首页> 外文学位 >Fungal endophytes of Pinus monticola: Diversity, function and symbiosis.
【24h】

Fungal endophytes of Pinus monticola: Diversity, function and symbiosis.

机译:松果真菌内生菌:多样性,功能和共生。

获取原文
获取原文并翻译 | 示例

摘要

Fungal endophytes play an important role in mediating many ecological processes within their community, essentially providing an extended phenotype for their hosts. Although endophytes have been found in every plant species examined to date, the extent of diversity and symbiotic function in natural forest habitats is poorly known. In this study, we investigated the ecological context of these symbiotic microbes by examining and characterizing the fungal endophytes of a forest tree species, Pinus monticola. A total of 2013 fungal endophytes were isolated from 750 surfaced-sterilized needles and 16 endophytes were isolated from 800 surfaced-sterilized seeds sampled. Sequencing of the ITS region from a selection of the endophytes revealed 82 unique phylotypes, representing at least 21 discrete, novel taxa and 10 different orders of fungi. The most abundant taxa isolated were rhytimataceous endophytes. Transmission of the endophytes was found to be predominantly horizontal, and, in addition, the high frequency of endophytes isolated was not attributable to propagation of one genetic clone suggesting multiple colonization events. No evidence was found to support the hypothesis that the endophytes of P. monticola are merely cryptic or latent versions of known parasites of this same tree species, as often claimed. Instead, they were found to be most closely related to parasites of other species of Pinus. Distinctiveness of the fungal endophytes from their closest relatives was suggested by any one or all of the following: morphological distinctiveness, extent of sequence divergence in the ITS region, or allopatry. A mutualistic interaction between the fungal endophytes and their hosts was revealed. Host plants challenged with the pathogen Cronartium ribicola were found to have prolonging survival when previously inoculated with fungal endophytes. Our findings, combined with the ubiquity and diversity of endophytes in all plants studied to date, suggest that fungal endophytes may be an important, but widely unrecognized, component of forest communities.
机译:真菌内生菌在介导其群落内的许多生态过程中起着重要作用,本质上为其宿主提供了扩展的表型。尽管迄今在每种受检植物中都发现了内生菌,但人们对天然林生境中多样性和共生功能的程度知之甚少。在这项研究中,我们通过检查和鉴定森林树种松果的真菌内生菌,研究了这些共生微生物的生态环境。从750个表面灭菌的针中总共分离出2013种真菌内生菌,从800个表面灭菌的种子中分离出16个内生菌。从内生菌的选择中对ITS区进行测序揭示了82种独特的系统型,代表了至少21种离散的,新颖的类群和10种不同的真菌。分离出的最丰富的分类群是风生植物内生菌。发现内生菌的传播主要是水平的,此外,分离出的内生菌的高频率并不归因于一个遗传克隆的繁殖,表明发生了多个定殖事件。经常声称,没有证据支持假单胞菌内生菌只是该同一树种已知寄生虫的隐性或潜伏形式的假说。相反,发现它们与其他松属物种的寄生虫关系最密切。以下任何一项或全部建议了真菌内生菌与其最亲戚的区别:形态学独特性,ITS区序列差异的程度或异色性。揭示了真菌内生菌与其宿主之间的相互作用。发现事先用真菌内生菌接种了病原体病原体(Cronartium ribicola)的宿主植物具有延长的存活期。我们的发现与迄今为止研究的所有植物中内生菌的普遍存在和多样性相结合,表明真菌内生菌可能是森林群落的重要组成部分,但未被广泛认识。

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