Morphological characteristics of ectomycorrhizas formed by in vitro synthesis between conifer seedlings and Tuber mycelial strains of the Puberulum clade isolated in Japan.

IF 1.5 4区 生物学 Q4 MYCOLOGY Mycoscience Pub Date : 2022-01-01 DOI:10.47371/mycosci.2021.11.002
Keisuke Obase
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Abstract

Seedlings of Pinus densiflora and Abies sachalinensis were inoculated with Tuber mycelial strains of the Puberulum clade in vitro to examine the morphological characteristics of their ectomycorrhizas. Axenically germinated seedlings were inoculated with the mycelia of five taxa from the Puberulum clade and grown in glass jars for 4 mo in an illuminated incubator. The seedlings were successfully colonized by the inoculated Tuber strains, as confirmed by the nuclear ribosomal internal transcribed spacer barcoding of the synthesized ectomycorrhizas. The ectomycorrhizas were characterized by a pale yellow to brown color, short needle-shaped cystidia, and net-like hyphal arrangement, and epidermoid cells on the mantle surface; notably, these features are similar to the ectomycorrhizas of various Puberulum clade members. As the ectomycorrhizas of different Tuber species are indistinguishable by morphological characters, molecular techniques are necessary to identify ectomycorrhizas formed by Tuber species within the Puberulum clade.

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日本针叶树与被柔毛枝块茎菌丝体离体合成外生菌根的形态特征。
以密松(Pinus densiflora)和冷杉(Abies sachalinensis)幼苗为材料,用微柔毛枝块茎菌丝体菌株进行体外接种,观察其外生菌根的形态特征。用来自微柔毛枝的5个分类群的菌丝接种无菌萌发的幼苗,在玻璃罐中光照培养4个月。通过合成的外生菌根的核糖体内转录间隔序列条形码证实,接种的块菌菌株成功定殖。外生菌根的颜色为浅黄色至棕色,囊体呈短针状,菌丝排列呈网状,被膜表面有表皮样细胞;值得注意的是,这些特征与各种微柔毛枝成员的外生菌根相似。由于不同块茎物种的外生菌根在形态特征上难以区分,因此需要利用分子技术对块茎物种形成的外生菌根进行鉴别。
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来源期刊
Mycoscience
Mycoscience MYCOLOGY-
CiteScore
3.00
自引率
7.10%
发文量
32
审稿时长
3 months
期刊介绍: Mycoscience is the official English-language journal of the Mycological Society of Japan and is issued bimonthly. Mycoscience publishes original research articles and reviews on various topics related to fungi including yeasts and other organisms that have traditionally been studied by mycologists. The research areas covered by Mycoscience extend from such purely scientific fields as systematics, evolution, phylogeny, morphology, ecology, physiology, biochemistry, genetics, and molecular biology, to agricultural, medical, and industrial applications. New and improved applications of well-established mycological techniques and methods are also covered.
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