Suppr超能文献

提取物的真菌降解在苏格兰松心材的褐腐衰变中起重要作用。

Fungal Degradation of Extractives Plays an Important Role in the Brown Rot Decay of Scots Pine Heartwood.

作者信息

Belt Tiina, Harju Anni, Kilpeläinen Petri, Venäläinen Martti

机构信息

Production Systems Unit, Biomass Characterization and Properties, Natural Resources Institute Finland, Espoo, Finland.

Production Systems Unit, Biomass Characterization and Properties, Natural Resources Institute Finland, Savonlinna, Finland.

出版信息

Front Plant Sci. 2022 May 12;13:912555. doi: 10.3389/fpls.2022.912555. eCollection 2022.

Abstract

Scots pine heartwood is known to have resistance to wood decay due to the presence of extractives, namely stilbenes and resin acids. However, previous studies have indicated that these extractives are degradable by wood decaying fungi. This study aimed to investigate the relationship between extractive degradation and heartwood decay in detail and to gain insight into the mechanisms of extractive degradation. Mass losses recorded after a stacked-sample decay test with brown rot fungi showed that the heartwood had substantial decay resistance against but little resistance against . Extracts obtained from the decayed heartwood samples revealed extensive degradation of stilbenes by in the early stages of decay and a noticeable but statistically insignificant loss of resin acids. The extracts from -degraded samples contained new compounds derived from the degraded extractives: hydroxylated stilbene derivatives appeared in the early decay stages and then disappeared, while compounds tentatively identified as hydroxylated derivatives of dehydroabietic acid accumulated in the later stages. The degradation of extractives was further analysed using simple degradation assays where an extract obtained from intact heartwood was incubated with fungal mycelium or extracellular culture fluid from liquid fungal cultures or with neat Fenton reagent. The assays showed that extractives can be eliminated by several fungal degradative systems and revealed differences between the degradative abilities of the two fungi. The results of the study indicate that extractive degradation plays an important role in heartwood decay and highlight the complexity of the fungal degradative systems.

摘要

已知苏格兰松的心材由于含有提取物,即芪类和树脂酸,而具有抗木材腐朽的能力。然而,先前的研究表明,这些提取物可被木材腐朽真菌降解。本研究旨在详细调查提取物降解与心材腐朽之间的关系,并深入了解提取物降解的机制。用褐腐真菌进行堆叠样品腐朽试验后记录的质量损失表明,心材对[具体真菌1]具有显著的抗腐朽能力,但对[具体真菌2]的抗性很小。从腐朽的心材样品中获得的提取物显示,在腐朽早期,芪类被[具体真菌1]广泛降解,树脂酸有明显但在统计学上不显著的损失。来自[具体真菌1]降解样品的提取物含有源自降解提取物的新化合物:羟基化芪衍生物在腐朽早期出现,然后消失,而初步鉴定为脱氢枞酸羟基化衍生物的化合物在后期积累。使用简单的降解试验进一步分析提取物的降解情况,即将从完整心材中获得的提取物与真菌菌丝体、液体真菌培养物的细胞外培养液或纯芬顿试剂一起孵育。试验表明,提取物可被几种真菌降解系统消除,并揭示了两种真菌降解能力的差异。研究结果表明,提取物降解在心材腐朽中起重要作用,并突出了真菌降解系统的复杂性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47a9/9133955/604bd7f5242a/fpls-13-912555-g001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验