Forest understory biomass heterogeneity is “moisture complex” or associated litter the cause?
- 31 December 1988
- journal article
- research article
- Published by Springer Nature in Journal of Chemical Ecology
- Vol. 15 (1) , 429-437
- https://doi.org/10.1007/bf02027802
Abstract
Understory biomass heterogeneity underPlatanus occidentalis L.,Quercus alba L.,Celtis occidentalis Pursh., andUlmus americana L. was studied. Soil pH, Ca, Mg, Mn, Cu, NH4 nitrogen, total N, and soil moisture were significantly different under all dominant species. The pattern of soil moisture levels under different tree species was not consistent from one sampling period to the next. The aboveground biomass of understory vegetation also varied significantly under different tree species and was not correlated with variation in any of the soil properties. Maximum understory biomass gain (340%) from May to September occurred under oak trees, where soil moisture and most nutrients were the lowest. On the other hand, sycamore and hackberry had continuous release of allelochemics and the smallest understory biomass gain (103%) during the growing season, even though soil under both species had more moisture and nutrients than the soils under white oak. Eliminating all the factors studied leads to the conclusion that organic substances released in the immediate environment of dominant trees and their litter influenced soils and associated herb growth. In each dominant niche system, understory species may have to develop their own system (“microniche”) to minimize the stresses of competition and allelochemics.This publication has 23 references indexed in Scilit:
- Application of Genotype‐Environment Interaction Analysis to Niche QuantificationEcology, 1983
- ALLELOPATHIC MECHANISMS OF VELVETLEAF (ABUTILON THEOPHRASTI MEDIC., MALVACEAE) ON SOYBEANAmerican Journal of Botany, 1980
- Vegetation and Soil Pattern in a Mesophytic Forest at Ithaca, New YorkThe American Midland Naturalist, 1979
- Effects of three phenolic acids on chlorophyll content and growth of soybean and grain sorghum seedlingsJournal of Chemical Ecology, 1979
- The effects of water- and nitrogen-induced stresses on plant community structure in a semiarid grasslandOecologia, 1977
- ROLE OF ALLELOPATHY AS EXPRESSED BY DOMINATING TREES IN A LOWLAND FOREST IN CONTROLLING THE PRODUCTIVITY AND PATTERN OF HERBACEOUS GROWTHAmerican Journal of Botany, 1976
- Influence of Phenolic Acids upon Ion UptakeJournal of Experimental Botany, 1974
- Some Effects of Stem Flow from Forest Canopy Trees on Chemical Properties of SoilsEcology, 1971
- Effects of Scopoletin on Growth, CO 2 Exchange Rates, and Concentration of Scopoletin, Scopolin, and Chlorogenic Acids in Tobacco, Sunflower, and PigweedBulletin of the Torrey Botanical Club, 1970
- The Slow Reversible Drying of Sandy Surface Soils Beneath Citrus Trees in Central FloridaSoil Science Society of America Journal, 1943