生物
不规则嗜根菌
拟杆菌
真菌
微生物
植物
细菌
甲壳素
球囊菌门
磷
菌丝
微生物菌剂
共生
菌根
丛枝菌根
生物化学
16S核糖体RNA
材料科学
壳聚糖
冶金
遗传学
作者
Martin Rozmoš,Petra Bukovská,Hana Hršelová,Michala Kotianová,Martin Dudáš,Kateřina Gančarčíková,Jan Jansa
出处
期刊:The ISME Journal
[Springer Nature]
日期:2021-09-20
卷期号:16 (3): 676-685
被引量:47
标识
DOI:10.1038/s41396-021-01112-8
摘要
Arbuscular mycorrhizal (AM) fungi lack efficient exoenzymes to access organic nutrients directly. Nevertheless, the fungi often obtain and further channel to their host plants a significant share of nitrogen (N) and/or phosphorus from such resources, presumably via cooperation with other soil microorganisms. Because it is challenging to disentangle individual microbial players and processes in complex soil, we took a synthetic approach here to study 15N-labelled chitin (an organic N source) recycling via microbial loop in AM fungal hyphosphere. To this end, we employed a compartmented in vitro cultivation system and monoxenic culture of Rhizophagus irregularis associated with Cichorium intybus roots, various soil bacteria, and the protist Polysphondylium pallidum. We showed that upon presence of Paenibacillus sp. in its hyphosphere, the AM fungus (and associated plant roots) obtained several-fold larger quantities of N from the chitin than it did with any other bacteria, whether chitinolytic or not. Moreover, we demonstrated that adding P. pallidum to the hyphosphere with Paenibacillus sp. further increased by at least 65% the gain of N from the chitin by the AM fungus compared to the hyphosphere without protists. We thus directly demonstrate microbial interplay possibly involved in efficient organic N utilisation by AM fungal hyphae.
科研通智能强力驱动
Strongly Powered by AbleSci AI