Genetic trends in CIMMYT’s tropical maize breeding pipelines

Author:

Prasanna Boddupalli M.ORCID,Burgueño JuanORCID,Beyene YosephORCID,Makumbi DanORCID,Asea GodfreyORCID,Woyengo VincentORCID,Tarekegne AmsalORCID,Magorokosho CosmosORCID,Wegary DagneORCID,Ndhlela ThokozileORCID,Zaman-Allah MainassaraORCID,Matova Prince M.ORCID,Mwansa Kabamba,Mashingaidze KingstoneORCID,Fato Pedro,Teklewold AdefrisORCID,Vivek B. S.ORCID,Zaidi P. H.ORCID,Vinayan M. T.ORCID,Patne NageshORCID,Rakshit SujayORCID,Kumar RameshORCID,Jat S. L.ORCID,Singh S. B.ORCID,Kuchanur Prakash H.ORCID,Lohithaswa H. C.ORCID,Singh N. K.ORCID,Koirala K. B.,Ahmed SalahuddinORCID,Vicente Felix SanORCID,Dhliwayo ThandaORCID,Cairns Jill E.ORCID

Abstract

AbstractFostering a culture of continuous improvement through regular monitoring of genetic trends in breeding pipelines is essential to improve efficiency and increase accountability. This is the first global study to estimate genetic trends across the International Maize and Wheat Improvement Center (CIMMYT) tropical maize breeding pipelines in eastern and southern Africa (ESA), South Asia, and Latin America over the past decade. Data from a total of 4152 advanced breeding trials and 34,813 entries, conducted at 1331 locations in 28 countries globally, were used for this study. Genetic trends for grain yield reached up to 138 kg ha−1 yr−1 in ESA, 118 kg ha−1 yr−1 South Asia and 143 kg ha−1 yr−1 in Latin America. Genetic trend was, in part, related to the extent of deployment of new breeding tools in each pipeline, strength of an extensive phenotyping network, and funding stability. Over the past decade, CIMMYT’s breeding pipelines have significantly evolved, incorporating new tools/technologies to increase selection accuracy and intensity, while reducing cycle time. The first pipeline, Eastern Africa Product Profile 1a (EA-PP1a), to implement marker-assisted forward-breeding for resistance to key diseases, coupled with rapid-cycle genomic selection for drought, recorded a genetic trend of 2.46% per year highlighting the potential for deploying new tools/technologies to increase genetic gain.

Funder

Bill and Melinda Gates Foundation

United States Agency for International Development

FFAR

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

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