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Biotechnological approaches for the genetic improvement of Jatropha curcas L.: A biodiesel plant

机译:麻疯树遗传改良的生物技术方法:一种生物柴油植物

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摘要

Ever increasing demand for energy sources and reduction of non-renewable fossil fuel reserves have lead to exploration of alternative and renewable energy sources. Due to wide distribution, agronomic suitability, and desirable oil properties, J. curcas has been identified as a renewable and alternative energy source of biodiesel. Large scale commercial cultivation of this crop would not only be environmentally friendly and be worthwhile in carbon sequestration but also in decreasing the energy supply pressures. Wide adaptation across geographic regions, short gestation period compared to most tree species, rapid growth, hardiness, optimum plant size, and easy propagation in combination make this species suitable for large scale cultivation on barren lands. The limited information of the genetics and inheritance of desirable traits, unpredictable and low yields, the limited diversity and susceptibility to diseases and insects are however, key limitations in fruitful farming of J. curcas. In this review, an effort is made to project the current biotechnology and molecular biology tools employed in the direction of, evaluating the genetic diversity and phylogeny revelation of Jatropha spp., identification of genetic markers for desirable traits, development of efficient micropropagation and regeneration system, and genetic transformation methods for J. curcas. (C) 2015 Elsevier B.V. All rights reserved.
机译:对能源的不断增长的需求和不可再生的化石燃料储备的减少,导致了对替代能源和可再生能源的探索。由于分布广泛,农艺适应性和理想的油性,麻疯树已被确定为生物柴油的可再生和替代能源。这种作物的大规模商业种植不仅对环境友好,在固碳方面值得,而且在降低能源供应压力方面也值得。跨地理区域的广泛适应性,与大多数树种相比,孕期短,生长快,坚韧,最佳植物大小以及易于繁殖的组合,使得该树种适合在荒芜土地上进行大规模种植。然而,关于遗传学和所需性状遗传的信息有限,不可预测和低产,对疾病和昆虫的有限多样性和易感性,是麻疯树卓有成效的农业生产的主要限制。在这篇综述中,我们致力于研究当前使用的生物技术和分子生物学工具,以指导麻疯树的遗传多样性和系统发育揭示,鉴定理想性状的遗传标记,开发有效的微繁和再生系统等方向。和麻疯树的遗传转化方法。 (C)2015 Elsevier B.V.保留所有权利。

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