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	dc:title "HTML Summary of #11288 \n\nA Guide to Accelerated Breeding Cycle in Chickpea to Enhance Rate of Gain\n\n";
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	bibo:abstract "Speed breeding is time saving based approach and is among\r\ngenetic improvement enhancers approach through genetic\r\nrecombination and fast generation reconstitution in plant\r\nbreeding. Genetic gain acceleration enables combating the\r\ngap between demand and supply. Dagnachew et al., (2016),\r\nhave reported a positive yield and seed quality gain over the\r\nfour decades of Ethiopian chickpea research improvement\r\nendeavor. Increasing the number of generations per unit of\r\ntime (over a given period) improves the overall efficiency in\r\nthe delivery rate of defined variety or product/s. Amy et al.,\r\n(2018) have reported that under controlled environment of\r\ngrowth chamber, speed breeding approach achieved up to 6\r\ngenerations per year for spring wheat (Triticum aestivum),\r\ndurum wheat (T. durum), barley (Hordeum vulgare), chickpea\r\n(Cicer arietinum) and pea (Pisum sativum), and 4 generations\r\nfor canola (Brassica napus), instead of 2–3 under normal\r\nglasshouse conditions.Under uncontrolled open field condition Asnake et al\r\n(unpublished) has reported 4 generations per year in\r\nchickpea, with possible further potential. It was also noted\r\nthat the approach can easily be adopted, integrated with\r\nother conventional and/or advanced breeding approaches\r\nlike molecular breeding. This manual tries to elaborate the\r\napproaches /which is flexible/ in chickpea speed breeding\r\nwith the goal to achieve multiple generations per year\r\nwithout losing breeding values (the useful attributes of the\r\nproducts). Single Seed Decent (SSD) Technique is preferred\r\napproach along the speeding generation to be made in the\r\ncourse."^^xsd:string;
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