生物能源植物的功能基因组学及相关专利活动。

Shu-Ye Jiang, Srinivasan Ramachandran
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引用次数: 2

摘要

随着化石石油资源的减少和许多发展中国家由于全球化而增加的经济增长,以可持续的方式从生物能源等替代能源中获得能源是当前的需要。然而,生物能源的生产成本相对较高,因为生物能源植物的淀粉和糖含量较低,导致油的产量和质量降低,同时原料的转化效率也较低。在这种情况下,生物能源植物的遗传改良提供了一个可行的解决方案。本文综述了生物能源植物功能基因组学的研究现状及相关专利活动。目前,相当多的生物能源植物基因组已经完成或正在进行测序,并从中获得了大量的表达序列标签(EST)或cDNA序列。这些研究为更可靠的基因组注释提供了基础数据,并因此在全基因组水平上对多个基因组进行了注释。除此之外,各种诱变工具也被用于开发突变群体,以表征与生物能数量性状有关的基因。随着重要生物能源植物功能基因组学研究的进展,申请的专利越来越多,其中相当一部分专利集中在可能改善淀粉、糖和油等生物能源性状的基因和DNA序列上。我们还相信,这些研究将导致转基因植物的产生,提高对各种非生物和生物胁迫的耐受性。
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Functional genomics of bio-energy plants and related patent activities.

With dwindling fossil oil resources and increased economic growth of many developing countries due to globalization, energy driven from an alternative source such as bio-energy in a sustainable fashion is the need of the hour. However, production of energy from biological source is relatively expensive due to low starch and sugar contents of bioenergy plants leading to lower oil yield and reduced quality along with lower conversion efficiency of feedstock. In this context genetic improvement of bio-energy plants offers a viable solution. In this manuscript, we reviewed the current status of functional genomics studies and related patent activities in bio-energy plants. Currently, genomes of considerable bio-energy plants have been sequenced or are in progress and also large amount of expression sequence tags (EST) or cDNA sequences are available from them. These studies provide fundamental data for more reliable genome annotation and as a result, several genomes have been annotated in a genome-wide level. In addition to this effort, various mutagenesis tools have also been employed to develop mutant populations for characterization of genes that are involved in bioenergy quantitative traits. With the progress made on functional genomics of important bio-energy plants, more patents were filed with a significant number of them focusing on genes and DNA sequences which may involve in improvement of bio-energy traits including higher yield and quality of starch, sugar and oil. We also believe that these studies will lead to the generation of genetically altered plants with improved tolerance to various abiotic and biotic stresses.

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