Academic literature on the topic 'Integrated nutrient management'

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Journal articles on the topic "Integrated nutrient management"

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S.P., Singh and Shilpa Kaushik. "Integrated nutrient management: An sustainable approach for soil productivity." Trends In Agriculture Science 2, no. 9 (2023): 735–49. https://doi.org/10.5281/zenodo.8338955.

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Integrated Nutrient Management approach to the management of plant nutrients for maintaining and enhancing soil, Soil fertility maintenance requires a balanced application of inorganic and organic nutrient sources. Sustainable agricultural productivity might be achieved through a wise use of integrated nutrient management. Integrated use of organic and inorganic source of plant nutrients on growth and yield attributes is very crucial for assurance of food security.  The integrated plant nutrient supply/management is important approach for maintenance or adjustment of soil fertility and pl
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Vikalp, Arjoo, and Sushil Sharma. "Integrated Nutrient Management in Fruit Production." Journal of Agriculture Research and Technology Special, no. 01 (2022): 40–44. http://dx.doi.org/10.56228/jart.2022.sp108.

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When it comes to fruit cultivation, nutrient management is of the utmost importance if one wants to acquire fruit of a good grade. Inappropriate nutrient management and indiscriminate use of chemical pesticides are both detrimental to the health of plants and the environment, as well as to the human beings who consume them. Because of the indiscriminate use of inorganic agrochemicals, the qualitative characteristics of a variety of fruits have been adversely affected. This has led to a decline in quality, which has decreased customer choice and resulted in lower returns for the producers. Not
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Kushwah, Nishita, Vaishalee Billore, Om Prakash Sharma, Dheerendra Singh, and Aman Pratap Singh Chauhan. "Integrated Nutrient management for optimal plant health and crop yield." Plant Science Archives 8, no. 2 (2023): 10–12. http://dx.doi.org/10.51470/psa.2023.8.2.10.

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In the pursuit of sustainable agriculture and optimal crop yields, Integrated Nutrient Management (INM) has emerged as a comprehensive strategy that integrates organic and inorganic sources of nutrients. This article explores the principles and components of INM, emphasizing its role in fostering plant health, enhancing nutrient use efficiency, and ensuring the long-term sustainability of soil and ecosystems. The key components of INM include the judicious use of organic fertilizers, precision application of inorganic fertilizers, crop rotation, and the integration of beneficial microbial inoc
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Kumari, Santosh, Satpal Baloda, Rajesh Mor, Jaipal Jaipal, Sonu Kumar, and M. L. Jat. "Integrated Nutrient Management in Ppomegranate: A Review." Journal of Agriculture Research and Technology 49, no. 01 (2024): 195–200. https://doi.org/10.56228/jart.2024.49129.

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Alleviation of poverty and achievement of zero hunger target and food security are significant challenges faced by agricultural planners worldwide. Indiscriminate use of chemical fertilizers for yield maximization is needed to report this aim which has drastic effects on crop growth and yield. Integrated Nutrient Management (INM) is a sustainable approach to managing soil fertility and plant nutrition that emphasizes the use of organic and inorganic fertilizers, along with cultural practices, to enhance soil health, promote plant growth, and increase crop yields. Integrated nutrient management
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Gunjal, B. S. "Integrated nutrient management in maize." INTERNATIONAL JOURNAL OF AGRICULTURAL SCIENCES 15, no. 2 (2019): 302–14. http://dx.doi.org/10.15740/has/ijas/15.2/302-314.

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Gunjal, B. S. "Integrated nutrient management in potato." INTERNATIONAL JOURNAL OF PLANT SCIENCES 14, no. 2 (2019): 84–98. http://dx.doi.org/10.15740/has/ijps/14.2/84-98.

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Ghosh, Sukanya, Khushbu Kholiya, Rushali Pant, Deepak Kholiya, and Jai Paul. "Integrated nutrient management on maize." International Journal of Chemical Studies 8, no. 6 (2020): 807–10. http://dx.doi.org/10.22271/chemi.2020.v8.i6l.10868.

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Debata, DK, and LK Das. "Integrated nutrient management in rice." International Journal of Research in Agronomy 7, no. 6S (2024): 560–63. http://dx.doi.org/10.33545/2618060x.2024.v7.i6sh.949.

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Gopalasundaram, P., A. Bhaskaran, and P. Rakkiyappan. "Integrated Nutrient Management in Sugarcane." Sugar Tech 14, no. 1 (2011): 3–20. http://dx.doi.org/10.1007/s12355-011-0097-x.

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S., G. Zalte, H. Kausadikar Padmaja, D. Kuchanwar Ommala, R. Mairan Nishigandha, R. Gopal Kirtimala, and G. Parshuramkar Shubhangi. "Integrated Nutrient Management For Spinach." International Journal of Advance and Applied Research 10, no. 3 (2023): 635 to 642. https://doi.org/10.5281/zenodo.7772839.

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<em>The field experiment was conducted at </em><em>Horticulture farm No.16</em><em>, College of Agriculture, Nagpur and analytical work was carried out at Post Graduate Laboratory, Soil Science and Agricultural Chemistry section, College of Agriculture, Nagpur.</em><em> The experiment was laid out in randomized block design with 15 treatments and 3 replications.&nbsp; application of 50 % RDN + 50 % N through VC + 10 kg P +15 kg K(T<sub>12</sub>) was found significantly superior all over rest of treatments and Treatment T<sub>7 </sub>and T<sub>8</sub> was at par with T<sub>12. </sub>Treatment T
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Dissertations / Theses on the topic "Integrated nutrient management"

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Zougmoré, Robert B. "Integrated water and nutrient management for sorghum production in semi-arid Burkina Faso /." Wageningen : Wageningen University and Research Centre, 2003. http://www.loc.gov/catdir/toc/fy0702/2006432558.html.

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Jakrawatana, Napat Civil &amp Environmental Engineering Faculty of Engineering UNSW. "An integrated decision support tool for more sustainable management of biomass resources in agricultural regions." Awarded By:University of New South Wales. Civil & Environmental Engineering, 2009. http://handle.unsw.edu.au/1959.4/44547.

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Agriculture currently faces a number of environmental sustainability issues. Three key issues that are the focus of this study are greenhouse gas emissions, depletion of mineral phosphorus resources and cadmium contamination in agricultural soil. Biomass can potentially be used as a renewable energy source and can also be returned to improve the nutrient and drainage structure of agricultural soils. Sustainable management of biomass and agriculture can have significant impacts on reducing greenhouse gas emissions from a region. Moreover, it reduces the demand for external energy supply, phosph
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Mai, Huong. "Nutrient Dynamics in an Integrated Prawn (Penaeus latisulcatus Kishouye 1896) and Macroalgae (Sargassum sp.) culture system." Thesis, Curtin University, 2009. http://hdl.handle.net/20.500.11937/321.

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Rapid global expansion of the aquaculture industry has prompted the need for development of techniques for effective environmental management. In intensive aquaculture, effluents have resulted in environmental degradation of surrounding ecosystems. As a result, wastewater treatment techniques using biological means is growing worldwide. The present research was conducted to investigate the nutrient flows in a system where seaweed Sargassum sp. was integrated into western king prawn (Penaeus latisulcatus) culture.Three laboratory experiments were conducted to determine the nutrient load dischar
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Wang, Lei. "Developing an integrated catchment-scale modelling approach for supporting the sustainable management of water nutrient pollution from diffuse agricultural sources." Thesis, Cardiff University, 2008. http://orca.cf.ac.uk/54893/.

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Water is one of our most vital natural resources for life sustaining and human's economic development and social well-being. Agricultural diffuse water pollution (ADWP), the biggest remaining problem of water pollution in the world, has been realised as a major threat for water quality and the implementation of the EU Water Framework Directive (WFD). Indicative estimates of the costs of water pollution from ADWP are about &pound;225 M per year in the UK, whilst failure to meet the requirements of the EU WFD by 2015 may incur heavy fines. From the technical and scientific points of view, there
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Cornejo, Pablo K. "Environmental Sustainability of Wastewater Treatment Plants Integrated with Resource Recovery: The Impact of Context and Scale." Scholar Commons, 2015. http://scholarcommons.usf.edu/etd/5669.

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There is an urgent need for wastewater treatment plants (WWTPs) to adapt to a rise in water and energy demands, prolonged periods of drought, climate variability, and resource scarcity. As population increases, minimizing the carbon and energy footprints of wastewater treatment, while properly managing nutrients is crucial to improving the sustainability WWTPs. Integrated resource recovery can mitigate the environmental impact of wastewater treatment systems; however, the mitigation potential depends on various factors such as treatment technology, resource recovery strategy, and system size.
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Martinsson, Erik, Emil Martinsson, and Sören Säf. "IWESS, an integrated water, energy and sanitation solution : A holistic approach to reach sustainability trough organic waste management for the Lake Victoria Basin, Kenya." Thesis, University of Skövde, School of Technology and Society, 2008. http://urn.kb.se/resolve?urn=urn:nbn:se:his:diva-566.

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<p>The process of allocating necessary resources like clean water, fuel/energy and food have resulted in an unsustainable use of natural resources causing problems with Soil erosion, soil fertility, desertification, deforestation, eutrophication and global warming. The purpose of this study was to gain information on the functional design of a waste management system enabling the organic components of domestic waste to be processed as useful resources while at the same time allow them to be re-circulated. The main part of this study was carried out at the Kendu SDA Hospital in the Rachyonyo di
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Faria, Obede Borges. "Utilização de macrófitas aquáticas na produção de adobe: um estudo de caso no reservatório de Salto Grande (Americana - SP)." Universidade de São Paulo, 2002. http://www.teses.usp.br/teses/disponiveis/18/18139/tde-10022003-103821/.

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Este trabalho busca otimizar a utilização de biomassa de macrófitas aquáticas na produção de adobe (tijolos de terra crua, secos ao sol), baseado na determinação e estudo de suas características físicas e mecânicas, assim como nas características físicas e químicas destas plantas. A pesquisa foi desenvolvida no reservatório de Salto Grande, no município de Americana - SP. Este lago está localizado em uma área com déficit de habitações de interesse social, apresentando altos índices de urbanização e industrialização, o que acarreta no seu avançado processo de eutrofização artificial, decorrente
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Slawinski, Karl Ryan. "The effect of integrated management practices on crop and soil nutrient dynamics." 2010. http://hdl.handle.net/1993/29798.

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NAPOLI, MARCO. "Integrated management of soil and water resources in hilly environments: evaluation and adaptation of SWAT model routines." Doctoral thesis, 2014. http://hdl.handle.net/2158/858494.

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Grosshans, Richard. "Cattail (Typha spp.) biomass harvesting for nutrient capture and sustainable bioenergy for integrated watershed management." 2014. http://hdl.handle.net/1993/23564.

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High levels of phosphorus loading in Lake Winnipeg, Manitoba, Canada are causing eutrophication and algal blooms of increasing intensity and frequency. Phosphorus is also a strategic and limited natural resource critical for plant growth, and essential for agriculture and global food security. This research study demonstrated an innovative environmental engineering approach to address multiple sustainable development challenges. Cattail (Typha spp.), a large competitive emergent aquatic plant, was harvested to capture and remove nutrients that would otherwise cause eutrophication in aquatic sy
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Books on the topic "Integrated nutrient management"

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Workshop on Integrated Nutrient Management (2000 Coimbatore, India). Theme papers on integrated nutrient management. Tamil Nadu Agricultural University & Tamil Nadu Dept. of Agriculture, 2000.

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Whalen, Joann K. Soil fertility improvement and integrated nutrient management: A global perspective. InTech, 2012.

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A, Haque M., S. Noor, and N. C. Shil. Integrated nutrient management for sustaining crop yield and soil fertility. Edited by Bangladesh Agricultural Research Institute. Division of Soil Science. Soil Science Division, Bangladesh Agricultural Research Institute, 2012.

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Microbiology, Indian Agricultural Research Institute) Summer School (1998 Division of. Soil-plant-microbe interaction in relation to integrated nutrient management. Division of Microbiology, Indian Agricultural Research Institute, 1998.

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Mahajan, Anil, and R. D. Gupta, eds. Integrated Nutrient Management (INM) in a Sustainable Rice—Wheat Cropping System. Springer Netherlands, 2009. http://dx.doi.org/10.1007/978-1-4020-9875-8.

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Mahajan, Anil. Integrated nutrient management (INM) in a sustainable rice-wheat cropping system. Springer, 2009.

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1944-, Roy R. N., and Food and Agriculture Organization of the United Nations., eds. Plant nutrition for food security: A guide for integrated nutrient management. Food and Agriculture Organization of the United Nations, 2006.

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Vanlauwe, B., J. Diels, N. Sanginga, and R. Merckx, eds. Integrated plant nutrient management in sub-Saharan Africa: from concept to practice. CABI, 2001. http://dx.doi.org/10.1079/9780851995762.0000.

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Zougmoré, Robert B. Integrated water and nutrient management for sorghum production in semi-arid Burkina Faso. Wageningen University and Research Centre, 2003.

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Esilaba and International Center for Tropical Agriculture., eds. Integrated nutrient management in Iganga district, Uganda: Diagnosis by participatory learning and action research. CIAT, 2001.

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Book chapters on the topic "Integrated nutrient management"

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Reddy, P. Parvatha. "Integrated Nutrient Management." In Sustainable Intensification of Crop Production. Springer Singapore, 2016. http://dx.doi.org/10.1007/978-981-10-2702-4_13.

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Abbas, Zafar, Arvind Kumar, and Anoop Kumar. "Integrated Nutrient Management." In Peanut Agriculture and Production Technology. Apple Academic Press, 2018. http://dx.doi.org/10.1201/9781315166872-2.

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Nair, Kodoth Prabhakaran. "Integrated Plant Nutrient Management." In Intelligent Soil Management for Sustainable Agriculture. Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-15530-8_28.

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Srivastava, Anoop Kumar. "Integrated Nutrient Management in Citrus." In Advances in Citrus Nutrition. Springer Netherlands, 2012. http://dx.doi.org/10.1007/978-94-007-4171-3_25.

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Reddy, P. Parvatha. "Integrated Nutrient Management: Balanced Fertilization." In Hi-Tech Farming for Enhancing Horticulture Productivity. CRC Press, 2023. http://dx.doi.org/10.1201/9781032690568-6.

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Sharanappa. "Integrated Nutrient Management in Cropping Systems." In Soil Fertility and Nutrient Management. CRC Press, 2022. http://dx.doi.org/10.1201/9781003364955-12.

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Soni, M. L., N. D. Yadava, Birbal, and V. Subbulakshmi. "Nutrient Management in Arid Fruit Crops." In Horticulture Based Integrated Farming Systems. CRC Press, 2021. http://dx.doi.org/10.1201/9781003245810-28.

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Mitra, Sisir. "Plant nutrition and irrigation." In Guava: botany, production and uses. CABI, 2021. http://dx.doi.org/10.1079/9781789247022.0007.

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Abstract This chapter focuses on plant nutrition and irrigation in guava production. Information is given on soil, salinity, nutrient uptake, role of nutrients, fertilizer rate and time of application, foliar application, integrated nutrient management, tissue analysis, organic production, water management, and fertigation.
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Pintar, Marina, Boris Kompare, Matej Uršič, et al. "The Impact of Land Use on Nutrient Concentration in Upper Streams of Waters in Slovenia." In Integrated Watershed Management. Springer Netherlands, 2010. http://dx.doi.org/10.1007/978-90-481-3769-5_16.

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Malam, K. V., V. R. Malam, and D. R. Kanzaria. "Integrated Nutrient Management for Hi-tech Horticulture." In Hi-Tech Horticulture. CRC Press, 2023. http://dx.doi.org/10.1201/9781032690612-13.

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Conference papers on the topic "Integrated nutrient management"

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C, Mithra, Showkat A. Dar, and Preethi A. "Artificial Intelligence and Machine Learning Algorithms to Analyse Integrated Nutrient Management Strategies for Optimal Yield and Quality of Oilseeds Crops for Sustainable Development." In 2024 4th International Conference on Soft Computing for Security Applications (ICSCSA). IEEE, 2024. https://doi.org/10.1109/icscsa64454.2024.00026.

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Rieck-Hinz, Angela, Paul Miller, Wayne Gieselman, and Chris Murray. "Nutrient Management Planning in Iowa." In Proceedings of the 13th Annual Integrated Crop Management Conference. Iowa State University, Digital Press, 2001. http://dx.doi.org/10.31274/icm-180809-705.

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Kyveryga, Peter, Pat Reeg, Tristan Mueller, and Chris Anderson. "Incorporating risk into 4R nutrient management decisions." In Proceedings of the 24th Annual Integrated Crop Management Conference. Iowa State University, Digital Press, 2014. http://dx.doi.org/10.31274/icm-180809-159.

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Liebman, Matt, Tim Youngquist, Ken Moore, and Jill Euken. "Nutrient management PLUS with perennial grass STRIPS." In Proceedings of the 24th Annual Integrated Crop Management Conference. Iowa State University, Digital Press, 2014. http://dx.doi.org/10.31274/icm-180809-163.

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Fixen, Paul E. "4R nutrient stewardship—are we there yet?" In Proceedings of the 21st Annual Integrated Crop Management Conference. Iowa State University, Digital Press, 2010. http://dx.doi.org/10.31274/icm-180809-48.

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Helmers, Matthew J. "Nutrient reduction strategy: One farm, many practices." In Proceedings of the 24th Annual Integrated Crop Management Conference. Iowa State University, Digital Press, 2013. http://dx.doi.org/10.31274/icm-180809-130.

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Lawrence, John, Shawn Richmond, and Dean Lemke. "Measuring progress on the Nutrient Reduction Strategy." In Proceedings of the 28th Annual Integrated Crop Management Conference. Iowa State University, Digital Press, 2016. http://dx.doi.org/10.31274/icm-180809-226.

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"Reducing nutrient loss: Science shows what works." In Proceedings of the 28th Annual Integrated Crop Management Conference. Iowa State University, Digital Press, 2016. http://dx.doi.org/10.31274/icm-180809-228.

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Ambildhuke, Geeta Mahadeo, and Barnali Gupta Banik. "Fog based Integrated Nutrient Management System for Macronutrients Recommendation." In 2022 IEEE Fourth International Conference on Advances in Electronics, Computers and Communications (ICAECC). IEEE, 2022. http://dx.doi.org/10.1109/icaecc54045.2022.9716639.

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Sawyer, John E., and Antonio P. Mallarino. "Nutrient considerations with corn silage and stover harvest." In Proceedings of the 24th Annual Integrated Crop Management Conference. Iowa State University, Digital Press, 2012. http://dx.doi.org/10.31274/icm-180809-101.

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Reports on the topic "Integrated nutrient management"

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Katan, Jaacov, and Michael E. Stanghellini. Clinical (Major) and Subclinical (Minor) Root-Infecting Pathogens in Plant Growth Substrates, and Integrated Strategies for their Control. United States Department of Agriculture, 1993. http://dx.doi.org/10.32747/1993.7568089.bard.

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In intensive agriculture, harmful soilborne biotic agents, cause severe damage. These include both typical soilborne (clinical) major pathogens which destroy plants (e.g. Fusarium and Phytophthora pathogens), and subclinical ("minor") pathogens (e.g. Olpidium and Pythium). The latter cause growth retardation and yield decline. The objectives of this study were: (1) To study the behavior of clinical (major) and subclinical (minor) pathogens in plant growth substrate, with emphasis on zoosporic fungi, such as Pythium, Olipidium and Polymyxa. (2) To study the interaction between subclinical patho
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