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光合作用处于可持续生活的前沿。

Photosynthesis at the forefront of a sustainable life.

机构信息

Molecular and Cellular Biology - Unit of Microbiology, Institute for Environment, Health and Safety, Belgian Nuclear Research Centre SCK•CEN Mol, Belgium.

Institute of Crystallography, National Research Council of Italy Rome, Italy.

出版信息

Front Chem. 2014 Jun 12;2:36. doi: 10.3389/fchem.2014.00036. eCollection 2014.

Abstract

The development of a sustainable bio-based economy has drawn much attention in recent years, and research to find smart solutions to the many inherent challenges has intensified. In nature, perhaps the best example of an authentic sustainable system is oxygenic photosynthesis. The biochemistry of this intricate process is empowered by solar radiation influx and performed by hierarchically organized complexes composed by photoreceptors, inorganic catalysts, and enzymes which define specific niches for optimizing light-to-energy conversion. The success of this process relies on its capability to exploit the almost inexhaustible reservoirs of sunlight, water, and carbon dioxide to transform photonic energy into chemical energy such as stored in adenosine triphosphate. Oxygenic photosynthesis is responsible for most of the oxygen, fossil fuels, and biomass on our planet. So, even after a few billion years of evolution, this process unceasingly supports life on earth, and probably soon also in outer-space, and inspires the development of enabling technologies for a sustainable global economy and ecosystem. The following review covers some of the major milestones reached in photosynthesis research, each reflecting lasting routes of innovation in agriculture, environmental protection, and clean energy production.

摘要

近年来,可持续的生物基经济的发展引起了广泛关注,寻找解决许多固有挑战的智能解决方案的研究也在加强。在自然界中,有氧光合作用或许是真正可持续系统的最佳范例。这个复杂过程的生物化学过程由太阳辐射通量驱动,并由光受体、无机催化剂和酶组成的层次化组织的复合物来执行,这些复合物为优化光-能转化定义了特定的生态位。这个过程的成功依赖于其利用几乎用之不竭的阳光、水和二氧化碳库将光子能量转化为化学能量(如储存在三磷酸腺苷中的能量)的能力。有氧光合作用负责了我们星球上大部分的氧气、化石燃料和生物质。因此,即使经过了数十亿年的进化,这个过程仍在不断地为地球上的生命提供支持,并且可能很快也将在太空中提供支持,并激发了可持续全球经济和生态系统的赋能技术的发展。以下综述涵盖了光合作用研究中取得的一些主要里程碑,每一个里程碑都反映了农业、环境保护和清洁能源生产方面持续的创新途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bba/4054791/f19fb2722f56/fchem-02-00036-g0001.jpg

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