Instituto de Bioquímica Vegetal y Fotosíntesis, Consejo Superior de Investigaciones Científicas and Universidad de Sevilla, Américo Vespucio 49, 41092 Sevilla, Spain.
UCD School of Biology and Environmental Science, University College Dublin, Belfield, Dublin, Ireland.
J Exp Bot. 2023 Oct 13;74(19):6145-6157. doi: 10.1093/jxb/erad261.
Nitrogen-fixing cyanobacteria from the order Nostocales are able to establish symbiotic relationships with diverse plant species. They are promiscuous symbionts, as the same strain of cyanobacterium is able to form symbiotic biological nitrogen-fixing relationships with different plants species. This review will focus on the different types of cyanobacterial-plant associations, both endophytic and epiphytic, and provide insights from a structural viewpoint, as well as our current understanding of the mechanisms involved in the symbiotic crosstalk. In all these symbioses, the benefit for the plant is clear; it obtains from the cyanobacterium fixed nitrogen and other bioactive compounds, such as phytohormones, polysaccharides, siderophores, or vitamins, leading to enhanced plant growth and productivity. Additionally, there is increasing use of different cyanobacterial species as bio-inoculants for biological nitrogen fixation to improve soil fertility and crop production, thus providing an eco-friendly, alternative, and sustainable approach to reduce the over-reliance on synthetic chemical fertilizers.
固氮蓝藻能与多种植物物种建立共生关系。它们是混杂的共生体,因为同一株蓝藻能够与不同的植物物种形成共生生物固氮关系。本综述将重点介绍不同类型的蓝藻-植物共生体,包括内生和外生,并从结构的角度提供一些见解,以及我们目前对共生交流中涉及的机制的理解。在所有这些共生关系中,植物的受益是显而易见的;它从蓝藻中获得固定氮和其他生物活性化合物,如植物激素、多糖、铁载体或维生素,从而促进植物生长和生产力的提高。此外,越来越多的不同蓝藻物种被用作生物固氮的生物接种剂,以提高土壤肥力和作物产量,从而提供了一种环保、替代和可持续的方法,以减少对合成化肥的过度依赖。