В ходе исследования был установлен новый предельный срок удержания маркера для млекопитающих, превышающий год. Обнаружено, что родамин B способен передаваться детенышам мышей с молоком матери. У зверьков, получивших маркер с приманкой, площадь светящихся участков шерсти не превышала половины поверхности тела, тогда как у детенышей, помеченных опосредованно, через молоко их мате - рей, метка проявлялась на всей поверхности шкуры.
Список литературы / References
1. Большаков В.Н., Баженов А.В. (1988) Радионуклидные методы мечения в популяционной экологии млекопитающих. М., Наука, 158 с. [Bol'shakov V.N., Bazhenov A.V. (1988) Radionuclide labeling in population ecology of mammals. Moscow, Nauka, 158 p. (in Russian)]
2. Государственная фармакопея РФ (издание XIII). Том 1. (2015) М., Министерство здравоохранения РФ, 1312 c. [State Pharmacopoeia of Russian Federation (Edition XIII). Volume 1. (2015) Moscow, Ministry of Health of Russian Federation, 1312 p. (in Russian)]
3. Григоркина Е.Б., Оленев Г.В. (2013) Миграции грызунов в зоне влияния ВосточноУральского радиоактивного следа (радиобиологический аспект). Радиационная биология. Радиоэкология, 53(9): 76-83 [Grigorkina E.B., Olenev G.V. (2013) Migration of rodents in the zone affected by East Ural radioactive trace: radiobiological aspect. Radiation Biology. Radioecology [Radiacionnaya biologiya. Radioehkologiya], 53(9): 76-83 (in Russian)]
4. Карасева Е.В., Телицына А.Ю., Жигальский О.А. (2008) Методы изучения грызунов в полевых условиях. М., ЛКИ, 416 с. [Karaseva Е.У, Telitsina А.Yu., Zhigalsky О.А. (2008) The methods of studying rodents in the wild nature. Moscow, LKI, 416 p. (in Russian)]
5. Клевезаль Г.А., Мина М.В. (1980) Методика группового мечения грызунов с помощью тетрациклина и возможности ее использования в экологических исследованиях. Зоологический журнал, 59(6): 936-941 [Klevezal G.A., Mina M.V. (1980) Tetracycline method of group marking for rodents and prospect of its utilization in ecological studies. Zoological Journal [Zoologicheskij zhurnal], 59(6): 936-941 (in Russian)]
6. Рыльникoв В.А. (2007) Зональные oсобенности сезонных миграций серых крыс (Rattus norvegicus Berk.) России в аспекте управления ее численностью. Бюллетень Московского общества испытателей природы. Отдел биологический, 112(3): 13-19 [Rylnifov V-А. (2007) Zonal peculiarities of seasonal migrations of the norwegian rat (Rattus norvegicus Berk.) in Russia in view of species population management. Bulletin of Moscow Society of Naturalists. Biological series [Byulleten Moskovskogo obshchestva ispytatelej prirody. Otdel biologicheskij], 112(3): 13-19 (in Russian)]
7. Crier J.K. (1970) Tetracyclines as a fluorescent marker in bones and teeth of rodents. The Journal of Wildlife Management, 34(4): 829-834
8. Fernandez J. R-R., Rocke T.E. (2011) Use of rhodamine B as a biomarker for oral plague vaccination of prairie dogs. Journal of Wildlife Diseases, 47(3): 765-768
9. Fichet-Calvet E. (1999) Persistence of a systemic labelling in fur and guard hairs by ingestion of rhodamine B in Myocastor coypus (Rodentia). Mammalia, 63(2): 241-244
10. Fisher P. (1995) Techniques for using Rhodamine B as a systemic biomarker for the assessment of non-target risk. Proceedings of the 10th Australian Vertebrate Pest Control Conference, 29 May-2 June 1995, Hobart, Tasmania. Tasmania, Department of Primary Industries and Fisheries, p. 91-95
11. Fisher P (1999) Review of using Rhodamine B as a marker for wildlife studies. Wildlife Society Bulletin, 27(2): 318-329
12. Fisher P., Algar D., Sinagra J. (1999) Use of Rhodamine B as a systemic bait marker for feral cats (Felis catus). Wildlife Research, 26: 281-285
13. Jacob T., Jones D.A., Singleton G.R. (2002) Retention of the bait marker Rhodamine B in wild house mice. Wildlife Research, 29: 159-164
14. Jacob T., Ylonen H., Runcie M.J., Jones D.A., Singleton G.R. (2003) What affects bait uptake by house mice in Australian grain fields? The Journal of Wildlife Management, 67(2): 341-351
15. Johnston M.J., Shaw M.J., Robley A., Schedvin N.K. (2007) Bait uptake by feral cats on French island, Victoria. Australian Mammalogy, 29(1): 77-84
16. Lavoie G.K., Atwell G.C., Swink F.N., Sumangil J.P., Libay J. (1971) Movement of the ricefield rat, Rattus rattus mindanensis, in response to flooding and plowing as shown by fluorescent bone labeling. Philippine Agriculturist, 54: 325-330
17. Lindsey G.D., Nass R.D., Hood G.A. (1971) An evaluation of bait stations for controlling rats in sugarcane. The Journal of Wildlife Management, 35(3): 440-444
18. Massei G., Jones A., Platt T., Cowan D.P. (2009) lophenoxic acid as a long-term marker for wild boar. The Journal of Wildlife Management, 73(3): 458-461
19. Matter H.C., Schumacher C.L., Kharmachi H., Hammami S., Tlatli A., Jemli J., Mrabet L., Meslin F.X., Aubert M.F., Neuenschwander B.E., Hicheri K.E. (1998) Field evaluation of two bait delivery systems for the oral immunization of dogs against rabies in Tunisia. Vaccine, 16(7): 657-665
20. Mohr K., Leirs H., Katakweba A., Machang'u R. (2007) Monitoring rodents movements with a biomarker around introduction and feeding foci in an urban environment in Tanzania. African Zoology, 42(2): 294-298
21. Papillon Y., Buffiere L., Butet A. (2002) Rhodamine B as a collective marker for studying movements of small mammals. Acta Theriologica, 47(4): 491-497
22. Purdey D.C., Petcu M., King C.M. (2003) A simplified protocol for detecting two systemic bait markers (Rhodamine B and iophenoxic acid) in small mammals. New Zealand Journal of Zoology, 30: 174-184
23. Slate D., Algeo T.P., Nelson K.M., Chipman R.B., Donovan D., Blanton J.D., Niezgoda M., Rupprecht C.E. (2009) Oral rabies vaccination in North America: opportunities, complexities, and challenges. PLoS Neglected Trop Diseases, 3(12): 1-9
24. Southey A.K., Sleeman D.P., Gormley E. (2002) Sulfadimethoxine and Rhodamine B as oral biomarkers for European badgers (Meles meles). Journal of Wildlife Diseases, 38(2): 378-384
25. Spurr E.B. (2002) Rhodamine B as a systemic hair marker for assessment of bait acceptance by stoats (Mustela erminea). New Zealand Journal of Zoology, 29(3): 187-194
26. Tripp D.W., Rocke T.E., Streich S.P., Brown N.L., Fernandez J. R-R., Miller M.W. (2014) Season and application rates affect vaccine bait consumption by prairie dogs in Colorado and Utah, USA. Journal of Wildlife Diseases, 50(2): 224-234
27. Tolkachev O.V. (2016a) A study on the migrations of murine rodents in urban environments. Russian Journal of Ecology, 47(4): 399-404
28. Tolkachev O.V. (2016b) The dispersal of the pygmy wood mouse (Sylvaemus uralensis Pallas, 1811) and the bank vole (Clethrionomys glareolus Schreber, 1780) in fragmented landscapes. Contemporary Problems of Ecology, 9(1): 116-124
29. Weerakoon M.K., Price C.J., Banks P.B. (2013) Hair type, intake, and detection method influence Rhodamine B detectability. The Journal of Wildlife Management, 77(2): 306-312