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Ecological implications of recently discovered and poorly studied sources of energy for the growth of true fungi especially in extreme environments

机译:最近发现的生态影响,研究能源差的源,特别是在极端环境中的真实真菌的生长

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摘要

Rhodopsin transmembrane proton pumps (fuelled by visible light which is absorbed by retinal (carotenoid) chromophores) exist in all three domains of living species and in all groups of true fungi studied. Light driven proton and sodium pumps are likely to be essential for some marine fungi, especially hypersaline tolerant and endolithic species. Rhodopsin macromolecular machines, using visible light, drive metabolic reactions in addition to those provided by aerobic respiration, providing extra energy needed for the maintenance and growth of fungi, especially in euphotic environments where oxygen concentration is limited. In addition, dissimilatory nitrate and metal oxide reduction can provide sources of energy for fungi in the absence of oxygen, for example, in fungal species growing in marine sediments. Finally, the oxidation of elemental sulphur, iron and manganese can be a source of energy. Some fungi are, therefore, lithotrophs and photoheterotrophs. The ecological implications of these latter processes are discussed. Crown Copyright (C) 2018 Published by Elsevier Ltd. All rights reserved.
机译:在所有三个生命物种和所有真菌群中,所有三个域都存在rhodopsin跨膜质子泵(由视网膜(类胡萝卜素)发色团吸收的可见光)。光驱动的质子和钠泵可能对某些海洋真菌,特别是过氧常规耐受性和岩石内半透的物种至关重要。罗霉蛋白的大分子机器,使用可见光,除了有氧呼吸提供的那些外,还提供了代谢反应,提供了真菌维持和生长所需的额外能量,特别是在氧气浓度有限的EUPLIC环境中。此外,不含硝酸盐和金属氧化物还原可以在没有氧气的情况下为真菌提供的能量来源,例如,在海洋沉积物中生长的真菌物种。最后,元素硫,铁和锰的氧化可以是能量的源泉。因此,一些真菌是碎石和光学侵蚀。讨论了这些后一种过程的生态影响。 Crown版权所有(C)2018由elestvier有限公司出版。保留所有权利。

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