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首页> 外文期刊>Applied Soil Ecology >Biochar soil amendment increased bacterial but decreased fungal gene abundance with shifts in community structure in a slightly acid rice paddy from Southwest China
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Biochar soil amendment increased bacterial but decreased fungal gene abundance with shifts in community structure in a slightly acid rice paddy from Southwest China

机译:生物炭土壤改良剂增加了细菌含量,但降低了真菌基因的丰度,并改变了中国西南部一种弱酸性稻田的群落结构

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Biochar's role on greenhouse gas emission and plant growth has been well addressed. However, there have been few studies on changes in soil microbial community and activities with biochar soil amendment ( BSA) in croplands. In a field experiment, biochar was amended at rates of 0,20 and 401 ha 1 (CO, C1 and C2, respectively) in May 2010 before rice transplantation in a rice paddy from Sichuan, China. Topsoil (0-15 cm ) was collected from the rice paddy while rice harvest in late October 2011. Soil physico-chemical properties and microbial biomass carbon (MBC) and nitrogen (MBN) as well as selected soil enzyme activities were determined. Based on 16S rRNA and 18S rRNA gene, bacterial and fungal community structure and abundance were characterized using terminal-restriction fragment length polymorphism (T-RFLP) combined with clone library analysis, denaturing gradient gel electrophoresis (DGGE) and quantitative real-time PCR assay (qPCR). Contents of SOC and total N and soil pH were increased but bulk density decreased significantly. While no changes in MBC and MBN, gene copy numbers of bacterial 16S rRNA was shown significantly increased by 28% and 64% and that of fungal 18S rRNA significantly decreased by 35% and 46% under BSA at 20 and 40tha 1 respectively over control. Moreover, there was a significant decrease by 70% in abundance of Methylophilaceae and of Hydrogenophilaceae with an increase by 45% in Anaerolineae abundance under BSA at 40tha~' over control. Whereas, using sequencing DGGE bands of fungal 18S rRNA gene, some bands affiliated with Ascomycota and Glomeromycota were shown inhibited by BSA at rate of 40tha~'. Significant increases in activities of dehydrogenase, alkaline phosphatases while decreased (3-glucosidase were also observed under BSA. The results here indicated a shift toward a bacterial dominated microbial community in the rice paddy with BSA.
机译:Biochar在温室气体排放和植物生长中的作用已得到很好的解决。然而,关于农田中生物炭土壤改良剂(BSA)的土壤微生物群落和活性变化的研究很少。在田间试验中,于2010年5月在中国四川稻田进行水稻移植之前,对生物炭进行了修正,其比例分别为0,20和401 ha 1(CO,C1和C2)。 2011年10月下旬收获水稻时,从稻田收集表土(0-15 cm)。测定土壤的理化性质,微生物生物量碳(MBC)和氮(MBN)以及选定的土壤酶活性。基于16S rRNA和18S rRNA基因,利用末端限制性片段长度多态性(T-RFLP)结合克隆文库分析,变性梯度凝胶电泳(DGGE)和实时荧光定量PCR检测来表征细菌和真菌的群落结构和丰度(qPCR)。 SOC,总氮和土壤pH值均增加,但容重显着下降。虽然MBC和MBN没有变化,但在BSA下20和40tha 1下,细菌16S rRNA的基因拷贝数显着增加了28%和64%,而真菌18S rRNA的基因拷贝数则显着减少了35%和46%。此外,与对照相比,在BSA下,嗜甲基菌科和嗜氢菌科的丰度显着降低了70%,厌氧菌科的丰度提高了45%。而通过对真菌18S rRNA基因的DGGE条带进行测序,发现BSA抑制了一些与子囊菌和Glomeromycota相关的条带,速率为40tha-1。脱氢酶,碱性磷酸酶的活性显着增加,而降低(在BSA中也观察到3-葡糖苷酶。此结果表明,在具有BSA的稻田中,细菌向着以细菌为主的微生物群落的转变。

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