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Titlebook: Ecological responses to environment stresses; J. Rozema,J. A. C. Verkleij Book 19911st edition Kluwer Academic Publishers 1991 algae.ecolo

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,Erklärungsmodelle für Angststörungen,phorus have led to excessive growth of macroalgae. The flooding of salt marshes with nutrient enriched seawater seems to favour dominant growth of nitrophytic halophytes such as the grass species . in ungrazed salt marshes. As a result the biodiversity of the salt marsh environment tends to decrease
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Cecilia Essau,Judith Conradt,Berit Reissiation of heavy metals in salt marsh soils, other factors, like interactions with micro-organisms, inter- and intra-specific differences in uptake systems of the plants and (micro-)climatic characteristics, may strongly determine uptake of heavy metals by salt marsh plants. It is discussed that in f
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Angst als Teil anderer Erkrankungen, uniform climax levels off the patch dynamics of the existing species and clear-cutting results in species of quite other plant communities becoming established. The latter species may, again, vary in population ecology, because all of them are adapted to disturbed forest sites..We reject using the
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Heavy metal resistance in higher plants: biochemical and genetic aspects, evidence that these compounds play an essential role in the tolerance mechanism. Other potential chelators such as organic acids could be of importance, but evidence for their role is lacking. Compartmentation of excess metals in subcellular bodies (vacuoles) or organs (leaves) seems an effective s
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Physiological responses of higher plants to soil contamination with metals,surements at the subcellular level is emphasized. Enhancement of malondialdehyde content and ethane production in plants, treated with toxic amounts of Cu and Zn indicates that these metals affected membrane integrity by lipid peroxidation; the capacity of the enzyme lipoxygenase, involved in this p
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