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首页> 外文期刊>Phycologia >Metabolic response to desiccation stress in strains of green algal photobionts (Trebouxia) from two Antarctic lichens of southern habitats
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Metabolic response to desiccation stress in strains of green algal photobionts (Trebouxia) from two Antarctic lichens of southern habitats

机译:来自南部生境的两个南极地衣的绿色藻类光生生物(特雷布克夏)菌株对干燥胁迫的代谢响应

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摘要

Desiccation tolerance is a feature of most lichens. These symbiotic associations of a fungal partner (mycobiont) and a photosynthetic partner (photobiont) experience severe desiccation on a regular basis. Many lichen species colonise extreme habitats, such as the cold deserts of Antarctica. Although the stress physiology of lichens has been studied extensively, little is known about the photobionts' physiological potential. To assess the contribution of photobionts to lichen success in Antarctic terrestrial environments, the photosynthetic partners of Umbilicaria decussata (Umbilicariaceae, lichenised ascomycetes) and Usnea lambii (Parmeliaceae, lichenised ascomycetes) from extreme habitats in southern Antarctica were isolated. Significant differences regarding stress tolerance of the two green algae had been shown previously despite their close phylogenetic relationship. A deeper understanding and explanation of these differences were obtained by examination of the metabolite profiles and dynamics, especially the role of sugars, polyols and amino acids. High concentrations of ribitol and sucrose, among other metabolites, characterised the photobiont of Usnea lambii's mainly constitutive strategy of desiccation tolerance. A high degree of specialisation to dry environments can be assumed for this photobiont.
机译:耐干燥性是大多数地衣的特征。真菌伴侣(真菌生物体)和光合伴侣(光生物体)的这些共生关系会定期发生严重的干燥。许多地衣物种定居在极端的栖息地,例如南极寒冷的沙漠。尽管已经对地衣的应力生理进行了广泛的研究,但对光致生物剂的生理潜力知之甚少。为了评估光致生物剂对南极陆地环境中地衣成功的贡献,从南极洲南部的极端生境中分离出了脐带(Umbilicariacecusata(脐带科,苔藓化的子囊藻)和松萝兰(Parmeliaceae,苔藓化的子囊藻))的光合伙伴。尽管这两个绿藻具有密切的系统发育关系,但先前已显示出它们在压力耐受性方面的显着差异。通过检查代谢物谱和动力学,尤其是糖,多元醇和氨基酸的作用,可以对这些差异有更深入的了解和解释。除其他代谢产物外,高浓度的核糖醇和蔗糖的特征是松萝菌(Usnea lambii)的主要构成策略是耐干燥性。对于这种光生物体,可以假定它在干燥环境下具有高度的专业性。

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