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Figure 1. Characteristics of a pond community over time Microcystis aeruginosis is a freshwater photosynthetic cyanobacterium. When temperatures ins an extremely are readily available in its pond habitat. M.undergoes rapid cell division an large, visible mass of cells called an algal bloom. M. aeruginosis has a short life span and is decomposed by aerobic bacteria and fungi Identify the metabolic pathway and the organism that is primarily for the change in oxygen level in the pond between times and II AND between times III and IV.

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Figure 1. Characteristics of a pond community over time
Microcystis aeruginosis is a freshwater photosynthetic cyanobacterium. When temperatures ins an extremely
are readily available in its pond habitat. M.undergoes rapid cell division an
large, visible mass of cells called an algal bloom. M. aeruginosis has a short life span and is decomposed by
aerobic bacteria and fungi Identify the metabolic pathway and the organism that is primarily for the
change in oxygen level in the pond between times and II AND between times III and IV.

Figure 1. Characteristics of a pond community over time Microcystis aeruginosis is a freshwater photosynthetic cyanobacterium. When temperatures ins an extremely are readily available in its pond habitat. M.undergoes rapid cell division an large, visible mass of cells called an algal bloom. M. aeruginosis has a short life span and is decomposed by aerobic bacteria and fungi Identify the metabolic pathway and the organism that is primarily for the change in oxygen level in the pond between times and II AND between times III and IV.

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RonaProfessional · Tutor for 6 years

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To answer this question, we need to consider the biological processes that affect oxygen levels in a pond ecosystem, particularly in relation to the growth and decay of Microcystis aeruginosis, an algal bloom-forming cyanobacterium.Between times I and II:1. During this period, the temperature increases and nutrients are abundant, which leads to rapid cell division of M. aeruginosis, resulting in an algal bloom.2. As a photosynthetic organism, M. aeruginosis uses sunlight to convert carbon dioxide and water into glucose and oxygen through the process of photosynthesis.3. The metabolic pathway responsible for the change in oxygen level during this time is photosynthesis.4. The organism primarily responsible for the increase in oxygen level is the cyanobacterium M. aeruginosis itself, as it is the one undergoing photosynthesis and producing oxygen.Between times III and IV:1. After the peak of the algal bloom, M. aeruginosis has a short lifespan and begins to die off.2. The decomposition of M. aeruginosis is carried out by aerobic bacteria and fungi, which consume the dead algal cells.3. The metabolic pathway responsible for the change in oxygen level during this time is cellular respiration, specifically aerobic respiration.4. The organisms primarily responsible for the decrease in oxygen level are the aerobic bacteria and fungi, as they consume oxygen to break down the organic matter from the dead cyanobacteria.Final Answer:- Between times I and II, the metabolic pathway is photosynthesis, and the organism primarily responsible for the change in oxygen level is Microcystis aeruginosis.- Between times III and IV, the metabolic pathway is aerobic respiration, and the organisms primarily responsible for the change in oxygen level are the aerobic bacteria and fungi decomposing the cyanobacteria.
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