THE INFLUENCE OF CROP-ROTATION AND SOIL FUMIGATION ON A MYCORRHIZAL FUNGAL COMMUNITY ASSOCIATED WITH SOYBEAN

被引:47
作者
AN, ZQ
HENDRIX, JW
HERSHMAN, DE
FERRISS, RS
HENSON, GT
机构
[1] UNIV KENTUCKY,DEPT PLANT PATHOL,LEXINGTON,KY 40546
[2] MCLEAN CTY EXTENS OFF,CALHOUN,KY 42327
关键词
ENDOGONACEAE; GLYCINE-MAX; SOIL ECOLOGY; VESICULAR-ARBUSCULAR MYCORRHIZAL FUNGI; COMMUNITY ANALYSIS;
D O I
10.1007/BF00203611
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Population densities of mycorrhizal fungal propagules in a western Kentucky field highly productive for soybean were measured by bioassay throughout a soybean production season. The primary experimental variables were crop rotation (soybeans in 1985, then 2 years in corn, milo, fescue, or soybean, then soybean in 1988 on all plots when populations of propagules were determined) and soil fumigation with 67% methyl bromide/33% chloropicrin. Of the 20 species in three genera found, Glomus predominated both in terms of number of species and population densities. Most species of Glomus occurred at higher population densities in rotated plots than in continuous soybean plots. In continuous soybean plots, species of Gigaspora made up a much higher proportion of the mycorrhizal fungal community than in rotated crops. Species richness and diversity were lower, and dominance and equitability higher, in nonfumigated continuous soybean plots than in rotated plots early in the season, but the differences were not present at the end of the season. Soil fumigation killed most propagules in the upper 15 cm of soil, but after production of a crop of soybeans, populations of total propagules and most Glomus spp. recovered to prefumigation densities. However, Gigaspora margarita and Gigaspora gigantea did not recover similarly. Fumigation reduced species richness and diversity and increased dominance, but the effects were ameliorated by the end of the season. Colonization of roots was low during vegetative growth but increased rapidly after the onset of soybean reproduction. There was no evidence for mutualism during the early half of the season, perhaps due to high soil P and low dependency of soybean. Fumigation increased soybean yields. A stable mycorrhizal fungal community appeared to become established with continuous soybean production, and both crop rotation and soil fumigation disrupted the community.
引用
收藏
页码:171 / 182
页数:12
相关论文
共 50 条
[41]   TEMPERATURE RESPONSE OF ENDOGONE MYCORRHIZA ON SOYBEAN ROOTS [J].
SCHENCK, NC ;
SCHRODER, VN .
MYCOLOGIA, 1974, 66 (04) :600-605
[42]   INCIDENCE OF MYCORRHIZAL FUNGI ON 6 FIELD CROPS IN MONOCULTURE ON A NEWLY CLEARED WOODLAND SITE [J].
SCHENCK, NC ;
KINLOCH, RA .
MYCOLOGIA, 1980, 72 (03) :445-456
[43]   RESPONSES OF 6 SPECIES OF VESICULAR-ARBUSCULAR MYCORRHIZAL FUNGI AND THEIR EFFECTS ON SOYBEAN AT 4 SOIL TEMPERATURES [J].
SCHENCK, NC ;
SMITH, GS .
NEW PHYTOLOGIST, 1982, 92 (02) :193-201
[44]  
Schenck NC, 1988, MANUAL IDENTIFICATIO, DOI DOI 10.1016/j.agee.2012.01.022
[46]  
TINKER PB, 1978, PHYSIOL VEG, V16, P743
[47]  
VANNUFFELEN M, 1984, CAN J BOT, V62, P624
[48]   DISPERSAL AGENTS OF VESICULAR-ARBUSCULAR MYCORRHIZAL FUNGI IN A DISTURBED ARID ECOSYSTEM [J].
WARNER, NJ ;
ALLEN, MF ;
MACMAHON, JA .
MYCOLOGIA, 1987, 79 (05) :721-730
[49]  
1985, SAS USERS GUIDE STAT
[50]  
1985, SAS USERS GUIDE BASI