Singh Sunil K, Wu Xiaoxuan, Shao Chuyang, Zhang Huiming
Shanghai Center for Plant Stress Biology, Center for Excellence in Molecular Plant Sciences, Chinese Academy of Sciences, Shanghai, 201602, China.
University of Chinese Academy of Sciences, Beijing, 100049, China.
Stress Biol. 2022 Jan 10;2(1):3. doi: 10.1007/s44154-021-00027-w.
Nutrient availability is a determining factor for crop yield and quality. While fertilization is a major approach for improving plant nutrition, its efficacy can be limited and the production and application of fertilizers frequently bring problems to the environment. A large number of soil microbes are capable of enhancing plant nutrient acquisition and thereby offer environmentally benign solutions to meet the requirements of plant nutrition. Herein we provide summations of how beneficial microbes enhance plant acquisition of macronutrients and micronutrients. We also review recent studies on nutrition-dependent plant-microbe interactions, which highlight the plant's initiative in establishing or deterring the plant-microbe association. By dissecting complex signaling interactions between microbes within the root microbiome, a greater understanding of microbe-enhanced plant nutrition under specific biotic and abiotic stresses will be possible.
养分有效性是作物产量和品质的决定性因素。虽然施肥是改善植物营养的主要方法,但其效果可能有限,而且肥料的生产和施用常常给环境带来问题。大量土壤微生物能够增强植物对养分的获取,从而提供环境友好型解决方案,以满足植物营养需求。在此,我们总结了有益微生物如何增强植物对大量元素和微量元素的获取。我们还综述了近期关于营养依赖型植物 - 微生物相互作用的研究,这些研究突出了植物在建立或阻止植物 - 微生物关联中的主动性。通过剖析根际微生物群落中微生物之间复杂的信号相互作用,将有可能更深入地了解特定生物和非生物胁迫下微生物增强的植物营养。