A Mutual Attraction
Prepared by: Reo
Paolo M. Uri
A
tremendous variety of mutualistic partnership occurs in nature. These
Associations gradually evolve a reciprocal life as participating members come
to require some substances or habitat that the other members provide. They will
not survive when associated from this association.
Protozoan
cells often receive growth factors from symbiotic bacteria and algae that are
mutually nurtured by the protozoan cell. One peculiar ciliate propels itself by
affixing symbiotic bacteria to its cell membrane to act as “oars”. Other
ciliates and amoebas require specialized bacteria or algae inside their cells
to provide nutrients. This kind of relationship or specially striking in the
complex nutrients. This kind of relationship is especially striking in the
complex mutualism of termites, which harbor protozoans specialized to live only
inside their intestine. The protozoans, in turn, contain endosymbiotic
bacterial. Wood ingested by the termite gets precede by the protozoan and
bacteria enzymes, and all three organisms thrive on the nutrients that the digested
wood provides.
Mutualism between Microbes and Animals
Microorganisms
carry on mutual symbiotic relationship with animals as diverse as sponges,
worms, and mammals. Bacteria and protozoans are essential in the operation of
the rumen (a complex, four-chambered stomach) of cud-chewing mammals. These
mammals produce no enzymes of their rumen do. The complex food materials are
digested through reversal stages, during which time the animal regurgitates and
chews the partially digested plant matter (the cud) and occasionally burps
methane produced by the microbial symbiotis.
Thermal vent symbionts
Another
fascinating relationship has been found in the deep hydrothermal vents in the
seafloor, where geologic forces spread the crustal plates and release heat and gas.
These vents are a focus of tremendous biological and geologic activity. The
source of energy in this community is not the sun, because the vents are too
deep for light to penetrate (2600m). Instead, this ecosystem is based on a
massive chemoautrotrophic bacterial population that oxidizes the abundant
hydrogen sulfide (H2S) gas given off by the volcanic activity there. As the
bottom of the food web, these bacteria serve as the primary produces of
nutrients that services abroad spectrum of specialized animals.
How are these mutualistic relationships different from
synergistic ones?
Answer available at http://www.mhhe.com/talaro7