---------+-------------+---------------+-------------+--------------
98 days | 114,000,000 | 212,000,000 | 45,000,000 | 55,000,000
====================================================================
From Wis. Bul. 150.
The large number of bacteria in the cheese is very striking. The number
as given in the accompanying table is not that actually in the cheese,
as it is very difficult to obtain the sample in suitable condition for
plating.[115]
The principal action of the lactic acid-forming bacteria in the cheese
ripening is the changing of the milk-sugar or lactose into lactic acid
and the formation of small amounts of other substances, such as acetic,
succinic and formic acids, alcohol, aldehydes and esters and some gases,
carbon dioxide and hydrogen. While the amount of these substances other
than lactic acid is small, it is thought that the effect of these on the
cheese may be important. Heinemann shows[116] that lactic acid exists in
two optical modifications, the levorotatory and dextrorotary acids. In
cheese they are usually found in the inactive or racemic form, the
levorotatory and dextrorotary acids being present in equal amounts. What
importance the question of optical activity of the lactic acid may
assume is not definitely known. Just as some groups of bacteria have a
specific effect on the lactose, producing only one modification of
lactic acid, so bacteria attacking lactic acid may exercise a selective
action and use only one or the other optically active modification. In
other words, the early flora of cheese-ripening bacteria may determine
the later flora by the production of a form of lactic acid attacked by
one group of bacteria and not by another, and the effect on the flavor
will differ accordingly. The amount of lactic acid in the cheese
increases for a time, then decreases.
The errors in determining lactic acid are considerable. It seems that
the tendency is toward an increase of lactic acid in the cheese long
after the lactose has disappeared. Two explanations are offered: one,
that in the lactic acid fermentation an intermediate compound or
compounds are formed which exist for some time, the conversion into
lactic acid being complete at about three months; the other is that
lactic acid is formed as a product of paracasein proteolysis.
The lactic acid formed in cheese ripening does not exist in a free state
but reacts with the calcium salts in the cheese and forms calcium
lactates. It is thought that there is sufficient of these salts to
neutralize all the acid formed, and therefore the acid does not enter
into combination with the paracasein salts. It has been found that
lactates are the principal source of acetic and propionic acids. These
are supposed to have some effect on the flavor of the cheese.
Public-domain text, read in full here on John Shaqi.
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