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茯苓(高等担子菌)的有性型生物特性及体外出菇条件优化

Biological characteristics of teleomorph and optimized in vitro fruiting conditions of the Hoelen medicinal mushroom, Wolfiporia extensa (Higher Basidiomycetes).

作者信息

Xu Zhangyi, Meng Hu, Xiong Huan, Bian Yinbing

机构信息

Key Laboratory of Agro-Microbial Resource and Development (Ministry of Agriculture), Institute of Applied Mycology, Huazhong Agricultural University, Wuhan, Hubei, China.

出版信息

Int J Med Mushrooms. 2014;16(5):421-9. doi: 10.1615/intjmedmushrooms.v16.i5.20.

Abstract

Wolfiporia extensa is a basidiomycetous brown rot fungus and is of well-known medicinal import in China, Japan, and other Asiatic countries. Fruiting body induction is of major relevance for basic biological research and for their use in industrial applications. Based on the evaluation of the effects of temperature, time in the dark before induction and culture, and wounding treatment on fruiting, this report describes the most efficient protocol for inducing fruiting of W. extensa growing on agar plates. Furthermore, several biological characteristics of teleomorph, such as the locations of hymenium, the configuration of basidiospores and primary mycelia, and events involved in basidiosporogenesis in W. extensa, were analyzed for the first time using fluorescence microscopy. The results showed that the hymenium born on both sides of the wall of the honeycomb-like structure on the surface of fruiting bodies and the hymenophoral trama situated in the middle. Each basidia has 4 binuclear basidiospores, and the primary mycelia are multinucleate without clamp connections. These results broaden our knowledge about this brown rot fungus and promote further studies of the sexual reproduction, fruiting body development, and advancement of breeding program, new topics related to the contents of pharmacologically active substances in W. extensa fruiting bodies.

摘要

茯苓是一种担子菌纲的褐腐真菌,在中国、日本和其他亚洲国家具有重要的药用价值。子实体诱导对于基础生物学研究及其在工业应用中的使用具有重要意义。基于对温度、诱导和培养前黑暗处理时间以及创伤处理对子实体形成的影响的评估,本报告描述了在琼脂平板上诱导茯苓子实体形成的最有效方案。此外,首次使用荧光显微镜分析了茯苓有性态的几个生物学特征,如子实层的位置、担孢子和初生菌丝体的形态以及担孢子发生过程中涉及的事件。结果表明,子实层生于子实体表面蜂窝状结构壁的两侧,菌髓位于中间。每个担子有4个双核担孢子,初生菌丝体多核且无锁状联合。这些结果拓宽了我们对这种褐腐真菌的认识,并促进了对其有性生殖、子实体发育以及育种计划进展的进一步研究,这些都是与茯苓子实体中药理活性物质含量相关的新课题。

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