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松树转录因子PpDof5在拟南芥中的过表达导致木质素含量增加,并影响碳和氮代谢。

The overexpression of the pine transcription factor PpDof5 in Arabidopsis leads to increased lignin content and affects carbon and nitrogen metabolism.

作者信息

Rueda-López Marina, Cañas Rafael A, Canales Javier, Cánovas Francisco M, Ávila Concepción

机构信息

Departamento de Biología Molecular y Bioquímica, Unidad Asociada UMA-CSIC, Campus Universitario de Teatinos, Universidad de Málaga, Málaga, Spain.

Instituto de Bioquímica y Microbiología, Facultad de Ciencias, Universidad Austral de Chile, Campus Isla Teja s/n, Chile.

出版信息

Physiol Plant. 2015 Dec;155(4):369-83. doi: 10.1111/ppl.12381. Epub 2015 Oct 7.

Abstract

PpDof 5 is a regulator of the expression of glutamine synthetase (GS; EC 6.3.1.2) genes in photosynthetic and non-photosynthetic tissues of maritime pine. We have used Arabidopsis thaliana as a model system to study PpDof 5 function in planta, generating transgenic lines overexpressing the pine transcription factor. The overexpression of PpDof 5 resulted in a substantial increase of lignin content with a simultaneous regulation of carbon and nitrogen key genes. In addition, partitioning in carbon and nitrogen compounds was spread via various secondary metabolic pathways. These results suggest pleiotropic effects of PpDof 5 expression on various metabolic pathways of carbon and nitrogen metabolism. Plants overexpressing PpDof 5 exhibited upregulation of genes encoding enzymes for sucrose and starch biosynthesis, with a parallel increase in the content of soluble sugars. When the plants were grown under nitrate as the sole nitrogen source, they exhibited a significant regulation of the expression of genes involved mainly in signaling, but similar growth rates to wild-type plants. However, plants grown under ammonium exhibited major induction of the expression of photosynthetic genes and differential expression of ammonium and nitrate transporters. All these data suggest that in addition to controlling ammonium assimilation, PpDof 5 could be also involved in the regulation of other pathways in carbon and nitrogen metabolism in pine trees.

摘要

PpDof 5是海岸松光合和非光合组织中谷氨酰胺合成酶(GS;EC 6.3.1.2)基因表达的调节因子。我们以拟南芥为模型系统来研究PpDof 5在植物中的功能,构建了过表达该松树转录因子的转基因株系。PpDof 5的过表达导致木质素含量大幅增加,同时对碳和氮关键基因进行调控。此外,碳和氮化合物的分配通过各种次生代谢途径展开。这些结果表明PpDof 5表达对碳和氮代谢的各种代谢途径具有多效性作用。过表达PpDof 5的植物表现出蔗糖和淀粉生物合成相关酶编码基因的上调,可溶性糖含量也相应增加。当植物在以硝酸盐作为唯一氮源的条件下生长时,它们主要表现出参与信号传导的基因表达受到显著调控,但生长速率与野生型植物相似。然而,在铵态氮条件下生长的植物表现出光合基因表达的主要诱导以及铵和硝酸盐转运蛋白的差异表达。所有这些数据表明,除了控制铵同化外,PpDof 5还可能参与松树碳和氮代谢中其他途径的调控。

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