| Literature DB >> 27526781 |
Shangbin Bai1,2, Richard T Conant2, Guomo Zhou3, Yixiang Wang2,3, Nan Wang1, Yanhua Li4, Kaiqiang Zhang3.
Abstract
Across southern China, Moso bamboo has been encroaching on most neighboring secondary broad-leaved forests and/or coniferous plantations, leading to the land cover changes that alter abiotic and biotic conditions. Little is known about how this conversion alters soilEntities:
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Year: 2016 PMID: 27526781 PMCID: PMC4985758 DOI: 10.1038/srep31480
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Bamboo culm density in 2005 and 2014 across three contiguous forest zones arrayed along the bamboo encroachment pathway from right to left.
The encroachment front moved forward about 9.4 m over 9 years in transition zone (MF). Each point refers to moso bamboo density for corresponding location in each forest zone. The line connecting points together is a smoothing spline. Five replicated samples were collected near the center of each forest plot. BLF: native broad-leaved forest; MF: mixed bamboo and broad-leaved forest; BF: bamboo forest.
Soil properties of the 0–60 cm depth in the plots across three forest types in 2005 and 2014.
| Time | Stands | Soil layer(cm) | Bulk density(g cm−3) | Water content (%) | pH value |
|---|---|---|---|---|---|
| 0–20 | 1.01 a B | 31.3A− | 5.19 a | ||
| BF | 20–40 | 1.30 a A | 30.1 b A− | 5.15 a | |
| 40–60 | 1.35A | 27.2 b B | 5.16 a | ||
| 0–20 | 0.95 b B | 32.2 B− | 5.02 b A | ||
| 2005 | MF | 20–40 | 1.22 b A | 33.4 a A | 4.71 b B− |
| 40–60 | 1.32A | 31.6 a B+ | 4.67 b B− | ||
| 0–20 | 0.93 b B | 30.8A− | 4.65 c | ||
| BLF | 20–40 | 1.20 b A | 29.1 c B− | 4.58 b | |
| 40–60 | 1.31A | 28.4 b B | 4.61 b | ||
| 0–20 | 1.01 a B | 32.9 b A+ | 5.21 a | ||
| BF | 20–40 | 1.29A | 32.0 b A+ | 5.17 a | |
| 40–60 | 1.34A | 28.3 B | 5.14 a | ||
| 0–20 | 0.98 a B | 34.3 a A+ | 4.91 b | ||
| 2014 | MF | 20–40 | 1.27A | 33.1 a A | 5.03 b + |
| 40–60 | 1.34A | 28.8 B− | 5.00 b + | ||
| 0–20 | 0.93 b B | 33.4 abA+ | 4.72 c | ||
| BLF | 20–40 | 1.21A | 31.6 b B+ | 4.67 c | |
| 40–60 | 1.31A | 29.0C | 4.65 c |
BF: bamboo forest; MF: mixed bamboo and broad-leaved forest; BLF: native broad-leaved forest.
Figures followed by different lowercase letters in the same column indicate significant differences among forests within each soil layer in the same year at 0.05 level; different uppercase letters in the same column indicate significant differences among different soil layers within each forest in the same year at 0.05 level; a plus and a minus sign in the same column indicate significant differences between 2005 and 2014 within each soil layer at the same forest at 0.05 level.
Figure 2Soil organic C (a), Soil total N (b), Soil microbial biomass C (c), Soil microbial biomass N (d), Soil water soluble-organic C (e), and Soil water-soluble organic N (f) at BF, MF, and BLF in the April of 2005 and 2014.
Different uppercase letters indicate significant differences to the total pool size among forests in 2005 (p < 0.05); different lowercase letters indicate significant differences to the total pool size among forests in 2014; a plus and a minus sign indicate significant differences to the total pool size between 2005 and 2014 at the same forest.
Soil carbon and nitrogen contents in the topsoil of different stands in 2005 and 2014.
| 2005 BF | 2005 MF | 2005 BLF | 2014 BF | 2014 MF | 2014 BLF | |
|---|---|---|---|---|---|---|
| TOC (g kg−1) | 39.15a | 50.98bA | 52.31b | 37.23a | 40.37aB | 54.18b |
| MBC (mg kg−1) | 293.71a | 266.40bA | 256.46c | 299.19a | 280.00aB | 250.46c |
| WSOC (mg kg−1) | 410.32a | 370.78bA | 350.12c | 420.00a | 421.10aB | 340.86b |
| TN (g kg−1) | 2.06a | 2.81bA | 2.97b | 2.10a | 2.31aB | 2.90b |
Note: figures followed by different lowercase letters in the same row indicate significant differences among forests in the same year at 0.05 level; different uppercase letters in the same row indicate significant differences between in 2005 and 2014 in the same forests at 0.05 level.