AGGREGATE STABILITY UNDER OAK AND PINE AFTER 4 DECADES OF SOIL DEVELOPMENT

被引:46
作者
GRAHAM, RC [1 ]
ERVIN, JO [1 ]
WOOD, HB [1 ]
机构
[1] US FOREST SERV, PACIFIC SW EXPT STN, RIVERSIDE, CA 92507 USA
关键词
D O I
10.2136/sssaj1995.03615995005900060033x
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
The development of water-stable aggregates is an important soil genesis process because it strongly influences important soil characteristics, including infiltration, aeration, and erodibility. We studied a 41-yr-old biosequence of lysimeter soils at the San Dimas Experimental Forest in southern California to assess water-stable aggregates as a function of the imposed scrub oak (Quercus dumosa Nutt.) and Coulter pine (Pinus coulteri B. Don) communities. Significantly different aggregate stabilities developed in these initially identical and homogeneous soils. Earthworms under the oak produced a 7-cm-thick A horizon composed almost entirely of worm casts. Casts were also deposited within the litter of the Oi horizon. The A horizon and the Oi horizon worm casts had aggregate stabilities near 90%, approximate to 35 g kg(-1) organic C, and abundant fungal hyphae, as observed by scanning electron microscopy. The I-cm-thick A horizon under pine contained no worm casts and had 78% water-stable aggregates, 12.9 g kg(-1) organic C, and abundant very fine roots and fungal hyphae. Subsoils under both oak and pine had 43 to 51% water-stable aggregates, attributable to inorganic binding mechanisms since organic C contents were less than or equal to 4 g kg(-1), roots were relatively few, and no fungal hyphae were observed. After 41 yr of soil formation, aggregate stability was approximate to 15% greater and the volume of stable aggregates was seven times larger under scrub oak than under Coulter pine.
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页码:1740 / 1744
页数:5
相关论文
共 29 条
[1]  
[Anonymous], 1993, SOILS SOIL FERTILITY
[2]  
Blake G.R., 1986, AGRON MONOGR, V5, P363, DOI DOI 10.2136/SSSABOOKSER5.1.2ED.C13
[3]  
COLMAN EA, 1947, 47 PAC SW FOR RANG E
[4]   THE ROLE OF ROOTS, FUNGI AND BACTERIA ON CLAY PARTICLE ORGANIZATION - AN EXPERIMENTAL APPROACH [J].
DORIOZ, JM ;
ROBERT, M ;
CHENU, C .
GEODERMA, 1993, 56 (1-4) :179-194
[5]  
DUNN PH, 1988, PSW104 P SW FOR RANG
[6]  
EDWARDS C A, 1977, P333
[7]  
Gee G. W., 1986, AGRONOMY-BASEL, P337
[8]   MORPHOLOGICAL DEVELOPMENT AND CLAY REDISTRIBUTION IN LYSIMETER SOILS UNDER CHAPARRAL AND PINE [J].
GRAHAM, RC ;
WOOD, HB .
SOIL SCIENCE SOCIETY OF AMERICA JOURNAL, 1991, 55 (06) :1638-1646
[9]  
Kemper W. D., 1986, Methods of soil analysis. Part 1. Physical and mineralogical methods, P425
[10]  
Lee K. E., 1985, Earthworms: their ecology and relationships with soils and land use.