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10篇 您的检索式:作者名="Keiblinger"
    题名 作者 年代 出处 被引量
1Effects of stoichiometry and temperature perturbations on beech leaf litter decomposition,enzyme activities and protein expression 显示文摘Keiblinger KM Schneider T Roschitzki B Schmid E Eberl L H?mmerle I Leitner S Richter A Wanek W Riedel K Zechmeister-Boltenstern S 2012Biogeosci2012,9,11:1
2Soil metapro- teomics-comparative evaluation of protein extraction proto- cols显示文摘Katharina M Keiblingera M Keiblinger 2012Soil Biology & Biochemistry2012,,54:1
3The effect of resource quantity and resource stoichiometry on microbial carbon-use-efficiency显示文摘Keiblinger KM Hall EK Wanek W 0,,03:1
4The effect of resource quantity and resource stoichiometry on microbial carbon-use-effi- ciency 显示文摘Keiblinger K M Hall E K Wanek W 2010FEMS Microbiology Ecology2010,,:1
5Who is who in litter decomposition? Metaproteomics reveals major microbial players and their biogeochemical functions显示文摘Schneider T Keiblinge KM Schmid E 2012The ISME Journal2012,6,:1
6Soil metaproteomics-a comparison of extraction protocols显示文摘Keiblinger KM' WilhartitzIC Schneider T 2012Soil Biology & Biochemistry2012,54,:1
7The effect of resource quantity and resource stoichiometry on microbial car-bon-use-efficiency显示文摘Keiblinger K M Hall E K Wanek W 0,,:1
8A closeup study of early beech litter decomposition: Potential drivers and microbial interactions on a changing substrate显示文摘Brandst/itter C Keiblinger K Wanek W Zechmeister- Boltenstern S 2013Plant Soil2013,371,12:1
9The application of ecological stoichiometry to plant-microbial-soil organic matter transformations显示文摘ZECHMEISTER-BOLTENSTERN S KEIBLINGER K M MOOSHAMMER M 2015Ecological monographs2015,85,2:1
10Short-Term Response of Soil Microbial Biomass to Different Chabazite Zeolite Amendments显示文摘Zeolitites (ZTs) are rocks containing more than 50% of zeolite minerals and are known to be a suitable material for agricultural purposes by improving soil physicochemical properties and nitrogen (N) use efficiency. However, little is known about their effects on soil microbial biomass. This study aimed to evaluate short-term effects of different chabazite-rich ZT (CHAZT) amendments on soil microbial biomass and activity. A silty-clay agricultural soil was amended in three different ways, including the addition of natural (5% and 15%) and NH_4^+-enriched (10%) CHAZT. Soil dissolved organic carbon (C), total dissolved N, NH_4^+, NO_3^-, NO_2^-, microbial biomass C and N, and ergosterol were measured periodically over 16 d in a laboratory incubation. To verify the microbial immobilization of the N derived from NH_4^+-enriched CHAZT, a high15N source was used for enriching the mineral to measure the microbial biomass δ15N signature. An increase in the ergosterol content was observed in the soil amended with 5% natural CHAZT. However, no similar result was observed in the soil amended with 15% natural CHAZT, suggesting that the fungal biomass was favored at a lower CHAZT application rate. In the soil amended with NH+ 4-enriched CHAZT, microbial biomass N was related to NO_3^-production over time and inversely related to NH_4^+, suggesting high nitrification process. Isotopic measurements on microbial biomass confirmed immediate assimilation of N derived from NH_4^+-enriched CHAZT. These results suggested that the NH_4^+-enriched CHAZT used in this study supplied an immediately available N pool to the microbial biomass.Giacomo FERRETTI Katharina Maria KEIBLINGER Dario DI GIUSEPPE Barbara FACCINI Nicolò COLOMBANI Sophie ZECHMEISTER-BOLTENSTERN Massimo COLTORTI Micòl MASTROCICCO 2018Pedosphere2018,28,2:0
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