The Elements of Bacteriological Technique: A Laboratory Guide for Medical, Dental, and Technical Students. Second Edition Rewritten and Enlarged.Eyre, J. W. H. (John William Henry)
Science
The Elements of Bacteriological Technique: A Laboratory Guide for Medical, Dental, and Technical Students. Second Edition Rewritten and Enlarged.
Eyre, J. W. H. (John William Henry)
Bacteriology -- Technique
6. By means of the sterile spatula add 10 grammes of the earth sample to
the bouillon in the flask.
The final results will be more reliable if steps 2, 3, 4, and 5 are
performed under a hood--to protect from falling dust, etc.
7. Remove the funnel from the mouth of the flask; replace it by the
rubber stopper and shake vigourously; then allow the solid particles to
settle for about thirty minutes. One cubic centimetre of the turbid
broth contains the washings from 0.1 gramme of soil.
8. Pipette off 1 c.c. of the supernatant bouillon, termed the "soil
water," and add it to the contents of capsule I; mix thoroughly.
9. Remove 0.1 c.c. of the infected bouillon from capsule I and add it to
capsule II, and mix.
10. In like manner add 0.1 c.c. of the contents of capsule II to capsule
III, and then 0.1 c.c. of the contents of capsule III to capsule IV.
Then 1 c.c. fluid from capsule I contains soil water
from .01 gm. earth.
Then 1 c.c. fluid from capsule II contains soil water
from .0001 gm. earth.
Then 1 c.c. fluid from capsule III contains soil water
from .000001 gm. earth.
Then 1 c.c. fluid from capsule IV contains soil water
from .00000001 gm. earth.
(A) _Aerobes (Vegetative Forms and Spores)._--
11. Pour a set of gelatine plates from the contents of each capsule--two
plates in a set, and containing respectively 0.1 c.c. and 0.4 c.c. of
the diluted soil water. Label and incubate.
12. Pour similar sets of wort gelatine plates from the contents of
capsules II and III, label, and incubate at 20° C.
13. Pour similar sets of agar plates from the contents of capsules II
and III; label and incubate at 37° C.
14. Weigh out a second sample of soil--10 grammes--dry over a water-bath
until of constant weight and calculate the ratio
wet soil weight
---------------
dry soil weight
15. "Count" the plates after incubation for three, four, or five days,
and correcting the figures thus obtained by means of the "wet" to "dry"
soil ratio estimate--
(a) The number of aerobic micro-organisms present per gramme of the
soil.
(b) The number of yeasts and moulds present per gramme of the soil.
(c) The number of aerobic organisms "growing at 37° C." present per
gramme of the soil.
(B) _Anaerobes (Vegetative Forms and Spores)._--
16. Pour similar sets of plates in glucose formate gelatine and agar and
incubate in Bulloch's anaerobic apparatus.
(C) _Aerobes and Anaerobes (Spores Only)._--
17. Pipette 5 c.c. soil water into a sterile tube.
18. Place in the differential steriliser at 80° C. for ten minutes.
19. Pour two sets of four gelatine plates containing 0.1, 0.2, 0.5, and
1 c.c. respectively of the soil water; label and incubate at 20° C., one
set aerobically, the other anaerobically in Bulloch's apparatus.
20. "Count" the plates (delay the enumeration as long as possible) and
estimate the number of spores of aerobes and anaerobes respectively
present per gramme of the soil.
Public-domain text, read in full here on John Shaqi.
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