期刊全稱 | Biosphere Origin and Evolution | 影響因子2023 | Nikolay Dobretsov,Nikolay Kolchanov,Georgy Zavarzi | 視頻video | http://file.papertrans.cn/189/188577/188577.mp4 | 發(fā)行地址 | Contains articles based on the oral presentations given at the International Workshop on the Bioshphere Origin and Evolution (BOE 2005) | 圖書封面 |  | 影響因子 | Modern natural science shows that the infancy of life on Earth experienced prebiotic evolution and included the emergence of primitive self-reproducing biologic forms and their systems. The subsequent coevolution of inorganic environment and biologic systems resulted in global propagation of life over the Earth and its enormous diversification. Diverse living organisms colonized the land, water, and atmosphere, as well as upper layers of the lithosphere, thereby forming the biosphere. Formerly, it was thought that abiogenic synthesis of prebiotic matter occurred in the Earth’s atmosphere on land surface. However, the presence of life signs in rocks more than 3. 5 Gyr old suggests that the chemical matter evolution stage with synthesis of organic compounds from simple molecules is more likely to have occurred in the preglobal circumstellar disk together with the RNA world and the emergence of life itself. This notion removes the restriction imposed by the Earth’s age and environmental conditions on the young Earth. It is favored by detection of intricate organic compounds on meteorites, comets, and (according to spectral data) in gas–dust nebulae. The detection of life traces in met | Pindex | Book 2008 |
The information of publication is updating
|
|