Oil palm biotechnology: progress and prospects

A. Rival, J. Tregear, Estelle Jaligot, F. Morcillo, Frédérique Aberlenc, N. Billotte, F. Richaud, T. Beulé, A. Borgel, Yves Duval
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引用次数: 7

Abstract

Today, a range of biotechnological approaches, from somatic embryogenesis to biomolecular research, play an increasingly important role in breeding strategies for oil palm (Elaeis guineensis Jacq.). Clonal micropropagation. Methods of cloning by in vitro culture led to the development of a micropropagation technique for oil palm based on somatic embryogenesis which was tested at the pilot stage on elite genotypes, thus enabling the production of high oil yielding clones. This phase allowed the identification of limiting factors associated with scaling-up, with respect in particular to the scale of mass production required to meet the needs of planters and to the problem of ensuring genetic fidelity in the regenerated plant material. These two concerns led researchers to look further into the underlying physiological and/or molecular mechanisms involved in somatic embryogenesis and the somaclonal variation events induced by the in vitro cloning procedure. Structural and functional genomics. Marker-assisted breeding in oil palm is a long-term multi-stage project including: molecular analysis of genetic diversity in both E. guineensis and E. oleifera germplasms; large scale development of PCR-based microsatellite markers; and parallel development of three genome mapping and QTL detection projects studying key agronomic characters. Post-genomics. In order to tackle the problem of the mantled flowering abnormality, which is induced during the micropropagation process, studies of gene expression have been carried out in tissue cultures as a means of establishing an early clonal conformity testing procedure. It is important to assess what kind of methodology is the most appropriate for clonal conformity testing by comparing RNA, protein and DNA (PCR) based approaches. Parallel studies on genomic DNA methylation changes induced by tissue culture suggest that the latter may play an important role in the determination of the mantled abnormality.
油棕生物技术:进展与展望
今天,从体细胞胚胎发生到生物分子研究等一系列生物技术方法在油棕育种策略中发挥着越来越重要的作用。无性快繁技术。通过离体培养的克隆方法,油棕的体细胞胚发生微繁技术得到了发展,该技术已在中试阶段进行了优良基因型的试验,从而能够生产出高产量的无性系。这一阶段可以确定与扩大有关的限制因素,特别是在满足种植者需要所需的大规模生产规模和确保再生植物材料的遗传保真度问题方面。这两个问题促使研究人员进一步研究体细胞胚胎发生和体外克隆过程诱导的体细胞无性系变异事件的潜在生理和/或分子机制。结构和功能基因组学。油棕的标记辅助育种是一个长期的多阶段项目,包括:几内亚棕和油棕种质资源遗传多样性的分子分析;基于pcr的微卫星标记的大规模开发;并行开展三个基因组定位和QTL检测项目,研究关键农艺性状。之一。为了解决在繁殖过程中引起的包皮开花异常问题,在组织培养中进行了基因表达研究,作为建立早期克隆一致性测试程序的一种手段。通过比较基于RNA、蛋白质和DNA (PCR)的方法,评估哪种方法最适合克隆一致性测试是很重要的。对组织培养诱导的基因组DNA甲基化变化的平行研究表明,后者可能在确定覆盖异常中起重要作用。
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