Reap the crop wild relatives for breeding future crops

被引:190
作者
Bohra, Abhishek [1 ]
Kilian, Benjamin [2 ]
Sivasankar, Shoba [3 ]
Caccamo, Mario [4 ]
Mba, Chikelu [5 ]
McCouch, Susan R. [6 ]
Varshney, Rajeev K. [7 ,8 ]
机构
[1] ICAR Indian Inst Pulses Res IIPR, Kanpur 208024, Uttar Pradesh, India
[2] Global Crop Div Trust, D-53113 Bonn, Germany
[3] Vienna Int Ctr, Int Atom Energy Agcy IAEA, A-1400 Vienna, Austria
[4] NIAB, Cambridge CB3 0LE, England
[5] Food & Agr Org United Nations FAO, I-00153 Rome, Italy
[6] Cornell Univ, Sch Integrat Plant Sci, Plant Breeding & Genet, Ithaca, NY 14850 USA
[7] Int Crops Res Inst Semi Arid Trop, Ctr Excellence Genom & Syst Biol, Hyderabad 502324, India
[8] Murdoch Univ, State Agr Biotechnol Ctr, Ctr Crop & Food Innovat, Murdoch, WA 6150, Australia
基金
英国生物技术与生命科学研究理事会;
关键词
BACKCROSS QTL ANALYSIS; WHEAT GENETIC-RESOURCES; QUANTITATIVE TRAIT LOCI; LATE BLIGHT-RESISTANCE; DE-NOVO DOMESTICATION; FOCUSED IDENTIFICATION; GENOME ARCHITECTURE; DISEASE-RESISTANCE; EXOTIC GERMPLASM; DRAFT GENOME;
D O I
10.1016/j.tibtech.2021.08.009
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Crop wild relatives (CWRs) have provided breeders with several 'game-changing' traits or genes that have boosted crop resilience and global agricultural production. Advances in breeding and genomics have accelerated the identification of valuable CWRs for use in crop improvement. The enhanced genetic diversity of breeding pools carrying optimum combinations of favorable alleles for targeted crop-growing regions is crucial to sustain genetic gain. In parallel, growing sequence information on wild genomes in combination with precise gene-editing tools provide a fast-track route to transform CWRs into ideal future crops. Data-informed germplasm collection and management strategies together with adequate policy support will be equally important to improve access to CWRs and their sustainable use to meet food and nutrition security targets.
引用
收藏
页码:412 / 431
页数:20
相关论文
共 124 条
[1]   Plant domestication versus crop evolution: a conceptual framework for cereals and grain legumes [J].
Abbo, Shahal ;
van-Oss, Ruth Pinhasi ;
Gopher, Avi ;
Saranga, Yehoshua ;
Ofner, Rai ;
Peleg, Zvi .
TRENDS IN PLANT SCIENCE, 2014, 19 (06) :351-360
[2]   Optimized breeding strategies to harness genetic resources with different performance levels [J].
Allier, Antoine ;
Teyssedre, Simon ;
Lehermeier, Christina ;
Moreau, Laurence ;
Charcosset, Alain .
BMC GENOMICS, 2020, 21 (01) :1DUMM
[3]   Resistance gene cloning from a wild crop relative by sequence capture and association genetics [J].
Arora, Sanu ;
Steuernagel, Burkhard ;
Gaurav, Kumar ;
Chandramohan, Sutha ;
Long, Yunming ;
Matny, Oadi ;
Johnson, Ryan ;
Enk, Jacob ;
Periyannan, Sambasivam ;
Singh, Narinder ;
Hatta, M. Asyraf Md ;
Athiyannan, Naveenkumar ;
Cheema, Jitender ;
Yu, Guotai ;
Kangara, Ngonidzashe ;
Ghosh, Sreya ;
Szabo, Les J. ;
Poland, Jesse ;
Bariana, Harbans ;
Jones, Jonathan D. G. ;
Bentley, Alison R. ;
Ayliffe, Mick ;
Olson, Eric ;
Xu, Steven S. ;
Steffenson, Brian J. ;
Lagudah, Evans ;
Wulff, Brande B. H. .
NATURE BIOTECHNOLOGY, 2019, 37 (02) :139-+
[4]   Wild emmer genome architecture and diversity elucidate wheat evolution and domestication [J].
Avni, Raz ;
Nave, Moran ;
Barad, Omer ;
Baruch, Kobi ;
Twardziok, Sven O. ;
Gundlach, Heidrun ;
Hale, Iago ;
Mascher, Martin ;
Spannagl, Manuel ;
Wiebe, Krystalee ;
Jordan, Katherine W. ;
Golan, Guy ;
Deek, Jasline ;
Ben-Zvi, Batsheva ;
Ben-Zvi, Gil ;
Himmelbach, Axel ;
MacLachlan, Ron P. ;
Sharpe, Andrew G. ;
Fritz, Allan ;
Ben-David, Roi ;
Budak, Hikmet ;
Fahima, Tzion ;
Korol, Abraham ;
Faris, Justin D. ;
Hernandez, Alvaro ;
Mikel, Mark A. ;
Levy, Avraham A. ;
Steffenson, Brian ;
Maccaferri, Marco ;
Tuberosa, Roberto ;
Cattivelli, Luigi ;
Faccioli, Primetta ;
Ceriotti, Aldo ;
Kashkush, Khalil ;
Pourkheirandish, Mohammad ;
Komatsuda, Takao ;
Eilam, Tamar ;
Sela, Hanan ;
Sharon, Amir ;
Ohad, Nir ;
Chamovitz, Daniel A. ;
Mayer, Klaus F. X. ;
Stein, Nils ;
Ronen, Gil ;
Peleg, Zvi ;
Pozniak, Curtis J. ;
Akhunov, Eduard D. ;
Distelfeld, Assaf .
SCIENCE, 2017, 357 (6346) :93-96
[5]   Development and use of chromosome segment substitution lines as a genetic resource for crop improvement [J].
Balakrishnan, Divya ;
Surapaneni, Malathi ;
Mesapogu, Sukumar ;
Neelamraju, Sarla .
THEORETICAL AND APPLIED GENETICS, 2019, 132 (01) :1-25
[6]   Predicting resistance to stripe (yellow) rust (Puccinia striiformis) in wheat genetic resources using focused identification of germplasm strategy [J].
Bari, A. ;
Amri, A. ;
Street, K. ;
Mackay, M. ;
De Pauw, E. ;
Sanders, R. ;
Nazari, K. ;
Humeid, B. ;
Konopka, J. ;
Alo, F. .
JOURNAL OF AGRICULTURAL SCIENCE, 2014, 152 (06) :906-916
[7]   Focused identification of germplasm strategy (FIGS) detects wheat stem rust resistance linked to environmental variables [J].
Bari, Abdallah ;
Street, Kenneth ;
Mackay, Michael ;
Endresen, Dag Terje Filip ;
De Pauw, Eddy ;
Amri, Ahmed .
GENETIC RESOURCES AND CROP EVOLUTION, 2012, 59 (07) :1465-1481
[8]   Intraspecific variation of recombination rate in maize [J].
Bauer, Eva ;
Falque, Matthieu ;
Walter, Hildrun ;
Bauland, Cyril ;
Camisan, Christian ;
Campo, Laura ;
Meyer, Nina ;
Ranc, Nicolas ;
Rincent, Renaud ;
Schipprack, Wolfgang ;
Altmann, Thomas ;
Flament, Pascal ;
Melchinger, Albrecht E. ;
Menz, Monica ;
Moreno-Gonzalez, Jesus ;
Ouzunova, Milena ;
Revilla, Pedro ;
Charcosset, Alain ;
Martin, Olivier C. ;
Schoen, Chris-Carolin .
GENOME BIOLOGY, 2013, 14 (09)
[9]   Genomewide Selection for Rapid Introgression of Exotic Germplasm in Maize [J].
Bernardo, Rex .
CROP SCIENCE, 2009, 49 (02) :419-425
[10]   Unlocking wheat genetic resources for the molecular identification of previously undescribed functional alleles at the Pm3 resistance locus [J].
Bhullar, Navreet K. ;
Street, Kenneth ;
Mackay, Michael ;
Yahiaoui, Nabila ;
Keller, Beat .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2009, 106 (23) :9519-9524