Two high-BNI (biological nitrification inhibition) elite lines available for next users

CIMMYT and JIRCAS demonstrated feasibility of enhancing BNI capacity in elite wheats by transferring a chromosome arm 3NsbS controlling BNI traits from wild grass as a wheat L. racemosus translocation chromosome (T3BL.3NsbS). Enhanced BNI release from root systems of T3BL.3NsbS resulted in suppressi...

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Detalles Bibliográficos
Autor principal: CGIAR Research Program on Wheat
Formato: Informe técnico
Lenguaje:Inglés
Publicado: 2021
Materias:
Acceso en línea:https://hdl.handle.net/10568/122627
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author CGIAR Research Program on Wheat
author_browse CGIAR Research Program on Wheat
author_facet CGIAR Research Program on Wheat
author_sort CGIAR Research Program on Wheat
collection Repository of Agricultural Research Outputs (CGSpace)
description CIMMYT and JIRCAS demonstrated feasibility of enhancing BNI capacity in elite wheats by transferring a chromosome arm 3NsbS controlling BNI traits from wild grass as a wheat L. racemosus translocation chromosome (T3BL.3NsbS). Enhanced BNI release from root systems of T3BL.3NsbS resulted in suppression of soil nitrifier activity.
format Informe técnico
id CGSpace122627
institution CGIAR Consortium
language Inglés
publishDate 2021
publishDateRange 2021
publishDateSort 2021
record_format dspace
spelling CGSpace1226272023-03-14T12:19:51Z Two high-BNI (biological nitrification inhibition) elite lines available for next users CGIAR Research Program on Wheat soil development rural development wheat wheats chromosomes systems nitrification agrifood systems root systems translocation inhibition CIMMYT and JIRCAS demonstrated feasibility of enhancing BNI capacity in elite wheats by transferring a chromosome arm 3NsbS controlling BNI traits from wild grass as a wheat L. racemosus translocation chromosome (T3BL.3NsbS). Enhanced BNI release from root systems of T3BL.3NsbS resulted in suppression of soil nitrifier activity. 2021-12-31 2022-10-06T14:03:10Z 2022-10-06T14:03:10Z Report https://hdl.handle.net/10568/122627 en Open Access application/pdf CGIAR Research Program on Wheat. 2021. Two high-BNI (biological nitrification inhibition) elite lines available for next users. Reported in Wheat Annual Report 2021. Innovations.
spellingShingle soil
development
rural development
wheat
wheats
chromosomes
systems
nitrification
agrifood systems
root systems
translocation
inhibition
CGIAR Research Program on Wheat
Two high-BNI (biological nitrification inhibition) elite lines available for next users
title Two high-BNI (biological nitrification inhibition) elite lines available for next users
title_full Two high-BNI (biological nitrification inhibition) elite lines available for next users
title_fullStr Two high-BNI (biological nitrification inhibition) elite lines available for next users
title_full_unstemmed Two high-BNI (biological nitrification inhibition) elite lines available for next users
title_short Two high-BNI (biological nitrification inhibition) elite lines available for next users
title_sort two high bni biological nitrification inhibition elite lines available for next users
topic soil
development
rural development
wheat
wheats
chromosomes
systems
nitrification
agrifood systems
root systems
translocation
inhibition
url https://hdl.handle.net/10568/122627
work_keys_str_mv AT cgiarresearchprogramonwheat twohighbnibiologicalnitrificationinhibitionelitelinesavailablefornextusers