An example of a eukaryotic chemoorganotroph microorganism lacking chlo...
Archaea and bacteria are classified as prokaryotes because they lack a cellular nucleus. Protozoa are unicellular organisms with complex cell structures; most are motile. Microscopic fungi include molds and yeasts. Helminths are multicellular parasitic worms.
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An example of a eukaryotic chemoorganotroph microorganism lacking chlo...
Eukaryotic Chemoorganotroph Microorganism Lacking Chlorophyll and Having Mycelial Thallus
A eukaryotic chemoorganotroph microorganism is an organism that obtains energy by oxidizing organic compounds. These microorganisms lack chlorophyll, which means they cannot carry out photosynthesis. Instead, they rely on other sources of organic matter for their energy needs.
One example of a eukaryotic chemoorganotroph microorganism is a fungus. Fungi are eukaryotic organisms that obtain energy by breaking down organic matter. They are characterized by their mycelial thallus, which is a mass of thread-like structures called hyphae.
Mycelial Thallus
The mycelial thallus of a fungus is a network of hyphae that grows through organic matter. The hyphae secrete enzymes that break down the organic matter into simpler compounds that can be absorbed by the fungus. The mycelium can grow to be quite large, and can even cover entire forests.
Chemoorganotroph
Fungi are chemoorganotrophs because they obtain energy by oxidizing organic compounds. This is in contrast to chemolithotrophs, which obtain energy by oxidizing inorganic compounds, and phototrophs, which obtain energy from sunlight.
Lacking Chlorophyll
Fungi lack chlorophyll, which means they cannot carry out photosynthesis. Instead, they rely on other sources of organic matter for their energy needs. This makes them dependent on other organisms for their survival.
Conclusion
In conclusion, a eukaryotic chemoorganotroph microorganism lacking chlorophyll and having mycelial thallus is a fungus. Fungi obtain energy by breaking down organic matter, and their mycelial thallus is a network of hyphae that grows through organic matter.