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Some theoretical and practical possibilities of plant genetic manipulation using protoplasts

机译:利用原生质体进行植物基因操作的一些理论和实践可能性

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摘要

Protoplasts capable of division and plant regeneration are now available for a large number of vegetable, oil and forage crops. However, routine hybrid production is not possible due to methodological limitations in selection and culture of hybrid cells. Recent improvement in techniques are the use of a double mutant as a universal hybridizer and the use of fluorescence activated cell sorter to recover hybrid cells. Interest is also centered on limited gene transfer by protoplast fusion. We propose a model of generating triploid plants by somatic cell fusion to transfer limited genomic information from an alien plant to a crop plant. Somatic hybridization has some novel features but, in practice and conception, it is an extension of the methods of sexual hybridization. By contrast, genetic transformation is a radically different approach to plant genetic manipulation. The success of this approach will depend upon how readily genotype can be related to phenotype in a tangible way so as to ascertain what biochemical and developmental activity is controlled or modulated by a DNA sequence.
机译:现在,能够分裂和再生植物的原生质体可用于许多蔬菜,油料和饲料作物。然而,由于在杂交细胞的选择和培养中的方法学限制,不可能进行常规的杂交生产。技术上的最新改进是使用双突变体作为通用杂交器,以及使用荧光激活的细胞分选仪回收杂交细胞。兴趣还集中于通过原生质体融合进行有限的基因转移。我们提出了一种通过体细胞融合产生三倍体植物的模型,以将有限的基因组信息从外来植物转移到农作物。体细胞杂交具有一些新颖的特征,但是在实践和概念上,它是性杂交方法的延伸。相比之下,遗传转化是植物遗传操作的根本不同方法。这种方法的成功将取决于基因型如何以切实的方式与表型相关,从而确定DNA序列控制或调节了哪些生化和发育活性。

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