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首页> 外文期刊>Frontiers in Marine Science >Cultivar Development of Kelps for Commercial Cultivation—Past Lessons and Future Prospects
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Cultivar Development of Kelps for Commercial Cultivation—Past Lessons and Future Prospects

机译:新培养的培养和未来前景的科尔斯栽培品种发展

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摘要

Cultivated kelps and other macroalgae have great potential in future provision of food, feed, bioenergy, fertilizer and raw material for a range of chemical products including pharmaceuticals, food and feed additives, and cosmetics. Only a few species are currently cultivated, almost exclusively in Asia. There is a range of species that could be utilized in different parts of the world, providing that protocols for reproduction, propagation and cultivation are developed. Domestication of species involves selection of traits that are desirable in cultivation and in the utilization of the harvested biomass. Genetic improvement of cultivated species through recombination of alleles and selection (breeding) has ensured high productivity and product quality in both agri- and aquaculture and will likely do so for macroalgae cultivation and use as well. According to the published literature, genetic improvement of kelps in Asia has so far largely relied on utilization of heterosis expressed in certain combinations of parental material, sometimes species hybrids. Here, we explore and evaluate the various methods that could be used in kelp breeding and propose an initial simple and low-cost breeding strategy based on recurrent mixed hybridization and phenotypic selection within local populations. We also discuss the genetic diversity in wild populations, and how this diversity can be protected against genetic pollution, either by breeding and cultivating local populations, or by developing cultivars that are not able to establish in, or hybridize with, wild populations.
机译:栽培的海带和其他大型宏观物在未来提供食物,饲料,生物能源,肥料和原料的一系列化工产品,包括药品,食品和饲料添加剂和化妆品的巨大潜力。目前只有几种物种,几乎完全在亚洲。存在一系列物种可在世界的不同地区使用,提供繁殖,传播和培养方案的协议。物种的驯化涉及选择种植中所需的特性和在收获的生物质的利用中的选择。通过成额和选择(育种)重组培养物种的遗传改善确保了Agri-and Aquaculture的高生产率和产品质量,并且可能为大理石培养和使用也可能会这样做。根据公布的文献,到目前为止,亚洲内科尔斯的遗传改善主要依赖于在亲本材料的某些组合中表达的杂种优势的利用,有时是物种杂种。在这里,我们探索并评估可用于海藻育种的各种方法,并提出基于局部群体内复发混合杂交和表型选择的初始简单和低成本的育种策略。我们还讨论了野生群体的遗传多样性,以及如何通过育种和培养当地种群来保护这种多样性免受遗传污染,或者通过制定无法建立或与野生种群杂交或杂交的品种来保护。

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