CGIAR genebank viability data reveal inconsistencies in seed collection management

Global Food Security - Tập 30 - Trang 100557 - 2021
Fiona R. Hay1,2, Katherine J. Whitehouse3, Richard H. Ellis2, N. Ruaraidh Sackville Hamilton4, Charlotte Lusty5, Marie Noelle Ndjiondjop6, Daniel Tia6, Peter Wenzl7, Luis G. Santos7, Mariana Yazbek8, Vania C.R. Azevedo9, Ovais H. Peerzada9, Michael Abberton10, Olaniyi Oyatomi10, Flora de Guzman4, Grace Capilit4, Alice Muchugi11, Zakayo Kinyanjui11
1Department of Agroecology, Aarhus University, Forsøgsvej 1, 4200, Slagelse, Denmark
2School of Agriculture, Policy and Development, University of Reading, Earley Gate, PO Box 237, Reading, RG6 6EU, UK
3Australian Grains Genebank, Agriculture Victoria Research Division, Department of Jobs, Precincts and Regions, Private Bag 260, Horsham, Victoria, 3401, Australia
4T.T. Chang Genetic Resources Center, International Rice Research Institute (IRRI), Los Baños, Philippines
5Global Crop Diversity Trust, Platz Der Vereinten Nationen 7, 53113, Bonn, Germany
6Rice Biodiversity Center for Africa, Africa Rice Center (AfricaRice), 01 BP 2551, Bouaké, Cote d’Ivoire
7International Center for Tropical agriculture (CIAT), Km 17, Recta Cali–Palmira, CP 763537, Apartado Aéreo 6713, Cali, Colombia
8International Center for Agricultural Research in the Dry Areas (ICARDA), Dalia Bldg. 2nd Floor, Bashir El Kassar Street, Verdun Area, Beirut, Lebanon
9International Crops Research Institute for the Semi-Arid Tropics (ICRISAT), Patancheru, 502324, Telangana, India
10Genetic Resources Center, International Institute of Tropical Agriculture (IITA), PMB 5320, Oyo Road, Ibadan, 200001, Nigeria
11World Agroforestry, United Nations Avenue, Gigiri PO Box 30677, Nairobi, 00100, Kenya

Tài liệu tham khảo

Agacka, 2013, Viability of Nicotiana spp. seeds stored under ambient temperature, Seed Sci. Technol., 41, 474, 10.15258/sst.2013.41.3.15

Agacka, 2014, Longevity of Nicotiana seeds conserved at low temperatures in ex situ genebanks, Seed Sci. Technol., 42, 355, 10.15258/sst.2014.42.3.05

Colville, 2019, Seed life span and food security, New Phytol., 224, 557, 10.1111/nph.16006

Cromarty, 1982

Ellis, 1980, Improved equations for the prediction of seed longevity, Ann. Bot., 45, 13, 10.1093/oxfordjournals.aob.a085797

Ellis, 1985

Ellis, 1985

Ellis, 2018, Medium-term seed storage of 50 genera of forage legumes and evidence-based genebank monitoring intervals, Genet. Resour. Crop Evol., 65, 607, 10.1007/s10722-017-0558-5

Ellis, 2019, Medium-term seed storage of diverse genera of forage grasses, evidence-based genebank monitoring intervals, and regeneration standards, Genet. Resour. Crop Evol., 66, 723, 10.1007/s10722-019-00748-y

2010

2014

Fu, 2017, The vulnerability of plant genetic resources conserved ex situ, Crop Sci., 57, 2314, 10.2135/cropsci2017.01.0014

Griesbach, 2013

Hanson, 1984

Hay, 2017, Rethinking the approach to viability monitoring in seed genebanks, Conserv. Physiol., 5, cox009, 10.1093/conphys/cox009

Hay, 2013, Viability of Oryza sativa L. seeds stored under genebank conditions for up to 30 years, Genet. Resour. Crop Evol., 60, 275, 10.1007/s10722-012-9833-7

Hay, 2014, Modelling seed germination in response to continuous variables: use and limitations of probit analysis and alternative approaches, Seed Sci. Res., 24, 165, 10.1017/S096025851400021X

Hay, 2015, Viability monitoring intervals for genebank samples of Oryza sativa, Seed Sci. Technol., 43, 218, 10.15258/sst.2015.43.2.17

Hay, 2021, The international genebanks of the CGIAR and seed quality management, Seed Test. Int., 161, 10

1976

1982

1985

2021

James, 1972, Organisation of the United States national seed storage laboratory, 397

Jones, 2020, Effect of high temperature drying on seed longevity of Bambara groundnut (Vigna subterranea) accessions, Seed Sci. Technol., 48, 413, 10.15258/sst.2020.48.3.10

Kaplan, 1998, Conserving the world's plants, Agr. Res., 46, 4

Kloppenburg, 1988

Lee, 2013, Comparison of seed viability among 42 species stored in a genebank, Korean J. Crop Sci., 58, 432, 10.7740/kjcs.2013.58.4.432

Lee, 2019, Variation in seed longevity among diverse Indica rice varieties, Ann. Bot., 124, 447, 10.1093/aob/mcz093

Probert, 2007, Seed quality for conservation is critically affected by pre-storage factors, Aust. J. Bot., 55, 326, 10.1071/BT06046

Probert, 2009, Ecological correlates of ex situ seed longevity: a comparative study on 195 species, Ann. Bot., 104, 57, 10.1093/aob/mcp082

Sackville Hamilton, 1997

Salazar, 2020, Effect of dry heat on seed germination of Desmodium and Stylosanthes species, Seed Sci. Technol., 48, 419, 10.15258/sst.2020.48.3.11

Solberg, 2020, Long-term storage and longevity of orthodox seeds: a systematic review, Front. Plant Sci., 11, 1007, 10.3389/fpls.2020.01007

Vavilov, 1997

Walters, 2005, Longevity of seeds stored in a genebank: species characteristics, Seed Sci. Res., 15, 1, 10.1079/SSR2004195

Whitehouse, 2018, Improvement in rice seed storage longevity from high-temperature drying is a consistent positive function of harvest moisture content above a critical value, Seed Sci. Res., 28, 332, 10.1017/S0960258518000211

Whitehouse, 2020, Why seed physiology is important for genebanking, Plants, 9, 584, 10.3390/plants9050584

Yamasaki, 2020, Thirty-year monitoring and statistical analysis of 50 species' germinability in genebank medium-term storage suggest specific characteristics in seed longevity, Seed Sci. Technol., 48, 269, 10.15258/sst.2020.48.2.14