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Assessment of the impact of fermented cattle humus use on soil quality and plant health

https://doi.org/10.51886/1999-740X_2025_4_80

Abstract

Soil quality degradation is becoming a significant process of soil degradation. Optimization of organic fertilizer application methods in arable lands is important to improve crop productivity and soil health. However, this requires a comprehensive study and research on crop productivity and soil quality status in the gradient of application with organic fertilizers.  The article review presents a comprehensive analysis of the effect of organic fertilizer (FCM) on soil properties, including physical, chemical and biological parameters. The review discusses the complex interactions between organic fertilizers and soil, emphasizing the effects on soil structure, nutrient availability, microbial activity and overall soil health. In addition, the review discusses the role of organic fertilizers in mitigating soil degradation, increasing crop yields and promoting sustainable agricultural practices. In particular, this paper summarizes the effects of fermented cattle manure fertilizer used in cropping systems.

About the Authors

G. N. Bissenova
LLP «Republican collection of microorganisms»
Kazakhstan

010000, Astana, Sh. Ualikhanov st., 13/1



A. Zh. Temirkhanov
LLP «Republican collection of microorganisms»
Kazakhstan

010000, Astana, Sh. Ualikhanov st., 13/1



Zh. B. Tekebaeva
LLP «Republican collection of microorganisms»
Kazakhstan

010000, Astana, Sh. Ualikhanov st., 13/1



Zh. A. Nurbekova
L.N. Gumilyov Eurasian National University
Kazakhstan

010008, Astana, Satpaeva, 2



D. O. Evneeva
LLP «Republican collection of microorganisms»
Kazakhstan

010000, Astana, Sh. Ualikhanov st., 13/1



A. B. Abzhalelov
L.N. Gumilyov Eurasian National University
Kazakhstan

010008, Astana, Satpaeva, 2



Zh. M. Bekshin
LLP «Republican collection of microorganisms»
Kazakhstan

010000, Astana, Sh. Ualikhanov st., 13/1



References

1. Chatterjee R. et al. Recycling of organic wastes for sustainable soil health and crop growth// International Journal of Waste Resources. – 2017. – Vol. 7, № 3. – Р. 296-301.

2. Ahmad R. et al. Bio-conversion of organic wastes for their recycling in agriculture: an overview of perspectives and prospects// Annals of microbiology. – 2007. – Vol.57. – Р. 471-479.

3. Wei Y. et al. Recycling of nutrients from organic waste by advanced compost technology-A case study// Bioresource Technology. – 2021. – Vol. 337. – Р. 125-411.

4. Moller K., and Schultheiss U. Chemical characterization of commercial organic fertilizers// Archives Agron. Soil Sci. – 2015. – Vol. 61, № 7. – Р. 989–1012.

5. Rajan J., and Anandhan S.V. Survey on nutrient content of different organic fertilizers// Environ. Monit. Assess. – 2015. – Vol. 187, № 6. – P. 385.

6. Chew K. W., Chia S.R., Yen H.W., Nomanbhay S., Ho Y.C., and Show P.L. Transfor-mation of biomass waste into sustainable organic fertilizers// Sustainability. – 2019. – Vol. 11, № 8. – P. 2266.

7. Brar B. S., Singh J., Singh G. and Kaur G. Effects of long term application of inorganic and organic fertilizers on soilorganic carbon and physical properties in maize-wheat rotation// Agron. (Basel). – 2015. – Vol. 5, № 2. – P. 220–238.

8. Maltas A., Kebli H., Oberholzer H.R., Weisskopf P. and Sinaj S. The effects of organic and mineral fertilizers on carbon sequestration, soil properties, and crop yields from a long-term field experiment under a Swiss conventional farming system// Land Degrad. Dev. – 2018. – Vol. 29, № 4. – P. 926–938.

9. Kol'ga D.F. Novye tehnologii i tehnicheskie sredstva utilizacii navoza na zhivotnovodcheskih fermah i kompleksah. – Minsk: BGATU, 2014. – 144 s.

10. Mineev V.G., Sychev V.G., Gamzikov G.P. i dr. Agrohimija. – M.: Klassicheskij universitetskij uchebnik dlja stran SNG. – M.: Izd-vo VNIIA imeni D.N. Prjanishnikova, 2017. – 854 s.

11. Ranjha M.M. et al. Applications of biotechnology in food and agriculture: A mini-review// Proceedings of the National Academy of Sciences, India Section B: Biological Sciences. – 2022. – Vol. 92, № 1. – Р. 11–15.

12. Aiysha D., Latif Z. Insights of organic fertilizer micro flora of bovine manure and their useful potentials in sustainable agriculture// Plos one. – 2019. – Vol.14 (12). – Р. E0226155.

13. Wang T., Cheng K.K., Huo X.J., Meng P.P., Cai Z.H., Wang Z.K., Zhou J. Bioorganic fertilizer promotes pakchoi growth and shapes the soil microbial structure// Front Plant Sci. - 2022. - Vol.13. – P.1040437.

14. Wang C., Zheng M.M., Song W.F., Wen S.L., Wang B.R., Zhu C.Q., Shen R.F. Impact of 25 years of inorganic fertilization on diazotrophic abundance and community structure in an acidic soil in Southern China// Soil Boil Biochem. - 2017. – Vol.113. – P. 240–249.

15. Liang Y.T., Ning D.L., Lu Z.M., Zhang N., HaleL., Wu L.Y., Clark I.M., McGrath S.P., Storkey J., Hirsch P.R., Sun B., Zhou J.Z.. Century long fertilization reduces stochasticity controlling grassland microbial community succession// Soil Boil Biochem. - 2020. – Vol.151. – P.108023.

16. Feng M.M., Adams J.M., Fan K.K., Shi Y., Sun R.B., Wang D.Z., Guo X.S., Chu H.Y. Long-term fertilization influences community assembly processes of soil diazotrophs// Soil Boil Biochem. - 2018. – Vol. 126. – P. 151–158.

17. Gouda S., Kerry R.G., Das G., Paramithiotis S., Shin H-S., Patra J.K. Revitalization of plant growth promoting rhizobacteria for sustainable development in agriculture// Microbiol Res. - 2018. – Vol. 206. – P. 131–140.

18. Dincă L.C., Grenni P., Onet C., Onet A. Fertilization and soil microbial community: a review// Applied Sciences. - 2022. – Vol.12. – P. 1198.

19. Diacono M., and Montemurro F. Long-term effects of organic amendments onsoil fertility. A review// Agron. Sustain. Dev. - 2010. – Vol.30 (2). – P. 401–422.

20. Liu Y., Zhao L., Wang Z., Liu L., Zhang P., Sun J., et al. Changes in functionalgene structure and metabolic potential of the microbial community in biological soil crusts alonga revegetation chronosequence in the Tengger Desert// Soil Biol. Biochem. – 2018. – Vol. 126. –P. 40-48.

21. Chowdhury S.P., Babin D., Sandmann M., Jacquiod S., Sommermann L., Sørensen S.J., Fliessbach A., Mäder P., Geistlinger J., Smalla K., Rothballer M., Grosch R. Effectof long-term organic and mineral fertilization strategies on rhizosphere microbiota assemblage and performance of lettuce// Environ Microbiol. - 2019. – Vol.21. - P.2426-2439.

22. Guo S., Tao C., Jousset A., Xiong W., Wang Z., Shen Z., Wang B., Xu Z., Gao Z., Liu S., Li R., Ruan Y., Shen Q., Kowalchuk G.A., Geisen S. Trophic interactions between predatory protists and pathogen-suppressive bacteria impact plant health// ISME J. - 2022. – Vol.16. – P.1932-1943.

23. Kramer S.B., Reganold J.P., Glover J.D., Bohannan B.J.M., Mooney H.A. Reduced nitrate leaching and enhanced denitrifier activity and efficiencyin organically fertilized soils// Proc Natl Acad Sci USA. - 2006. – Vol.103. – P. 4522-4527.

24. Luo J.P., Liao G.C., Banerjee S., Gu S.H., Liang J.B., Guo X.Y., Zhao H.P., Liang Y.C., Li T.Q. Long-term organic fertilization promotes the resilience of soil multifunctionality driven by bacterial communities// Soil Biol Biochem. - 2023. – Vol.177. – P. 108922.

25. Korosteljova L.A., Koshhaev A.G. Osnovy jekologii mikroorganizmov: uchebnoe posobie. Sankt-Peterburg: Lan', 2013. - S.193-196.

26. Chehunov O.A., Chehunova G.S., Voronin V.V. Agregat dlja prigotovlenija kompostov s ispol'zovaniem jeffektivnyh mikroorganizmov// Tehnika i tehnologii v zhivotnovodstve. - 2020. - № 2(38). - S. 80-85.

27. Abelencev V. Pozhnivnye ostatki: pravila utilizacii// Zashhita rastenij. - 2015. - №8. - S.10.

28. Onegov A. Drevnee iskusstvo – organicheskoe zemledelie// Nauka i zhizn'. -2001. - №10. - S.105-109.

29. Glinushkin A.P., Sokolov M.S., Toropova E.Ju. Fitosanitarnye i gigienicheskie trebovanija k zdorovoj pochve. - M.: Agrorus, 2016. - 288 s.

30. Chekmarev P.A., Rodionov V.Ja., Lukin S.V. Opyt ispol'zovanija organicheskih udobrenij v Belgorodskoj oblasti// Dostizhenija nauki i tehniki APK. - 2011. - №2. - S. 3-4.

31. Kudejarov V.N., Sokolov M.S., Glinushkin A.P. Sovremennoe sostojanie pochv agrocenozov Rossii, mery po ih ozdorovleniju i racional'nomu ispol'zovaniju// Agro-himija. - 2017. - №6. - S.3–11.

32. Loveland P., Webb J. Is there a critical level of organic matter in the agricultural soils of temperate regions: a review// Soil Till. Res. - 2003. -Vol.70 (1). - P. 1–18.

33. Sal'nikova N.A. Pochvennye mikrobocenozy kak indikatory processov degradacii jekosistem// Tez. dokl. Vseros. nauchn. konf. studentov, aspirantov i molod. uchenyh. - M., 2006. - S. 210-212.

34. Pavlova N.N., Egorova E.I. Biologicheskaja aktivnost' pochv kak bioindikator zagrjaznenija tjazhelymi metallami i radionuklidami (na primere pochv g. Obninska)// Tez. dokl. IV region. konf. “Tehnogennye sistemy i jekologicheskij risk”. - Obninsk, 2007. - S. 96-100.

35. Bashir S., Anwar S., Ahmad B., Sarfraz Q., Khattak W., Islam M. Response of wheat crop to phosphorus levels and application methods// J. Environ. Earth Sci. – 2015. – V.5. – P.9.

36. Sattari S.Z., Bouwman A.F., Giller K.E., van Ittersum M.K. Residual soil phos-phorus as the missing piece in the global phosphorus crisis puzzle // Proc. Natl. Acad. Sci. USA. - 2012. – Vol. 109. – P. 6348-6353.

37. Aziz M.Z., Yaseen M., Naveed M., Wang X., Fatima K., Saeed Q., Mustafa A. Polymer-Paraburkholderia phytofirmans PsJN coated diammonium phosphate enhanced microbial survival, phosphorous use efficiency and production of wheat// Agronomy. – 2020. –Vol. 10. – P. 1344.

38. Arfan-ul-HaqR. M., Yaseen M., Naveed M., Mustafa A., Siddique S., Alamri S., Siddiqui M.H., Al-Amri A.A., Alsubaie Q.D., Ali H.M. Deciphering the potential of bioactivated rock phosphate and di-ammonium phosphate on agronomic performance, nutritional quality and productivity of wheat (Triticum aestivum L.)// Agronomy. – 2021. – Vol. 11. – P. 684.

39. Zhang M., Li C.L., Li Y.C., Harris W.G. Phosphate minerals and solubility in native and agricultural calcareous soils// Geoderma. – 2014. – Vol. 232. – P. 164–171.

40. Gérard F. Clay minerals, iron/aluminum oxides, and their contribution to phosphate sorption in soils - A myth revisited// Geoderma. – 2016. – Vol. 262. – P. 213–226.

41. Mustafa A., Hu X., Abrar M.M., Shah S.A.A., Nan S., Saeed Q., Kamran M., Naveed M., Conde-Cid M., Hongjun G. et al. Long-term fertilization enhanced carbon minera-lization and maize biomass through physical protection of organic carbon in fractions under continuous maize cropping// Appl. Soil Ecol. – 2021. – Vol. 165. – P. 103971.

42. Holatko J., Hammerschmiedt T., Mustafa A., Kintl A., Radziemska M., Baltazar T., Jaskulska I., Malicek O., Latal O., Brtnicky M. Carbon-enriched organic amendments dif-ferently affect the soil chemical, biological properties and plant biomass in a cultivation time-dependent manner// Chem. Biol. Technol. Agric. – 2022. – Vol. 9. – P. 1–13.

43. Tan F., Wang Z., Zhouyang S.Y., Li H.L., Xie Y.P., Wang Y.P., Zheng Y.M., Li Q.B. Nitrogen and phosphorus removal coupled with carbohydrate production by five microal-gae cultures cultivated in biogas slurry// Bores. Technol. – 2016. – Vol. 221. – P. 385–393.

44. Gao C., El-Sawah A.M., Ali D.F.I., Alhaj Hamoud Y.,Shaghaleh H., Sheteiwy M.S. The integration of bio and organic fertilizers improve plant growth, grain yield, quality and metabolism of hybrid maize (Zea mays L.)// Agronomy. – 2020. – Vol. 10. – P. 319.

45. Sokolov M.S., Spiridonov Ju.Ja., Glinushkin A.P., Toropova E.Ju. Organicheskoe udobrenie – jeffektivnyj faktor ozdorovlenija pochvy i induktor ejo supressivnosti// Dostizhenija nauki i tehniki APK. - 2018. - T. 32. - №1. - S. 4-12.

46. Toropova E.Ju., Sokolov M.S., Glinushkin A.P. Indukcija supresivnosti pochvy – vazhnejshij faktor limitirovanija vredonosnosti kornevyh infkcij// Agrohimija. 2016. - №8. - S. 44-55.

47. Gromova V.S., Pchelenok O.A., Shushpanov A.G. Izuchenie vlijanija sovremennyh vidov pesticidov na biologicheskuju aktivnost' pochvy// Jekologija CChO RF. - 2012. - №2 (29). - S. 128-130.

48. Vazhnejshie jekosistemnye funkcii pochvy agrosfery i sociosfery / M.S. Sokolov, A.M. Semjonov, Ju.Ja. Spiridonov i dr.// Zashhita zernovyh kul'tur ot boleznej, vreditelej, sornjakov: dostizhenija i problemy: mat-ly Mezhdunarodnoj nauchnoprakticheskoj konferencii. B. Vjazemy: VNIIF, 2016. - S. 207–227.

49. Ivancova E.A. Vlijanie pesticidov na mikrofloru pochvy i poleznuju biotu. Vestnik Volgogradskogo gosudarstvennogo universiteta. Ser. 11, Estestvennye nauki. - 2013. - № 1(5). -S. 35-40.

50. Kulikova A.V., Savel'ev V.V. Pochvennaja mikroflora i ee znachenie dlja agronomii. - SPb: Politehnika, 2014.

51. Haritonov S.A. Organicheskoe sel'skoe hozjajstvo kak innovacionnoe napravlenie v agrarnom razvitii// Agrarnaja Rossija. – 2011. – №2. – S. 54-56.

52. Willer H., Lernoud J. The World of Organic Agriculture: Statistics and Emerging Trends. FiBL–IFOAM Report. – Frick and Bonn, 2016. – P. 34–114.

53. Chekmarev P.A., Lukin S.V. Sistema udobrenija v uslovijah biologizacii zemledelija// Dostizhenija nauki i tehniki APK. – 2012. – №12. – S. 10-12.

54. Teuchezh A.A. Razrabotka tehnologicheskogo reglamenta pri podgotovke k ispol'zovaniju navoza krupnogo rogatogo skota v kachestve organicheskogo udobrenija// Mater. V mezhdunar. nauch.-jekolog. konf. Kub GAU. - 2017. - S. 782-788.

55. Sharipova D.S., Ajtbaev T.E. Vlijanie razlichnyh vidov sevooborota na porazhen-nost' vrednymi organizmami i produktivnost' kartofelja na jugo-vostoke Kazahstana// Іzdenіster, nәtizheler-Issledovanija, rezul'taty. – Almaty. -2017. - №3 (75). – S. 373-378.

56. Shirinkin A.V., Shishkina S.V., Ermakov A.A. Vlijanie organicheskih udobrenij na produktivnost' kartofelja// Agrohimija. - 2017. - №1. - S. 64-68.

57. Kuznecova E.V., Guljaev A.I., Vorob'ev V.N. Vlijanie udobrenij na produktivnost' kartofelja// Zemledelie. - 2020. - №4. - S. 38-40.

58. Tabbassum R., Naveed M., Mehboob I., Babar M.H., Holatko J., Akhtar N., Rafique M., Kucerik J., Brtnicky M., Kintl A. et al. Comparative Response of Fermented and Non-Fermented Animal Manure Combined with Split Dose of Phosphate Fertilizer Enhances Agronomic Performance and Wheat Productivity through Enhanced P Use Efficiency// Agronomy. – 2022. – Vol. 12. – P.2335.

59. Zilio M., Pigoli A., Rizzi B., Herrera A., Tambone F., Geromel G., Meers E., Schoumans O., Giordano A., Adani F. Using highly stabilized digestate and digestate-derived ammonium sulphate to replace synthetic fertilizers: The effects on soil, environment, and crop production// Sci. Total Environ. – 2022. – Vol. 815. – P. 152919.

60. Yu H., Ding W., Luo J., Geng R., Cai Z. Long-term application of organic manure and mineral fertilizers on aggregation and aggregate-associated carbon in a sandy loam soil// Soil. Tillage Res. – 2012. – Vol. 124. – P. 170-177.

61. Zhou Z., Zhang S., Jiang N., Xiu W., Zhao J., Yang D. Effects of organic fertilizer incorporation practices on crops yield, soil quality, and soil fauna feeding activity in the wheat-maize rotation system// Front. Environ. Sci. – 2022. – Vol. 10. – P. 2292.

62. Mahmood F., Khan I., Ashraf U., Shahzad T., Hussain S., Shahid M., Abid M., Ullah S. Effects of organic and inorganic manures on maize and their residual impact on soil physico-chemical properties// J. Soil. Sci. Plant Nutr. – 2017. – Vol. 17. – P. 22-32.

63. Islam M.A., Ferdous G., Akter A., Hossain M.M., Nandwani D. Effect of organic, inorganic fertilizers and plant spacing on the growth and yield of cabbage// Agriculture. – 2017. – Vol. 7. – P.31.

64. Ma X., Li H., Xu Y., Liu C. Effects of organic fertilizers via quick artificial decomposition on crop growth// Sci. Rep. 2021. - Vol.11. – P. 1–7.

65. Wu S., Shi Z., Chen X., Gao J., Wang X. Arbuscular mycorrhizal fungi increase crop yields by improving biomass under rainfed condition: A meta-analysis// Peer J. – 2022. –Vol.10. – P.12861.

66. Mazirov M.A., Belenkov A.I., Abududzjaba Z., Zaituniguli K. Vlijanie udobrenij na plodorodie pochvy i urozhaj zelenoj massy sladkogo sorgo// Vladimirskij zemledelec. - 2022. - №3. - S.10-17.


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For citations:


Bissenova G.N., Temirkhanov A.Zh., Tekebaeva Zh.B., Nurbekova Zh.A., Evneeva D.O., Abzhalelov A.B., Bekshin Zh.M. Assessment of the impact of fermented cattle humus use on soil quality and plant health. Soil Science and Agrichemistry. 2025;(4):80-94. (In Russ.) https://doi.org/10.51886/1999-740X_2025_4_80

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ISSN 1999-740X (Print)
ISSN 2959-3433 (Online)