外生菌根Pisolithus tinctorius与腐坏菌束状菌丝的体外相互作用:形态方面和挥发性产物。

IF 4.6 2区 生物学 Q1 MYCOLOGY
Mycology Pub Date : 2021-02-27 eCollection Date: 2021-01-01 DOI:10.1080/21501203.2021.1876778
Paula Baptista, Paula Guedes de Pinho, Nathalie Moreira, Ricardo Malheiro, Francisca Reis, Jorge Padrão, Rui Tavares, Teresa Lino-Neto
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引用次数: 2

摘要

外生菌根真菌对森林的可持续性至关重要。外生菌根真菌Pisolithus tinctorius是蓖麻重要的共生伙伴。腐殖性真菌束状丝菌丝虽然被用于蜜环菌根病的生物防治,但它通过损害P. tinctorius- c的形成,对P. tinctorius与植物寄主根的相互作用产生了负面影响。马唐菌根。本文研究了束状芽孢杆菌抑菌过程中真菌形态的变化。麻束菌对麻束菌的生长有强烈的影响,共培养6天后显著降低,随着时间的推移变得更加显著。在此期间,P. tinctorius发育出囊泡和草酸钙晶体,这被认为是真菌适应逆境的机制。随着时间的推移,花束草在共培养中产生了不同的挥发性有机化合物,在单种或双种中也有所不同。花束草是一种高产倍半萜(即α-茂烯)和含氮化合物,被认为具有抗菌活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

<i>In vitro</i> interactions between the ectomycorrhizal <i>Pisolithus tinctorius</i> and the saprotroph <i>Hypholoma fasciculare</i> fungi: morphological aspects and volatile production.

<i>In vitro</i> interactions between the ectomycorrhizal <i>Pisolithus tinctorius</i> and the saprotroph <i>Hypholoma fasciculare</i> fungi: morphological aspects and volatile production.

<i>In vitro</i> interactions between the ectomycorrhizal <i>Pisolithus tinctorius</i> and the saprotroph <i>Hypholoma fasciculare</i> fungi: morphological aspects and volatile production.

In vitro interactions between the ectomycorrhizal Pisolithus tinctorius and the saprotroph Hypholoma fasciculare fungi: morphological aspects and volatile production.

Ectomycorrhizal fungi are crucial for forests sustainability. For Castanea sativa, ectomycorrhizal fungus Pisolithus tinctorius is an important mutualist partner. Saprotrophic fungi Hypholoma fasciculare, although used for biocontrol of Armillaria root disease, it negatively affected the interaction between the P. tinctorius and plant host roots, by compromise the formation of P. tinctorius-C. sativa mycorrhizae. In this work, fungal morphology during inhibition of H. fasciculare against P. tinctorius was elucidated. P. tinctorius growth was strongly affected by H. fasciculare, which was significantly reduced after six days of co-culture and become even more significant through time. During this period, P. tinctorius developed vesicles and calcium oxalate crystals, which were described as mechanisms to stress adaption by fungi. H. fasciculare produced different volatile organic compounds in co-cultures over time and differ between single or in dual-species. H. fasciculare highly produced sesquiterpenes (namely, α-muurolene) and nitrogen-containing compounds, which are recognised as having antimicrobial activity.

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来源期刊
Mycology
Mycology Medicine-Infectious Diseases
CiteScore
9.10
自引率
0.00%
发文量
18
审稿时长
13 weeks
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