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植物与蓝藻的共培养:农业与生物工艺工程生产系统的新途径。

Co-cultures from Plants and Cyanobacteria: A New Way for Production Systems in Agriculture and Bioprocess Engineering.

机构信息

Bioprocess Engineering (BioVT), Department of Mechanical and Process Engineering, RPTU Kaiserslautern-Landau, Kaiserslautern, Germany.

出版信息

Adv Biochem Eng Biotechnol. 2024;188:83-117. doi: 10.1007/10_2023_247.

Abstract

Due to the global increase in the world population, it is not possible to ensure a sufficient food supply without additional nitrogen input into the soil. About 30-50% of agricultural yields are due to the use of chemical fertilizers in modern times. However, overfertilization threatens biodiversity, such as nitrogen-loving, fast-growing species overgrow others. The production of artificial fertilizers produces nitrogen oxides, which act as greenhouse gases. In addition, overfertilization of fields also releases ammonia, which damages surface waters through acidification and eutrophication. Diazotrophic cyanobacteria, which usually form a natural, stable biofilm, can fix nitrogen from the atmosphere and release it into the environment. Thus, they could provide an alternative to artificial fertilizers. In addition to this, biofilms stabilize soils and thus protect against soil erosion and desiccation. This chapter deals with the potential of cyanobacteria as the use of natural fertilizer is described. Possible partners such as plants and callus cells and the advantages of artificial co-cultivation will be discussed later. In addition, different cultivation systems for studying artificial co-cultures will be presented. Finally, the potential of artificial co-cultures in the agar industry will be discussed.

摘要

由于世界人口的全球增长,如果不在土壤中额外添加氮,就不可能确保充足的食物供应。在现代农业中,大约 30-50%的农业产量归因于化肥的使用。然而,过度施肥会威胁生物多样性,例如,喜欢氮的快速生长物种会过度生长而排挤其他物种。人工肥料的生产会产生氮氧化物,这些氮氧化物是温室气体。此外,过度施肥的田地还会释放氨,通过酸化和富营养化破坏地表水。固氮蓝藻通常形成自然、稳定的生物膜,可以从大气中固定氮并将其释放到环境中。因此,它们可以提供人工肥料的替代品。除此之外,生物膜还可以稳定土壤,从而防止土壤侵蚀和干旱。本章讨论了蓝藻作为天然肥料的使用潜力。稍后将讨论可能的合作伙伴,如植物和愈伤组织细胞,以及人工共培养的优势。此外,还将介绍用于研究人工共培养的不同培养系统。最后,将讨论人工共培养在琼脂工业中的潜力。

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