Blum, R., and Stahl, W.H., Enzymic Degradation of Cellulose Fibers, TEXTILE RESEARCH JOURNAL22, 178-92 (1952).
2.
Jermyn, M.A. , Fungal Cellulases: II: The Complexity of Enzymes from Aspergillus oryzae that Split β Glucosidic Linkages, and Their Partial Separation, Australian J. Sci. Research B5, No. 4, 433-43 (1952).
3.
Marsh, P., personal communications, 1952.
4.
Marsh, P., A Test for Detecting the Effects of Microorganisms and of a Microbial Enzyme on Cotton Fiber, Plant Disease Reptr.37, No. 2, 71-6 (1953).
5.
Marsh, P., Merola, G.V., and Simpson, M.E., Experiments with an Alkali Swelling-Centrifuge Test Applied to Cotton Fiber , TEXTILE RESEARCH JOURNAL23, 831-41 (1953).
6.
Marsh, P., Guthrie, L.R., and Butler, M.L., The Influence of Weathering and of Microorganisms on the Aqueous-Extract pH of Cotton Fiber, TEXTILE RESEARCH JOURNAL21, 565-79 (1951).
7.
McBurney, L.F. , personal communication, 1953 .
8.
Nickerson, W.J. , and Chadwick, J.B., On the Respiration of Dermatophytes , Arch. Biochem.10, 81-100 (1946).
9.
Reese, E.T., and Gilligan, W., Separation of Components of Cellulolytic Systems by Paper Chromatography , Arch. Biochem. Biophys.45, No. 1, 74-82 (1953).
10.
Reese, E.T. , Gilligan, W., and Norkrans, B., Effect of Cellobiose on the Enzymatic Hydrolysis of Cellulose and Its Derivatives, Physiol. Plantarum5, 379-90 (1952).
11.
Reese, E.T. , and Levinson, H.S., A Comparative Study of the Breakdown of Cellulose by Microorganisms, Physiol. Plantarum5, 345-66 (1952).
12.
Reese, E.T. , Siu, R.G.H., and Levinson , H.S., The Biological Degradation of Soluble Cellulose Derivatives and Its Relationship to the Mechanism of Cellulose Hydrolysis, J. Bact.59, No. 4, 485-97 (1950).
13.
Tripp, V.W. , Moore, A.T., and Rollins, M.L., Some Observations on the Constitution of the Primary Wall of the Cotton Fiber, TEXTILE RESEARCH JOURNAL21, 886-94 (1951).