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Strategies and priorities in field collections for ex situ conservation: the case of the Israel Plant Gene Bank

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Abstract

The ex situ collection of the Israel Plant Gene Bank (IGB) aims to encompass the rich local flora and its genetic diversity with an emphasis on crop wild relatives. However, to properly establish a core collection, collection efforts must be prioritized and strategized. We previously classified local plant genetic resources into four priority groups that assisted in strategizing the collection activities. The following years of intensive collection activity yielded over 4200 banked accessions. However, these do not necessarily represent the distribution range of the target species for collection (TSC) and consequently, their genetic diversity. To best cover the latter, the collecting area was divided into botanical districts and the magnitude of the collection was determined according to prioritization group, e.g., a wild relative of an agricultural crop with a vast distribution range should be represented by a larger number of banked accessions than one with a smaller range. Continuous evaluation of specific needs shapes the collection scheme of the IGB to maximize collection efforts, better represent the presumed genetic diversity of TSC, and establish its core collection.

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References

  • Arafeh RMH, Sapir Y, Shmida A, Iraki N, Fragman O, Comes HP (2002) Patterns of genetic and phenotypic variation in Iris haynei and I. atrofusca (Iris sect. Oncocyclus = the royal irises) along an ecogeographical gradient in Israel and the West Bank. Mol Ecol 11:39–53

    Article  CAS  PubMed  Google Scholar 

  • Aronson J, Kigel J, Shmida A, Klein J (1992) Adaptive phenology of desert and Mediterranean populations of annual plants grown with and without water-stress. Oecologia 89:17–26

    Article  Google Scholar 

  • Aronson J, Kigel J, Shmida A (1993) Reproductive allocation strategies in desert and Mediterranean populations of annual plants grown with and without water-stress. Oecologia 93:336–342

    Article  Google Scholar 

  • Barazani O, Fait A, Cohen Y, Diminshtein S, Ravid U, Putievsky E, Lewinsohn E, Friedman A (1999) Chemical variation among indigenous populations of Foeniculum vulgare var. vulgare in Israel. Planta Med 65:486–489

    Article  CAS  PubMed  Google Scholar 

  • Barazani O, Perevolotsky A, Hadas R (2008) A problem of the rich: prioritizing local plant genetic resources for ex situ conservation in Israel. Biol Conserv 141:596–600

    Article  Google Scholar 

  • Barazani O, Quaye M, Ohali S, Barzilai M, Kigel J (2012) Photo-thermal regulation of seed germination in natural populations of Eruca sativa Miller (Brassicaceae). J Arid Environ 85:93–96

    Article  Google Scholar 

  • Brehm JM, Maxted N, Martins-Loucao MA, Ford-Lloyd BV (2010) New approaches for establishing conservation priorities for socio-economically important plant species. Biodivers Conserv 19:2715–2740

    Article  Google Scholar 

  • Castaneda-Alvarez NP, Khoury CK, Achicanoy HA, Bernau V, Dempewolf H, Eastwood RJ, Guarino L, Harker RH, Jarvis A, Maxted N, Muller JV, Ramirez-Villegas J, Sosa CC, Struik PC, Vincent H, Toll J (2016) Global conservation priorities for crop wild relatives. Nat Plants 2:16022

    Article  PubMed  Google Scholar 

  • Feinbrun-Dothan N, Danin A (1998) Analytical Flora of Israel. CANA Publishing House Ltd., Jerusalem

    Google Scholar 

  • Fragman O, Plitmann U, Heeler D, Shmida A (1999) Checklist and ecological data-base of the flora of Israel and its surroundings, Department of Evolution, Systematics and Ecology, the Hebrew Hebrew University of Jerusalem, Israel

  • Galluzzi G, Halewood M, López Noriega I, Vernooy R (2016) Twenty-five years of international exchanges of plant genetic resources facilitated by the CGIAR genebanks: a case study on global interdependence. Biodivers Conserv 25:1421–1446

    Article  Google Scholar 

  • Gauthier P, Debussche M, Thompson JD (2010) Regional priority setting for rare species based on a method combining three criteria. Biol Conserv 143:1501–1509

    Article  Google Scholar 

  • Glaszmann JC, Kilian B, Upadhyaya HD, Varshney RK (2010) Accessing genetic diversity for crop improvement. Curr Opin Plant Biol 13:167–173

    Article  CAS  PubMed  Google Scholar 

  • Hammer K, Arrowsmith N, Gladis T (2003) Agrobiodiversity with emphasis on plant genetic resources. Naturwissenschaften 90:241–250

    Article  CAS  PubMed  Google Scholar 

  • Haussmann BIG, Parzies HK, Presterl T, Susic Z, Miedaner T (2004) Plant genetic resources in crop improvement. Plant Genetic Resources 2:3–21

    Article  Google Scholar 

  • Maxted N, Kell S (2009) Establishment of a global network for the in situ conservation of crop wild relatives: status and needs FAO Commission on Genetic Resources for Food and Agriculture, Rome, Italy

  • McCouch S, Baute GJ, Bradeen J, Bramel P, Bretting PK, Buckler E, Burke JM, Charest D, Cloutier S, Cole G, Dempewolf H, Dingkuhn M, Feuillet C, Gepts P, Grattapaglia D, Guarino L, Jackson S, Knapp S, Langridge P, Lawton-Rauh A, Lijua Q, Lusty C, Michael T, Myles S, Naito K, Nelson RL, Pontarollo R, Richards CM, Rieseberg L, Ross-Ibarra J, Rounsley S, Hamilton RS, Schurr U, Stein N, Tomooka N, van der Knaap E, van Tassel D, Toll J, Valls J, Varshney RK, Ward J, Waugh R, Wenzl P, Zamir D (2013) Agriculture: feeding the future. Nature 499:23–24

    Article  CAS  PubMed  Google Scholar 

  • Nevo E, Zohary D, Brown AHD, Haber M (1979) Genetic diversity and environmental associations of wild barley, Hordeum spontaneum, in Israel. Evolution 33:815–833

    Article  CAS  Google Scholar 

  • Nissim Y, Jinggui F, Arik S, Neta P, Uri L, Avner C (2004) Phenotypic and genotypic analysis of a commercial cultivar and wild populations of Anemone coronaria. Euphytica 136:51–62

    Article  CAS  Google Scholar 

  • Peleg Z, Fahima T, Abbo S, Krugman T, Nevo E, Yakir D, Saranga Y (2005) Genetic diversity for drought resistance in wild emmer wheat and its ecogeographical associations. Plant Cell Environ 28:176–191

    Article  Google Scholar 

  • Peleg Z, Saranga Y, Krugman T, Abbo S, Nevo E, Fahima T (2008) Allelic diversity associated with aridity gradient in wild emmer wheat populations. Plant Cell Environ 31:39–49

    PubMed  Google Scholar 

  • Tanksley SD, McCouch SR (1997) Seed banks and molecular maps: unlocking genetic potential from the wild. Science 277:1063–1066

    Article  CAS  PubMed  Google Scholar 

  • Volis S, Mendlinger S, Turuspekov Y, Esnazarov U (2002a) Phenotypic and allozyme variation in Mediterranean and desert populations of wild barley, Hordeum spontaneum Koch. Evolution 56:1403–1415

    Article  CAS  PubMed  Google Scholar 

  • Volis S, Mendlinger S, Ward D (2002b) Differentiation along a gradient of environmental productivity and predictability in populations of Hordeum spontaneum Koch: multilevel selection analysis. Biol J Linn Soc 75:313–318

    Article  Google Scholar 

  • Westberg E, Ohali S, Shevelevich A, Fine P, Barazani O (2013) Environmental effects on molecular and phenotypic variation in populations of Eruca sativa across a steep climatic gradient. Ecol Evol 3:2471–2484

    Article  PubMed  PubMed Central  Google Scholar 

  • Zohary D (1983) Wild genetic resources of crops in Israel. Israel J Bot 32:97–127

    Google Scholar 

  • Zohary D, Hopf M (1994) Domestication of plants in the old world. Claredon Press, Oxford

    Google Scholar 

Download references

Acknowledgements

Special thanks are due to the IGB field collectors—Yair Ur, Ran Lotan, Ofra Fridman, Dafna Carmeli, Tal Levanony, Bosmat Segal—for their laborious collecting activity.

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Correspondence to Oz Barazani.

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Barazani, O., Mayzlish-Gati, E., Lifshitz, D. et al. Strategies and priorities in field collections for ex situ conservation: the case of the Israel Plant Gene Bank. Genet Resour Crop Evol 64, 1–5 (2017). https://doi.org/10.1007/s10722-016-0468-y

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