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60篇 您的检索式:作者名="Godbold D"
    题名 作者 年代 出处 被引量
1Biodegradation of low molecular weight organic acids in coniferous forest Podzolic soil显示文摘VAN HEES P A W JONES D L GODBOLD D L 2002Soil Biology &Biochemistry2002,34,:1
2Models of photosynthesis显示文摘Godbold D L Hendry T H Kaduk J 2001Plant Physiology2001,,125:1
3Accumulation of zinc and organic acids in roots of zinc tolerant and non-tolerant ecotypes of Deschampsia caespitosa显示文摘Godbold D L Horst W J Collins J C 1984J Plant Physio1984,116,:1
4Root growth and Zn uptake by two eeotypes of Desehampsia eaespitosa as affected by high Zn concentrations 显示文摘Godbold D L Horst W J Marshner H 1983PlantPhysiol1983,112,:1
5Organic acid behaviour in a calcareous soil: Sorption reactions and biodegradation rates 显示文摘STROM L OWEN A G GODBOLD D L 2001Soil Biology & Biochemistry2001,33,15:1
6Fine root biomass and turnover in southern taiga estimated by root inclusion nets 显示文摘Lukac M Godbold D L 2010Plant and Soil2010,331,12:1
7Organic acid behaviour in a calcareous soil implications for rhizosphere nutrient cycling显示文摘STROM L OWEN A G GODBOLD D h etal 2005Soil Biology and Biochemistry2005,37,11:1
8Cation exchange capacity and lead sorption in ectomycorrhizal fungi显示文摘Marschner P Jentschke G Godbold D L 1998Plant Soil1998,205,:1
9Ectomycorrhizas and Cadmium Toxicity in Norway Spruce Seedlings显示文摘Jentschke G Winter S Godbold D L 1999Tree Physiology1999,19,:1
10Mycorrhizal hyphaltumover as a dominant process for carbon input into soil organic matter显示文摘Godbold D Hoosbeek M R Lukac M 2006Plait and Soil2006,281,:1
11Cation exchange capacity and lead sorption in ectomycorrhizai fungi显示文摘 Jentschke G Godbold D L 1998Plant Soil1998,205,:1
12Elevated atmospheric CO2 concentration changes ectomycorrhizal morphotype assemblages in Betula papyrifera显示文摘Godbold D L Berntson G M 1997Tree Physiology1997,17,:1
13Models of photosynthesis 显示文摘Godbold D L Hendry T H Kaduk J 2001Plant Physiology2001,125,:1
14Growth and mycorrhizal colonization of three North American tree species under elevated atmospheric CO2 显示文摘Godbold D L Berntson G M Bazzaz F A 1997New Phytologist1997,137,:1
15Whole plant aspects of heavy metal-induced changes in CO2 uptake and water relations of spruce(Picea abies)seedlings显示文摘Schlegel H Godbold D L Huttermann A 1987Physiol Plant1987,69,:1
16Topologyscaling relations and Leonardo's rule in root systems from African tree species 显示文摘Opplt A L Kurth W Godbold D L 2001Tree Physiology2001,21,23:1
17Cadmium and copper change root growth and morphology of Pinus pinca and Pinus pinaster seedlings显示文摘Arduini I Godbold D L Onnis A 1994Physiol Plant1994,92,:1
18Whole plant aspects of heavy metal-induced changes in CO2 uptake and water relations of spruce (Picea abies)seedlings显示文摘SCHLEGEL H GODBOLD D L HUTTERMANN A 1987Physiology Plant1987,69,:1
19Contrasting rooting patterns of some arid-zone fruit tree species from Botswana-Ⅱ: coarse root distribution显示文摘Oppelt A L Kurth W Godbold D L 2005Agro Forestry Systems2005,64,1:1
20Root turnoverand root necromass accumulation of Norway spruce (Piceaabies )are affected by soil acidity 显示文摘Godbold D L Fritz H W Jentschke G 2003Tree Physiology2003,23,13:1
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