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用于主要木本水果品种遗传改良的新型生物技术工具。

New Biotechnological Tools for the Genetic Improvement of Major Woody Fruit Species.

作者信息

Limera Cecilia, Sabbadini Silvia, Sweet Jeremy B, Mezzetti Bruno

机构信息

Department of Agricultural, Food and Environmental Sciences, Università Politecnica delle MarcheAncona, Italy.

J. T. Environmental Consultants LtdCambridge, United Kingdom.

出版信息

Front Plant Sci. 2017 Aug 15;8:1418. doi: 10.3389/fpls.2017.01418. eCollection 2017.

Abstract

The improvement of woody fruit species by traditional plant breeding techniques has several limitations mainly caused by their high degree of heterozygosity, the length of their juvenile phase and auto-incompatibility. The development of new biotechnological tools (NBTs), such as RNA interference (RNAi), trans-grafting, cisgenesis/intragenesis, and genome editing tools, like zinc-finger and CRISPR/Cas9, has introduced the possibility of more precise and faster genetic modifications of plants. This aspect is of particular importance for the introduction or modification of specific traits in woody fruit species while maintaining unchanged general characteristics of a selected cultivar. Moreover, some of these new tools give the possibility to obtain transgene-free modified fruit tree genomes, which should increase consumer's acceptance. Over the decades biotechnological tools have undergone rapid development and there is a continuous addition of new and valuable techniques for plant breeders. This makes it possible to create desirable woody fruit varieties in a fast and more efficient way to meet the demand for sustainable agricultural productivity. Although, NBTs have a common goal i.e., precise, fast, and efficient crop improvement, individually they are markedly different in approach and characteristics from each other. In this review we describe in detail their mechanisms and applications for the improvement of fruit trees and consider the relationship between these biotechnological tools and the EU biosafety regulations applied to the plants and products obtained through these techniques.

摘要

利用传统植物育种技术改良木本水果品种存在若干限制,主要是由于其高度杂合性、幼年期较长以及自交不亲和性。新型生物技术工具(NBTs)的发展,如RNA干扰(RNAi)、转基因嫁接、顺式基因/基因内技术,以及基因组编辑工具,如锌指核酸酶和CRISPR/Cas9,为更精确、快速地对植物进行基因改造带来了可能。这对于在保持所选品种总体特征不变的情况下,在木本水果品种中引入或改良特定性状尤为重要。此外,其中一些新工具还能获得无转基因的改良果树基因组,这有望提高消费者的接受度。几十年来,生物技术工具发展迅速,不断有新的、有价值的技术加入到植物育种者的工具箱中。这使得以快速、高效的方式培育出理想的木本水果品种成为可能,以满足可持续农业生产力的需求。尽管NBTs有一个共同目标,即精确、快速、高效地改良作物,但它们在方法和特性上彼此明显不同。在这篇综述中,我们详细描述了它们改良果树的机制和应用,并考虑了这些生物技术工具与适用于通过这些技术获得的植物和产品的欧盟生物安全法规之间的关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6b58/5559511/272620ee1a1a/fpls-08-01418-g0001.jpg

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