Arid
DOI10.1002/ece3.2809
Lichen acclimation to changing environments: Photobiont switching vs. climate-specific uniqueness in Psora decipiens
Williams, Laura1; Colesie, Claudia1; Ullmann, Anna1; Westberg, Martin2; Wedin, Mats3; Buedel, Burkhard1
通讯作者Williams, Laura
来源期刊ECOLOGY AND EVOLUTION
ISSN2045-7758
出版年2017
卷号7期号:8页码:2560-2574
英文摘要

Unraveling the complex relationship between lichen fungal and algal partners has been crucial in understanding lichen dispersal capacity, evolutionary processes, and responses in the face of environmental change. However, lichen symbiosis remains enigmatic, including the ability of a single fungal partner to associate with various algal partners. Psora decipiens is a characteristic lichen of biological soil crusts (BSCs), across semi-arid, temperate, and alpine biomes, which are particularly susceptible to habitat loss and climate change. The high levels of morphological variation found across the range of Psora decipiens may contribute to its ability to withstand environmental change. To investigate Psora decipiens acclimation potential, individuals were transplanted between four climatically distinct sites across a European latitudinal gradient for 2years. The effect of treatment was investigated through a morphological examination using light and SEM microscopy; 26S rDNA and rbcL gene analysis assessed site-specific relationships and lichen acclimation through photobiont switching. Initial analysis revealed that many samples had lost their algal layers. Although new growth was often determined, the algae were frequently found to have died without evidence of a new photobiont being incorporated into the thallus. Mycobiont analysis investigated diversity and determined that new growth was a part of the transplant, thus, revealing that four distinct fungal clades, closely linked to site, exist. Additionally, P.decipiens was found to associate with the green algal genus Myrmecia, with only two genetically distinct clades between the four sites. Our investigation has suggested that P.decipiens cannot acclimate to the substantial climatic variability across its environmental range. Additionally, the different geographical areas are home to genetically distinct and unique populations. The variation found within the genotypic and morpho-physiological traits of P.decipiens appears to have a climatic determinant, but this is not always reflected by the algal partner. Although photobiont switching occurs on an evolutionary scale, there is little evidence to suggest an active environmentally induced response. These results suggest that this species, and therefore, other lichen species, and BSC ecosystems themselves may be significantly vulnerable to climate change and habitat loss.


英文关键词biological soil crusts environmental change Europe genetic diversity green algae latitudinal gradient morphological variability Myrmecia plant-climate interactions plasticity
类型Article
语种英语
国家Germany ; Sweden
收录类别SCI-E
WOS记录号WOS:000399737500009
WOS关键词BIOLOGICAL SOIL CRUSTS ; GENETIC DIVERSITY ; PHENOTYPIC PLASTICITY ; POPULATION-STRUCTURE ; HOST SPECIALIZATION ; THALLUS DEVELOPMENT ; GAS-EXCHANGE ; ALGAL ; TREBOUXIOPHYCEAE ; SYMBIONTS
WOS类目Ecology ; Evolutionary Biology
WOS研究方向Environmental Sciences & Ecology ; Evolutionary Biology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/198494
作者单位1.Univ Kaiserslautern, Plant Ecol & Systemat, Inst Biol, Kaiserslautern, Germany;
2.Uppsala Univ, Museum Evolut, Uppsala, Sweden;
3.Swedish Museum Nat Hist, Dept Bot, Stockholm, Sweden
推荐引用方式
GB/T 7714
Williams, Laura,Colesie, Claudia,Ullmann, Anna,et al. Lichen acclimation to changing environments: Photobiont switching vs. climate-specific uniqueness in Psora decipiens[J],2017,7(8):2560-2574.
APA Williams, Laura,Colesie, Claudia,Ullmann, Anna,Westberg, Martin,Wedin, Mats,&Buedel, Burkhard.(2017).Lichen acclimation to changing environments: Photobiont switching vs. climate-specific uniqueness in Psora decipiens.ECOLOGY AND EVOLUTION,7(8),2560-2574.
MLA Williams, Laura,et al."Lichen acclimation to changing environments: Photobiont switching vs. climate-specific uniqueness in Psora decipiens".ECOLOGY AND EVOLUTION 7.8(2017):2560-2574.
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