TY - JOUR
T1 - The modified niche model: Including detritus in simple structural food web models
AU - Halnes, Geir
AU - Liljenström, Hans
AU - Fath, Brian
PY - 2007
Y1 - 2007
N2 - Food webs are constructed as structural directed graphs that describe '' who eats whom,'' but it is common to interpret them as energy flow diagrams where predation represents an energy transfer from the prey to the predator. It is the aim of this work to demonstrate that food webs are incomplete as energy flow diagrams if they ignore passive flows to detritus (dead organic material). While many ecologists do include detritus in conceptual and mathematical models, the detrital omission is still commonly found. Often cletritus is either ignored or treated as an unlimited energy source, yet all organisms contribute to the detritus pool, which can be an energy source for other species in the system. This feedback loop is of high importance, since it increases the number of pathways available for energy flows, revealing the significance of indirect effects, and making the functional role of the top predators less clear. in this work we propose the modified niche model by adding a detritus compartment to the niche model. We demonstrate the effect of structural loops that result from feeding on detritus, by comparing empirical data sets to five different assembly models: (1) cascade, (2) constant connectance, (3) niche, (4) modified niche (original in this work), and (5) cyber-ecosystem. Of these models, only the last two explicitly include detritus. We show that when passive flows to detritus are included in the food web structure, the structure becomes more robust to the removal of individual nodes or connections. in addition, we show that food web models that include the detritus feedback loop perform better with respect to several structural network metrics. (C) 2007 Elsevier B.V. All rights reserved.
AB - Food webs are constructed as structural directed graphs that describe '' who eats whom,'' but it is common to interpret them as energy flow diagrams where predation represents an energy transfer from the prey to the predator. It is the aim of this work to demonstrate that food webs are incomplete as energy flow diagrams if they ignore passive flows to detritus (dead organic material). While many ecologists do include detritus in conceptual and mathematical models, the detrital omission is still commonly found. Often cletritus is either ignored or treated as an unlimited energy source, yet all organisms contribute to the detritus pool, which can be an energy source for other species in the system. This feedback loop is of high importance, since it increases the number of pathways available for energy flows, revealing the significance of indirect effects, and making the functional role of the top predators less clear. in this work we propose the modified niche model by adding a detritus compartment to the niche model. We demonstrate the effect of structural loops that result from feeding on detritus, by comparing empirical data sets to five different assembly models: (1) cascade, (2) constant connectance, (3) niche, (4) modified niche (original in this work), and (5) cyber-ecosystem. Of these models, only the last two explicitly include detritus. We show that when passive flows to detritus are included in the food web structure, the structure becomes more robust to the removal of individual nodes or connections. in addition, we show that food web models that include the detritus feedback loop perform better with respect to several structural network metrics. (C) 2007 Elsevier B.V. All rights reserved.
KW - niche model
KW - detritus food webs
KW - energy cycles
KW - niche model
KW - detritus food webs
KW - energy cycles
UR - https://res.slu.se/id/publ/16400
UR - http://www.sciencedirect.com/science?_ob=ArticleURL&_udi=B6VBS-4P2J3DX-1&_user=651610&_rdoc=1&_fmt=&_orig=search&_sort=d&view=c&_acct=C000035238&_version=1&_urlVersion=0&_userid=651610&md5=5e772e70b27589e487ff30706543bcc7
U2 - 10.1016/j.ecolmodel.2007.04.034
DO - 10.1016/j.ecolmodel.2007.04.034
M3 - Journal article
SN - 0304-3800
VL - 208
SP - 45916
JO - Ecological Modelling
JF - Ecological Modelling
IS - 1
ER -