首页> 外文OA文献 >Heveochlorella (Trebouxiophyceae): a little-known genus of unicellular green algae outside the Trebouxiales emerges unexpectedly as a major clade of lichen photobionts in foliicolous communities
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Heveochlorella (Trebouxiophyceae): a little-known genus of unicellular green algae outside the Trebouxiales emerges unexpectedly as a major clade of lichen photobionts in foliicolous communities

机译:Heveochlorella(Trebouxiophyceae):蝶形藻外的一种鲜为人知的单细胞绿藻属出乎意料地出现在叶状群落中,是地衣光合生物的主要进化枝

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摘要

Foliicolous lichens are formed by diverse, highly specialized fungi that establish themselves and complete their life cycle within the brief duration of their leaf substratum. Over half of these lichen-forming fungi are members of either the Gomphillaceae or Pilocarpaceae, and associate with Trebouxia-like green algae whose identities have never been positively determined. We investigated the phylogenetic affinities of these photobionts to better understand their role in lichen establishment on an ephemeral surface. Thallus samples of Gomphillaceae and Pilocarpaceae were collected from foliicolous communities in southwest Florida and processed for sequencing of photobiont marker genes, algal cultivation and/or TEM. Additional specimens from these families and also from Aspidothelium (Thelenellaceae) were collected from a variety of substrates globally. Sequences from rbcL and nuSSU regions were obtained and subjected to Maximum Likelihood and Bayesian analyses. Analysis of 37 rbcL and 7 nuSSU algal sequences placed all photobionts studied within the provisional trebouxiophycean assemblage known as the Watanabea clade. All but three of the sequences showed affinities within Heveochlorella, a genus recently described from tree trunks in East Asia. The photobiont chloroplast showed multiple thylakoid stacks penetrating the pyrenoid centripetally as tubules lined with pyrenoglobuli, similar to the two described species of Heveochlorella. We conclude that Heveochlorella includes algae of potentially major importance as lichen photobionts, particularly within (but not limited to) foliicolous communities in tropical and subtropical regions worldwide. The ease with which they may be cultivated on minimal media suggests their potential to thrive free-living as well as in lichen symbiosis.
机译:叶状地衣是由多种高度专业化的真菌形成的,它们能够在叶片下层短暂的时间内建立并完成其生命周期。在这些形成地衣的真菌中,有一半以上都属于Gomphillaceae或Cilocarpaceae的成员,并且与从未明确确定其身份的Trebouxia样绿藻有关。我们调查了这些光生生物的系统亲和力,以更好地了解它们在短暂表层地衣建立中的作用。从佛罗里达州西南部的叶类群落中收集了菊科和毛果科的hall茎样本,并对其进行了光生物标记基因的测序,藻类培养和/或TEM的处理。从全球的各种底物中收集了这些家族的其他标本,以及天冬虫科(Thelenellaceae)的标本。获得了来自rbcL和nuSSU区域的序列,并进行了最大似然和贝叶斯分析。分析了37个rbcL和7个nuSSU藻类序列,将所有研究过的生物仿生物放入了称为渡边进化枝的临时trexoxiophycean组合中。除三个序列外,其余所有序列均在Heveochlorella内有亲和力,该属最近在东亚的树干中被描述过。光生物体叶绿体显示出多个类囊体向心形贯穿类胡萝卜素的小管,内衬肾盂球状小管,与上述两个小球藻相似。我们得出的结论是,绿藻包括作为藻类光合生物可能具有重要意义的藻类,特别是在(但不限于)全球热带和亚热带地区的叶片群落中。可以用最少的培养基轻松地培养它们,这说明它们有赖于自由生活以及地衣共生的潜力。

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