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外源抗菌肽对木荷体内微生物和代谢物的影响

陈建桦

福建林业科技2023,Vol.50Issue(4):13-21,9.
福建林业科技2023,Vol.50Issue(4):13-21,9.DOI:10.13428/j.cnki.fjlk.2023.04.003

外源抗菌肽对木荷体内微生物和代谢物的影响

Effects of Exogenous Application of Antimicrobial Peptides on Microorganisms and Metabolites in Schima superba

陈建桦1

作者信息

  • 1. 福建省泰宁国有林场,福建三明 354400
  • 折叠

摘要

Abstract

Antimicrobial peptides are important natural components of plant defense against pathogens and are efficient,high-through-put and eco-friendly means of disease resistance.In order to improve the stand quality of Schima superba plantation forests and to ver-ify the effect of antimicrobial peptides on the internal environment of S.superba the internal environment of microorganisms and me-tabolites of 2-year-old S.superba seedlings was treated by spraying their leaves with a dilute 500-fold antimicrobial peptide bi-distill-ate solution in 2021 in the state-owned forest farms of Taining,Fujian Province(leaf spraying with bi-distillate as a control),and the internal environment of microorganisms and metabolites was the internal environment of microorganisms and metabolites was ana-lyzed.The results showed that the abundance of Enterobacteriaceae,Burkholderiaceae,Microflora,Erythrobacteriaceae,Bacillariophy-ta and Mycobacterium globosum increased significantly(P≤0.05)after the application of antimicrobial peptide.It indicated that the application of antimicrobial peptides significantly improved the stress tolerance of S.superba and contributed to the growth and devel-opment of S.superba.A total of 687 differential metabolites were screened,including 233 up-regulated differential metabolites,ac-counting for 34%,and 454 down-regulated differential metabolites,accounting for 66%.They were mainly enriched in the ABC transporters pathway,the arachidonic acid metabolism pathway,the flavonoid biosynthesis pathway,the phenylpropanoid biosynthesis pathway.This indicates that addition of antimicrobial peptides can help to improve the energy and material metabolism in S.superba,and enhance the ability of S.superba to respond to adversity stress.The results of this study can provide a reference for the production practice of using antimicrobial peptides to prevent and control the diseases of S.superba to improve the quality of forest stands and to sustain the management of S.superba plantation forests.

关键词

抗菌肽/木荷/微生物组/代谢组

Key words

antimicrobial peptide/Schima superba/microbiome/metabolome

分类

农业科技

引用本文复制引用

陈建桦..外源抗菌肽对木荷体内微生物和代谢物的影响[J].福建林业科技,2023,50(4):13-21,9.

基金项目

三明市林业科技项目(微肽溶剂对木荷不同龄期生长性状的影响,2021-MLKJ-15号) (微肽溶剂对木荷不同龄期生长性状的影响,2021-MLKJ-15号)

福建林业科技

1002-7351

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