A pandemic clonal lineage of the wheat blast fungus

Author:

Latorre Sergio M.ORCID,Were Vincent M.ORCID,Foster Andrew J.ORCID,Langner ThorstenORCID,Malmgren AngusORCID,Harant AdelineORCID,Asuke SoichiroORCID,Reyes-Avila SaraiORCID,Gupta Dipali Rani,Jensen CassandraORCID,Ma WeibinORCID,Mahmud Nur UddinORCID,Mehebub Md. ShåbabORCID,Mulenga Rabson M.,Muzahid Abu Naim Md.ORCID,Paul Sanjoy KumarORCID,Rabby S. M. FajleORCID,Raha Abdullah Al MahbubORCID,Ryder LaurenORCID,Shrestha Ram-KrishnaORCID,Sichilima Suwilanji,Soanes Darren M.ORCID,Singh Pawan Kumar,Bentley Alison R.ORCID,Saunders Diane G. O.,Tosa YukioORCID,Croll DanielORCID,Lamour Kurt HORCID,Islam TofazzalORCID,Tembo Batiseba,Win JoeORCID,Talbot Nicholas J.ORCID,Burbano Hernán A.ORCID,Kamoun SophienORCID

Abstract

ABSTRACTWheat, the most important food crop, is threatened by a blast disease pandemic. Here, we show that a clonal lineage of the wheat blast fungus recently spread to Asia and Africa following two independent introductions from South America. Through a combination of genome analyses and laboratory experiments, we show that the decade-old blast pandemic lineage can be controlled by the Rmg8 disease resistance gene and is sensitive to strobilurin fungicides. However, we also highlight the potential of the pandemic clone to evolve fungicide-insensitive variants and sexually recombine with African lineages. This underscores the urgent need for genomic surveillance to track and mitigate the spread of wheat blast outside of South America, and to guide pre-emptive wheat breeding for blast resistance.

Publisher

Cold Spring Harbor Laboratory

Reference71 articles.

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