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植物功能基因组学的转基因视角。

A transgenic perspective on plant functional genomics.

作者信息

Pereira A

机构信息

Plant Research International, Wageningen, The Netherlands.

出版信息

Transgenic Res. 2000;9(4-5):245-260; discussion 243. doi: 10.1023/a:1008967916498.

Abstract

Transgenic crops are very much in the news due to the increasing public debate on their acceptance. In the scientific community though, transgenic plants are proving to be powerful tools to study various aspects of plant sciences. The emerging scientific revolution sparked by genomics based technologies is producing enormous amounts of DNA sequence information that, together with plant transformation methodology, is opening up new experimental opportunities for functional genomics analysis. An overview is provided here on the use of transgenic technology for the functional analysis of plant genes in model plants and a link made to their utilization in transgenic crops. In transgenic plants, insertional mutagenesis using heterologous maize transposons or Agrobacterium mediated T-DNA insertions, have been valuable tools for the identification and isolation of genes that display a mutant phenotype. To discover functions of genes that do not display phenotypes when mutated, insertion sequences have been engineered to monitor or change the expression pattern of adjacent genes. These gene detector insertions can detect adjacent promoters, enhancers or gene exons and precisely reflect the expression pattern of the tagged gene. Activation tag insertions can mis-express the adjacent gene and confer dominant phenotypes that help bridge the phenotype gap. Employment of various forms of gene silencing technology broadens the scope of recovering knockout phenotypes for genes with redundant function. All these transgenic strategies describing gene-phenotype relationships can be addressed by high throughput reverse genetics methods that will help provide functions to the genes discovered by genome sequencing. The gene functions discovered by insertional mutagenesis and silencing strategies along with expression pattern analysis will provide an integrated functional genomics perspective and offer unique applications in transgenic crops.

摘要

由于公众对转基因作物接受度的争论日益激烈,转基因作物成为新闻报道的焦点。然而,在科学界,转基因植物正被证明是研究植物科学各个方面的有力工具。基于基因组学的技术引发的新兴科学革命正在产生大量的DNA序列信息,这些信息与植物转化方法一起,为功能基因组学分析开辟了新的实验机会。本文概述了转基因技术在模式植物中用于植物基因功能分析的应用,并将其与在转基因作物中的应用建立联系。在转基因植物中,利用异源玉米转座子或农杆菌介导的T-DNA插入进行插入诱变,一直是鉴定和分离表现出突变表型的基因的宝贵工具。为了发现突变时不表现出表型的基因的功能,人们设计了插入序列来监测或改变相邻基因的表达模式。这些基因检测插入可以检测相邻的启动子、增强子或基因外显子,并精确反映被标记基因的表达模式。激活标签插入可以错误表达相邻基因并赋予显性表型,有助于弥合表型差距。采用各种形式的基因沉默技术拓宽了恢复具有冗余功能基因敲除表型的范围。所有这些描述基因-表型关系的转基因策略都可以通过高通量反向遗传学方法来解决,这些方法将有助于为通过基因组测序发现的基因提供功能。通过插入诱变和沉默策略以及表达模式分析发现的基因功能,将提供一个综合的功能基因组学视角,并在转基因作物中提供独特的应用。

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