Effect of long-term continuous cropping of strawberry on soil bacterial community structure and diversity

根际 单作 鞘脂单胞菌属 硝基螺 微生物种群生物学 生物 农学 大块土 单作 土壤质量 相对物种丰度 植物 细菌 土壤水分 丰度(生态学) 假单胞菌 生态学 农业 种植 遗传学
作者
Weihua Li,Qizhi Liu,Peng Chen
出处
期刊:Journal of Integrative Agriculture [Elsevier BV]
卷期号:17 (11): 2570-2582 被引量:70
标识
DOI:10.1016/s2095-3119(18)61944-6
摘要

Long-term monoculture leads to continuous cropping (CC) problems, which complicate agricultural production, both locally and abroad. This study contrasted the different bacterial community compositions, physicochemical properties and enzyme activities of strawberry soil subjected to CC, CC rhizosphere (CCR), non-CC (NCC) and non-CC rhizosphere (NCCR) treatments. The soil physicochemical properties and enzyme activities were significantly reduced after long-term CC. In addition, five variation trends were observed for the 11 major bacterial genera in the soil. Sphingomonas was the only stable group among all treatments. The proportions of Novosphingobium, Rhodoplanes, Povalibacter, Cellvibrio and Stenotrophobacter decreased after CC. The relative abundances of Pelagibius, Thioprofundum and Allokutzneria increased only in the CC treatment. Nitrospira were more abundant in rhizosphere soil than in non-rhizosphere soil. The relative abundance of Bacillus increased after CC. Redundancy analysis revealed that Bacillus, Pelagibius and Allokutzneria had significant negative correlations with the soil physicochemical properties and enzyme activities. Therefore, these genera may be the key bacteria influenced by the physicochemical properties and enzyme activities altered by replanting. These results indicate that long-term CC of strawberry leads to less favourable rhizosphere soil conditions, which can be understood as a stress-induced response of the bacterial community diversity. Further research is needed to determine how the quality of soil is reduced by the shift in the diversity of the soil bacterial community.
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