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ALENGEBAWY A., ABDELKHALEK S.T., QURESHI S.R., WANG M.Q. 2021. Heavy metals and pesticides toxicity in agricultural soil and plants: ecological risks and human health implications. Toxics 9, 3:42. doi: 10.3390/toxics9030042. ALENGEBAWYA. ABDELKHALEKS.T. QURESHIS.R. WANGM.Q. 2021 Heavy metals and pesticides toxicity in agricultural soil and plants: ecological risks and human health implications Toxics 9 3 42 10.3390/toxics9030042 Open DOISearch in Google Scholar

ALORI E.T., BABALOLA O.O. 2018. Microbial inoculants for improving crop quality and human health in Africa. Frontiers in Microbiology, Sec. Plant Pathogen Interactions 9. doi.org/10.3389/fmicb.2018.02213 ALORIE.T. BABALOLAO.O. 2018 Microbial inoculants for improving crop quality and human health in Africa Frontiers in Microbiology, Sec. Plant Pathogen Interactions 9 doi.org/10.3389/fmicb.2018.02213 Search in Google Scholar

BISHT N., CHAUHAN P.S. 2020. Excessive and disproportionate use of chemicals cause soil contamination and nutritional stress. In: Larramendy, M.L.; Soloneski, S. (eds.). Soil Contamination. doi: 10.5772/intechopen.94593. BISHTN. CHAUHANP.S. 2020 Excessive and disproportionate use of chemicals cause soil contamination and nutritional stress In: LarramendyM.L. SoloneskiS. (eds.). Soil Contamination 10.5772/intechopen.94593 Open DOISearch in Google Scholar

BOGUSZ P., RUSEK P., BRODOWSKA M.S. 2021. Suspension fertilizers: How to reconcile sustainable fertilization and environmental protection. Agriculture 11, 10: 1008. https://doi.org/10.3390/agriculture11101008 BOGUSZP. RUSEKP. BRODOWSKAM.S. 2021 Suspension fertilizers: How to reconcile sustainable fertilization and environmental protection Agriculture 11 10 1008 https://doi.org/10.3390/agriculture11101008 Search in Google Scholar

BUDDOLLA V. 2019. Recent Developments in applied microbiology and biochemistry. Academic Press. https://doi.org/10.1016/C2017-0-04612-8 BUDDOLLAV. 2019 Recent Developments in applied microbiology and biochemistry Academic Press https://doi.org/10.1016/C2017-0-04612-8 Search in Google Scholar

ÇALIŞKAN M.E., YOUSAF M.Y., YAVUZ C., M. ZIA A.B., ÇALIŞKAN S. 2023. History, production, current trends, and future prospects. Potato Production Worldwide, 1–18. doi.org/10.1016/B978-0-12-822925-5.00016-5. ÇALIŞKANM.E. YOUSAFM.Y. YAVUZC. M. ZIAA.B. ÇALIŞKANS. 2023 History, production, current trends, and future prospects Potato Production Worldwide 1 18 doi.org/10.1016/B978-0-12-822925-5.00016-5. Search in Google Scholar

CHEN G., WU C., WANG F. et al. 2022. Microbial community changes in different underground compartments of potato affected yield and quality. 3 Biotech 12: 106. doi. org/10.1007/s13205-022-03167-6 CHENG. WUC. WANGF. 2022 Microbial community changes in different underground compartments of potato affected yield and quality 3 Biotech 12 106 doi. org/10.1007/s13205-022-03167-6 Search in Google Scholar

CONTRERAS-LIZA S., RAMÍREZ R.M., BELISARIO D.L.O. 2022. Production of potato seed tubers under the effect of Trichoderma sp. and rhizobacteria in greenhouse conditions. Revista de Ciências Agroveterinárias 21, 4. doi: 10.5965/223811712142022419 CONTRERAS-LIZAS. RAMÍREZR.M. BELISARIOD.L.O. 2022 Production of potato seed tubers under the effect of Trichoderma sp. and rhizobacteria in greenhouse conditions Revista de Ciências Agroveterinárias 21 4 10.5965/223811712142022419 Open DOISearch in Google Scholar

DICKINSON D., BALDUCCIO L., BUYSSE J., RONSSE F., VAN HUYLENBROECK G., PRINS W. 2015. Cost-benefit analysis of using biochar to improve cereals agriculture. GCB Bioenergy 7: 850–864. https://doi.org/10.1111/gcbb.12180 DICKINSOND. BALDUCCIOL. BUYSSEJ. RONSSEF. VAN HUYLENBROECKG. PRINSW. 2015 Cost-benefit analysis of using biochar to improve cereals agriculture GCB Bioenergy 7 850 864 https://doi.org/10.1111/gcbb.12180 Search in Google Scholar

DURLINGER B., TYSZLER M., SCHOLTEN J., BROEKEMA R., BLONK H. 2014. Agri-footprint: A Life Cycle Inventory database covering food and feed production and processing. Conference: 9th International Conference LCA of Food, San Francisco, USA. DURLINGERB. TYSZLERM. SCHOLTENJ. BROEKEMAR. BLONKH. 2014 Agri-footprint: A Life Cycle Inventory database covering food and feed production and processing Conference: 9th International Conference LCA of Food San Francisco, USA Search in Google Scholar

EKINS P., ZENGHELIS D. 2021. The costs and benefits of environmental sustainability. Sustainability Science 16: 949–965. /doi.org/10.1007/s11625-021-00910-5. EKINSP. ZENGHELISD. 2021 The costs and benefits of environmental sustainability Sustainability Science 16 949 965 /doi.org/10.1007/s11625-021-00910-5. Search in Google Scholar

ERTANI A., FRANCIOSO O., TINTI A., SCHIAVON M., PIZZEGHELLO D., NARDI S. 2018. Evaluation of seaweed extracts from Laminaria and Ascophyllum nodosum spp. As biostimulants in Zea mays L. using a combination of chemical, biochemical and morphological approaches. Frontiers in Plant Science 9: 428. doi.org/10.3389/fpls.2018.00428 ERTANIA. FRANCIOSOO. TINTIA. SCHIAVONM. PIZZEGHELLOD. NARDIS. 2018 Evaluation of seaweed extracts from Laminaria and Ascophyllum nodosum spp. As biostimulants in Zea mays L. using a combination of chemical, biochemical and morphological approaches Frontiers in Plant Science 9 428 doi.org/10.3389/fpls.2018.00428 Search in Google Scholar

ERTANI A., PIZZEGHELLO D., FRANCIOSO O., SAMBO P., SANCHEZ-CORTES S., NARDI S. 2014. Capsicum chinensis L. growth and nutraceutical properties are enhanced by biostimulants in a long-term period: Chemical and metabolomic approaches. Frontiers in Plant Science 5: 375. doi.org/10.3389/fpls.2014.00375. ERTANIA. PIZZEGHELLOD. FRANCIOSOO. SAMBOP. SANCHEZ-CORTESS. NARDIS. 2014 Capsicum chinensis L. growth and nutraceutical properties are enhanced by biostimulants in a long-term period: Chemical and metabolomic approaches Frontiers in Plant Science 5 375 doi.org/10.3389/fpls.2014.00375. Search in Google Scholar

FAO. 2020. Statistical databases FAOSTAT. http://faostat3.fao.org. FAO 2020 Statistical databases FAOSTAT http://faostat3.fao.org. Search in Google Scholar

FASUSI O.A., CRUZ C., BABALOLA O.O. 2021. Agricultural sustainability: Microbial biofertilizers in rhizosphere management. Agriculture 11: 163. https://doi.org/10.3390/agriculture11020163 FASUSIO.A. CRUZC. BABALOLAO.O. 2021 Agricultural sustainability: Microbial biofertilizers in rhizosphere management Agriculture 11 163 https://doi.org/10.3390/agriculture11020163 Search in Google Scholar

GARCIA A. 2020. The Environmental impacts of agricultural intensification technical. Standing Panel on Impact Assessment Note N. 9. https://iaes.cgiar.org GARCIAA. 2020 The Environmental impacts of agricultural intensification technical Standing Panel on Impact Assessment Note N. 9. https://iaes.cgiar.org Search in Google Scholar

GOŁĘBIEWSKA B., PAJEWSKI T. 2016. The negative effects of agricultural production and the possibility of its limitation. Annals PAAAE 18, 3: 76–81. GOŁĘBIEWSKAB. PAJEWSKIT. 2016 The negative effects of agricultural production and the possibility of its limitation Annals PAAAE 18 3 76 81 Search in Google Scholar

GOPINATH K.A., VENKATESH G., MANJUNATH M., JAYALAKSHMI M., PRASAD T.V., RAJKUMAR B., VENUGOPALAN V.K., RAJU B.M.K., PRABHAKAR M., CHARY G.R., SINGH V.K. 2023. Impact of organic and integrated production systems on yield and seed quality of rainfed crops and on soil properties. Frontiers in Nutrition 10: 1127970. doi: 10.3389/fnut.2023.1127970 GOPINATHK.A. VENKATESHG. MANJUNATHM. JAYALAKSHMIM. PRASADT.V. RAJKUMARB. VENUGOPALANV.K. RAJUB.M.K. PRABHAKARM. CHARYG.R. SINGHV.K. 2023 Impact of organic and integrated production systems on yield and seed quality of rainfed crops and on soil properties Frontiers in Nutrition 10 1127970 10.3389/fnut.2023.1127970 Open DOISearch in Google Scholar

GRUCZEK T. 2004. Przyrodnicze i agrotechniczne aspekty uprawy ziemniaka. Zeszyty Problemowe Postępów Nauk Rolniczych 500: 11–44. GRUCZEKT. 2004 Przyrodnicze i agrotechniczne aspekty uprawy ziemniaka Zeszyty Problemowe Postępów Nauk Rolniczych 500 11 44 Search in Google Scholar

HARA P. 2019. Znaczenie biostymulantów w uprawie ziemniaka (The role of bio-stimulators in popato cultivation). Ziemniak Polski2. HARAP. 2019 Znaczenie biostymulantów w uprawie ziemniaka (The role of bio-stimulators in popato cultivation) Ziemniak Polski2 Search in Google Scholar

HEDIGER W., LEHMANN B. 2007. Multifunctional agriculture and the preservation of environmental benefits. Swiss Journal of Economics and Statistics 143, 4: 449–470. doi: 10.1007/bf03399246 HEDIGERW. LEHMANNB. 2007 Multifunctional agriculture and the preservation of environmental benefits Swiss Journal of Economics and Statistics 143 4 449 470 10.1007/bf03399246 Open DOISearch in Google Scholar

HIJRI M. 2016. Analysis of a large dataset of mycorrhiza inoculation field trials on potato shows highly significant increases in yield. Mycorrhiza 26: 209–214. doi.org/10.1007/s00572-015-0661-4 HIJRIM. 2016 Analysis of a large dataset of mycorrhiza inoculation field trials on potato shows highly significant increases in yield Mycorrhiza 26 209 214 doi.org/10.1007/s00572-015-0661-4 Search in Google Scholar

HUSSAIN T. 2016. Potatoes: Ensuring food for the future. Advances in Plants and Agriculture Research 3, 6:178–182. doi: 10.15406/apar.2016.03.00117 HUSSAINT. 2016 Potatoes: Ensuring food for the future Advances in Plants and Agriculture Research 3 6 178 182 10.15406/apar.2016.03.00117 Open DOISearch in Google Scholar

ISLAM S. 2018. Microorganisms in the rhizosphere and their utilization in agriculture: A mini review. PSM Microbiology 3, 3: 105–110. ISLAMS. 2018 Microorganisms in the rhizosphere and their utilization in agriculture: A mini review PSM Microbiology 3 3 105 110 Search in Google Scholar

KALOGIANNIDIS S., KALFAS D., CHATZITHEODORIDIS F., PAPAEVANGELOU O. 2022. Role of crop protection technologies in sustainable agricultural productivity and management. Land 11: 1680. https://doi.org/10.3390/land11101680 KALOGIANNIDISS. KALFASD. CHATZITHEODORIDISF. PAPAEVANGELOUO. 2022 Role of crop protection technologies in sustainable agricultural productivity and management Land 11 1680 https://doi.org/10.3390/land11101680 Search in Google Scholar

KIRCHMANN H. 2019. Why organic farming is not the way forward. Outlook on Agriculture 48, 1: 22–27. https://doi.org/10.1177/0030727019831702 KIRCHMANNH. 2019 Why organic farming is not the way forward Outlook on Agriculture 48 1 22 27 https://doi.org/10.1177/0030727019831702 Search in Google Scholar

LANKOSKI J., OLLIKAINEN M. 2003. Agri-environmental externalities: A framework for designing targeted policies. European Review of Agricultural Economics 30: 51–75. doi.org/10.1093/erae/30.1.51 LANKOSKIJ. OLLIKAINENM. 2003 Agri-environmental externalities: A framework for designing targeted policies European Review of Agricultural Economics 30 51 75 doi.org/10.1093/erae/30.1.51 Search in Google Scholar

LI J., WANG J., LIU H., MACDONALD C.A., SINGH B.K. 2022. Application of microbial inoculants significantly enhances crop productivity: A meta-analysis of studies from 2010 to 2020. Journal of Sustainable Agriculture and Environment 1: 216–225. doi.org/10.1002/sae2.12028 LIJ. WANGJ. LIUH. MACDONALDC.A. SINGHB.K. 2022 Application of microbial inoculants significantly enhances crop productivity: A meta-analysis of studies from 2010 to 2020 Journal of Sustainable Agriculture and Environment 1 216 225 doi.org/10.1002/sae2.12028 Search in Google Scholar

ŁUCZKA W. 2020. Procesy rozwojowe rolnictwa ekologicznego i ich ekonomiczno-społeczne uwarunkowania. Wydawnictwo Naukowe Scholar. ŁUCZKAW. 2020 Procesy rozwojowe rolnictwa ekologicznego i ich ekonomiczno-społeczne uwarunkowania Wydawnictwo Naukowe Scholar Search in Google Scholar

MACIEJCZAK M., FILIPIAK T. 2020. Economic, social and environmental impacts of the potato and its beneficial microorganism interactions. Annals PAAAE XXII, 4: 140–150. doi: 10.5604/01.3001.0014.6032. MACIEJCZAKM. FILIPIAKT. 2020 Economic, social and environmental impacts of the potato and its beneficial microorganism interactions Annals PAAAE XXII 4 140 150 10.5604/01.3001.0014.6032 Open DOISearch in Google Scholar

Manual for Designers. Eco-indicator 99. 2020. A damage oriented method for Life Cycle Impact Assessment. Ministry of Housing, Spatial Planning and the Environment Communications Directorate. Manual for Designers. Eco-indicator 99 2020 A damage oriented method for Life Cycle Impact Assessment Ministry of Housing, Spatial Planning and the Environment Communications Directorate Search in Google Scholar

OTERO I., FARRELL K.N., PUEYO S., KALLIS G., KEHOE L., HABERL H., PLUTZAR CH., HOBSON P., GARCÍA-MÁRQUEZ J., RODRÍGUEZ-LABAJOS B., MARTIN J-L., ERB K-H., SCHINDLER S., NIELSEN J., SKORIN T., SETTELE J., ESSL F., GÓMEZ-BAGGETHUN E., BROTONS L., RABITSCH W., SCHNEIDER F., PE`ER G. 2020. Biodiversity policy beyond economic growth. Conservation Letters 13, 4:e12713: 1–18. https://doi.org/10.1111/conl.12713. OTEROI. FARRELLK.N. PUEYOS. KALLISG. KEHOEL. HABERLH. PLUTZARCH. HOBSONP. GARCÍA-MÁRQUEZJ. RODRÍGUEZ-LABAJOSB. MARTINJ-L. ERBK-H. SCHINDLERS. NIELSENJ. SKORINT. SETTELEJ. ESSLF. GÓMEZ-BAGGETHUNE. BROTONSL. RABITSCHW. SCHNEIDERF. PE`ERG. 2020 Biodiversity policy beyond economic growth Conservation Letters 13 4 e12713 1 18 https://doi.org/10.1111/conl.12713 Search in Google Scholar

PAWLAK J. 2015. Rolnictwo a środowisko naturalne (Agriculture and Environment). Problemy Inżynierii Rolniczej (Problems of Agricultural Engineering) 1, 87: 17–28. PAWLAKJ. 2015 Rolnictwo a środowisko naturalne (Agriculture and Environment) Problemy Inżynierii Rolniczej (Problems of Agricultural Engineering) 1 87 17 28 Search in Google Scholar

PIOTROWSKA K., KRUSZELNICKA W., BAŁDOWSKA-WITOS P., KASNER R., RUDNICKI J., TOMPOROWSKI A., FLIZIKOWSKI J., OPIELAK M. 2019. Assessment of the environmental impact of a car tire throughout its lifecycle using the LCA method. Materials 12, 24: 4177. https://doi.org/10.3390/ma12244177. PIOTROWSKAK. KRUSZELNICKAW. BAŁDOWSKA-WITOSP. KASNERR. RUDNICKIJ. TOMPOROWSKIA. FLIZIKOWSKIJ. OPIELAKM. 2019 Assessment of the environmental impact of a car tire throughout its lifecycle using the LCA method Materials 12 24 4177 https://doi.org/10.3390/ma12244177. Search in Google Scholar

POPP J., PETŐ K., NAGY J. 2013. Pesticide productivity and food security. A review. Agronomy for Sustainable Development 33: 243–255. https://doi.org/10.1007/s13593-012-0105-x. POPPJ. PETŐK. NAGYJ. 2013 Pesticide productivity and food security. A review Agronomy for Sustainable Development 33 243 255 https://doi.org/10.1007/s13593-012-0105-x. Search in Google Scholar

RITCHIE H., ROSADO P., ROSER M. 2022. Environmental impacts of food production. Published online at OurWorldInData.org. Retrieved from: https://ourworldindata.org/environmental-impacts-of-food. RITCHIEH. ROSADOP. ROSERM. 2022 Environmental impacts of food production Published online at OurWorldInData.org. Retrieved from: https://ourworldindata.org/environmental-impacts-of-food. Search in Google Scholar

SOLANKI M.K., SOLANKI A.CH., SINGH A., BRIJENDRA KASHYAP B., RAI S., MALVIYA M.K. 2023. Microbial endophytes’ association and application in plant health: an overview—Chapter 1. In: Solanki et al. (eds). Microbial Endophytes and Plant Growth, Beneficial Interactions and Applications, 1–18. doi: 10.1016/B978-0-323-90620-3.00014-3. SOLANKIM.K. SOLANKIA.CH. SINGHA. BRIJENDRA KASHYAPB. RAIS. MALVIYAM.K. 2023 Microbial endophytes’ association and application in plant health: an overview—Chapter 1 In: Solanki (eds). Microbial Endophytes and Plant Growth, Beneficial Interactions and Applications 1 18 10.1016/B978-0-323-90620-3.00014-3 Open DOISearch in Google Scholar

SONG J., KONG Z.Q., ZHANG D.D., CHEN J.Y., DAI X.F., LI R. 2021. Rhizosphere microbiomes of potato cultivated under bacillus subtilis treatment influence the quality of potato tubers. International Journal of Molecular Sciences 22, 21:12065. doi: 10.3390/ijms222112065. SONGJ. KONGZ.Q. ZHANGD.D. CHENJ.Y. DAIX.F. LIR. 2021 Rhizosphere microbiomes of potato cultivated under bacillus subtilis treatment influence the quality of potato tubers International Journal of Molecular Sciences 22 21 12065 10.3390/ijms222112065 Open DOISearch in Google Scholar

STRUIK P.C., KUYPER T.W. 2017. Sustainable intensification in agriculture: the richer shade of green. A review. Agronomy for Sustainable Development 37: 39. https://doi.org/10.1007/s13593-017-0445-7. STRUIKP.C. KUYPERT.W. 2017 Sustainable intensification in agriculture: the richer shade of green. A review Agronomy for Sustainable Development 37 39 https://doi.org/10.1007/s13593-017-0445-7. Search in Google Scholar

SUNDSTRÖM J.F., ALBIHN A., BOQVIST S. et al. 2014. Future threats to agricultural food production posed by environmental degradation, climate change, and animal and plant diseases—A risk analysis in three economic and climate settings. Food Security 6: 201–215. https://doi.org/10.1007/s12571-014-0331-y. SUNDSTRÖMJ.F. ALBIHNA. BOQVISTS. 2014 Future threats to agricultural food production posed by environmental degradation, climate change, and animal and plant diseases—A risk analysis in three economic and climate settings Food Security 6 201 215 https://doi.org/10.1007/s12571-014-0331-y. Search in Google Scholar

The Ecoinvent Database. A Life Cycle Inventory for transparency in environmental assessments. https://ecoinvent.org/wp-content/uploads/2022/10/ecoinvent-sectorial-Brochure-2022. The Ecoinvent Database A Life Cycle Inventory for transparency in environmental assessments https://ecoinvent.org/wp-content/uploads/2022/10/ecoinvent-sectorial-Brochure-2022. Search in Google Scholar

TORRES-VITE H., CONTRERAS-LIZA S.E. 2019. Use of microbial inoculants for production of potato tuber seed in greenhouse conditions. Peruvian Agricultural Research 1, 2: 40–47. doi: 10.51431/par.v1i2.581. TORRES-VITEH. CONTRERAS-LIZAS.E. 2019 Use of microbial inoculants for production of potato tuber seed in greenhouse conditions Peruvian Agricultural Research 1 2 40 47 10.51431/par.v1i2.581 Open DOISearch in Google Scholar

TRAWCZYŃSKI C. 2020. The effect of biostimulators on the yield and quality of potato tubers grown in drought and high temperature conditions. Biuletyn Instytutu Hodowli Aklimatyzacji Roślin 289: 11–19. TRAWCZYŃSKIC. 2020 The effect of biostimulators on the yield and quality of potato tubers grown in drought and high temperature conditions Biuletyn Instytutu Hodowli Aklimatyzacji Roślin 289 11 19 Search in Google Scholar

TREDER K., MICHAŁOWSKA D., PAWŁOWSKA A., URBANOWICZ J., PANEK J., FRĄC M., FALCAO-SALLES J. 2021. International project potatoMETAbiome—Description of the work performer. Ziemniak Polski 2: 3–9. TREDERK. MICHAŁOWSKAD. PAWŁOWSKAA. URBANOWICZJ. PANEKJ. FRĄCM. FALCAO-SALLESJ. 2021 International project potatoMETAbiome—Description of the work performer Ziemniak Polski 2 3 9 Search in Google Scholar

VAN DIJK M., MORLEY T., RAU M.L. et al. 2021. A meta-analysis of projected global food demand and population at risk of hunger for the period 2010–2050. Nature Food 2: 494–501. https://doi.org/10.1038/s43016-021-00322-9. VAN DIJKM. MORLEYT. RAUM.L. 2021 A meta-analysis of projected global food demand and population at risk of hunger for the period 2010–2050 Nature Food 2 494 501 https://doi.org/10.1038/s43016-021-00322-9. Search in Google Scholar

VIANA C.M., FREIRE D., ABRANTES P., ROCHA J., PEREIRA P. 2022. Agricultural land systems importance for supporting food security and sustainable development goals: A systematic review. Science of The Total Environment 806, 3: 150718. https://doi.org/10.1016/j.scitotenv.2021.150718. VIANAC.M. FREIRED. ABRANTESP. ROCHAJ. PEREIRAP. 2022 Agricultural land systems importance for supporting food security and sustainable development goals: A systematic review Science of The Total Environment 806 3 150718 https://doi.org/10.1016/j.scitotenv.2021.150718. Search in Google Scholar

VISHNU J.K. 2022. Chapter 8—Bacterial inoculants for rhizosphere engineering: Applications, current aspects, and challenges. Rhizosphere Engineering, 129–150. doi: 10.1016/B978-0-323-89973-4.00004-1. VISHNUJ.K. 2022 Chapter 8—Bacterial inoculants for rhizosphere engineering: Applications, current aspects, and challenges Rhizosphere Engineering 129 150 10.1016/B978-0-323-89973-4.00004-1 Open DOISearch in Google Scholar

WANG Z., LI Y., ZHUANG L., YU Y., LIU J., ZHANG L., … WANG, Q.A. 2019. Rhizosphere-derived consortium of bacillus subtilis and trichoderma harzianum suppresses common scab of potato and increases yield. Computational and Structural Biotechnology Journal 17: 645–653. doi:10.1016/j.csbj.2019.05.003. WANGZ. LIY. ZHUANGL. YUY. LIUJ. ZHANGL. WANGQ.A. 2019 Rhizosphere-derived consortium of bacillus subtilis and trichoderma harzianum suppresses common scab of potato and increases yield Computational and Structural Biotechnology Journal 17 645 653 10.1016/j.csbj.2019.05.003 Open DOISearch in Google Scholar

WANG Z., LI Y., ZHAO Y., ZHUANG L., YU Y., WANG M., LIU J., WANG Q. 2021. A microbial consortium-based product promotes potato yield by recruiting rhizosphere bacteria involved in nitrogen and carbon metabolisms. Microbial Biotechnology 14, 5: 1961–1975. doi. org/10.1111/1751-7915.13876. WANGZ. LIY. ZHAOY. ZHUANGL. YUY. WANGM. LIUJ. WANGQ. 2021 A microbial consortium-based product promotes potato yield by recruiting rhizosphere bacteria involved in nitrogen and carbon metabolisms Microbial Biotechnology 14 5 1961 1975 doi. org/10.1111/1751-7915.13876. Search in Google Scholar

YU J., WU J. 2018. The sustainability of agricultural development in China: The agriculture–environment nexus. Sustainability 10: 1776. doi.org/10.3390/su10061776. YUJ. WUJ. 2018 The sustainability of agricultural development in China: The agriculture–environment nexus Sustainability 10 1776 doi.org/10.3390/su10061776. Search in Google Scholar

ZHANG H., XU F., WU Y., HU H., DAI X. 2017. Progress of potato staple food research and industry development in China. Journal of Integrative Agriculture 16, 12: 2924–2932. doi:10.1016/s2095-3119(17)61736-2. ZHANGH. XUF. WUY. HUH. DAIX. 2017 Progress of potato staple food research and industry development in China Journal of Integrative Agriculture 16 12 2924 2932 10.1016/s2095-3119(17)61736-2 Open DOISearch in Google Scholar

ZHICHKIN K., NOSOV V., ZHICHKINA L., DIBROVA ZH., CHEREPOVA Y. 2019. Development of evaluation model effectiveness of modern technologies in crop production. IOP Conference Series: Earth and Environmental Science 315: 022023. doi:10.1088/1755-1315/315/2/022023. ZHICHKINK. NOSOVV. ZHICHKINAL. DIBROVAZH. CHEREPOVAY. 2019 Development of evaluation model effectiveness of modern technologies in crop production IOP Conference Series: Earth and Environmental Science 315 022023 10.1088/1755-1315/315/2/022023 Open DOISearch in Google Scholar

ZIĘTARA W., OLKO-BAGIEŃSKA T. 1986. Zadania z analizy działalności gospodarczej i planowania w gospodarstwie rolnym. PWRiL, Warszawa. ZIĘTARAW. OLKO-BAGIEŃSKAT. 1986 Zadania z analizy działalności gospodarczej i planowania w gospodarstwie rolnym PWRiL Warszawa Search in Google Scholar

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