Forest & Fruit Tree Research Institute, Shanghai Academy of Agriculture Sciences, Shanghai, China.
Shanghai Key Laboratory of Facility Horticulture Technology, Shanghai, China.
Microb Biotechnol. 2023 Jun;16(6):1373-1392. doi: 10.1111/1751-7915.14253. Epub 2023 Mar 25.
In order to address the global crisis in pear productivity, there has been increased attention given to advocating for the use of organic fertilizers. As part of this effort, researchers have been investigating the microbial properties of organic fertilizers to better understand their potential impact on fruit productivity. Our research focused specifically on the impact of four different ratios of sheep manure (SM) and chemical fertilizers (CF) on pear productivity. We found that replacing CF with SM resulted in a proliferation of gammaproteobacteria, Chlamydiae, Bastocatellia and Clostridia in the soil rhizosphere, which is the region around the roots of plants where most nutrient uptake occurs. Using redundancy analysis, we were able to determine that SM was particularly effective at promoting the growth of gammaproteobacteria and clostridia, which were associated with C:N ratios around 14:1 as well as the availability of K, Fe, Zn and Cu. This combination of factors was conducive to a transition from vegetative growth to reproductive growth, resulting in an increase in pear production from 43 to 56 tons per hectare. We also discovered that Blastociella acts as a buffering system in regulating soil acidity. Taken together, our findings indicate that a combination of SM and CF can improve the abundance of beneficial bacteria in the rhizosphere, leading to an increase in pear productivity.
为了解决全球梨产量危机,人们越来越关注提倡使用有机肥。作为这一努力的一部分,研究人员一直在研究有机肥的微生物特性,以更好地了解它们对水果生产力的潜在影响。我们的研究专门针对四种不同比例的羊粪(SM)和化肥(CF)对梨产量的影响。我们发现,用 SM 替代 CF 会导致土壤根际中γ-变形菌门、衣原体、巴斯托卡特利亚菌和梭菌的增殖,根际是植物根部周围的区域,大多数养分吸收都发生在这里。通过冗余分析,我们能够确定 SM 特别有效地促进了γ-变形菌门和梭菌的生长,这与 C:N 比约为 14:1 以及 K、Fe、Zn 和 Cu 的可用性有关。这种因素组合有利于从营养生长向生殖生长的转变,导致每公顷梨产量从 43 吨增加到 56 吨。我们还发现 Blastociella 在调节土壤酸度方面起着缓冲系统的作用。总的来说,我们的研究结果表明,SM 和 CF 的结合可以增加根际有益细菌的丰度,从而提高梨的产量。