Responses of the soil microbiota to elevated CO2 in an artificial tropical ecosystem

被引:32
作者
Insam, H
Bååth, E
Berreck, M
Frostegård, Å
Gerzabek, MH
Kraft, A
Schinner, F
Schweiger, P
Tschuggnall, G
机构
[1] Univ Innsbruck, Inst Mikrobiol, A-6020 Innsbruck, Austria
[2] Lund Univ, Dept Microbial Ecol, S-22467 Lund, Sweden
[3] Osterreich Forschungszent Seibersdorf GmbH, A-2444 Seibersdorf, Austria
关键词
elevated CO2; climate change; microbial biomass; soil organic carbon; nitrogen turnover; tropical ecosystem;
D O I
10.1016/S0167-7012(99)00010-X
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Plants in artificial tropical ecosystems were grown under ambient (340 mu l l(-1)) and elevated (610 mu l l(-1)) atmospheric CO2 for 530 d under low-nutrient conditions on a substrate free of organic C. At the end of the experiment a number of soil chemical and microbiological variables were determined. Although we found no changes in total soil organic matter under elevated CO2, we did find that after physical fractionation the amount of organic C in the supernatant (< 0.2 mu m) and the amount of water extractable organic C (WEOC) was lower under elevated CO2. The extractable optical density (OD) indicated a higher degree of humification for the elevated than for the ambient CO2 samples (P = 0.032). Microbial biomass C was not significantly altered under high CO2, but total bacterial counts were significantly higher. The microbial biomass C-to-N ratio was also higher at elevated (15.0) than at ambient CO2 (10.0). The number of mycorrhizal spores was lower at high CO2, but ergosterol contents and fungal hyphal lengths were not significantly affected. Changes were found neither in community level physiological profiles (CLPPs) nor in the structural attributes (phospholipid fatty acids, PLFAs) of the microbial community. Overall, the effects on the soil microbiota were small, perhaps as a result of the low nutrient supply and low organic matter content of the soil used in our study. The few significant results showing changes in specific, though relatively minor, organic matter pools may point to possible long-term changes of the more major pools. Furthermore, the data suggest increased competition between plants and microbes for N at high CO2. (C) 1999 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:45 / 54
页数:10
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