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a Dép. des Sols et Génie Agroalimentaire, Centre de Recherche en Horticulture, Univ. Laval, Sainte-Foy, QC, G1K 7P4, Canada
b Dép. des Sciences Fondamentales, Univ. du Québec à Chicoutimi, Chicoutimi, QC, G7H 2B1, Canada
* Corresponding author (remi.naasz.1{at}ulaval.ca).
In Quebec (Canada), approximately 3.5 million tons of bark are produced annually, most of which are burned or buried without being used or recycled, whereas they could be used as basic components in growing media. However, growing media made of fresh bark often inhibits plant growth due to high concentrations of phenols, terpenes, organic acids, and heavy metals or by creating physical barriers to gas exchange. Therefore, the objectives of this study were: first, to evaluate the phytotoxicity of barks from seven different tree species on lettuce (Lactuca sativa L. Grand Rapids) germination and tomato (Lycopersicon esculentum Mill. Trust) growth; and second, to identify the possible physical (aeration, water availability), chemical, or biochemical (heavy metal, phenol, terpene, and sugar concentrations) factors causing those reductions. Results show that bark origin affected both lettuce germination and tomato dry matter production. Best results were obtained with raw paper birch (Betula papyrifera Marsh.; PB) bark, which outperformed the control (rockwool). Among bark substrate properties, air-filled porosity (
a) was significantly correlated to shoot dry weight (SDW) and germination index (GI). Plant growth parameters were correlated most strongly to biological stability, and then to
a, likely reflecting microbial competition for oxygen during the decomposition of organic matter. No relationships were found with terpenes, organic acids, or nutrient elements. These findings seemed to indicate that the apparent phytotoxicity of some barks could be explained by insufficient aeration in the substrate.
Abbreviations:
a, air-filled porosity
c, volumetric water content at container capacity B, unwashed bark BF, balsam fir BS, black spruce EC, electrical conductivity GI, germination index HPLC, high-performance liquid chromatography IBS, index of biological stability JP, jack pine LIC, lignin and cutine MWD, mean weight diameter PB, paper birch SDW, shoot dry weight SOL, soluble fractions TA, trembling aspen WB, washed bark WC, white cedar WS, white spruce
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