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M Whitlock

Publications and source records attributed to M Whitlock.

7 recordsLinked to original sources

The heritability of fluctuating asymmetry and the genetic control of developmental stability.

Fluctuating asymmetry (FA) is the unsigned difference between the left and right sides for some trait on an organism with no average difference between the sides. Because FA is assumed to reflect differences in development but not in genetic effects, it is often used as a measure of the developmental stability of an organism. The genetic properties of developmental stability, such as the heritability and correlations among characters, are of some interest, because the evolutionary future of developmental stability in populations depend on these quantities. As such the heritability of FA has often been measured. This paper notes a substantial bias in the estimation of the heritability of developmental stability; FA is a trait with very low repeatability and as such is only a weak estimation of the developmental stability of an organism. The biases are correctable, though from a knowledge of the coefficient of variation of FA in the population being measured. This paper demonstrates why the heritabilities of fluctuating asymmetry are always so small in well designed experiments and suggests more accurate measures of the genetic properties of canalization. Furthermore, the correlation of FA of different traits in the same individuals is always low, which is inconsistent with the mechanisms proposed for the development of FA. Because of the low repeatability of FA, these correlations are expected to be low.

Aging↗

The spatial distribution of cavitation induced acoustic emission, sonoluminescence and cell lysis in the field of a shock wave lithotripter.

This study examines the spatial distribution of various properties attributed to the cavitation field generated by a shock wave lithotripter. These properties include acoustic emission and sonoluminescence, which result from violent bubble collapse, and the degree of cell lysis in vitro, which appears to be related to cavitation. The acoustic emission detected with a 1 MHz, 12 cm diameter focused hydrophone occurs in two distinct bursts. The immediate signal is emitted from a small region contained within the 4 MPa peak negative pressure contour. A second, delayed, burst is emitted from a region extending further along the beam axis. The delay between these two bursts has also been mapped, and the longest delay occurs at positions close to the regions of maximum peak negative pressure. Sonoluminescence from both single and multiple shocks occurs in a broader region than the acoustic emission but the measurement technique does not allow time resolution of the signal. Cell lysis occurs in a relatively small region that correlates closely with the immediate acoustic emission for a shock propagating in a gelatine solution.

Acoustics↗

Cytotoxic activity of Staphylococcus hyicus.

Culture supernatants from a number of Staphylococcus hyicus strains caused toxic effects to both murine fibroblast and porcine keratinocyte cells in culture. The extent of cytotoxicity was shown to differ between strains and may provide an indication of strain virulence. Purification of cytotoxic activity produced by S. hyicus (strain P119) using preparative isoelectric-focussing demonstrated it to be cytolytic, haemolytic and non-proteolytic. The cytotoxin demonstrates certain properties in common with the delta haemolysin of Staphylococcus aureus.

Animals↗