Ecology of <i>Bacillaceae</i>

Экология Bacillaceae
Ines Mandic‐Mulec, Polonca Štefanič, Jan Dirk van Elsas
2015-04-02

Bacillaceaeendospore formationplant growth promotionquorum sensingsoil ecology
Members of the family Bacillaceae are among the most robust bacteria on Earth, which is mainly due to their ability to form resistant endospores. This trait is believed to be the key factor determining the ecology of these bacteria. However, they also perform fundamental roles in soil ecology (i.e., the cycling of organic matter) and in plant health and growth stimulation (e.g., via suppression of plant pathogens and phosphate solubilization). In this review, we describe the high functional and genetic diversity that is found within the Bacillaceae (a family of low-G+C% Gram-positive spore-forming bacteria), their roles in ecology and in applied sciences related to agriculture. We then pose questions with respect to their ecological behavior, zooming in on the intricate social behavior that is becoming increasingly well characterized for some members of Bacillaceae. Such social behavior, which includes cell-to-cell signaling via quorum sensing or other mechanisms (e.g., the production of extracellular hydrolytic enzymes, toxins, antibiotics and/or surfactants) is a key determinant of their lifestyle and is also believed to drive diversification processes. It is only with a deeper understanding of cell-to-cell interactions that we will be able to understand the ecological and diversification processes of natural populations within the family Bacillaceae. Ultimately, the resulting improvements in understanding will benefit practical efforts to apply representatives of these bacteria in promoting plant growth as well as biological control of plant pathogens.
1
Bacillaceae contribute to soil organic-matter cycling and promote plant health through pathogen suppression and phosphate solubilization.
2
Bacillaceae persistence is strongly enabled by resistant endospore formation, a major determinant of their ecological distribution.
3
Cell-to-cell interactions, including quorum sensing and secretion of enzymes, toxins, antibiotics, and surfactants, shape Bacillaceae lifestyles and may drive diversification.
4
The family exhibits substantial functional and genetic diversity among low-G+C% Gram-positive, spore-forming bacteria.
5
Understanding social interactions in natural Bacillaceae populations is important for improving their agricultural use in plant-growth promotion and biological pathogen control.

Bacillaceae bacteria and their natural populations

Their ecological roles, functional and genetic diversity, ecological behavior, and cell-to-cell social interactions driving lifestyle and diversification

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2015-04-02
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Authors
Ines Mandic‐Mulec
Polonca Štefanič
Jan Dirk van Elsas
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