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首页> 外文期刊>Biotechnology Advances: An International Review Journal >Role of biotechnological interventions in the improvement of castor (Ricinus communis L.) and Jatropha curcas L.
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Role of biotechnological interventions in the improvement of castor (Ricinus communis L.) and Jatropha curcas L.

机译:生物技术干预在改善蓖麻(Ricinus communis L.)和麻疯树(Jatropha curcas L.)中的作用。

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Castor and Jatropha belong to the Euphorbiaceae family. This review highlights the role of biotechnological tools in the genetic improvement of castor and jatropha. Castor is monotypic and breeding programmes have mostly relied on the variability available in the primary gene pool. The major constraints limiting profitable cultivation are: vulnerability to insect pests and diseases, and the press cake is toxic which restrict its use as cattle feed. Conventional breeding techniques have limited scope in improvement of resistance to biotic stresses and in quality improvement owing to low genetic variability for these traits. Genetic diversity was assessed using protein based markers while use of molecular markers is at infancy. In vitro studies in castor have been successful in shoot proliferation from meristematic explants, but not callus-mediated regeneration. Genetic transformation experiments have been initiated for development of insect resistant and ricin-free transgenics with very low transformation frequency. In tropical and subtropical countries jatropha is viewed as a potential biofuel crop. The limitations in available germplasm include; lack of knowledge of the genetic base, poor yields, low genetic diversity and vulnerability to a wide array of insects and diseases. Great scope exists for genetic improvement through conventional methods, induced mutations, interspecific hybridization and genetic transformation. Reliable and highly efficient tissue culture protocols for direct and callus-mediated shoot regeneration and somatic embryogenesis are established for jatropha which indicates potential for widening the genetic base through biotechnological tools. Assessment of genetic diversity using molecular markers disclosed low interaccessional variability in local Jatropha curcas germplasm. The current status and future prospects of in vitro regeneration, genetic transformation and the role of molecular tools in the genetic enhancement of the two-oilseed crops are discussed.
机译:蓖麻和麻风树属于大戟科。这篇综述强调了生物技术工具在蓖麻和麻疯树的遗传改良中的作用。蓖麻是单型的,育种程序主要依赖于初级基因库中的可变性。限制有利可图的种植的主要限制因素是:对虫害和疾病的脆弱性,以及压滤饼有毒,这限制了其用作牛饲料。由于这些特性的低遗传变异性,传统育种技术在提高对生物胁迫的抗性和提高质量方面的范围有限。遗传多样性是使用蛋白质标记物评估的,而分子标记物的使用尚处于婴儿期。蓖麻的体外研究已成功地从分生外植体中繁殖出芽,但未形成愈伤组织介导的再生。已经开始了遗传转化实验,以开发具有极低转化频率的抗虫,无蓖麻毒蛋白的转基因。在热带和亚热带国家,麻风树被认为是一种潜在的生物燃料作物。现有种质的限制包括;缺乏遗传基础知识,产量低,遗传多样性低以及对多种昆虫和疾病的脆弱性。通过常规方法,诱导突变,种间杂交和遗传转化进行遗传改良的空间很大。建立了用于麻疯树的直接和愈伤组织介导的芽再生和体细胞胚发生的可靠且高效的组织培养方案,这表明通过生物技术工具扩大遗传基础的潜力。使用分子标记评估遗传多样性揭示了当地麻风树种质的低互变异性。讨论了体外再生,遗传转化以及分子工具在两种油料作物遗传改良中的作用及其现状。

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