in rats’ use of three-dimensional space. Behav Brain Res 222:279–288. PubMed PMC

Kelley AD, Humphries MM, McAdam AG, Boutin S, 2015. Changes in wild red squirrel personality across ontogeny: activity and aggression regress towards the mean. Behaviour 152(10):1291–1306.

King CM, Foster S, Miller S, 2011. Invasive European rats in Britain and New Zealand: same species, different outcomes. J Zool 285(3):172–179.

Krebs R, Linnenbrink M, Guenther A, 2019. Validating standardised personality tests under semi-natural conditions in wild house mice (Mus musculus domesticus). Ethology 125(11):761–773.

Kricher JC, 1972. Bird species diversity: the effect of species richness and equitability on the diversity index. Ecology 53(2):278–282.

Marsh RE, 1994. Roof rats. The Handbook: Prevention and Control of Wildlife Damage 6:B125–B132.

Matsui S, Hisaka M, Takagi M, 2010. Arboreal nesting and utilization of open-cup bird nests by introduced ship rats Rattus rattus on an oceanic island. Bird Conserv Int 20(1):34–42.

Mazza V, Czyperreck I, Eccard JA, Dammhahn M, 2021. Cross-context responses to novelty in rural and urban small mammals. Front Ecol Evol 9:661971.

Mazza V, Dammhahn M, Lösche E, Eccard JA, 2020. Small mammals in the big city: behavioural adjustments of non‐commensal rodents to urban environments. Glob Chang Biol 26(11):6326–6337. PubMed

Niemelä PT, Vainikka A, Forsman JT, Loukola OJ, Kortet R, 2013. How does variation in the environment and individual cognition explain the existence of consistent behavioral differences? Ecol Evol 3(2):457–464. PubMed PMC

Nolte DL, Bergman D, Townsend J, 2003. Roof Rat Invasion of an Urban Desert Island. USDA National Wildlife Research Center - Staff Publications. 254. https://digitalcommons.unl.edu/icwdm_usdanwrc/254

Ohl F, 2003. Testing for anxiety. Clin Neurosci Res 3(4-5):233–238.

Petelle MB, McCoy DE, Alejandro V, Martin JG, Blumstein DT, 2013. Development of boldness and docility in yellow-bellied marmots. Anim Behav 86(6):1147–1154.

Quillfeldt P, Schenk I, McGill RA, Strange IJ, Masello JF. et al., 2008. Introduced mammals coexist with seabirds at New Island, Falkland Islands: abundance, habitat preferences, and stable isotope analysis of diet. Polar Biol 31:333–349.

R Core Team, 2020. R: A language and environment for statistical computing. Vienna, Austria: R Foundation for Statistical Computing. https://www.R-project.org/

Réale D, Reader SM, Sol D, McDougall PT, Dingemanse NJ, 2007. Integrating animal temperament within ecology and evolution. Biol Rev Camb Philos Soc 82(2):291–318. PubMed

Rudolfová V, Petrásek T, Antošová E, Frynta D, Landová E. et al., 2022. Inter-individual differences in laboratory rats as revealed by three behavioural tasks. Sci Rep 12(1):9361. PubMed PMC

Russell JC, Caut S, Anderson SH, Lee M, 2015. Invasive rat interactions and over-invasion on a coral atoll. Biol Conserv 185:59–65.

Sheldon AL, 1969. Equitability indices: dependence on the species count. Ecology 50(3):466–467.

Shiels AB, Pitt WC, Sugihara RT, Witmer GW, 2014. Biology and impacts of Pacific island invasive species. 11. Rattus rattus, the black rat (Rodentia: Muridae). Pac Sci 68(2):145–184.

Shiels AB, Ramírez de Arellano GE, 2019. Habitat use and seed removal by invasive rats (Rattus rattus) in disturbed and undisturbed rain forest, Puerto Rico. Biotropica 51(3):378–386.

Stoffel MA, Nakagawa S, Schielzeth H, 2017. rptR: Repeatability estimation and variance decomposition by generalized linear mixed-effects models. Methods Ecol Evol 8(11):1639–1644.

Štolhoferová I, Holubová K, Vobrubová B, Kaftanová B, Frynta D, 2020. On the ground and in the heights: Does exploratory activity differ in commensal and non-commensal spiny mice? Behav Process 180:104252. PubMed

Vanden Broecke B, Mariën J, Sabuni CA, Mnyone L, Massawe AW. et al., 2019. Relationship between population density and viral infection: a role for personality? Ecol Evol 9(18):10213–10224. PubMed PMC

Vobrubová B, Fraňková M, Štolhoferová I, Kaftanová B, Rudolfová V. et al., 2021. Relationship between exploratory activity and adrenocortical activity in the black rat (Rattus rattus). J Exp Zool A Ecol Integr Physiol 335(2):286–295. PubMed

Vrba I, Donát P, 1993. Activities version 2.1. Computer Programme for Behavioural Studies.

Wallace DG, Martin MM, Winter SS, 2008. Fractionating dead reckoning: role of the compass, odometer, logbook, and home base establishment in spatial orientation. Naturwissenschaften 95(11):1011–1026. PubMed PMC

Wilson JJ, Harding E, Fortier M, James B, Donnett M. et al., 2015. Spatial learning by mice in three dimensions. Behav Brain Res 289:125–132. PubMed PMC

Wilson RC, Vacek T, Lanier DL, Dewsbury DA, 1976. Open-field behavior in muroid rodents. Behav Biol 17(4):495–506. PubMed

Žampachová B, Kaftanová B, Šimánková H, Landová E, Frynta D, 2017a. Consistent individual differences in standard exploration tasks in the black rat (Rattus rattus). J Comp Psychol 131(2):150–162. PubMed

Žampachová B, Landová E, Frynta D, 2017b. Methods for measuring mammalian personalities: in which animals and how accurately can we quantify it? Lynx, New Series 48(1):183–198.

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