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The main objective of the“Adapting Agriculture to Climate Change” project is to collect and protect the genetic diversity of a portfolio of plants with the characteristics required for adapting the world's most important food crops to climate change. The initiative also aims to make available thi...


Dempewolf, HannesEastwood, Ruth J.Guarino, LuigiKhoury, Colin K.Muller, JVToll, Jane[Adapting agriculture to climate change: a global initiative to collect, conserve, and use crop wild relatives]Adapting agriculture to climate change: a global initiative to collect, conserve, and use crop wild relatives
Wang, W.Feng, BXiao, ZZhou, XLi, PZhang, WWang, Y.Lindberg Møller, BZhang, P.Luo, MXiao, GLiu, JYang, JChen, S.Rabinowicz, PDChen, X.Zhang, HBCeballos, H.Lou, QZou, MCarvalho, LJCBZeng, CXia, J.Sun, SFu, YWang, H.Lu, CRuan, MZhou, S.Wu, ZLiu, HKannangara, RMJørgensen, KNeale, RLBonde, MHeinz, NZhu, WWang, S.Zhang, Y.Pan, KWen, MMa, PLi, ZHu, MLiao, WHu, WZhang, S.Pei, JGuo, AGuo, JZhang, JZhang, Z.Ye, JOu, WMa, YLiu, XTallon, LJGalens, KOtt, SHuang, JXue, JAn, FYao, QLu, XFregene, Martin A.Becerra López Lavelle, Luis AugustoWu, J.You, FMChen, M.Hu, SWu, G.Zhong, SLing, PChen, Y.Wang, Q.Liu, GLiu, BLi, KPeng, M[Cassava genome from a wild ancestor to cultivated varieties]Cassava genome from a wild ancestor to cultivated varieties
Namayanja, ARTukamuhabwa, PhinehasOpio, F.Ugen, Michael AdroguKimani, P.M.Babirye, A.Kitinda, XKabayi, PTakusewanya, R[Selection for low soil fertility bean lines tolerant to root rot [CD-ROM]]Selection for low soil fertility bean lines tolerant to root rot [CD-ROM]
Rao, Idupulapati M.Friesen, Dennis K.Horst, Walter J.[Opportunities for germplasm selection to influence phosphorus acquisition from low-phosphorus soils]Opportunities for germplasm selection to influence phosphorus acquisition from low-phosphorus soils
Rao, Idupulapati M.Zeigler, Robert S.Vera, Raúl R.Sarkarung, Surapong[Selection and breeding for acid-soil tolerance in crops: Upland rice and tropical forages as case studies]Selection and breeding for acid-soil tolerance in crops: Upland rice and tropical forages as case studies
Ambachew, DanielMekbib, FirewAsfaw, A.Beebe, Stephen E.Blair, Matthew W.[Trait associations in common bean genotypes grown under drought stress and field infestation by BSM bean fly]Trait associations in common bean genotypes grown under drought stress and field infestation by BSM bean fly
Guimaraes, Elcio PerpétuoDebouck, Daniel G.Beebe, Stephen E.Pompilio Martínez, CésarHershey, Clair H.Ceballos, H.[Pre-breeding : an alternative to add value to the plant genetic resources]Pre-breeding : an alternative to add value to the plant genetic resources

A permanent mapping population of rice consisting of 65 non-idealized chromosome segment substitution lines (denoted as CSSL1 to CSSL65) and 82 donor parent chromosome segments (denoted as M1 to M82) was used to identify QTL with additive effects for two rice quality traits, area of chalky endosp...


Wang, J.K.Wan, XLi, HPfeiffer, Wolfgang H.Crouch, J.H.Wan, J[Application of identified QTL-marker associations in rice quality improvement through a design-breeding approach]Application of identified QTL-marker associations in rice quality improvement through a design-breeding approach

Bean (Phaseolus vulgaris L.) productivity is much constrained by water deficits in many production areas in eastern and southern Africa. The DSSAT 3 Drybean model was used to analyze the effects of water deficits on bean using genetic coefficients of four cultivars including an early, determinate...


Wortmann, Charles S.[An adaptation breeding strategy for water deficit in bean developed with the application of DSSAT3 drybean model]An adaptation breeding strategy for water deficit in bean developed with the application of DSSAT3 drybean model

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