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RESURSTEJAMKOR (NO-TILL) TEXNOLOGIYALARNING O‘SIMLIK BIOMASSASI QOLDIQLARI SHAKLLANISH DINAMIKASIGA TA’SIRI

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ARTICLE ANNOTATION

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The implementation of resource-saving technologies in agriculture aimed at improving soil fertility and the rational use of natural resources is one of the most pressing tasks today. This article presents the results of research directed at studying the impact of resource-saving technologies on soil fertility under rainfed farming conditions.

AUTHORS

N.Safarova

Toshkent davlat agrar universiteti

B.Safarov

Toshkent davlat agrar universiteti

D.Qodirova

Toshkent davlat agrar universiteti

Tags

# biomassa# biomass# гумус# humus# gumus# биомасса# ресурсосберегающий# resurstejamkor# No-Till# resource-conserving

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References

1. O‘zbekiston Respublikasi Qishloq xo‘jaligi vazirligi. Tuproq unumdorligini saqlashda ekin qoldiqlarining roli. - Toshkent: O‘zR QXA nashriyoti, 2019. - 58 b.

2. Blanco-Canqui H., Ruis S.J. No-tillage and soil physical environment // Geoderma. -2013. -Vol. 207-208. -P. 1-14.

3. Derpsch R., Friedrich T., Kassam A., Li H. Current status of adoption of no-till farming in the world and some of its main benefits // International Journal of Agricultural and Biological Engineering. -2014. -Vol. 7, No. 5. -P. 1-25

4. FAO. Conservation Agriculture for drylands. -Rome: Food and Agriculture Organization of the United Nations, 2021

5. Kaspar T. C., Bakker M. G. Biomass production of 12 winter cereal cover crop cultivars and their effect on subsequent no-till corn yield // Journal of Soil and Water Conservation. -2015. -Vol. 70, No. 6. -P. 353-364.

6. Kurvantaev R., Dadamukhamedova M. R. Changes in the structural composition of typical seriozems when applying mineral and organic fertilizers // agrarian science for agriculture. - 2016. - P. 142-145.

7. Lal R. Restoring soil quality to mitigate soil degradation // Sustainability. -2015. -Vol. 7, No. 5. -P. 5875-5895.

8. Minhas W. A. et al. The influence of different crop mulches on weed infestation, soil properties and productivity of wheat under conventional and conservation production systems //Plants. -2022. -Vol. 12. -No. 1. -P. 9.

9. Mirzajonov Q. Ekinlarni almashlab ekishni ahamiyati // O‘zbekiston qishloq xo‘jaligi. -2012. -№12. -B. 26-28.

10. Mirzajonov Q. Ekinlarni almashlab ekishni ahamiyati. // O‘zbekiston qishloq xo‘jaligi. 2012 y. № 12. B. 26-28.

11. Mirzayev S.J. Biostimulyatorlarning tuproq biomassasi va ildiz massasiga ta’siri // Agrobiologiya. -2018. -№2. -B. 35-40.

12. Musayev B.S. Agrokimyo. -Toshkent: Sharq, 2001. -320 b.

13. Nurbekov A, Kosimov M, Islamov S, Khaitov B, Qodirova D, Yuldasheva Z, Khudayqulov J, Ergasheva K and Nurbekova R. No-till, crop residue management and winter wheat-based crop rotation strategies under rainfed environment //Frontiers in Agronomy. - 2024. - Т. 6. - С. 1453976.

14. Турмел М.С. и др. Управление пожнивными остатками и здоровье почвы: системный анализ //Сельскохозяйственные системы. -2015. -Т. 134. -С. 6-16.

15. Sharipov B.A. Lokal o‘g‘itlash texnologiyasining gumus miqdoriga ta’siri. -Samarqand, 2019. -95 b.

16. Vincent-Caboud L., et al. Using mulch from cover crops to facilitate organic no-till soybean and maize production. A review // Agronomy for sustainable development. -2019. -Vol. 39, No. 5. -P. 45.

17. Wang H., et al. Effects of long-term no-tillage with different straw mulching frequencies on soil microbial community and the abundances of two soil-borne pathogens // Applied Soil Ecology. -2020. -Vol. 148. -P. 103488.

1. O‘zbekiston Respublikasi Qishloq xo‘jaligi vazirligi. Tuproq unumdorligini saqlashda ekin qoldiqlarining roli. - Toshkent: O‘zR QXA nashriyoti, 2019. - 58 b.

2. Blanco-Canqui H., Ruis S.J. No-tillage and soil physical environment // Geoderma. -2013. -Vol. 207-208. -P. 1-14.

3. Derpsch R., Friedrich T., Kassam A., Li H. Current status of adoption of no-till farming in the world and some of its main benefits // International Journal of Agricultural and Biological Engineering. -2014. -Vol. 7, No. 5. -P. 1-25

4. FAO. Conservation Agriculture for drylands. -Rome: Food and Agriculture Organization of the United Nations, 2021

5. Kaspar T. C., Bakker M. G. Biomass production of 12 winter cereal cover crop cultivars and their effect on subsequent no-till corn yield // Journal of Soil and Water Conservation. -2015. -Vol. 70, No. 6. -P. 353-364.

6. Kurvantaev R., Dadamukhamedova M. R. Changes in the structural composition of typical seriozems when applying mineral and organic fertilizers // agrarian science for agriculture. - 2016. - P. 142-145.

7. Lal R. Restoring soil quality to mitigate soil degradation // Sustainability. -2015. -Vol. 7, No. 5. -P. 5875-5895.

8. Minhas W. A. et al. The influence of different crop mulches on weed infestation, soil properties and productivity of wheat under conventional and conservation production systems //Plants. -2022. -Vol. 12. -No. 1. -P. 9.

9. Mirzajonov Q. Ekinlarni almashlab ekishni ahamiyati // O‘zbekiston qishloq xo‘jaligi. -2012. -№12. -B. 26-28.

10. Mirzajonov Q. Ekinlarni almashlab ekishni ahamiyati. // O‘zbekiston qishloq xo‘jaligi. 2012 y. № 12. B. 26-28.

11. Mirzayev S.J. Biostimulyatorlarning tuproq biomassasi va ildiz massasiga ta’siri // Agrobiologiya. -2018. -№2. -B. 35-40.

12. Musayev B.S. Agrokimyo. -Toshkent: Sharq, 2001. -320 b.

13. Nurbekov A, Kosimov M, Islamov S, Khaitov B, Qodirova D, Yuldasheva Z, Khudayqulov J, Ergasheva K and Nurbekova R. No-till, crop residue management and winter wheat-based crop rotation strategies under rainfed environment //Frontiers in Agronomy. - 2024. - Т. 6. - С. 1453976.

14. Турмел М.С. и др. Управление пожнивными остатками и здоровье почвы: системный анализ //Сельскохозяйственные системы. -2015. -Т. 134. -С. 6-16.

15. Sharipov B.A. Lokal o‘g‘itlash texnologiyasining gumus miqdoriga ta’siri. -Samarqand, 2019. -95 b.

16. Vincent-Caboud L., et al. Using mulch from cover crops to facilitate organic no-till soybean and maize production. A review // Agronomy for sustainable development. -2019. -Vol. 39, No. 5. -P. 45.

17. Wang H., et al. Effects of long-term no-tillage with different straw mulching frequencies on soil microbial community and the abundances of two soil-borne pathogens // Applied Soil Ecology. -2020. -Vol. 148. -P. 103488.