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Status and prospects for improving yam seed systems using temporary immersion bioreactors

机译:利用临时浸没式生物反应器改善山药种子系统的现状和前景

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摘要

Yam production is constrained by scarcity of clean seed, pests, diseases and low soil fertility in the informal seed system, which is still operational, causing up to 90% yield losses. Although meristem culture can be effective for producing healthy seed yam, its use is limited by slow rate of regeneration and propagation in conventional tissue cultures. In most crops tested, temporary immersion bioreactor systems (TIBs) increased propagation rates. To determine the potential of TIBs in improving the yam seed system, 23 databases were consulted and three returned a total of eight publications with only 2 for Dioscorea rotundata-cayenensis. Both plantlets and microtubers can be produced in TIBs, which will facilitate production of quality breeder, foundation and certified seeds and fast-track genetic improvement and the evolution of a formal from informal seed production system. Control of contamination, direct use of field explants, culture of micro-explants like immature embryos and anthers, increasing the size of microtubers produced and standardization for various economically important yam genotypes are knowledge gaps that require immediate research attention. No report has put a cost on yam TIBs, but it will be necessary to use cost-effective TIBs to encourage integration public-private partnerships into emerging formal seed system.
机译:由于非正式种子系统仍在运行,清洁种子,病虫害,病害和土壤肥力低,限制了山药的生产,该系统仍在运行,导致高达90%的产量损失。尽管分生组织培养可以有效地生产健康的种子山药,但其使用受到常规组织培养中再生和繁殖速度缓慢的限制。在大多数经过测试的农作物中,临时浸没式生物反应器系统(TIB)可以提高繁殖率。为了确定TIB在改善山药种子系统中的潜力,查阅了23个数据库,其中3个返回了总共八份出版物,其中Dioscorea rotundata-cayenensis只有2份。 TIB可以生产小植株和微型块茎,这将促进优质育种者,基础种子和认证种子的生产,并促进快速遗传改良以及非正式种子生产系统的正式进化。控制污染,直接使用外植体,培养未成熟胚和花药等微外植体,增加微型薯的生产规模以及对各种具有重要经济意义的山药基因型进行标准化,都是需要立即进行研究的知识空白。没有报告为山药TIB带来成本,但是有必要使用具有成本效益的TIB来鼓励将公私伙伴关系纳入新兴的正式种子系统。

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