HR: 0800h
AN: B51A-0057 [Abstracts]
TI: Sugar Maple Phenology: Anthocyanin Production During Leaf Senescence
AU: * Lindgren, E
EM: ehl4@cisunix.unh.edu
AF: Complex Systems Research Center, 39 College Rd, Durham, NH 03824, United States
AU: Rock, B
EM: barry.rock@unh.edu
AF: Complex Systems Research Center, 39 College Rd, Durham, NH 03824, United States
AB:
The Northeastern United States is known for its brilliant fall foliage colors. Foliage is responsible for a billion
dollar tourism industry. Many comment that past years have not resulted in the amazing color displays seen
historically. As sugar maple trees senesce they contribute bright red leaves to the mural of oranges, yellows, and
greens. The pigment that produces the red color, anthocyanin, is synthesized in the fall as chlorophyll slowly
degrades. Remote sensing data from LandSat during fall senescence can help investigate this event by
quantifying color change and intensity. This data can then be compared to ground validation efforts in several
study plots. The results will help answer the question, "Why do leaves turn
red?" One hypothesis is that this pigment acts as a photoprotectant and screens leaves
from UV light. It is possible that an increase in tropospheric ozone has negatively affected fall foliage due to the
increased reflection of UV light before it reaches the trees; thereby reducing the leaves need to produce
anthocyanin. Another hypothesis is that production of anthocyanin is linked to temperature, with maximum
synthesis occurring during cold evenings and moderate days. Temperature changes caused by climate change
could also be affecting anthocyanin. Through observing these changes by remote sensing and ground
experiments, more can be learned about this phenological stage and why it happens.
DE: 0438 Diel, seasonal, and annual cycles (4227)
DE: 0480 Remote sensing
SC: Biogeosciences [B]
MN: 2007 Fall Meeting