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Titlebook: Coconut Biotechnology: Towards the Sustainability of the ‘Tree of Life’; Steve Adkins,Mike Foale,Julianne Biddle Book 2020 Springer Nature

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楼主: hedonist
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Hayretdin Bahşi,Olaf Manuel Maennelhe development of linkage maps and the identification of quantitative trait loci (QTL) in coconut. The research using molecular markers has been used, and will be further useful, in formulating and refining the further collection and conservation of coconut germplasm, the management of genebanks, id
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Edgar Alonso Lopez-Rojas,Stefan Axelssont proteome and of its regulation, allowing to identify key genes involved in the metabolism of the endosperm and in somatic embryogenesis. Several research teams undertook its sequencing, and two draft sequences have been published. This large genome was recently assembled into 16 pseudomolecules by
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Sandra König,Stefan Schauer,Stefan Rassof various coconut tissues and explants gives promising results in embryo rescue, somatic embryogenesis, and doubled haploid production. Molecular marker technology has been applied to describe the genetic diversity of conserved accessions and to genome mapping for marker-assisted selection. The coc
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Biology, Ecology, and Evolution of Coconut,and roots emerge through the husk. At first the shoot produces a tiny frond followed by those of increasing size every 6 weeks, reducing to 4 weeks over time. There is a sequential increase in frond length up to a maximum around 5 years when flowering begins. The frond survives for 2 years so that t
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In Situ and Ex Situ Conservation of Coconut Genetic Resources,onservation comprises all coconut germplasm currently maintained as living trees in field genebanks, screen houses, and elsewhere beyond their host agroecosystems. Ex situ conservation includes in vitro conservation, as well as cryopreservation of pollen, embryos, and embryogenic callus. This chapte
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