dc.creatorIslam Saiful
dc.creatorTimsina, J.
dc.creatorMuhammad Salim
dc.creatorMajumdar, K.
dc.creatorGathala, M.K.
dc.date2018-09-20T18:16:56Z
dc.date2018-09-20T18:16:56Z
dc.date2018
dc.date.accessioned2023-07-17T20:03:00Z
dc.date.available2023-07-17T20:03:00Z
dc.identifierhttps://hdl.handle.net/10883/19608
dc.identifier10.3390/agronomy8070121
dc.identifier.urihttps://repositorioslatinoamericanos.uchile.cl/handle/2250/7511493
dc.descriptionIncreased nutrient withdrawal by rapidly expanding intensive cropping systems, in combination with imbalanced fertilization, is leading to potassium (K) depletion from agricultural soils in Asia. There is an urgent need to better understand the soil K-supplying capacity and K-use efficiency of crops to address this issue. Maize is increasingly being grown in rice-based systems in South Asia, particularly in Bangladesh and North East India. The high nutrient extraction, especially K, however, causes concerns for the sustainability of maize production systems in the region. The present study was designed to estimate, through a plant-based method, the magnitude, and variation in K-supplying capacity of a range of soils from the maize-growing areas and the K-use efficiency of maize in Bangladesh. Eighteen diverse soils were collected from several upazillas (or sub-districts) under 11 agro-ecological zones to examine their K-supplying capacity from the soil reserves and from K fertilization (100 mg K kg−1 soil) for successive seven maize crops grown up to V10–V12 in pots inside a net house. A validation field experiment was conducted with five levels of K (0, 40, 80, 120 and 160 kg ha−1) and two fertilizer recommendations based on “Nutrient Expert for Maize-NEM” and “Maize Crop Manager-MCM” decision support tools (DSSs) in 12 farmers’ fields in Rangpur, Rajshahi and Comilla districts in Bangladesh. Grain yield and yield attributes of maize responded significantly (p < 0.001) to K fertilizer, with grain yield increase from 18 to 79% over control in all locations. Total K uptake by plants not receiving K fertilizer, considered as potential K-supplying capacity of the soil in the pot experiment, followed the order: Modhukhali > Mithapukur > Rangpur Sadar > Dinajpur Sadar > Jhinaidah Sadar > Gangachara > Binerpota > Tarash > Gopalpur > Daudkandi > Paba > Modhupur > Nawabganj Sadar > Shibganj > Birganj > Godagari > Barura > Durgapur. Likewise, in the validation field experiment, the K-supplying capacity of soils was 83.5, 60.5 and 57.2 kg ha−1 in Rangpur, Rajshahi, and Comilla, respectively. Further, the order of K-supplying capacity for three sites was similar to the results from pot study confirming the applicability of results to other soils and maize-growing areas in Bangladesh and similar soils and areas across South Asia. Based on the results from pot and field experiments, we conclude that the site-specific K management using the fertilizer DSSs can be the better and more efficient K management strategy for maize.
dc.formatPDF
dc.languageEnglish
dc.publisherMDPI
dc.rightsCIMMYT manages Intellectual Assets as International Public Goods. The user is free to download, print, store and share this work. In case you want to translate or create any other derivative work and share or distribute such translation/derivative work, please contact CIMMYT-Knowledge-Center@cgiar.org indicating the work you want to use and the kind of use you intend; CIMMYT will contact you with the suitable license for that purpose.
dc.rightsOpen Access
dc.source7, art. 121
dc.source8
dc.sourceAgronomy
dc.subjectAGRICULTURAL SCIENCES AND BIOTECHNOLOGY
dc.subjectSite-Specific K Management
dc.subjectSoil K Supply
dc.subjectMaize Yield Response to K
dc.subjectMaize Crop Manager
dc.subjectNutrient Expert for Maize
dc.subjectPOTASSIUM
dc.subjectSOIL FERTILITY
dc.subjectMAIZE
dc.subjectYIELD FACTORS
dc.titlePotassium supplying capacity of diverse soils and K-use efficiency of maize in South Asia
dc.typeArticle
dc.coverageBANGLADESH
dc.coverageNORTH EAST INDIA
dc.coverageBasel, Switzerland


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