000 05068nab|a22012617a|4500
001 64533
003 MX-TxCIM
005 20250211115510.0
008 202101s2022||||xxk|||p|op||||00||0|eng|d
022 _a1087-0156
022 _a1546-1696 (Online)
024 8 _ahttps://doi.org/10.1038/s41587-021-01058-4
040 _aMX-TxCIM
041 _aeng
100 1 _aGaurav, K.
_924906
245 1 0 _aPopulation genomic analysis of Aegilops tauschii identifies targets for bread wheat improvement
260 _aUnited Kingdom :
_bNature Publishing Group,
_c2022.
500 _aPeer review
500 _aOpen Access
520 _aAegilops tauschii, the diploid wild progenitor of the D subgenome of bread wheat, is a reservoir of genetic diversity for improving bread wheat performance and environmental resilience. Here we sequenced 242 Ae. tauschii accessions and compared them to the wheat D subgenome to characterize genomic diversity. We found that a rare lineage of Ae. tauschii geographically restricted to present-day Georgia contributed to the wheat D subgenome in the independent hybridizations that gave rise to modern bread wheat. Through k-mer-based association mapping, we identified discrete genomic regions with candidate genes for disease and pest resistance and demonstrated their functional transfer into wheat by transgenesis and wide crossing, including the generation of a library of hexaploids incorporating diverse Ae. tauschii genomes. Exploiting the genomic diversity of the Ae. tauschii ancestral diploid genome permits rapid trait discovery and functional genetic validation in a hexaploid background amenable to breeding.
546 _aText in English
597 _aNutrition, health & food security
_bAccelerated Breeding
_cGenetic Innovation
_uhttps://hdl.handle.net/10568/126588
650 7 _aPopulation genetics
_2AGROVOC
_96161
650 7 _aAegilops
_2AGROVOC
_91000
650 7 _aPlant breeding
_gAGROVOC
_2
_91203
650 7 _aCrop improvement
_2AGROVOC
_91059
650 7 _aSoft wheat
_2AGROVOC
_91265
700 0 _aSanu Arora
_98708
700 1 _aSilva, P.
_92283
700 1 _aSánchez-Martín, J.
_924702
700 1 _aHorsnell, R.
_918370
700 0 _aLiangliang Gao
_99094
700 1 _aBrar, G.S.
_98243
700 1 _aWidrig, V.
_924907
700 1 _aRaupp, W.J.
_98706
700 0 _aNarinder Singh
_98704
700 0 _aShuangye Wu
_94710
700 0 _aSandip Kale
_97902
700 1 _aChinoy, C.
_924908
700 1 _aNicholson, P.
_924909
700 1 _aQuiroz-Chávez, J.
_924910
700 1 _aSimmonds, J.
_91420
700 1 _aHayta, S.
_922809
700 1 _aSmedley, M.A.
_924911
700 1 _aHarwood, W.
_922808
700 1 _aPearce, S.
_924912
700 1 _aGilbert, D.
_924913
700 0 _aNgonidzashe Kangara
_98079
700 1 _aGardener, C.
_924914
700 1 _aForner-Martínez, M.
_924915
700 0 _aJiaqian Liu
_924916
700 0 _aGuotai Yu
_924917
700 1 _aBoden, S.A.
_924918
700 1 _aPascucci, A.
_924919
700 1 _aGhosh, S.
_922807
700 1 _aHafeez, A.N.
_924920
700 1 _aO’Hara, T.
_924921
700 1 _aWaites, J.O.
_8001714540
_gGenetic Resources Program
_924922
700 1 _aCheema, J.
_924923
700 1 _aSteuernagel, B.
_911583
700 1 _aPatpour, M.
_91719
700 1 _aJustesen, A.F.
_91720
700 0 _aShuyu Liu
_98664
700 1 _aRudd, J.C.
_98660
700 1 _aAvni, R.
_924924
700 1 _aSharon, A.
_924925
700 1 _aSteiner, B.
_921261
700 1 _aKirana, R.P.
_924926
700 1 _aBuerstmayr, H.
_921263
700 1 _aMehrabi, A.A.
_924927
700 1 _aNasyrova, F.Y.
_924928
700 1 _aChayut, N.
_924929
700 1 _aMatny, O.
_924930
700 1 _aSteffenson, B.J.
_93286
700 1 _aSandhu, N.
_98752
700 0 _aChhuneja, P.
_97983
700 1 _aLagudah, E.S.
_91697
700 1 _aElkot, A.F.
_924931
700 1 _aTyrrell, S.
_924932
700 0 _aXingdong Bian
_924933
700 1 _aDavey, R. P.
_95924
700 1 _aSimonsen, M.
_924934
700 1 _aSchauser, L.
_924935
700 1 _aTiwari, V.K.
_924296
700 1 _aKutcher, H.R.
_97979
700 1 _aHucl, P.J.
_917426
700 0 _aAili Li
_98613
700 0 _aDengcai Liu
_98614
700 0 _aLong Mao
_94205
700 1 _aXu, S.
_93069
700 1 _aBrown-Guedira, G.
_96014
700 1 _aFaris, J.
_93083
700 1 _aDvorak, J.
_916465
700 0 _aMing-Cheng Luo
_916464
700 1 _aKrasileva, K.
_917404
700 1 _aLux, T.
_917359
700 1 _aArtmeier, S.
_924936
700 1 _aMayer, K.F.X.
_917431
700 1 _aUauy, C.
_99600
700 1 _aMascher, M.
_92390
700 1 _aBentley, A.R.
_8001712492
_gFormerly Global Wheat Program
_99599
700 1 _aKeller, B.
_91680
700 1 _aPoland, J.A.
_92092
700 1 _aWulff, B.B.H
_97863
773 0 _tNature Biotechnology
_dUnited Kingdom : Nature Publishing Group, 2022.
_x1087-0156
_gv. 40, no. 3, p. 422-431
856 4 _yOpen Access through DSpace
_uhttps://hdl.handle.net/10883/21731
942 _cJA
_n0
_2ddc
999 _c64533
_d64525