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植物中花色苷和原花色素的代谢工程。

Metabolic engineering of anthocyanins and condensed tannins in plants.

机构信息

Plant Biology Division, Samuel Roberts Noble Foundation, 2510 Sam Noble Parkway, Ardmore, OK 73401, USA.

出版信息

Curr Opin Biotechnol. 2013 Apr;24(2):329-35. doi: 10.1016/j.copbio.2012.07.004. Epub 2012 Aug 14.

Abstract

Monomeric anthocyanins and polymeric proanthocyanidins (condensed tannins) contribute to important plant traits such as flower and fruit pigmentation, fruit astringency, disease resistance and forage quality. Recent advances in our understanding of the transcriptional control mechanisms that regulate anthocyanin and condensed tannin formation in plants suggest new approaches for the engineering of quality traits associated with these molecules. In particular, MYB family transcription factors are emerging as central players in the coordinated activation of sets of genes specific for the anthocyanin and tannin pathways. Mutations in these genes underlie potentially valuable crop traits, and ectopic over- or under-expression of MYB transcription factors provides routes for engineering of these complex pathways.

摘要

单体花色苷和聚合原花青素(缩合单宁)为植物的重要特征作出贡献,如花和果实的颜色、果实的涩味、抗病性和饲料质量。目前,我们对调控植物中花色苷和缩合单宁形成的转录控制机制的理解有了新的进展,这为与这些分子相关的品质特性的工程设计提供了新的方法。特别是,MYB 家族转录因子在协调激活特定于花色苷和单宁途径的基因集合方面表现出核心作用。这些基因的突变是潜在有价值的作物特征的基础,而 MYB 转录因子的异位过表达或低表达为这些复杂途径的工程设计提供了途径。

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