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叶状体生长阶段和地理起源塑造了地衣共生体石松叶状石蕊中的微藻多样性。

Thallus Growth Stage and Geographic Origin Shape Microalgal Diversity in Ramalina farinacea Lichen Holobionts.

机构信息

Instituto "Cavanilles" de Biodiversidad y Biología Evolutiva, Botánica, Fac. CC. Biológicas, Universitat de València, 46100, Burjassot, Valencia, Spain.

Department of Life Sciences, University of Trieste, via L. Giorgieri 10, 34127, Trieste, Italy.

出版信息

J Phycol. 2021 Jun;57(3):975-987. doi: 10.1111/jpy.13140. Epub 2021 Mar 18.

Abstract

Lichen symbioses are microecosystems hosting many other living organisms besides the two major lichen symbionts (i.e., lichenized fungi [the mycobiont] and green microalgae or cyanobacteria [the photobiont]). Recent investigations evidenced that other fungi, non-photosynthetic bacteria, and microalgae co-inhabit within the lichen thalli, but their diversity and their roles are still underinvestigated. Here we present an ad hoc stratified sampling design and in-depth Illumina paired-end metabarcoding approach to explore microalgal diversity in lichen thalli of the model species Ramalina farinacea from different ecologies. Lichen thalli were surveyed according to three different sizes, and different thallus parts were considered for molecular, bioinformatics, and community diversity analyses. The results revealed that microalgal diversity strongly depends on the growth stage of the thalli, the geographic area, and the habitat type. The results also show that microalgal diversity does not vary along the thallus branches (lacinias)-that is, it does not correlate with the apical growth and founder effects-and that there is no balanced co-presence of two main photobionts as previously established in R. farinacea. The sampling design performed here minimizes bias in the assessment of photobiont diversity in lichens and is proposed to be reliable and applicable to further study microalgal diversity in lichen symbioses.

摘要

地衣共生体是一个微型生态系统,除了两个主要的地衣共生体(即地衣化真菌[菌物共生体]和绿色微藻或蓝细菌[光合共生体])之外,还栖息着许多其他生物。最近的研究表明,其他真菌、非光合细菌和微藻也共同栖息在地衣的叶状体中,但它们的多样性和作用仍有待研究。在这里,我们提出了一种专门的分层采样设计和深入的 Illumina 配对末端代谢组学方法,以探索不同生态条件下模式物种 Ramalina farinacea 地衣叶状体中的微藻多样性。根据三种不同的大小对地衣叶状体进行了调查,并对不同的叶状体部分进行了分子、生物信息学和群落多样性分析。结果表明,微藻多样性强烈依赖于叶状体的生长阶段、地理区域和栖息地类型。结果还表明,微藻多样性并不随叶状体的分支(裂片)而变化——也就是说,它与顶端生长和创始效应无关,并且没有像以前在 R. farinacea 中建立的那样,两种主要的光合共生体同时存在。这里执行的采样设计最大限度地减少了评估地衣中光合共生体多样性的偏差,并且被证明是可靠的,并适用于进一步研究地衣共生体中的微藻多样性。

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