Shading contributes to decline in response to warming.

Ecol Evol

Biological Sciences Division Oak Ridge National Laboratory Oak Ridge Tennessee USA.

Published: September 2023

Experimental warming of an ombrotrophic bog in northern Minnesota has caused a rapid decline in the productivity and areal cover of mosses, affecting whole-ecosystem carbon balance and biogeochemistry. Direct effects of elevated temperature and the attendant drying are most likely the primary cause of the effects on , but there may also be responses to the increased shading from shrubs, which increased with increasing temperature. To evaluate the independent effects of reduction in light availability and deposition of shrub litter on productivity, small plots with shrubs removed were laid out adjacent to the warming experiment on hummocks and hollows in three blocks and with five levels of shading. Four plots were covered with neutral density shade cloth to simulate shading from shrubs of 30%-90% reduction in light; one plot was left open. Growth of and declined linearly with increasing shade in hollows, but there was no response to shade on hummocks, where higher irradiance in the open plots may have been inhibitory. Shading caused etiolation of -they were thin and spindly under the deepest shade. A dense mat of shrub litter, corresponding to the amount of shrub litter produced in response to warming, did not inhibit growth or cause increases in potentially toxic base cations. CO exchange and chlorophyll- fluorescence of from the 30% and 90% shade cloth plots were measured in the laboratory. Light response curves indicate that maximal light saturated photosynthesis was 42% greater for grown under 30% shade cloth relative to plants grown under 90% shade cloth. The response of growth in response to increasing shade is consistent with the hypothesis that increased shade resulting from shrub expansion in response to experimental warming contributed to reduced growth.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10507575PMC
http://dx.doi.org/10.1002/ece3.10542DOI Listing

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