Prior exposure to diurnal heating influences soil respiration and N availability upon rewetting

被引:0
作者
Bo Zheng
Tan Dang
Petra Marschner
机构
[1] The University of Adelaide,School of Agriculture, Food and Wine
来源
Biology and Fertility of Soils | 2017年 / 53卷
关键词
Available N; Diurnal heating; Microbial biomass; Rewetting; Soil respiration;
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摘要
On sunny summer days, the top 10 cm of soil in southern Australia are heated to temperatures between 50 and 80 °C for a few hours a day, often for several successive days. These extreme temperature events are likely to have profound effects on the microbiota in these soils, but we do not know how this recurrent heat exposure influences microbial dynamics and associated nutrient cycling. In this study, an air-dry soil from southern Australia was exposed to one or two diurnal heating events with maximum temperature of 50 or 70 °C. The control was left at ambient temperature (Amb). All soils were rapidly rewet. Soil respiration was measured for 7 days after rewetting; microbial biomass C, available N and P were determined before rewetting and 1 and 7 days after rewetting. After heating and before rewetting compared to Amb, microbial biomass C (MBC) was 50–80% lower, but available P was 25% higher in heated soils. Available N differed little between Amb and heated soils. Rewetting resulted in a flush of respiration in Amb and soils heated once, but there was no respiration flush in soils heated twice. Cumulative respiration compared to Amb was about 10% higher in soils heated once and about 25% lower in soils heated twice. In Amb, MBC 1 day after rewetting was similar as before rewetting. But in heated soils, MBC increased from before rewetting to 1 day after rewetting about fourfold. Compared to Amb, available N 1 day after rewetting was 20–30% higher in soils heated to 70 °C. Seven days after rewetting, available N was 10% higher than Amb only in soils heated twice to 70 °C. It can be concluded that diurnal heating kills a large proportion of the microbial biomass and influences soil respiration and nutrient availability after rewetting of soils. The effect of heating depends on both maximum temperature and number of events.
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页码:715 / 721
页数:6
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  • [1] Austin AT(2004)Water pulses and biogeochemical cycles in arid and semiarid ecosystems Oecologia 141 221-235
  • [2] Yahdjian L(1995)Microbial community structure and pH response in relation to soil organic matter quality in wood-ash fertilized, clear-cut or burned coniferous forest soils Soil Biol Biochem 27 229-240
  • [3] Stark JM(2009)Bacterial and fungal growth in soil heated at different temperatures to simulate a range of fire intensities Soil Biol Biochem 41 2517-2526
  • [4] Belnap J(2016)An introduction to the Australian and New Zealand flux tower network—Ozflux Biogeosciences 13 5895-5916
  • [5] Porporato A(2009)Reappraisal of drying and wetting effects on C and N mineralization and fluxes in soils Glob Change Biol 15 808-824
  • [6] Norton U(1985)Response of microbial biomass to alternate moist and dry condition in a soil incubated with 14C-labelled and 15N labelled plant material Soil Biol Biochem 17 329-337
  • [7] Ravetta DA(2015)Effects of fire on the hydrology, biogeochemistry, and ecology of peatland river systems Freshwater Sci 34 1406-1425
  • [8] Schaeffer SM(2010)Rewetting CO2 pulses in Australian agricultural soils and the influence of soil properties Biol Fertil Soils 46 739-753
  • [9] Bååth E(1979)The development of a red-brown earth. I. A reinterpretation of published data Soil Res 17 371-381
  • [10] Frostegård A(2003)A proposed mechanism for the pulse in carbon dioxide production commonly observed following the rapid rewetting of a dry soil Soil Sci Soc Amer J 67 798-805