International Research Center for Food Nutrition and Safety, Jiangsu University, Zhenjiang 212013, China.
International Joint Research Laboratory of Intelligent Agriculture and Agri-Products Processing, Jiangsu University, Jiangsu Education Department, Nanjing 210024, China.
Mar Drugs. 2023 Aug 3;21(8):439. doi: 10.3390/md21080439.
Marine cyanobacteria are an ancient group of photosynthetic microbes dating back to 3.5 million years ago. They are prolific producers of bioactive secondary metabolites. Over millions of years, natural selection has optimized their metabolites to possess activities impacting various biological targets. This paper discusses the historical and existential records of cyanobacteria, and their role in understanding the evolution of marine cyanobacteria through the ages. Recent advancements have focused on isolating and screening bioactive compounds and their respective medicinal properties, and we also discuss chemical property space and clinical trials, where compounds with potential pharmacological effects, such as cytotoxicity, anticancer, and antiparasitic properties, are highlighted. The data have shown that about 43% of the compounds investigated have cytotoxic effects, and around 8% have anti-trypanosome activity. We discussed the role of different marine cyanobacteria groups in fixing nitrogen percentages on Earth and their outcomes in fish productivity by entering food webs and enhancing productivity in different agricultural and ecological fields. The role of marine cyanobacteria in the carbon cycle and their outcomes in improving the efficiency of photosynthetic CO fixation in the chloroplasts of crop plants, thus enhancing the crop plant's yield, was highlighted. Ultimately, climate changes have a significant impact on marine cyanobacteria where the temperature rises, and CO improves the cyanobacterial nitrogen fixation.
海洋蓝藻是一组古老的光合微生物,可追溯到 350 万年前。它们是生物活性次生代谢产物的丰富生产者。经过数百万年的自然选择,它们的代谢物优化到拥有影响各种生物靶标的活性。本文讨论了蓝藻的历史和存在记录,以及它们在了解海洋蓝藻随时间演变过程中的作用。最近的进展集中在分离和筛选生物活性化合物及其各自的药用特性上,我们还讨论了化学性质空间和临床试验,其中突出了具有潜在药理作用的化合物,如细胞毒性、抗癌和抗寄生虫特性。数据表明,大约 43%的被研究化合物具有细胞毒性作用,约 8%的化合物具有抗锥虫活性。我们讨论了不同海洋蓝藻群落在地球上固定氮的百分比及其通过进入食物网和提高不同农业和生态领域的生产力对鱼类生产力的影响。强调了海洋蓝藻在碳循环中的作用及其在提高作物植物叶绿体中光合作用 CO 固定效率方面的作用,从而提高了作物的产量。最终,气候变化对海洋蓝藻产生了重大影响,其中温度升高和 CO 提高了蓝藻的固氮作用。