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Stirling, Clare M.Hellin, J.Cairns, Jill E.Silverblatt-Buser ETefera TNgugi HGbegbelegbe, SikaTesfaye Fantaye, KindieChung, U.Sonder, KaiCox, R.A.Verhulst, NeleGovaerts, BramAlderman, Phillip D.Reynolds, Matthew P.[Shaping Sustainable Intensive Production Systems - Improved Crops and Cropping Systems in the Developing World]Shaping Sustainable Intensive Production Systems - Improved Crops and Cropping Systems in the Developing World
Reynolds, Matthew P.Quilligan, EmmaAggarwal, Pramod K.Bansal, Kailash C.Cavalieri, Anthony J.Chapman, Scott C.Chapotin, Saharah M.Datta, Swapan K.Duveiller, EtienneGill, Kulvinder S.Jagadish, Krishna S.V.Joshi, Arun K.Köhler, Ann-KristinKosina, PetrKrishnan, SrivalliLafitte, ReneeMahala, Rajendra S.Muthurajan, RaveendramPaterson, Andrew H.Parasanna, Boddupalli M.Rakshit, SujayRosengrat, Mark W.Sharma, InduSingh, Ravi P.Sivasankar, ShobaVadez, VincentValluru, RaviPrasad, P.V. VaraYadav, Om Prakash[An integrated approach to maintaining cereal productivity under climate change]An integrated approach to maintaining cereal productivity under climate change

The abstracts herein are of presentations by experts participating in the workshop “Modeling Wheat Response to High Temperature”. Sponsored by the CGIAR Research Program on Climate Change, Agriculture and Food Security (CCAFS) and in collaboration with the University of Florida, University of Bon...


Alderman, Phillip D.Quilligan, EmmaAsseng, SentholdEwert, FrankReynolds, Matthew P.[Proceedings of the Workshop Modeling Wheat Response to High Temperature held in El Batán, Mexico, 19-21 June 2013]Proceedings of the Workshop Modeling Wheat Response to High Temperature held in El Batán, Mexico, 19-21 June 2013

Molero Milan, AnabelReynolds, Matthew P.Asseng, SentholdKholová, JanaRamírez Villegas, JuliánKrupnik, Timothy J.Jones, Peter[CoP on Crop Modeling Mini-Grants Report 2018]CoP on Crop Modeling Mini-Grants Report 2018

Climate change is expected to impact global food supply and food security by affecting growing conditions for agricultural production. Process-based dynamic growth models are important tools to estimate crop yields based on minimum inputs of climate, soil, crop management, and crop cultivar param...


Gbegbelegbe, SikaCammarano, DavideAsseng, SentholdRobertson, R.Chung, U.Adam, M.Abdalla, O.Payne, T.Reynolds, Matthew P.Sonder, KaiShiferaw, B.Nelson, Gerald C.[Baseline simulation for global wheat production with CIMMYTmega-environment specific cultivars]Baseline simulation for global wheat production with CIMMYTmega-environment specific cultivars
Liu, BingAsseng, SentholdMüller, ChristophEwert, FrankElliott, JoshuaLobell, David B.Martre, PierreRuane, Alex C.Wallach, DanielJones, James W.Rosenzweig, CynthiaAggarwal, Pramod K.Alderman, Phillip D.Anothai, JakaratBasso, BrunoBiernath, ChristianCammarano, DavideChallinor, Andrew J.Deryng, DelphineSanctis, Giacomo deDoltra, JordiFereres, EliasFolberth, ChristianGarcía Vila, MargaritaGayler, SebastianHoogenboom, GerritHunt, Leslie A.Izaurralde, Roberto CésarJabloun, MohamedJones, Curtis D.Kersebaum, Kurt-ChristianKimball, Bruce A.Köhler, Ann-KristinKumar, Soora NareshNendel, ClaasO'Leary, Garry J.Olesen, J.E.Ottman, Michael J.Palosuo, TaruPrasad, P. V. VaraPriesack, EckartPugh, Thomas A. M.Reynolds, Matthew P.Rezaei, Ehsan EyshiRötter, Reimund P.Schmid, ErwinSemenov, Mikhail A.Shcherbak, IuriiStehfest, ElkeStöckle, Claudio O.Stratonovitch, PierreStreck, ThiloSupit, IwanTao, FuluThorburn, Peter J.Waha, KatharinaWall, Gerard W.Wang, EnliWhite, Jeffrey W.Wolf, JoostZhao, ZhiganZhu, Yan[Similar estimates of temperature impacts on global wheat yield by three independent methods]Similar estimates of temperature impacts on global wheat yield by three independent methods
Hernández Ochoa, Ixchel M.Asseng, SentholdKassie, Belay T.Xiong, WeiRobertson, RickyPequeno, Diego Notelo LuzSonder, KaiReynolds, Matthew P.Babar, Md AliMolero Milan, AnabelHoogenboom, Gerrit[Climate change impact on Mexico wheat production]Climate change impact on Mexico wheat production
Martre, PierreAsseng, SentholdEwert, FrankMüller, ChristophRötter, Reimund P.Ruane, Alex C.Semenov, Mikhail A.Wallach, DanielWang, EnliAlderman, Phillip D.Kassie, Belay T.Biernath, ChristianBasso, BrunoCammarano, DavideChallinor, Andrew J.Doltra, JordiDumont, BenjaminRezaei, Ehsan EyshiGayler, SebastianKersebaum, Kurt-ChristianKimball, Bruce A.Köhler, Ann-KristinLiu, BingO'Leary, Garry J.Olesen, J.E.Ottman, Michael J.Priesack, EckartReynolds, Matthew P.Stratonovitch, PierreStreck, ThiloThorburn, Peter J.Waha, KatharinaWall, Gerard W.White, Jeffrey W.Zhao, ZhiganZhu, Yan[Crop model improvement reduces the uncertainty of the response totemperature of multi-model ensembles]Crop model improvement reduces the uncertainty of the response totemperature of multi-model ensembles

Molero Milan, AnabelReynolds, Matthew P.Sonder, Kai[Plan for Sharing Crop Modeling expertise during 2019]Plan for Sharing Crop Modeling expertise during 2019

Agricultural production is under increasing pressure by global anthropogenic changes, including rising population, diversion of cereals to biofuels, increased protein demands and climatic extremes. Because of the immediate and dynamic nature of these changes, adaptation measures are urgently need...


Ziska, Lewis H.Bunce, James A.Shimono, HiroyukiGealy, David R.Baker, Jeffrey T.Newton, Paul C.D.Reynolds, Matthew P.Jagadish, Krishna S.V.Zhu, ChunwuHowden, MarkWilson, Lloyd T.[Food security and climate change: on the potential to adapt global crop production by active selection to rising atmospheric carbon dioxide]Food security and climate change: on the potential to adapt global crop production by active selection to rising atmospheric carbon dioxide

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