Negligible effects of severe organic matter removal and soil compaction on loblolly pine growth over 10 years

被引:55
作者
Sanchez, FG
Scott, DA
Ludovici, KH
机构
[1] Forestry Sci Lab, Res Triangle Pk, NC 27709 USA
[2] Alexandria Forestry Ctr, Pineville, LA 71360 USA
关键词
compaction; understory control; net primary productivity; loblolly pine; residual biomass; soil nutrients; foliar nutrients;
D O I
10.1016/j.foreco.2006.02.015
中图分类号
S7 [林业];
学科分类号
0829 ; 0907 ;
摘要
The long-term soil productivity (LTSP) study was initiated to examine the effect of soil porosity and organic matter (OM) levels on net primary productivity (NPP). The study design calls for three levels of OM removal (bole, whole tree and whole tree plus forest floor) and three levels of compaction (none, moderate and severe) being imposed on harvested sites prior to planting. Additionally, the effect of understory control on NPP was examined as a split-plot treatment. The study has been installed on 62 sites covering a range of climates, soil types and tree species across the United States and Canada. The inclusion of 46 closely related affiliated sites has created the world's largest coordinated research network devoted to investigating the relationship between land management and sustainable forest productivity. In the forefront of the LTSP network are the installations in North Carolina (NC) and Louisiana (LA) which focus on loblolly pine (Pinus taeda L.) growth. The rapid growth at these sites has resulted in the trees reaching crown closure much earlier than any other LTSP installation. Consequently, these sites may provide the earliest glimpse as to the treatment effects on NPP. Tenth year data from these sites show that large OM removals and severe soil compaction (main treatments) had no significant (alpha <= 0.1) effect on stand volume but control of the understory (split-plot treatment) resulted in greater stand volume compared to plots with no understory control. Plots ameliorated by a one-time fertilizer addition (NC and LA) and bedding (NC only) resulted in small (+8 and -8% for NC and LA, respectively) to large (+69 and +15% for NC and LA, respectively) changes in mean stand volume compared to the experimental plots. Although there were no main treatment effects on stand volume, extractable soil phosphorus in NC and LA were reduced with increasing OM removal. The reduction of extractable soil phosphorus with increasing OM removal on these already phosphorus deficient sites may affect tree growth in the future but have not yet translated to stand volume differences over 10 years. Published by Elsevier B.V.
引用
收藏
页码:145 / 154
页数:10
相关论文
共 36 条
[1]   Vegetation control and fertilization in midrotation Pinus taeda stands in the southeastern United States [J].
Albaugh, TJ ;
Allen, HL ;
Zutter, BR ;
Quicke, HE .
ANNALS OF FOREST SCIENCE, 2003, 60 (07) :619-624
[2]  
ALLEN HL, 1987, J FOREST, V85, P37
[3]  
[Anonymous], 1997, Agricultural Handbook
[4]  
BALDWIN VC, 1987, SO236 USDA FOR SERV
[5]   QUANTIFICATION OF THE EFFECT OF SOIL ORGANIC-MATTER CONTENT ON SOIL PRODUCTIVITY [J].
BAUER, A ;
BLACK, AL .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 1994, 58 (01) :185-193
[6]  
COUNCIL ON SOIL TESTING AND PLANT ANALYSIS, 1992, HDB REF METH SOIL AN, P112
[7]   Progress towards more uniform assessment and reporting of soil disturbance for operations, research, and sustainability protocols [J].
Curran, MP ;
Miller, RE ;
Howes, SW ;
Maynard, DG ;
Terry, TA ;
Heninger, RL ;
Niemann, T ;
van Rees, K ;
Powers, RF ;
Schoenholtz, SH .
FOREST ECOLOGY AND MANAGEMENT, 2005, 220 (1-3) :17-30
[8]  
DADDOW RL, 1983, WSDGTN00005 USDA
[9]   The non-limiting and least limiting water ranges for soil nitrogen mineralization [J].
Drury, CF ;
Zhang, TQ ;
Kay, BD .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 2003, 67 (05) :1388-1404
[10]  
ELLERT BH, 1995, CARBON FORMS FUNCTIO, P199