High throughput phenotyping methods allowing breeding of Brachiaria and Panicum grasses for the ability of Biological Nitrification Inhibition

Different phenotyping methods were developed and standardized to measure the phenomenon of Biological Nitrification Inhibition from a compregensive perspective (soil, roots, microbes) in tropical grasses, at first, the methods were developed for Brachiaria grasses but currently are being used for ot...

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Autor principal: CGIAR Research Program on Climate Change, Agriculture and Food Security
Formato: Informe técnico
Lenguaje:Inglés
Publicado: 2018
Materias:
Acceso en línea:https://hdl.handle.net/10568/123202
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author CGIAR Research Program on Climate Change, Agriculture and Food Security
author_browse CGIAR Research Program on Climate Change, Agriculture and Food Security
author_facet CGIAR Research Program on Climate Change, Agriculture and Food Security
author_sort CGIAR Research Program on Climate Change, Agriculture and Food Security
collection Repository of Agricultural Research Outputs (CGSpace)
description Different phenotyping methods were developed and standardized to measure the phenomenon of Biological Nitrification Inhibition from a compregensive perspective (soil, roots, microbes) in tropical grasses, at first, the methods were developed for Brachiaria grasses but currently are being used for other pastures such as Panicum and legumes.
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spelling CGSpace1232022023-03-14T12:19:05Z High throughput phenotyping methods allowing breeding of Brachiaria and Panicum grasses for the ability of Biological Nitrification Inhibition CGIAR Research Program on Climate Change, Agriculture and Food Security soil breeding brachiaria legumes development rural development roots methods pastures grasses panicum systems nitrification agrifood systems inhibition microbes measure Different phenotyping methods were developed and standardized to measure the phenomenon of Biological Nitrification Inhibition from a compregensive perspective (soil, roots, microbes) in tropical grasses, at first, the methods were developed for Brachiaria grasses but currently are being used for other pastures such as Panicum and legumes. 2018-12-31 2022-10-06T14:25:56Z 2022-10-06T14:25:56Z Report https://hdl.handle.net/10568/123202 en Open Access application/pdf CGIAR Research Program on Climate Change, Agriculture and Food Security. 2018. High throughput phenotyping methods allowing breeding of Brachiaria and Panicum grasses for the ability of Biological Nitrification Inhibition. Reported in Climate Change, Agriculture and Food Security Annual Report 2018. Innovations.
spellingShingle soil
breeding
brachiaria
legumes
development
rural development
roots
methods
pastures
grasses
panicum
systems
nitrification
agrifood systems
inhibition
microbes
measure
CGIAR Research Program on Climate Change, Agriculture and Food Security
High throughput phenotyping methods allowing breeding of Brachiaria and Panicum grasses for the ability of Biological Nitrification Inhibition
title High throughput phenotyping methods allowing breeding of Brachiaria and Panicum grasses for the ability of Biological Nitrification Inhibition
title_full High throughput phenotyping methods allowing breeding of Brachiaria and Panicum grasses for the ability of Biological Nitrification Inhibition
title_fullStr High throughput phenotyping methods allowing breeding of Brachiaria and Panicum grasses for the ability of Biological Nitrification Inhibition
title_full_unstemmed High throughput phenotyping methods allowing breeding of Brachiaria and Panicum grasses for the ability of Biological Nitrification Inhibition
title_short High throughput phenotyping methods allowing breeding of Brachiaria and Panicum grasses for the ability of Biological Nitrification Inhibition
title_sort high throughput phenotyping methods allowing breeding of brachiaria and panicum grasses for the ability of biological nitrification inhibition
topic soil
breeding
brachiaria
legumes
development
rural development
roots
methods
pastures
grasses
panicum
systems
nitrification
agrifood systems
inhibition
microbes
measure
url https://hdl.handle.net/10568/123202
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