Treefall Gap
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A treefall gap is a distinguishable hole in the
canopy Canopy may refer to: Plants * Canopy (biology), aboveground portion of plant community or crop (including forests) * Canopy (grape), aboveground portion of grapes Religion and ceremonies * Baldachin or canopy of state, typically placed over an a ...
of a
forest A forest is an area of land dominated by trees. Hundreds of definitions of forest are used throughout the world, incorporating factors such as tree density, tree height, land use, legal standing, and ecological function. The United Nations' ...
with vertical sides extending through all levels down to an average height of above ground. These holes occur as result of a fallen tree or large limb. The ecologist who developed this definition used two meters because he believed that "a regrowth height of 2 m was sufficient" for a gap to be considered closed, but not all scientists agree. For example, Runkle believed that regrowth should be above the ground. Alternatively, a treefall gap is "the smallest gap hat mustbe readily distinguishable amid the complexity of forest structure." There is no upper limit in gap size. However, it must be caused by a tree or a large limb. For example, a field would not be considered a treefall gap. Tree falls are commonly caused by old age,
natural hazard A natural hazard is a natural phenomenon that might have a negative effect on humans and other animals, or the environment. Natural hazard events can be classified into two broad categories: geophysical and biological. An example of the distinct ...
s, or
parasitic plant A parasitic plant is a plant that derives some or all of its nutritional requirements from another living plant. They make up about 1% of angiosperms and are found in almost every biome. All parasitic plants develop a specialized organ called the ...
s (e.g. certain
epiphyte An epiphyte is an organism that grows on the surface of a plant and derives its moisture and nutrients from the air, rain, water (in marine environments) or from debris accumulating around it. The plants on which epiphytes grow are called phoroph ...
s).


Measurement

Scientists have not been able to come to a conclusion on one absolute method for measuring a treefall gap. However, there are two types of measurements that are commonly used: ;Two-dimensional This method does not necessarily take into account irregularity in gap shapes.Schliemann, S., & Bockheim, J. (2011). Methods For Studying Treefall Gaps: A Review. Forest Ecology and Management,2011,1143-1151. Most gaps do not conform to one particular shape, so assumptions must be made. Gaps that are uniformly shaped (e.g. ellipse, triangle, etc.) can be quantified by measuring the length and width of each gap. Commonly, however, the gap is irregularly shaped and must be divided into smaller sections to be measured individually in order to obtain higher accuracy. ;Three-dimensional This method provides a more accurate measurement as it takes into account differences in structure of the gap descending from the canopy to the forest floor. One of the most recent strategies, pioneered by K. and S.I. Yamamoto, "utilized two photographs of the canopy gap, taken at different heights, and a series of geometric calculations to calculate the gap area." By doing this, the scientists were able to obtain a more accurate measurement as they are now accounting for differences in structure around the periphery of the gap.


Gap regeneration

Recovery time can be rapid (5–7 meters per year) or much slower depending upon the vegetation present in the gap.Carson, W., Mascaro, J., & Schnitzer, S. (2008). TREEFALL GAPS AND THE MAINTENANCE OF PLANT SPECIES DIVERSITY IN TROPICAL FORESTS (CHAPTER 12). In Tropical forest community ecology. Chichester: Wiley-Blackwell Pub. Sometimes, vegetation can impede growth, as with
lianas A liana is a long- stemmed, woody vine that is rooted in the soil at ground level and uses trees, as well as other means of vertical support, to climb up to the canopy in search of direct sunlight. The word ''liana'' does not refer to a ta ...
in
tropical forests Tropical forests (a.k.a. jungle) are forested landscapes in tropical regions: ''i.e.'' land areas approximately bounded by the tropic of Cancer and Capricorn, but possibly affected by other factors such as prevailing winds. Some tropical fores ...
. Gap-phase regeneration is not completed until the intact canopy’s height is met by new growth. # Seed: soil contains a number of seeds (
seed bank A seed bank (also seed banks or seeds bank) stores seeds to preserve genetic diversity; hence it is a type of gene bank. There are many reasons to store seeds. One is to preserve the genes that plant breeders need to increase yield, disease res ...
) that are ready to sprout once they receive sunlight as a result of the gap formed in the canopy. # Advanced regeneration: young plants that were originally present prior to the tree fall will quickly grow after being exposed to additional sunlight. # Vegetative reproduction: As the tree falls, it will pull other vegetation with it that can begin to reproduce within the newly formed gap. This is especially true for
Liana A liana is a long- stemmed, woody vine that is rooted in the soil at ground level and uses trees, as well as other means of vertical support, to climb up to the canopy in search of direct sunlight. The word ''liana'' does not refer to a ta ...
s (see Alternative Pathway of Regeneration below). # Spreading laterally into the gap from the surrounding forest.


Effects of liana in tropical forests

Lianas A liana is a long- stemmed, woody vine that is rooted in the soil at ground level and uses trees, as well as other means of vertical support, to climb up to the canopy in search of direct sunlight. The word ''liana'' does not refer to a ta ...
are a common woody vine found in tropical forests. These vines utilize trees to venture into the canopy in search of sunlight and nutrients. Thus, when a tree falls, it brings all the liana growth with it. Following a tree fall, lianas have a high survival rate (~90%) and they can quickly begin sprouting.Schnitzer, S., Dalling, J., & Carson, W. (2000). The impact of lianas on tree regeneration in tropical forest canopy gaps: Evidence for an alternative pathway of gap-phase regeneration.Journal of Ecology, 88(4), 655-666. This causes potential problems as new trees begin to grow but are unable or are limited by the presence of lianas. Many gaps have been found to enter a state where growth has been halted because of lianas. Therefore, scientists have begun looking into their effects on gap regeneration. A study conducted on
Barro Colorado Island Barro Colorado Island is located in the man-made Gatun Lake in the middle of the Panama Canal. The island was formed when the waters of the Chagres River were dammed to form the lake in 1913. When the waters rose, they covered a significant par ...
found that lianas play a likely role in slowing gap-regeneration time. Lianas have been able to keep a gap in a low-canopy state, and this is especially true for gaps that are at least 13 years old. Further studies by Schnitzer et al. have shown that as lianas increase in density, species richness and pioneer tree density decrease for all gaps (i.e. low and high canopy gaps). This data suggests that lianas play a significant role in gap-regeneration time.


Intermediate disturbance hypothesis and species abundance

Treefall gaps are important in maintenance of some plant species diversity. Disturbance is important in tropics as a mechanism for maintaining diversity. According to the intermediate disturbance hypothesis (IDH), some disturbance is critical and the maximum number of species will be found where the “frequency and intensity” of disturbances are at an intermediate scale.Connell, J. (1978). Diversity of Tropical Rainforests and Coral Reefs. Science,4335, 1302-1310. IDH helps explain the Gap Hypothesis which postulates that more light and more diverse resources caused by the falling of a canopy tree may aid in more species abundance. Although treefall gaps have been shown to promote species diversity among a variety of species, a gap’s effect on different species is likely to produce mixed results (i.e. some species will experience more diversity because of gaps while others will not).


Light penetration

The creation of a treefall gap causes a break in the canopy to form, allowing light to penetrate through to the
understory In forestry and ecology, understory (American English), or understorey (Commonwealth English), also known as underbrush or undergrowth, includes plant life growing beneath the forest canopy without penetrating it to any great extent, but abov ...
. This light can now reach
shrub A shrub (often also called a bush) is a small-to-medium-sized perennial woody plant. Unlike herbaceous plants, shrubs have persistent woody stems above the ground. Shrubs can be either deciduous or evergreen. They are distinguished from trees ...
s and treelet species, which under normal circumstances never grow tall enough to reach the canopy. Under a normal canopy (i.e. one where there is no treefall gap), there is very little light that filters through, placing a light limitation on the understory plant community.Canham, C., Denslow, J., Platt, W., Runkle, J., Spies, T., & White, P. (1990). Light regimes beneath closed canopies and tree-fall gaps in temperate and tropical forests. Canadian Journal of Forest Research-Revue Canadienne de Recherche Forestiere, 20(5), 620-631. This light limitation often restricts a plant’s reproduction and growing ability. When a treefall gap forms, there is a distinguishable difference in the amount of light that penetrates through to the lower levels of the forest; however, the amount of light that is now able to penetrate depends on how big the gap actually is. A treefall gap that is only 5 meters in diameter will allow less light to reach the understory than a larger gap that is 10 meters wide. In addition, a smaller gap will receive more direct radiation from the sun, whereas a larger gap will receive high amounts of diffuse radiation. The increased amount of light that is now available to the understory community will release them from their previous light limitation.


Seed dispersal

Seed dispersal In Spermatophyte plants, seed dispersal is the movement, spread or transport of seeds away from the parent plant. Plants have limited mobility and rely upon a variety of dispersal vectors to transport their seeds, including both abiotic vectors, ...
in treefall gaps is significantly reduced compared to normal understory areas.Puerta-Piñero, C., Muller-Landau, H. C., Calderón, O., & Wright, S. J. (2013). Seed arrival in tropical forest tree fall gaps. Ecology, 94(7), 1552-1562. One study suggests that within the first three years after the gaps formed, the seed dispersal rate was 72% lower than the rates in nearby understory. Most forms of dispersal, such as wind and animal dispersal, show a reduction in the number of seeds dispersed. However, explosive dispersion shows an increase Explosive dispersion describes a mechanism by which the parent plant ejects its seeds using pressure, ensuring that they land far from the parent plant. This type of dispersal is used in several shrub species. The increase shows that treefall gaps have a positive effect on the seed dispersal of shrubs. These shrubs either survived the creation of the gap or migrated in soon after it was created. Because of their unique method of dispersal, these plants have an advantage when colonizing the gap. As the treefall gap ages and the canopy layer begins to return to normal, other forms of seed dispersal begin to increase in frequency, eventually returning to their pre-gap values years after its formation.


Species diversity


Flora

It is proposed that treefall gaps maintain plant species diversity in tropical forests in three main ways. First, they create habitats that have a lot of light. Being in an area that contains a high amount of light allows species that cannot grow in total or partial shade to develop rapidly. The increased levels of light creates competition between the shade intolerant species, and the species that prefer low levels of light are eliminated. This release from competition would allow the number of shade intolerant species to increase. Second, species may be able to survive on resources that spread from the middle of the gap all the way to the surrounding denser forest. Tree or plant diversity may be maintained by the distribution and sharing of resources over a gradient if species are uniquely adapted to the resources available in a specific treefall gap. Lastly, the rate of regeneration of different species may differ based on the size of the gap. While species diversity may vary when the treefall gaps differ greatly in size, it has been argued that it is highly unlikely, since the relationship between gap size and the microclimate is irregular because of the large spatial and temporal deviation in microclimate. Support for these three hypotheses is mixed, but there is evidence that supports the fact that some species of plants benefit from being in gaps more than others. In tropical forests, gaps maintain the diversity of some plant groups, which could possibly contain much of the vascular plant community in these areas.


Insects

Treefall gaps, like the rest of tropical forests, contain an abundant number of animal species. As with all tropical habitats, insects make up the majority of the animal biomass. It has been thought that the development of treefall gaps would cause harm to the development of leaf litter ant assemblages, but that is not the case according to one study. Species of ants that are found in treefall gaps are the same species that are found in the densely wooded forests that surround them.Patrick, M., Fowler, D., Dunn, R., & Sanders, N. (n.d.). Effects of Treefall Gap Disturbances on Ant Assemblages in a Tropical Montane Cloud Forest. Biotropica, N/a-N/a. The formations of these gaps seem to have little to no effect on the ant species living there. There have been studies that show a noticeable difference in the species diversity of butterflies in treefall gaps and those in the surrounding understory. The types of vegetation present in the gaps play a key role in determining which species of butterfly live there.Pardonnet, S., Beck, H., Milberg, P., & Bergman, K. (2013). Effect of Tree-Fall Gaps on Fruit-Feeding Nymphalid Butterfly Assemblages in a Peruvian Rain Forest. Biotropica, 612-619. This supports the hypothesis that in a natural forest, treefall gaps will promote species diversity.


Treefall gaps, blow-downs, and the carbon cycle

Large-scale blow-downs of trees are generally caused by squall lines or
tornadoes A tornado is a violently rotating column of air that is in contact with both the surface of the Earth and a cumulonimbus cloud or, in rare cases, the base of a cumulus cloud. It is often referred to as a twister, whirlwind or cyclone, altho ...
generating strong winds.Negrón‐Juárez, R. I., Chambers, J. Q., Guimaraes, G., Zeng, H., Raupp, C. F. M., Marra, D. M., Ribeiro, G. H. P. M., et al.(2010). Widespread Amazon forest tree mortality from a single cross‐basin squall line event. Geophysical Research Letters. Some studies have measured the downburst speed of these winds to be between 26 and 41 m/s, which is enough force to cause large-scale blow-downs. Studies have shown that small-scale disturbances, such as treefall gaps forming after tree deaths, have a higher reoccurrence rate than do large-scale disturbances, such as blow-downs. Since small-scale disturbances are more frequent, they account for about 88% of carbon emissions from the
Amazon rainforest The Amazon rainforest, Amazon jungle or ; es, Selva amazónica, , or usually ; french: Forêt amazonienne; nl, Amazoneregenwoud. In English, the names are sometimes capitalized further, as Amazon Rainforest, Amazon Forest, or Amazon Jungle. ...
and for more biomass loss then do large-scale disturbances. These small disturbances add carbon into the environment and back into the
carbon cycle The carbon cycle is the biogeochemical cycle by which carbon is exchanged among the biosphere, pedosphere, geosphere, hydrosphere, and Earth's atmosphere, atmosphere of the Earth. Carbon is the main component of biological compounds as well as ...
; however, it is not a significant amount when compared to how much carbon is being sequestered in the above ground biomass. Because of this, the Amazon is considered to be a
carbon sink A carbon sink is anything, natural or otherwise, that accumulates and stores some carbon-containing chemical compound for an indefinite period and thereby removes carbon dioxide () from the atmosphere. Globally, the two most important carbon si ...
.


Use of satellite technology in research

When researchers attempt to locate treefall gaps on a broad scale, it can be difficult to do so on the ground because of the large scale of the forests that they are generally focusing on. Satellite imagery has proven quite useful for large-scale disturbances such as blow-downs but remains difficult for small-scale disturbances such as treefall gaps. In some instances
Global Positioning System The Global Positioning System (GPS), originally Navstar GPS, is a satellite-based radionavigation system owned by the United States government and operated by the United States Space Force. It is one of the global navigation satellite sy ...
s (GPS) are used to map the centers of treefall gaps in order to determine their frequency.Espírito-Santo, F., Keller, M., Linder, E., Oliveira Junior, R., Pereira, C., & Oliveira, C. (2013). Gap formation and carbon cycling in the Brazilian Amazon: Measurement using high-resolution optical remote sensing and studies in large forest plots. Plant Ecology & Diversity, 2013. Pictures taken by these satellites are radiometrically changed from numbers into physical units. Light Detection and Ranging (
LiDAR Lidar (, also LIDAR, or LiDAR; sometimes LADAR) is a method for determining ranges (variable distance) by targeting an object or a surface with a laser and measuring the time for the reflected light to return to the receiver. It can also be ...
) is used to distinguish canopy gaps on spatial scales for separating the different types of gaps. With satellite imaging, steps have to be implemented to remove extraneous details such as seas, rivers, clouds, etc.Thevand, A., Gond, V., & De Alcantara, E. (n.d.). Detection Of Gaps In An Atlantic Mangrove Forest Using Optical Satellite Imagery These can interfere with the results. Overall, the mapping of treefall gaps has progressed greatly since the development of satellite technology.


References

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