| Literature DB >> 32376905 |
Jens Leifeld1, Kristy Klein2, Chloé Wüst-Galley2.
Abstract
Peatlands accumulate organic matter (OM) under anaerobic conditions. After drainage for forestry or agriculture, microbial respiration and peat oxidation induce OM losses and change the stoichiometry of the remaining organic material. Here, we (i) evaluate whether land use (cropland CL, grassland GL, forest FL, natural peatland NL) is associated with different peat stoichiometry, (ii) study how peat stoichiometry changes with OM content and (iii) infer the fate of nitrogen upon soil degradation. Organic C and soil N were measured for 1310 samples from 48 sites in Switzerland, and H and O for 1165. The soil OM content and C/N ratio were most sensitive to land use and are hence best suited as indicators for peatland degradation. OM contents (CL < GL < FL < NL), H/C, O/C, C/N ratios, and OM oxidation states were significantly different between land use types in top- and subsoils. With decreasing bulk OM content, C was relatively depleted while H and particularly N were higher. The data suggest very high N mobilization rates from strongly decomposed peat in agricultural topsoil. A comparison to peat C and N from mostly intact peatlands of the Northern hemisphere reveals that agriculture and, to a lesser extent, forestry induce a progressed state of soil degradation.Entities:
Year: 2020 PMID: 32376905 PMCID: PMC7203203 DOI: 10.1038/s41598-020-64275-y
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Site overview.
| Site name | Coordinate WGS 84 | Elevation (m asl) | Mean annual temperature (°C) | Mean annual precipitation (mm) | Soil pH (topsoil)[ | Land use | Reference for site |
|---|---|---|---|---|---|---|---|
| Brüttelen | 47.03°N, 7.18°E | 438 | 9.9 | 1009 | 6.7 | CL | a |
| Cressier_Mis. | 47.04°N, 7.05°E | 430 | 10.2 | 1066 | 7.9 | CL | b |
| Gals I | 47.04°N, 7.07°E | 430 | 10.1 | 1073 | 6.5 | CL | c |
| Im Moos | 47.38°N, 9.57°E | 414 | 10.1 | 1392 | 6.0 | CL | a |
| Lüchingen | 47.38°N, 9.57°E | 414 | 10.1 | 1392 | 6.1 | CL | a |
| Parzelle33 | 46.98°N, 7.05°E | 431 | 10.2 | 981 | 6.6 | CL | d |
| Spring | 46.98°N, 7.05°E | 431 | 10.2 | 981 | 5.5 | CL | this study |
| Treiten | 47.01°N, 7.15°E | 439 | 10.0 | 1011 | 6.2 | CL | a |
| Staatswald I | 46.98°N, 7.09°E | 431 | 10.1 | 994 | 6.3 | CL | this study |
| Mühleturnen | 46.82°N, 7.52°E | 544 | 8.8 | 1083 | 6.3 | CL | a |
| Ägeriried | 47.07°N, 8.40°E | 910 | 9.3 | 1343 | 3.4 | FL | this study |
| Bannwald | 47.01°N, 8.19°E | 860 | 7.0 | 1527 | 3.6 | FL | a |
| Birmensdorf | 47.36°N, 8.45°E | 560 | 9.3 | 1137 | 4.1 | FL | a |
| Dévin des Dailles I | 46.52°N, 6.96°E | 1100 | 6.2 | 1470 | 3.9 | FL | e |
| Dévin des Dailles II | 46.52°N, 6.96°E | 1100 | 6.2 | 1470 | 3.7 | FL | e |
| Foremoos | 47.01°N, 8.21°E | 960 | 6.8 | 1653 | 3.8 | FL | e |
| Gals II | 47.04°N, 7.07°E | 430 | 10.1 | 1073 | 7.3 | FL | c |
| Hagenmoos | 47.24°N, 8.52° E | 600 | 9.0 | 1262 | 4.1 | FL | this study |
| Joux Derrière | 46.58°N, 7.00°E | 1080 | 6.4 | 1331 | 3.8 | FL | e |
| Maas | 47.36°N, 8.46°E | 560 | 9.0 | 1136 | 3.9 | FL | e |
| Meiestossmoos I | 47.01°N, 8.21°E | 960 | 6.8 | 1653 | 3.9 | FL | e |
| Meiestossmoos II | 47.01°N, 8.21°E | 960 | 6.8 | 1653 | 3.8 | FL | e |
| Meiestossmoos III | 47.01°N, 8.21°E | 960 | 6.8 | 1653 | 3.6 | FL | a |
| Sigigerwald | 47.05°N. 8.15°E | 830 | 7.7 | 1333 | 4.3 | FL | e |
| Sömmerigchopf I | 47.21°N, 9.40°E | 1300 | 6.3 | 1971 | 4.5 | FL | e |
| Sömmerigchopf II | 47.21°N, 9.40°E | 1300 | 6.3 | 1971 | 3.9 | FL | e |
| Sömmerigchopf III | 47.21°N, 9.40°E | 1300 | 6.3 | 1971 | 4.8 | FL | a |
| Staatswald II | 46.98°N, 7.09°E | 431 | 10.1 | 994 | 3.4 | FL | this study |
| Staatswald III | 46.98°N, 7.09°E | 431 | 10.1 | 994 | 3.3 | FL | this study |
| Staatswald IV | 46.98°N, 7.09°E | 431 | 10.1 | 994 | 4.2 | FL | a |
| Vorderwengi I | 47.20°N, 9.10°E | 1070 | 6.3 | 2152 | 3.4 | FL | a |
| Vorderwengi II | 47.20°N, 9.10°E | 1078 | 6.3 | 2152 | 4.1 | FL | e |
| Weidli | 46.77°N, 7.28°E | 850 | 7.7 | 1262 | 3.9 | FL | a |
| Chiemiwald | 46.85°N, 7.17°E | 570 | 9.1 | 1060 | 3.5 | FL | e |
| Cressier II | 47.04°N, 7.05°E | 430 | 10.2 | 1066 | 7.4 | GL | b |
| Eigenried | 47.09° N, 8.53°E | 985 | 9.1 | 1413 | 4.7 | GL | this study |
| Gals III | 47.04°N, 7.07°E | 430 | 10.1 | 1073 | 6.3 | GL | c |
| Kirchenthurnen | 46.82°N, 7.52°E | 540 | 8.8 | 1083 | 5.5 | GL | a |
| Mühleturnen | 46.82°N, 7.52°E | 540 | 8.8 | 1083 | 6.0 | GL | a |
| Rüthi | 47.28°N, 9.54°E | 435 | 10.2 | 1229 | 5.8 | GL | a |
| Sömmerigchopf IV | 47.22°N, 9.40°E | 1300 | 5.4 | 2151 | 5.3 | GL | a |
| Seebodenalp I | 47.03° N, 8.27° E | 1025 | 9.3 | 1171 | 3.6 | GL | d |
| Seebodenalp II | 47.03° N, 8.27° E | 1025 | 9.3 | 1171 | 4.3 | GL | this study |
| Seebodenalp III | 47.05° N, 8.27° E | 1077 | 9.3 | 1099 | 4.6 | GL | this study |
| Vorderwengi III | 47.20°N, 9.10°E | 1070 | 6.3 | 2152 | 7.0 | GL | a |
| Tourbière au Paquier dessus | 46.67°N, 7.16°E | 1440 | 5.2 | 1791 | 3.8 | NL | e |
| Rüchiwald | 46.88°N, 8.04°E | 1640 | 4.8 | 2039 | 3.8 | NL | e |
| Etang de la Gruyere | 47.24° N, 7.05° E | 998 | 6.5 | 1554 | 4.0 | NL | this study |
| 1 in water | |||||||
a[45], b[46], c[47], d[19], e[18].
Key chemical properties (mean ± one SE) of the studied peat samples, classified by land use. CL cropland, GL grassland, FL forest, NL natural land. H/C and O/C ratios are on a molar basis, C/N ratios on a per mass basis.
| OM | SOC | N | H/C | O/C | C/N | Cox | OR | |
|---|---|---|---|---|---|---|---|---|
| mg g−1 | ||||||||
| all | 802.9 (6.7) | 423.4 (3.5) | 17.8 (0.2) | 1.37 (0.01) | 0.55 (<0.01) | 25.7 (0.3) | −0.15 (0.01) | 1.07 (−0.01) |
| CL | 569.7 (18.6)a | 311.9 (9.4)a | 17.2 (0.4)a | 1.47 (0.02)c | 0.54 (0.01)b | 17.9 (0.4)a | −0.22 (0.03)a | 1.10 (0.01)b |
| GL | 668.9 (13.9)b | 357.5 (7.8)b | 18.4 (0.3)b | 1.46 (0.01)c | 0.58 (0.01)c | 19.6 (0.4)b | −0.15 (0.02)b | 1.07 (<0.01)a |
| FL | 893.3 (4.7)c | 476.1 (2.8)c | 17.7 (0.2)a | 1.30 (0.01)a | 0.54 (<0.01)b | 29.6 (0.4)c | −0.12 (0.01)b | 1.05 (<0.01)a |
| NL | 953.9 (3.2)d | 521.8 (3.3)d | 17.1 (0.5)a | 1.35 (0.01)b | 0.52 (0.01)a | 33.8 (1.1)d | −0.23 (0.01)a | 1.08 (<0.01)b |
| CL | 451.4 (22.4)a | 230.6 (10.7)a | 15.5 (0.5)a | 1.53 (0.03)c | 0.56 (0.02)a | 14.5 (0.3)a | −0.23 (0.05)a | 1.10 (0.01)b |
| GL | 573.7 (16.9)b | 290.1 (9.7)b | 18.1 (0.5)b | 1.54 (0.02)c | 0.63 (0.01)b | 16.3 (0.5)b | −0.10 (0.03)b | 1.07 (0.01)a |
| FL | 878.8 (7.3)c | 459.8 (3.7)c | 18.8 (0.3)b | 1.32 (0.01)a | 0.57 (0.01)a | 26.9 (0.6)c | −0.08 (0.01)b | 1.05 (<0.01)a |
| NL | 935.4 (5.1)d | 483.7 (4.2)d | 15.9 (0.9)a | 1.39 (0.01)b | 0.59 (0.01)a | 35.7 (2.8)d | −0.12 (0.02)b | 1.05 (<0.01)a |
| CL | 682.9 (22.4)a | 373.3 (11.2)a | 18.5 (0.5)b | 1.39 (0.02)c | 0.52 (0.01)b | 20.4 (0.5)a | −0.22 (0.02)b | 1.09 (0.01)b |
| GL | 785.4 (17.5)b | 424.7 (9.8)b | 18.8 (0.4)b | 1.38 (0.01)c | 0.53 (0.01)b | 23.0 (0.5)b | −0.20 (0.02)b | 1.08 (0.01)b |
| FL | 904.8 (6.1)c | 488.9 (4.0)c | 16.9 (0.3)a | 1.29 (0.01)a | 0.52 (0.01)b | 31.7 (0.6)c | −0.15 (0.01)c | 1.06 (<0.01)a |
| NL | 963.1 (3.7)d | 540.8 (2.6)d | 17.6 (0.6)a | 1.33 (0.01)b | 0.48 (<0.01)a | 32.9 (1.0)c | −0.29 (0.01)a | 1.09 (<0.01)c |
Number (n) of all samples for SOC, N and C/N: 1310, for OM, H/C, O/C: 1166, Cox and OR: 1156; n 0–0.3 m for SOC and C/N: 581, for OM, H/C, O/C: 531, Cox and OR: 528. Cox: degree of oxidation of organic C; OR: oxidative ratio according to 28, see methods.
Letters indicate differences in values between the different land use types (LSD, p < 0.05).
ANOVA results for all soil samples and differentiated by top- and subsoil (0–0.3 and >0.3 m).
| OM | SOC | N | C/N | H/C | O/C | Cox | |||||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| d.f. | F | p | d.f. | F | p | d.f. | F | p | d.f. | F | p | d.f. | F | p | d.f. | F | p | d.f. | F | p | |
| Land-use | 4 | 278.05 | * | 4 | 289.66 | * | 4 | 304.39 | * | 4 | 150.64 | * | 4 | 1748.1 | * | 4 | 568.54 | * | 4 | 14.96 | * |
| Site | 36 | 44.09 | * | 44 | 34.03 | * | 44 | 15.75 | * | 44 | 19.30 | * | 36 | 14.516 | * | 36 | 14.96 | * | 36 | 9.71 | * |
| Error | 1118 | 1261 | 1262 | 1262 | 1126 | 1115 | 1116 | ||||||||||||||
| Land-use | 4 | 238.13 | * | 4 | 233.25 | * | 4 | 239.79 | * | 4 | 100.20 | * | 4 | 1294.1 | * | 4 | 458.42 | * | 4 | 5.37 | <0.01 |
| Site | 35 | 43.14 | * | 44 | 43.13 | * | 35 | 22.84 | * | 44 | 15.62 | * | 35 | 12.39 | * | 35 | 9.92 | * | 35 | 5.46 | * |
| Error | 487 | 533 | 502 | 533 | 490 | 486 | 487 | ||||||||||||||
| Land-use | 4 | 397.57 | * | 4 | 307.24 | * | 4 | 301.9 | * | 4 | 160.25 | * | 4 | 1722.5 | * | 4 | 574.71 | * | 4 | 28.24 | * |
| Site | 33 | 23.38 | * | 33 | 21.48 | * | 33 | 8.01 | * | 42 | 12.05 | * | 33 | 9.26 | * | 33 | 10.90 | * | 33 | 7.24 | * |
| Error | 590 | 621 | 620 | 683 | 597 | 590 | 590 | ||||||||||||||
*P < 0.001.
Figure 1Soil organic matter O/C (upper panel), H/C (middle), and N/C (lower panel) ratios as related to SOC concentration in peatlands. Symbols represent the four studied land use types. Coefficients of determination for linear regressions were 0.22, 0.50, and 0.59 for O/C, H/C, and N/C, respectively (For details, see Suppelementary Table S1).
Figure 2Deviation in sample stoichiometry from the average stoichiometry, based on molar percentages, of the whole data set for each element. In addition, soil C/N ratios are shown. Data are plotted as a function of soil OM content. Lines represent running averages (n = 10 samples) for each parameter. For C/N ratios, the running average for samples from forest and natural sites is displayed as a solid dark green line, and the one for samples from cropland and grassland sites as a solid grey line.
Figure 3Comparison of C/N ratios and SOC contents of Northern Hemisphere peatlands[7] with the current data set from temperate, mostly managed peatlands in Switzerland. Vertical lines group the data set into classes of different SOC content; error probabilities indicate whether C/N ratios of the current data set are significantly below that of the Loisel data set[7]. The small insert shows distribution of C/N ratios for both data sets.