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Symbiosis constraints: Strong mycobiont control limits nutrient response in lichens

机译:共生制约因素:强大的肌比解控制限制了地衣的营养反应

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Abstract Symbioses such as lichens are potentially threatened by drastic environmental changes. We used the lichen Peltigera aphthosa ?¢????a symbiosis between a fungus (mycobiont), a green alga ( Coccomyxa sp.), and N 2 -fixing cyanobacteria ( Nostoc sp.)?¢????as a model organism to assess the effects of environmental perturbations in nitrogen (N) or phosphorus (P). Growth, carbon (C) and N stable isotopes, CNP concentrations, and specific markers were analyzed in whole thalli and the partners after 4 months of daily nutrient additions in the field. Thallus N was 40% higher in N-fertilized thalli, amino acid concentrations were twice as high, while fungal chitin but not ergosterol was lower. Nitrogen also resulted in a thicker algal layer and density, and a higher ???′ 13 C abundance in all three partners. Photosynthesis was not affected by either N or P. Thallus growth increased with light dose independent of fertilization regime. We conclude that faster algal growth compared to fungal lead to increased competition for light and CO 2 among the Coccomyxa cells, and for C between alga and fungus, resulting in neither photosynthesis nor thallus growth responded to N fertilization. This suggests that the symbiotic lifestyle of lichens may prevent them from utilizing nutrient abundance to increase C assimilation and growth.
机译:摘要诸如地衣的Symbioss可能因环境变化而受到威胁。我们使用地衣佩尔氏菌蚜虫?¢????(Coccobiont),绿藻(Coccomyxa sp.)和n 2 - 混合蓝藻(nostoc sp)之间的共生(nostoc sp。)?¢?????作为模型有机体评估环境扰动在氮气(n)或磷(p)中的影响。在现场日常营养添加后,在整个Thalli和合作伙伴中分析了生长,碳(C)和N稳定同位素,CNP浓度和特异性标志物。在施氮的Zhalli中染色率高40%,氨基酸浓度为次数,而真菌依甲酸酯,而不是Ergosterol较低。氮也导致藻类层和密度较厚,并且在所有三个合作伙伴中都有13℃。光合作用不受N或P. Thallus生长的影响随着施肥制度而异的光剂量增加。我们得出结论,与真菌相比,与真菌相比的速率更快,导致Coccomyxa细胞中的光和CO 2的竞争增加,并且对于藻类和真菌之间的C,导致光合作用也没有反应N施肥。这表明人性的共生生活方式可以防止它们利用营养丰富来增加C同化和生长。

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