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    题名 作者 年代 出处 被引量
1Two galactomannan preparations from seeds from Mimosa scabrella (bracatinga): Complexation with oxovanadium(W/V) and cytotoxicity on HeLa cells显示文摘GUILHERMINA R N CARMEN L P ANAL R 2009J Inorg Bioehem2009,103,:1
2Characteri- zing biomatrix materials using pyrolysis molecular beam mass spectrometer and pattern recognition 显示文摘SHIN E J HAJALIGO M R ANAL F R J 2003J Anal Appl Pyrolysis2003,6869,:1
3Chem显示文摘 Sorasaenee K Xue Z Anal 199769:30761997,69,:1
4Characterizing Biomatrix Materials using Pyrolysis Molecular Beam Mass Spectrometer and Pattern Recognition 显示文摘Shin E J Hajaligol M R Anal F R J 2003Journal of Analytical and Applied Pyrolysis2003,6869,:1
5Chem,显示文摘Burlingance A L Boyd R K Gaskell S J mass spectrometry Anal 199870:647-7161998,70,:1
6Pulmonary artery occlusion pressure and central venous pressure fail to predict ventricular filling volume, cardiac per formance, or the response to volume infusion in normal subjects显示文摘KUMAR A ANAL R BUNNELL E 2004Crit Care Med2004,32,:1
7Effects of cerium oxide nano-particle addition in diesel and diesel-biodiesel-ethanol blends on the performance and emission characteristics of a CI engnie显示文摘Anal Mozhi Selvan V Anand R B Udayakumar M 2009ARPN Journal of Engineering and Applied Sciences2009,4,7:1
8Clinicopathologic study of patients with Bornnann type IV gastric carcinoma显示文摘Kitamura K Beppu R Anal H 1995J Surg On- col1995,58,2:1
9Chem显示文摘Swain G M Ramesham R Anal 199365(4)1993,,:1
10Pulmonary artery occlusion pressure and central venous pressure fail to predict ventricular filling volume,cardiac performance,or the response to volume infusion in normal subjects显示文摘Kumar A Anal R Bunnell E 0,,01:1
11p37 induces tumor invasiveness显示文摘KETCHAM C M ANAl S REUTZEL R 2005Mol Cancer Ther2005,4,7:1
12Chem显示文摘 Walt D R Anal 199769:22131997,69,:1
13Synthesis of TiO2 nanoparticles using microorganisms 显示文摘Anal K Jha Prasad K Kulkami A R 2009Colloids and Surfaces B: Biointerfaces2009,71,2:1
14Chem显示文摘Bakajin O Duke T A J Tegenfeldt J Chou C F Chan S S Austin R H Cox R H Anal 200173:60532001,73,:1
15Comparison of oxygen mass transfer coefficient in simple and extractive fermentation systems 显示文摘DANIELA A V M BEATRIZ R T ANAL F P 2009Biochemical Engineering Journal2009,47,123:1
16Time-series intervention analysis of pedestrian countdown timer effects 显示文摘Huitema B E Houten R V anal H 2014Accident Analysis and Prevention2014,72,:1
17Plant traits related to leaf decomposition processes in arid ecosystems of northern Patagonia显示文摘Aims Plants play an important role in ecosystem processes.Functional meaning of trait variation in wide environmental gradients is well known but is scarcely known across narrow gradients.We analyze the variation of morphological,physical and chemical traits of dom-inant plant species and the potential rates of dry mass loss and N release/immobilization during senesced leaf decomposition of these species across a narrow aridity gradient,and to identify indicative traits useful to set species functional groups sharing decomposition patterns.Methods We analyzed the variation of morphological,physical and chemical traits(specific leaf area,seed mass,N and soluble phenols in green and senesced leaves,plant height)in dominant plant species at 12 sites across an aridity gradient in northern Patagonia,Argentina.We collected senesced leaves of each plant species at each site and used them to estimate the poten-tial rates of dry mass loss and N release/immobilization from decomposing senesced leaves in a microcosm experiment.We analyzed the variation of plant traits and decomposition rates across the aridity gradient.We grouped plants species accord-ing to growth forms(perennial grasses,deciduous shrubs,ever-green shrubs)and different combinations of morpho-physical and chemical traits of green and senesced leaves and compared the potential rates of dry mass loss and N release/immobiliza-tion during leaf decomposition among these groups delimited by each grouping criteria.Important Findings Plant traits did not vary across the aridity gradient.The potential rate of dry mass loss was positively related to aridity,while the potential rate of N release/immobilization did not vary across the gradient.Grouping species by separately morpho-physical and chemical traits resulted in a large overlapping in mean values of decomposition rates among groups.In contrast,plant groupings based on growth forms and those including all morpho-physical and chemical traits of green or senesced leaves yielded groups with differentiated rates of decomposition processes.The two latter groupings clustered spe-cies from more than one growth form indicating some overlapping in the rates of decomposition processes among species of different growth forms.Among traits,N concentration in senesced leaves and plant height explained the highest variation in decomposition rates being positively related to potential rates of dry mass loss and N release/immobilization.We concluded that plant groupings based on morpho-physical and chemical traits of either green or senesced leaves may be more powerful to differentiate functional species groups sharing decomposition patterns than the growth form group-ing.Moreover,plant height and N concentration in senesced leaves may be considered relevant synthetic functional traits in relation to decomposition processes in narrow aridity gradients.Marlene I.Bär Lamas Analía L.Carrera Mónica B.Bertiller 2019Journal of Plant Ecology2019,12,2:0
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