THE PROSPECT OF USING AN INHIBITORY BARRIER IN POTATO BREEDING FOR RESISTANCE TO THE COLORADO POTATO BEETLE
Abstract and keywords
Abstract (English):
Abstract. The purpose of the work is the determination of the most effective method of using the inhibitory barrier in potato breeding for resistance to damage by the Colorado potato beetle. Methods. In the work, the method of setting up a field experiment was used, as well as a laboratory method for assessing the inhibition of the activity of lipases and proteinases was carried out using substrates immobilized in an agarose gel. Results. On the basis of field experiments, it was found that the level of relative resistance of potato varieties and hybrids to damage by the Colorado potato beetle, a decrease in the survival rate of insect larvae and loss of tuber yield are associated with a high activity of lipase and proteinase inhibitors and an intensive development of a hypersensitivity reaction to phytophage egg clutches. In laboratory experiments, it was established that the activity of trypsin inhibitors increased during the laying of phytophage eggs on the leaves of potato varieties Bashkirskiy. Scientific novelty. Based on the analysis of the results of world practice and our own long-term attempts to use the inhibitory barrier in breeding potatoes for resistance to the pest, a new approach has been proposed to involve genes encoding the synthesis and accumulation of protease and lipase inhibitors in tissues when creating potato resistance to damage by the Colorado potato beetle. In this case, the methodological approach should be based on the registration of the modification of the inhibitory activity of hydrolases in hybrids with an intense microwave reaction of the leaf tissue to the clutches of the Colorado potato beetle, which will significantly reduce the volume of laboratory assessment of the material. Genotypes that do not respond to egg clutches with a microwave reaction with a high degree of probability will also not modify the activity of hydrolase inhibitors. Genotypes with local short-term accumulation of inhibitors of the lipoproteinase complex in the zone of hatching of the pest offspring create the greatest depressing biological effect for the survival of 1-2 instar larvae. The creation of such genotypes is likely to be a promising model for highly resistant varieties of the Colorado potato beetle.

Keywords:
potato selection, resistance to pests, hydrolase inhibitors
Text
Publication text (PDF): Read Download
References

1. Govorov D. N., Zhivyh A. V., Barkov V. A. Rasprostranenie koloradskogo zhuka na posadkah kartofelya v Rossiyskoy federacii v 2014-2016 godah // Zaschita kartofelya. 2017. № 1. S. 9-14.

2. Cvetkov V. O., Yarullina L. G. Strukturno-funkcional'nye osobennosti gidroliticheskih fermentov nasekomyh-fitofagov i belkovyh ingibitorov rasteniy (obzor) // Prikladnaya biohimiya i mikrobiologiya. 2019. T. 55. № 5. S. 441-450. DOI:https://doi.org/10.1134/S0555109919050155.

3. Voronkova M. V. Aktivnost' ingibitorov proteinaz v list'yah kartofelya // Sovremennye usloviya vzaimodeystviya nauki i tehniki: sbornik trudov mezhdunarodnoy nauchno-prakticheskoy konferencii. Orel, 2017. S. 9-10.

4. Ashouri S., Pourabad R. F. Regulation of gene expression encoding the digestive α-amylase in the larvae of Colorado potato beetle, Leptinotarsa decemlineata (Say) in response to plant protein extracts // Gene. 2021. T. 766. Pp. 145-159.

5. Cingel A., Savić J., Lazarević J., Ćosić T., Raspor M., Smigocki A., Ninković S. Coexpression of the proteinase inhibitors oryzacystatin I and oryzacystatin II in transgenic potato alters Colorado potato beetle larval development // Insect science. 2017. T. 24. No. 5. Pp. 768-780.

6. Singh S. Singh, A., Kumar, S., Mittal, P., & Singh, I. K. Protease inhibitors: recent advancement in its usage as a potential biocontrol agent for insect pest management // Insect science. 2020. T. 27. No. 2. Pp. 186-201. DOI:https://doi.org/10.1111/1744-7917.12641.

7. Akbar S. M. D., Jaba J., Regode V., Siva Kumar G., Sharma H. C. Plant protease inhibitors and their interactions with insect gut proteinases [e-resource] // The The Biology of Plant-Insect Interactions: A Compendium for the Plant Biotechnologist. Department of Biology Western Kentucky University-Owensboro Owensboro, KY USA, 2018. URL: http://oar.icrisat.org/10519/1/Plant%20Protease%20Inhibitors%20and%20their%20Interactions%20with%20Insect%20Gut%20Proteinases.pdf (date of reference: 14.09.2021).

8. Raspor M., Cingel A. Genetically Modified Potato for Pest Resistance: Thrift or Threat? [e-resource] // Solanum tuberosum - A Promising Crop for Starvation Problem. 2021. DOI:https://doi.org/10.5772/intechopen.98748. URL: https: www.intechopen.com/chapters/77340 (date of reference: 14.09.2021).

9. War A. R., Taggar G. K., Hussain B., Taggar M. S., Nair R. M., Sharma H. C. Plant defence against herbivory and insect adaptations // AoB PLANTS 10. 2018. Vol. 10. Iss. 4. DOI:https://doi.org/10.1093/aobpla/ply037.

10. Molyavko A. A., Maruhlenko A. V., Erenkova L. A., Borisova N. P., Belous N. M., Torikov V. E. Ustoychivost' kartofelya k koloradskomu zhuku // Vestnik Bryanskoy gosudarstvennoy sel'skohozyaystvennoy akademii. 2019. № 5 (75). S. 34-41.

11. Shpirnaya I. A., Cvetkov V. O., Ryabceva N. D. Metody kolichestvennogo analiza gidroliticheskoy aktivnosti c ispol'zovaniem geley s immobilizovannym substratom // Sovremennye problemy biohimii, genetiki i biotehnologii: materialy III Vserossiyskoy nauchnoy konferencii s mezhdunarodnym uchastiem. Ufa, 2021. S. 234-239.

12. Ibragimov R. I., Cvetkov V. O., Shpirnaya I. A., Mardanshin I. S., Yarullina L. G. Vliyanie pischevogo substrata na aktivnost' gidrolaz koloradskogo zhuka // Izvestiya Ufimskogo nauchnogo centra RAN. 2018. № 3-4. S. 29-34.

13. Cvetkov V. O., Yarullina L. G. Strukturno-funkcional'nye osobennosti gidroliticheskih fermentov nasekomyh-fitofagov i belkovyh ingibitorov rasteniy (obzor) // Prikladnaya biohimiya i mikrobiologiya. 2019. T. 55. № 5. S. 441-450. DOI:https://doi.org/10.1134/S0555109919050155.

14. Salim M., Bakhsh A., Gökçe A. Stacked insecticidal genes in potatoes exhibit enhanced toxicity against Colorado potato beetle, Leptinotarsa decemlineata (Coleoptera: Chrysomelidae) // Plant Biotechnology Reports. 2021. T. 15. No. 2. Pp. 197-215. DOI:https://doi.org/10.1007/s11816-021-00668-3.

15. Mardanshin I. S., Sorokan' A. V. Razlichiya v fenotipicheskom proyavlenii giperchuvstvitel'nogo otveta na otlozhenie yaic koloradskogo zhuka u rasteniy kartofelya i perspektiva ego ispol'zovaniya v selekcii kul'tury // Zaschita kartofelya. 2018. № 2. S. 14-17.

16. Mardanshin I. S., Shakirzyanov A. Kh. The prospect of using a necrotic protective barrier in the creation of potato varieties resistant to the Colorado potato beetle // Agrarian Bulletin of the Urals. 2020. No. 12 (203). Pp. 15-21. DOI:https://doi.org/10.32417/1997-4868-2020-203-12-15-21.

17. Lortzing V., Oberländer, J., Lortzing, T., Tohge, T., Steppuhn, A., Kunze, R., Hilker M., Insect egg deposition renders plant defiance against hatching larvae more effective in a salicylic acid-dependent manner // Plant, Cell & Environment. 2019. T. 42. No. 3. Pp. 1019-1032. DOI:https://doi.org/10.1111/pce.13447.

18. Wilkinson S. W., Magerøy M. H., López Sánchez A., Smith L. M., Furci L., Cotton, T. A., Ton J. Surviving in a hostile world: plant strategies to resist pests and diseases // Annual review of phytopathology. 2019. No. 57. Pp. 505-529. DOI:https://doi.org/10.1146/annurev-phyto-082718-095959.

19. Konarev A. V. Molekulyarnye mehanizmy immuniteta i sozdanie ustoychivyh k vreditelyam form rasteniy // Zaschita i karantin rasteniy. 2017. No. 11. Pp. 3-8.

Login or Create
* Forgot password?