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不同诱导时间下(罗勒)木质部生理特性与内生真菌群落的动态变化

Dynamics of Physiological Properties and Endophytic Fungal Communities in the Xylem of (Lour.) with Different Induction Times.

作者信息

Zhang Qingqing, Li Rongrong, Lin Yang, Zhao Weiwei, Lin Qiang, Ouyang Lei, Pang Shengjiang, Zeng Huahao

机构信息

Fujian Academy of Forestry, Fuzhou 350012, China.

School of Design, Fujian University of Technology, Fuzhou 350001, China.

出版信息

J Fungi (Basel). 2024 Aug 9;10(8):562. doi: 10.3390/jof10080562.

Abstract

Xylem-associated fungus can secrete many secondary metabolites to help trees resist various stresses and play a crucial role in facilitating agarwood formation. However, the dynamics of endophytic fungi in xylem after artificial induction have not been fully elaborated. Endophytic fungi communities and xylem physio-biochemical properties were examined before and after induction with an inorganic salt solution, including four different times (pre-induction (0M), the third (3M), sixth (6M) and ninth (9M) month after induction treatment). The relationships between fungal diversity and physio-biochemical indices were evaluated. The results showed that superoxide dismutase (SOD) and peroxidase (POD) activities, malondialdehyde (MDA) and soluble sugar content first increased and then decreased with induction time, while starch was heavily consumed after induction treatment. Endophytic fungal diversity was significantly lower after induction treatment than before, but the species richness was promoted. Fungal β-diversity was also clustered into four groups according to different times. Core species shifted from rare to dominant taxa with induction time, and growing species interactions in the network indicate a gradual complication of fungal community structure. Endophytic fungi diversity and potential functions were closely related to physicochemical indices that had less effect on the relative abundance of the dominant species. These findings help assess the regulatory mechanisms of microorganisms that expedite agarwood formation after artificial induction.

摘要

与木质部相关的真菌能够分泌多种次生代谢产物,帮助树木抵御各种胁迫,并在沉香形成过程中发挥关键作用。然而,人工诱导后木质部内生真菌的动态变化尚未得到充分阐释。在用无机盐溶液诱导前后,对内生真菌群落和木质部生理生化特性进行了检测,包括四个不同时间点(诱导前(0M)、诱导处理后第三个月(3M)、第六个月(6M)和第九个月(9M))。评估了真菌多样性与生理生化指标之间的关系。结果表明,超氧化物歧化酶(SOD)和过氧化物酶(POD)活性、丙二醛(MDA)和可溶性糖含量随诱导时间先升高后降低,而淀粉在诱导处理后大量消耗。诱导处理后内生真菌多样性显著低于处理前,但物种丰富度得到提升。真菌β多样性也根据不同时间聚为四类。核心物种随诱导时间从稀有类群转变为优势类群,网络中不断增加的物种相互作用表明真菌群落结构逐渐复杂化。内生真菌多样性和潜在功能与理化指标密切相关,而理化指标对优势物种的相对丰度影响较小。这些发现有助于评估人工诱导后加速沉香形成的微生物调控机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1278/11355071/18af5c4030fc/jof-10-00562-g001.jpg

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