Liang Mingxiang, Davis Elizabeth, Gardner Dale, Cai Xiaoning, Wu Yajun
Department of Plants, Soils and Biometeorology, Utah State University, 4820 Old Main Hill, Logan, UT 84322, USA.
Planta. 2006 Oct;224(5):1185-96. doi: 10.1007/s00425-006-0300-6. Epub 2006 Jun 9.
Laccase, EC 1.10.3.2 or p-diphenol:dioxygen oxidoreductase, has been proposed to be involved in lignin synthesis in plants based on its in vitro enzymatic activity and a close correlation with the lignification process in plants. Despite many years of research, genetic evidence for the role of laccase in lignin synthesis is still missing. By screening mutants available for the annotated laccase gene family in Arabidopsis, we identified two mutants for a single laccase gene, AtLAC15 (At5g48100) with a pale brown or yellow seed coat which resembled the transparent testa (tt) mutant phenotype. A chemical component analysis revealed that the mutant seeds had nearly a 30% decrease in extractable lignin content and a 59% increase in soluble proanthocyanidin or condensed tannin compared with wild-type seeds. In an in vitro enzyme assay, the developing mutant seeds showed a significant reduction in polymerization activity of coniferyl alcohol in the absence of H(2)O(2). Among the dimers formed in the in vitro assay using developing wild-type seeds, 23% of the linkages were beta-O-4 which resembles the major linkages formed in native lignin. The evidence strongly supports that AtLAC15 is involved in lignin synthesis in plants. To our knowledge, this is the first genetic evidence for the role of laccase in lignin synthesis. Changes in seed coat permeability, seed germination and root elongation were also observed in the mutant.
漆酶(EC 1.10.3.2或对二苯酚:双氧氧化还原酶),基于其体外酶活性以及与植物木质化过程的紧密相关性,被认为参与植物木质素的合成。尽管经过多年研究,但漆酶在木质素合成中作用的遗传学证据仍然缺失。通过筛选拟南芥中已注释的漆酶基因家族可用的突变体,我们鉴定出一个单一漆酶基因AtLAC15(At5g48100)的两个突变体,其种皮为浅棕色或黄色,类似于透明种皮(tt)突变体表型。化学成分分析表明,与野生型种子相比,突变体种子的可提取木质素含量降低了近30%,可溶性原花青素或缩合单宁增加了59%。在体外酶活性测定中,发育中的突变体种子在没有H(2)O(2)的情况下,松柏醇的聚合活性显著降低。在使用发育中的野生型种子进行的体外测定中形成的二聚体中,23%的连接是β-O-4,类似于天然木质素中形成的主要连接。这些证据有力地支持AtLAC15参与植物木质素的合成。据我们所知,这是漆酶在木质素合成中作用的首个遗传学证据。在突变体中还观察到种皮通透性、种子萌发和根伸长的变化。