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首页> 外文期刊>The Plant Cell >Disruption of LACCASE4 and 17 Results in Tissue-Specific Alterations to Lignification of Arabidopsis thaliana Stems
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Disruption of LACCASE4 and 17 Results in Tissue-Specific Alterations to Lignification of Arabidopsis thaliana Stems

机译:LACCASE4和17的破坏导致拟南芥茎组织木质化的组织特异性改变。

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Peroxidases have been shown to be involved in the polymerization of lignin precursors, but it remains unclear whether laccases (EC 1.10.3.2) participate in constitutive lignification. We addressed this issue by studying laccase T-DNA insertion mutants in Arabidopsis thaliana. We identified two genes, LAC4 and LAC17, which are strongly expressed in stems. LAC17 was mainly expressed in the interfascicular fibers, whereas LAC4 was expressed in vascular bundles and interfascicular fibers. We produced two double mutants by crossing the LAC17 (lac17) mutant with two LAC4 mutants (lac4-1 and lac4-2). The single and double mutants grew normally in greenhouse conditions. The single mutants had moderately low lignin levels, whereas the stems of lac4-1 lac17 and lac4-2 lac17 mutants had lignin contents that were 20 and 40% lower than those of the control, respectively. These lower lignin levels resulted in higher saccharification yields. Thioacidolysis revealed that disrupting LAC17 principally affected the deposition of G lignin units in the interfascicular fibers and that complementation of lac17 with LAC17 restored a normal lignin profile. This study provides evidence that both LAC4 and LAC17 contribute to the constitutive lignification of Arabidopsis stems and that LAC17 is involved in the deposition of G lignin units in fibers.
机译:已经证明过氧化物酶参与木质素前体的聚合,但是尚不清楚漆酶(EC 1.10.3.2)是否参与组成性木质化。我们通过研究拟南芥中漆酶T-DNA插入突变体解决了这个问题。我们鉴定了两个基因,LAC4和LAC17,在茎中强烈表达。 LAC17主要在束间纤维中表达,而LAC4在血管束和束间纤维中表达。我们通过将LAC17(lac17)突变体与两个LAC4突变体(lac4-1和lac4-2)杂交,产生了两个双重突变体。单突变体和双突变体在温室条件下正常生长。单个突变体的木质素水平中等偏低,而lac4-1 lac17和lac4-2 lac17突变体的茎中木质素含量分别比对照低20%和40%。这些较低的木质素水平导致较高的糖化产率。硫代酸解显示破坏LAC17主要影响束间纤维中G木质素单元的沉积,而lac17与LAC17的互补可恢复正常的木质素谱。这项研究提供了证据,LAC4和LAC17都对拟南芥茎的组成型木质化做出了贡献,并且LAC17参与了纤维中G木质素单元的沉积。

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