Bacteria and enzymes produced therefrom and methods of using same
A bacteria referred to here as Bacillus subtilis 6A-1 is provided, compositions thereof and processes for use of the bacteria, spores, cells, extracts and enzymes. The compositions which comprise the bacteria, spores, cells, extracts and/or enzymes are capable of degrading polysaccharides. Such compositions are capable of degrading cellulose, including plant-produced cellulose, microcrystalline cellulose and carboxymethyl cellulose. The bacteria produces at least two cellulose-degrading protein fractions. Cellulose degrading activity continues across pH2 to pH13.
1. A method of degrading a cellulose comprising at least one polysaccharide, said method comprising combining the cellulose comprising the at least one polysaccharide with a composition comprising:
(a) (i) a Bacillus subtilis 6A-1 (6A-1) reference strain having been deposited at ATCC under deposit number PTA-125135, cells of said 6A-1, or spores produced by said 6A-1;
wherein said 6A-1 strain or cells or spores are filtered, dried, freeze dried or grounded
or
(ii) at least one polysaccharide-degrading enzyme fraction obtained from said 6A-1
and
(b) at least one excipient, carrier or diluent,
wherein said composition degrades said cellulose or the at least one polysaccharide.
2. The method of claim 1 , wherein said composition comprising said 6A-1 strain or said cells or said spores or the at least one polysaccharide-degrading enzyme fraction is capable of degrading crystalline cellulose, carboxymethyl cellulose and unmodified cellulose.
3. The method of claim 1 , wherein said 6A-1 is an asporogenous mutant of said 6A-1.
4. The method of claim 1 , wherein said composition comprising said 6A-1 or said cells or said spores or the at least one polysaccharide-degrading enzyme fraction is capable of degrading cellulose under conditions from pH 2 to pH 13.
5. The method of claim 1 , wherein said method comprises contacting said composition comprising said 6A-1, said cells, said spores or the at least one polysaccharide degrading enzyme fraction with the cellulose, degrading said cellulose under biogas-producing conditions, and collecting said biogas.