首页> 外文期刊>World Journal of Microbiology and Biotechnology >Heat tolerant fungi and applied research: Addition to the previously treated group of strictly thermotolerant species
【24h】

Heat tolerant fungi and applied research: Addition to the previously treated group of strictly thermotolerant species

机译:耐热真菌和应用研究:在之前治疗过的严格耐热物种中

获取原文
获取原文并翻译 | 示例
           

摘要

Heat tolerant fungi are organisms that may perform bioconversion processes and produce industrially important metabolites. They may either be obligate thermophiles or simple thermotolerants. The present document is the continuation of a critical note on thermotolerant fungi erroneously reported in the literature as possessing thermophilic attributes. Fifty strictly thermotolerant taxa are here considered. Some of their binomials have only recently been introduced in the scientific literature. The reported thermotolerant species are grouped according to broad taxonomic categories. The nomenclature of zygomycetous taxa and anamorphic fungi is straightforward, as usually only one binomial is available or only one state is produced in culture respectively. For Ascomycetes regularly producing in culture a conidial state, the name of the sexual state (teleomorph) should be used to designate the organism even when a binomial is available for the anamorph; this prevents the practice of interchangeably using the name of either states of the same fungus. When ascomycetous taxa produce the anamorph regularly and the teleomorph only under specific cultural conditions, the name of the anamorph could be preferentially selected. The goal is to introduce uniformity in name citations of fungi, particularly in the literature of applied research. Each species is reported under its taxonomically correct name, either the original binomial or the latest combined binomial after generic transfer(s). Known synonyms are also specified. Maximum efforts were undertaken to trace updated information on the taxonomic position of these fifty strict thermotolerant species. For each, information on the type material, morphological features distinguishing it from related members of the genus (and when necessary a generic taxonomic assessment) and, finally, salient ecological features including heat tolerance levels are given. For some information on their biotechnological use is also provided. Overall 86 strictly thermotolerant fungi are so far documented in the corresponding published and present contributions; however, this figure should not be regarded as exhaustive for the group. Among these 86 taxa ascomycetous fungi (46) presently outnumber anamorphic microfungi (28) but their relevant figures should be regarded as provisional. Only 12 zygomycetous species proved to be strict thermotolerants. Further cardinal temperature growth values established for these 86 thermotolerants disclose no pattern linked to their broad taxonomic categories. Standardized growth temperature curves at increments smaller than 5 °C have to be performed to assess conclusively variability in growth temperature relationships. Several heat tolerant fungi are widely used in industry; however, more research is needed to explore the applied potential of these particular organisms. An exhaustive document on the biodiversity of heat tolerant fungi also awaits production. It would be informative in relation to the global warming process of the earth.
机译:耐热真菌是可以执行生物转化过程并产生工业上重要的代谢产物的生物。它们可以是专性的嗜热剂,也可以是简单的耐热性。本文件是关于耐热真菌的批判性笔记的延续,该文献在文献中被错误地报告为具有嗜热属性。这里考虑了五十种严格耐热的类群。他们的一些二项式只是最近才被引入科学文献中。所报告的耐热物种根据广泛的分类类别进行了分组。合子菌类和变形真菌的命名很简单,因为通常在培养中分别只有一个二项式可用或仅产生一种状态。对于通常在培养物中产生分生孢子状态的子囊虫,即使有二项式可用于无性型,也应使用性状态的名称(teleomorph)来指定生物体。这阻止了可互换使用同一真菌的任一状态名称的做法。当子囊类群在特定的文化条件下有规律地产生无性型和无变型时,可以优先选择无性型的名称。目的是在真菌的名称引用中引入统一性,特别是在应用研究的文献中。每个物种均以其分类学上正确的名称报告,即通用转让后的原始二项式或最新组合的二项式。还指定了已知的同义词。尽最大的努力来追踪有关这五十种严格耐热物种的分类位置的最新信息。对于每种材料,都提供了有关类型材料的信息,将其与属的相关成员区分开的形态特征(必要时进行常规分类学评估),最后给出了包括耐热水平在内的显着生态特征。还提供了有关其生物技术用途的一些信息。迄今为止,在相应的已发表和目前的文稿中记录了总共86种严格耐热真菌。但是,这个数字不应被视为该组的详尽列表。在这86个分类单元中,子囊状真菌(46)目前超过了变形微真菌(28),但它们的相关数据应被视为临时数字。事实证明只有12个合子菌种是严格的耐热性。为这86种耐热性确定的进一步基本温度增长值未显示与其广泛的分类学类别相关的模式。必须以小于5°C的增量执行标准的生长温度曲线,以最终评估生长温度关系的变异性。几种耐热真菌在工业中被广泛使用。然而,需要更多的研究来探索这些特殊生物的应用潜力。关于耐热真菌生物多样性的详尽文件也有待生产。关于地球的全球变暖过程,这将是有益的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号