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key question: what factors contribute to ecosystem stability and how ar…

Question

key question: what factors contribute to ecosystem stability and how are diversity and ecosystem stability related? ecosystem stability has long been a central principle in ecology. ecosystems maintain a state of equilibrium and high diversity without continual change in species composition, although they may change over geological time. after a disturbance, the community recovers, species reoccupy their positions. ecosystem stability (community equilibrium) can be viewed from two perspectives: resistance, the ability to resist disturbance and remain unchanged, and resilience, the ability to recover from external disturbances. communities most resistant to change typically have a large biotic structure (such as trees) with nutrients and energy stored in standing biomass. forest communities tend to be relatively resistant, withstanding local disturbances such as temperature changes, insect outbreaks, and drought. however they have low resilience and are slow to recover from major disturbances such as logging or widespread fire. aquatic ecosystems, which lack large biomass stores are easily disturbed (low resistance) but tend to be highly resilient. the systems can be disturbed, e.g. by pollutants or flooding, but will return to an equilibrium after the disturbance is removed. biodiversity and stability are connected and higher diversity systems are generally more stable. there are a number of mechanisms proposed for this relationship. in a hypothetical system (right), variation in community biomass over time is reduced relative to the variation in individual species, creating an overall community stability. the more species are contributing, the more the overall variations are reduced. the biodiversity of ecosystems at low latitudes is generally higher than that at high latitudes, where climates are harsher, niches are broader, and systems may be dependent on a small number of key species. 1. (a) what is meant by ecosystem stability? (b) describe the components of ecosystem stability and why each of these components is important: 2. (a) describe the relationship between ecosystem stability and biodiversity: (b) describe possible reasons for this relationship. use the graph above as evidence for your statement:

Explanation:

Brief Explanations
  1. (a) Ecosystem stability refers to the ability of an ecosystem to maintain a state of equilibrium. It can be viewed from two aspects: resistance (ability to resist disturbance and remain unchanged) and resilience (ability to recover from external disturbances).
  2. (b) Components are resistance and resilience. Resistance is important as it helps the ecosystem withstand minor - scale disturbances without significant change. Resilience is crucial for recovery after major disturbances, allowing the ecosystem to return to equilibrium.
  3. (a) Higher biodiversity is generally associated with greater ecosystem stability. More diverse ecosystems tend to show greater stability over time.
  4. (b) In diverse ecosystems, variation in community biomass over time is reduced relative to variation in individual species. The graph shows that with multiple species (higher biodiversity), overall community biomass is more stable, as fluctuations in one species can be compensated by others.

Answer:

  1. (a) Ecosystem stability is the ability of an ecosystem to maintain equilibrium, with aspects of resistance (resisting change) and resilience (recovering from disturbances).
  2. (b) Components are resistance and resilience. Resistance helps withstand small - scale disturbances, and resilience aids in recovery from large - scale ones.
  3. (a) Higher biodiversity is linked to greater ecosystem stability.
  4. (b) In diverse ecosystems, community biomass variation is less than individual species variation, as shown in the graph where multiple species' fluctuations balance out for more stable community biomass.