Preview

Bulletin of NSAU (Novosibirsk State Agrarian University)

Advanced search

Productivity of forage crops in the system crop rotation and permanent cultivation in the steppe zone of the Southern Urals

https://doi.org/10.31677/2072-6724-2024-71-2-147-156

Abstract

This article discusses the productivity of fodder crops obtained in the system of crop rotation and permanent cultivation for a long time (33 years) for the period from 1990 to 2022. The aim of the study is to establish the potential productive capacity of fodder crops cultivated for a long time in the system of sixfield crop rotations with different types of employed fallows and in monoculture on two backgrounds (fertilized, unfertilized) of soil nutrition in the conditions of the South Ural steppe. The objects of research are fodder crops (Sudanese grass, corn for silage, barley, peas, oats). The place of study was a stationary field experiment located in the Orenburg region (51.775125o N, 55.306547o E). Field crops were cultivated on two agrobackgrounds of nutrition – fertilized N40P80K40 and without fertilizers. The article describes the characteristic features of the weather conditions of 33 years of research, of which 10 correlate with desert conditions (HTC<0.4). The highest productivity of Sudanese grass was obtained in 1990 against the background of mineral fertilizers 6.23 thousand fodder units per 1 ha and unfertilized 5.73 thousand k.u. per 1 ha. Maize for silage cultivated in a crop rotation with prolonged action of a fallow occupied by an annual crop for the collection of fodder units in total over the years of research against the background of mineral fertilizers had a value of 108.52 thousand, for unfertilized – 106.16 thousand. units for the entire period of research amounted to 108.53 thousand on a fertilized background, 102.56 thousand on an unfertilized background. The yield of fodder products from 3 hectares of crop rotation area with soil-protective fallow was 259.80 thousand on a fertilized background, with green manure fallow 256.26 and 232 .49 thousand feed units, respectively, according to backgrounds. Growing corn for silage in permanent crops is the most highly productive option among those studied in the experiment. For 33 years of research on this option, 325.59         and 307.68 thousand feed units were obtained, respectively, on a fertilized and unfertilized background.

About the Author

V. Yu. Skorokhodov
Federal Scientific Center for Biological Systems and Agrotechnologies of the Russian Academy of Sciences
Russian Federation

Candidate of Agricultural Sciences.

Orenburg



References

1. Loshakov V.G., Dostizhenija nauki i tehniki APK, 2016, No. 1, pp. 9–13. (In Russ.)

2. Brankatschk G., Finkbeiner M., Modeling crop rotation in agricultural LCAs – challenges and potential solutions, Agricultural Sustems, 2015, No. 1 (38), pp. 66–76.

3. Brankatschk G., Finkbeiner M., Crop rotations and crop residues are relevant pfrfmetrs for agricultural Carbon footprints, Agronomy for Sustainable Development, 2017, pp. 37–58.

4. Mishchenko A.E., Kiss N.N., Gaevaya E.A., Vasilchenko A.P. Mishchenko A.V., Dostizhenija nauki i tehniki APK, 2016, No. 2 (30), pp. 49–53. (In Russ.)

5. Kozlova L.M., Noskova E.N., Popov F.A., Agrarnaja nauka Evro-Severo-Vostoka, 2019, No. 20 (5), pp. 467–477. (In Russ.)

6. Chesalin S.F., Smolsky E.V., Nechaev M.M., Vestnik NGAU (Novosibirskij gosudarstvennyj agrarnyj universitet), 2021, No. 1 (58). – pp. 64–74. (In Russ.)

7. Skorokhodov V.Yu., Izvestija OGAU, 2020, No. 2 (82), pp. 68–72. (In Russ.)

8. Kovtunova N.A., Dostizhenija nauki i tehniki APK, 2016, T. 30, No. 6, pp. 48–51. (In Russ.)

9. Ashmarina L.F., Galeev R.F., Shashkova O.N., Ermokhina A.I., Vestnik NGAU (Novosibirskij gosudarstvennyj agrarnyj universitet), 2021, No. 1 (58), pp. 7–16. (In Russ.)

10. Pleskachev Yu.N., Laptina Yu.A., Grichenkova O.G., Kulikova N.A., Agrarnyj nauchnyj zhurnal, 2021, No. 8, pp. 28–33. (In Russ.)

11. Kashevarov N.I., Polishchuk A.A., Lebedev A.N., Ponomareva V.I., Khazov M.V., Vestnik NGAU (Novosibirskij gosudarstvennyj agrarnyj universitet), 2021, No. 3 (60), pp. 31–36. (In Russ.)

12. Fomin V.N., Nafikov M.M., Medvedev V.V., Vestnik Kazanskogo gosudarstvennogo agrarnogo universiteta, 2017, Vol., 12, No. 4–2 (47), pp. 75–79. (In Russ.)

13. Talanov I.P., Karimova L.Z., Vafina L.T., Khuzina G.K., Vestnik Kazanskogo gosudarstvennogo agrarnogo universiteta, 2017, Vol. 12, No. 1 (43), pp. 40–45. (In Russ.)

14. Shishova E.A., Izvestija Nizhnevolzhskogo agrouniversitetskogo kompleksa: nauka i vysshee professional’noe obrazovanie, 2017, No. 2, pp. 145–151. (In Russ.)

15. Likhovtsova E.A., Nikolaychenko N.V., Norovyatkin V.I., Agrarnyj nauchnyj zhurnal, 2015, No. 1, pp. 26–28. (In Russ.)

16. Laptina Yu.A., Kulikova N.A., Izvestija Nizhnevolzhskogo agrouniversitetskogo kompleksa: nauka i vysshee professional’noe obrazovanie, 2021, No. 1 (61), pp. 211–221. (In Russ.)

17. Tishkov N.I., Timoshenkova T.A., Povyshenie jeffektivnosti sel’skohozjajstvennogo proizvodstva v stepnoj zone Urala (Improving the efficiency of agricultural production in the steppe zone of the Urals), Proceedings of the Conference Title, Orenburg, 2012, pp. 221–231. (In Russ.)

18. Nikolaev P.N., Aniskov N.I., Yusova O.A., Safonova I.V., Popolzukhin P.V., Vestnik NGAU (Novosibirskij gosudarstvennyj agrarnyj universitet), 2018, No. 2 (47), pp. 37–44. (In Russ.)

19. Maksyutov N.A., Nauka i hleb, 1996, Is. 4, pp. 136–143. (In Russ.)

20. Talanov I.P., Karimova L.Z., Vestnik Kazanskogo gosudarstvennogo agrarnogo universiteta, 2019, Vol. 14, No. 3 (54), pp. 67–70. (In Russ.)

21. Skorokhodov V.Yu., Izvestiya OGAU, 2019, No. 5 (79), pp. 93–97. (In Russ.)

22. Kiryushin V.I., Dostizhenija nauki i tehniki APK, 2016, No. 30 (3), pp. 19–25. (In Russ.)

23. Maksimov V.A., Vinogradov G.M., Zolotareva R.I., Ivanova L.I., Vestnik Kazanskogo gosudarstvennogo agrarnogo universiteta, 2016, Vol. 11, No. 1 (39), pp. 22–26. (In Russ.)

24. Miles R., Drown S., Agron S., The Sanborn field experiment implication for long-term soil organic carbon levels, 2011, Vol. 103, No. 1, pp. 268–278.

25. Skorokhodov V.Yu., Vestnik Ul’janovskoj gosudarstvennoj sel’skohozjajstvennoj akademii, 2021, No. 1 (53), pp. 60–67. (In Russ.)

26. Hirte J., Leifeld J., Abiven S. [et al.], Overestimation of crop root biomass in field experiments due to extraneous organic matter, Front Plaht Sci., 2017, No. 8, pp. 284.

27. Ghimire B., Ghimire R., Vanleeuwen D., Mesbah A., Cover crop resiedue amount and quality effects on soil organic carbon mineralization, Sustainability, 2017, No. 9, pp. 14.

28. Dospekhov B.A., Methodology of field experience (with the basics of statistical processing of research results) (Methodology of field experience (with the basics of statistical processing of research results)), Moscow: Book on Demand, 2012, 352 p.


Review

For citations:


Skorokhodov V.Yu. Productivity of forage crops in the system crop rotation and permanent cultivation in the steppe zone of the Southern Urals. Bulletin of NSAU (Novosibirsk State Agrarian University). 2024;(2):147-156. (In Russ.) https://doi.org/10.31677/2072-6724-2024-71-2-147-156

Views: 141


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 2072-6724 (Print)