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过氧化物酶4参与拟南芥中紫丁香基木质素的形成。

Peroxidase 4 is involved in syringyl lignin formation in Arabidopsis thaliana.

作者信息

Fernández-Pérez Francisco, Vivar Tamara, Pomar Federico, Pedreño María A, Novo-Uzal Esther

机构信息

Department of Plant Biology, University of Murcia, Murcia 30100, Spain.

Deparment of Animal Biology, Plant Biology and Ecology, University of A Coruña, A Coruña 15071, Spain.

出版信息

J Plant Physiol. 2015 Mar 1;175:86-94. doi: 10.1016/j.jplph.2014.11.006. Epub 2014 Nov 29.

Abstract

Syringyl lignins result from the oxidative polymerization of sinapyl alcohol in a reaction mediated by syringyl (basic) peroxidases. Several peroxidases have been identified in the genome of Arabidopsis thaliana as close homologues to ZePrx, the best characterized basic peroxidase so far, but none of these has been directly involved in lignification. We have used a knock-out mutant of AtPrx4, the closest homologue to ZePrx, to study the involvement of this basic peroxidase in the physiology of the plant under both long- and short-day light conditions. Our results suggest that AtPrx4 is involved in cell wall lignification, especially in syringyl monomer formation. The disruption of AtPrx4 causes a decrease in syringyl units proportion, but only when light conditions are optimal. Moreover, the effect of AtPrx4 disruption is age-dependent, and it is only significant when the elongation process of the stem has ceased and lignification becomes active. In conclusion, AtPrx4 emerges as a basic peroxidase regulated by day length with an important role in lignification.

摘要

紫丁香基木质素是由松柏醇在紫丁香基(碱性)过氧化物酶介导的反应中氧化聚合而成。在拟南芥基因组中已鉴定出几种过氧化物酶,它们是迄今特征最明确的碱性过氧化物酶ZePrx的紧密同源物,但这些过氧化物酶均未直接参与木质化过程。我们利用与ZePrx最接近的同源物AtPrx4的敲除突变体,研究这种碱性过氧化物酶在长日照和短日照光照条件下对植物生理的影响。我们的结果表明,AtPrx4参与细胞壁木质化,特别是在紫丁香基单体的形成过程中。AtPrx4的缺失会导致紫丁香基单元比例降低,但仅在光照条件最佳时出现。此外,AtPrx4缺失的影响具有年龄依赖性,只有当茎的伸长过程停止且木质化开始活跃时才会显著。总之,AtPrx4是一种受日长调节的碱性过氧化物酶,在木质化过程中起重要作用。

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