Culbertson C W, Strohmaier F E, Oremland R S
U.S. Geological Survey, Menlo Park, CA 94025.
Orig Life Evol Biosph. 1988;18(4):397-407. doi: 10.1007/BF01808218.
The fermentation of atmospheric acetylene by anaerobic bacteria is proposed as the basis of a primordial heterotrophic food chain. The accumulation of fermentation products (acetaldehyde, ethanol, acetate and hydrogen) would create niches for sulfate-respiring bacteria as well as methanogens. Formation of acetylene-free environments in soils and sediments would also alter the function of nitrogenase from detoxification to nitrogen-fixation. The possibility of an acetylene-based anaerobic food chain in Jovian-type atmospheres is discussed.
厌氧细菌对大气中乙炔的发酵被认为是原始异养食物链的基础。发酵产物(乙醛、乙醇、乙酸和氢气)的积累将为硫酸盐呼吸细菌以及产甲烷菌创造生态位。土壤和沉积物中无乙炔环境的形成也会改变固氮酶的功能,使其从解毒转变为固氮。本文还讨论了在类木行星大气中存在基于乙炔的厌氧食物链的可能性。