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利用 CRISPR/Cas9 研究糙皮侧耳降解植物细胞壁木质素所必需的木质素修饰酶的实验证据。

Experimental evidence that lignin-modifying enzymes are essential for degrading plant cell wall lignin by Pleurotus ostreatus using CRISPR/Cas9.

机构信息

Graduate School of Agriculture, Kyoto University, Kyoto, Japan.

出版信息

Environ Microbiol. 2023 Oct;25(10):1909-1924. doi: 10.1111/1462-2920.16427. Epub 2023 May 22.

DOI:10.1111/1462-2920.16427
PMID:37218079
Abstract

Lignin-modifying enzymes (LMEs), which include laccases (Lacs), manganese peroxidases (MnPs), versatile peroxidases (VPs), and lignin peroxidases (LiPs), have been considered key factors in lignin degradation by white-rot fungi because they oxidize lignin model compounds and depolymerize synthetic lignin in vitro. However, it remains unclear whether these enzymes are essential/important in the actual degradation of natural lignin in plant cell walls. To address this long-standing issue, we examined the lignin-degrading abilities of multiple mnp/vp/lac mutants of Pleurotus ostreatus. One vp2/vp3/mnp3/mnp6 quadruple-gene mutant was generated from a monokaryotic wild-type strain PC9 using plasmid-based CRISPR/Cas9. Also, two vp2/vp3/mnp2/mnp3/mnp6, two vp2/vp3/mnp3/mnp6/lac2 quintuple-gene mutants, and two vp2/vp3/mnp2/mnp3/mnp6/lac2 sextuple-gene mutants were generated. The lignin-degrading abilities of the sextuple and vp2/vp3/mnp2/mnp3/mnp6 quintuple-gene mutants on the Beech wood sawdust medium reduced drastically, but not so much for those of the vp2/vp3/mnp3/mnp6/lac2 mutants and the quadruple mutant strain. The sextuple-gene mutants also barely degraded lignin in Japanese Cedar wood sawdust and milled rice straw. Thus, this study presented evidence that the LMEs, especially MnPs and VPs, play a crucial role in the degradation of natural lignin by P. ostreatus for the first time.

摘要

木质素修饰酶(LMEs),包括漆酶(Lacs)、锰过氧化物酶(MnPs)、多功能过氧化物酶(VPs)和木质素过氧化物酶(LiPs),被认为是白腐真菌降解木质素的关键因素,因为它们可以氧化木质素模型化合物并在体外解聚合成木质素。然而,这些酶在植物细胞壁中原木质素的实际降解中是否是必需/重要的,仍然不清楚。为了解决这个长期存在的问题,我们研究了多个糙皮侧耳 mnp/vp/lac 突变体的木质素降解能力。一个 vp2/vp3/mnp3/mnp6 四重基因突变体是通过基于质粒的 CRISPR/Cas9 从单核野生型菌株 PC9 中产生的。此外,还产生了两个 vp2/vp3/mnp2/mnp3/mnp6、两个 vp2/vp3/mnp3/mnp6/lac2 五重基因突变体和两个 vp2/vp3/mnp2/mnp3/mnp6/lac2 六重基因突变体。在山毛榉木屑培养基上,六重和 vp2/vp3/mnp2/mnp3/mnp6 五重基因突变体的木质素降解能力急剧下降,但 vp2/vp3/mnp3/mnp6/lac2 突变体和四重突变株的木质素降解能力下降并不明显。六重基因突变体在日本雪松木屑和碎米秸秆中也几乎不能降解木质素。因此,这项研究首次提供了证据,证明 LMEs,特别是 MnPs 和 VPs,在糙皮侧耳降解天然木质素中起关键作用。

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