Department of Biological Sciences, University of Cincinnati, Cincinnati, Ohio 45221.
Appl Environ Microbiol. 1982 May;43(5):1188-95. doi: 10.1128/aem.43.5.1188-1195.1982.
The effects of acid on the microbial decomposition of the dominant aquatic macrophyte (Carex sp.) in Toolik Lake, Alaska were studied in microcosms during the ice-free season of 1980. Toolik Lake is slightly buffered, deep, and very oligotrophic. Microbial activities, as determined by C-acetate incorporation into extractable lipids, associated with Carex litter were significantly (P < 0.01) reduced within 2 days at pHs of 3.0 and 4.0, but not 5.0, 5.5, or 6.0, as compared with ambient controls (pH 7.4). ATP levels were significantly reduced at pH 3.0, but not at the other pHs tested. After 18 days, microbial activity significantly correlated with weight loss (P < 0.05), nitrogen content (P < 0.01), and C/N ratios (P < 0.01) of the litter, but did not correlate with ATP levels. Scanning electron microscopy of the litter surface revealed that the fungi present at ambient pH did not become dominant at pHs below 5.5, diatoms were absent below pH 4.0, and bacterial numbers and extracellular slime were greatly reduced at pH 4.0 and below. Mineralization of CarexC-lignin-labeled or C-cellulose-labeled lignocellulose was reduced at pH 2.0, but not at pH 4.0, 5.0, or 6.0, compared with controls (pH 7). We concluded that if the pH of the water from this slightly buffered lake was sufficiently reduced, rates of litter decomposition would be significantly reduced.
1980 年无冰季,在阿拉斯加图利克湖的微宇宙中研究了酸对优势水生植物(苔草属)微生物分解的影响。图利克湖的缓冲能力较弱,水深且非常贫营养化。通过 C-乙酸盐掺入可提取脂质来测定与苔草属凋落物相关的微生物活性,在 pH 值为 3.0 和 4.0 时,与环境对照(pH 值 7.4)相比,在 2 天内显著降低(P < 0.01),但在 pH 值为 5.0、5.5 和 6.0 时没有显著降低。在 pH 值为 3.0 时,ATP 水平显著降低,但在其他测试 pH 值下没有降低。18 天后,微生物活性与凋落物的重量损失(P < 0.05)、氮含量(P < 0.01)和 C/N 比(P < 0.01)显著相关,但与 ATP 水平无关。凋落物表面的扫描电子显微镜显示,在环境 pH 值下存在的真菌在 pH 值低于 5.5 时不会占优势,pH 值低于 4.0 时没有硅藻,在 pH 值为 4.0 及以下时细菌数量和细胞外黏液大大减少。与对照(pH 值 7)相比,在 pH 值 2.0 时,苔草 C-木质素标记或 C-纤维素标记的木质纤维素的矿化作用降低,但在 pH 值 4.0、5.0 和 6.0 时没有降低。我们得出结论,如果这个略微缓冲的湖泊的水的 pH 值降低到足够低的水平,凋落物分解的速度将显著降低。