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Biomedical subjects

M G Watve

Publications and source records attributed to M G Watve.

7 recordsLinked to original sources

The amino acid requirements of Corynebacterium diphtheriae PW 8 substrain CN 2000.

AIMS: To determine the amino acid requirement and utilization pattern of Corynebacterium diphtheriae during growth and toxin production. METHODS AND RESULTS: Comparing across different batches of beef-based media, the growth and toxin yield were correlated significantly with nine of the amino acids. The amino acid utilization pattern during growth of C. diphtheriae further showed that only four of the nine amino acids, namely cystine, histidine, aspartate and methionine, were critical for growth of the vaccine strain. Further investigations using synthetic media with combinations of amino acid supplements demonstrated that among the four, cystine was the most growth limiting. CONCLUSIONS: Only certain amino acids are critical for growth and toxin production by C. diphtheriae, cystine being the single most important. SIGNIFICANCE AND IMPACT OF THE STUDY: Owing to the potential threat from Bovine Spongiform Encephalopathy (BSE), a need is recognized by vaccine manufacturers to substitute beef-based production media. An understanding of the specific amino acid requirements would help to develop and optimize alternative production media.

Amino Acids↗

How many antibiotics are produced by the genus Streptomyces?

Streptomyces is the largest antibiotic-producing genus in the microbial world discovered so far. The number of antimicrobial compounds reported from the species of this genus per year increased almost exponentially for about two decades, followed by a steady rise to reach a peak in the 1970s, and with a substantial decline in the late 1980s and 1990s. The cumulative number shows a sigmoid curve that is much flatter than what a logistic equation would predict. We attempted to fit a mathematical model to this curve in order to estimate the number of undiscovered antimicrobials from this genus as well as to predict the trends in the near future. A model assuming that the screening efforts are encouraged by a previous year's success and that the probability of finding a new antibiotic is a function of the fraction of antibiotics undiscovered so far offered a good fit after optimizing parameters. The model estimated the total number of antimicrobial compounds that this genus is capable of producing to be of the order of a 100,000 - a tiny fraction of which has been unearthed so far. The decline in the slope appeared to be due to a decline in screening efforts rather than an exhaustion of compounds. Left to itself, the slope will become zero in the next one or two decades, but if the screening efforts are maintained constant, the rate of discovery of new compounds will not decline for several decades to come.

Anti-Bacterial Agents↗

Oligophilic bacteria as tools to monitor aseptic pharmaceutical production units.

The bacterial loads of air, surfaces, and personnel in clean rooms are routinely monitored using a set of standard media. Bacteria that can grow on these media are a tiny fraction of the total numbers in any environment. A substantial proportion of bacteria long thought to be unculturable were recently shown to be oligophilic. Oligophile counts in clean rooms in our studies exceeded the standard plate counts by up to 2 orders of magnitude. They responded to disinfection routines in ways similar to the responses of conventional bacteria. We suggest that oligophiles are better tools than conventional bacteria for environmental monitoring in aseptic pharmaceutical production units.

Bacteria↗

Epidemic diseases and host clustering: an optimum cluster size ensures maximum survival.

The risk of infection is generally believed to increase with gregariousness. Using a discrete time spatial simulation model we tested the effect of host clustering on transmission of infection within a population. Over a large parameter range, an optimum cluster size was observed to ensure maximum probability of escaping infection. Although the within cluster transmission increased with cluster size, the between cluster distance increased thereby decreasing the probability of transmission across clusters. The probability of stochastic extinction of the pathogen also increased with increasing cluster size. Thus contrary to the popular belief, clustering can be an effective strategy to minimize the risk of infections.

Computer Simulation↗

Problems in measuring bacterial diversity and a possible solution.

The indices of species diversity used by plant and animal ecologists are not appropriate for bacterial diversity because of the inherent difficulty of defining a bacterial species. Arbitrary cutoff points to define a species or biotype lead to severe statistical problems. We suggest in this paper that a mean dissimilarity-based index without any attempt to define a species provides a statistically sound measurement of bacterial diversity.

Journal Article↗

Parasite abundance and diversity in mammals: correlates with host ecology.

Fecally dispersed parasites of 12 wild mammal species in Mudumalai Sanctuary, southern India, were studied. Fecal propagule densities and parasite diversity measures were correlated with host ecological variables. Host species with higher predatory pressure had lower parasite loads and parasite diversity. Host body weight, home range, population density, gregariousness, and diet did not show predicted effects on parasite loads. Measures of alpha diversity were positively correlated with parasite abundance and were negatively correlated with beta diversity. Based on these data, hypotheses regarding determinants of parasite community are discussed.

Animals↗