Affiliation:
1. Department of Biology and Microbiology, South Dakota State University, Brookings, South Dakota 57007
Abstract
ABSTRACT
Bacillus
is commonly isolated from soils, with organisms of
Bacillus cereus
sensu lato being prevalent. Knowledge of the ecology of
B. cereus
and other
Bacillus
species in soil is far from complete. While the older literature favors a model of growth on soil-associated organic matter, the current paradigm is that
B. cereus
sensu lato germinates and grows in association with animals or plants, resulting in either symbiotic or pathogenic interactions. An in terra approach to study soil-associated bacteria is described, using filter-sterilized soil-extracted soluble organic matter (SESOM) and artificial soil microcosms (ASM) saturated with SESOM.
B. cereus
ATCC 14579 displayed a life cycle, with the ability to germinate, grow, and subsequently sporulate in both the liquid SESOM extract and in ASM inserted into wells in agar medium. Cells grew in liquid SESOM without separating, forming multicellular structures that coalesced to form clumps and encasing the ensuing spores in an extracellular matrix.
Bacillus
was able to translocate from the point of inoculation through soil microcosms as shown by the emergence of outgrowths on the surrounding agar surface. Microscopic inspection revealed bundles of parallel chains inside the soil. The motility inhibitor
l
-ethionine failed to suppress outgrowth, ruling out translocation by a flagellar-mediated mechanism such as swimming or swarming.
Bacillus subtilis
subsp.
subtilis
Marburg and four
Bacillus
isolates taken at random from soils also displayed a life cycle in SESOM and ASM and were all able to translocate through ASM, even in presence of
l
-ethionine. These data indicate that
B. cereus
is a saprophytic bacterium that is able to grow in soil and furthermore that it is adapted to translocate by employing a multicellular mode of growth.
Publisher
American Society for Microbiology
Subject
Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology
Cited by
153 articles.
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