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Microbial community composition and activity controls phosphorus transformation in rhizosphere soils of the Yeyahu Wetland in Beijing, China

机译:北京野鸭湖湿地根际土壤微生物群落组成和活性控制磷的转化

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Microorganisms in the rhizosphere of wetland plants can have a significant impact on phosphorus (P) interception. We investigated the seasonal pattern of microbial community structure and its relationship with different P forms in the rhizosphere of three plantsScirpus planiculmis,Zizania latifolia, andPhragmites australisfrom the Yeyahu Wetland, China. Chloroform fumigation-extraction was used to determine the soil microbial biomass P (SMBP) and phospholipid fatty acids (PLFA) were used to characterize microbial community composition. P fractions in rhizosphere soil samples were also observed using sequential chemical fractionation. Results showed that the average total PLFA (TPLFA) contents of rhizosphere soils ranged from 34.9 to 40.7nmol·g−1and were highest in summer. Bacteria were predominant in the rhizospheres of all three plants, accounting for >63% of TPLFA. Aerobic bacteria, represented by 16:0 PLFA, were most abundant. Both organic P (OP) and inorganic P (IP) accumulated in the rhizosphere during the winter die-back phase. Furthermore, both TPLFA and bacterial PLFA decreased with increases in highly resistant OP (HR-OP), occluded P (Oc-P) and Calcium-bound P (Ca-P). This suggests that bacteria play an important role in P transformation and can make use of various P forms. We also found that SMBP was significantly negatively correlated with labile OP (L-OP), moderately labile OP (ML-OP) and HR-OP, reflecting a high degree of cross correlation between SMBP and the PLFA indices.
机译:湿地植物根际中的微生物会对磷(P)的拦截产生重大影响。我们研究了来自也门湿地的三种植物根皮中的Scirpus Planiculmis,Zizania latifolia和Phragmites australis的微生物群落结构的季节性模式及其与不同磷形态的关系。用氯仿熏蒸-萃取法测定土壤微生物量P(SMBP),用磷脂脂肪酸(PLFA)表征微生物群落组成。使用连续化学分馏也观察到了根际土壤样品中的P分数。结果表明,根际土壤的总PLFA(TPLFA)含量在34.9至40.7nmol·g-1之间,夏季最高。细菌在所有三种植物的根际中占主导地位,占TPLFA的> 63%。以16:0 PLFA为代表的需氧细菌最多。在冬季消亡阶段,有机磷(OP)和无机磷(IP)都累积在根际中。此外,TPLFA和细菌PLFA均随着高抗性OP(HR-OP),闭塞P(Oc-P)和钙结合P(Ca-P)的增加而降低。这表明细菌在磷的转化中起着重要的作用,并且可以利用各种磷的形式。我们还发现SMBP与不稳定OP(L-OP),中等不稳定OP(ML-OP)和HR-OP显着负相关,反映了SMBP与PLFA指数之间的高度相关性。

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