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- W1982253054 abstract "The allometric-constraint hypothesis of Strathmann and Strathmann is often invoked to explain the well-documented association of small body size and brooding within many marine invertebrate taxa. Larger individuals are hypothesized to produce proportionately smaller broods because brood space scales more slowly with increasing body size than does fecundity, which makes brooding a less effective strategy for larger species. None of the predictions of this hypothesis were met in this study on spirorbid polychaetes, and there is no evidence that scaling constraints limit brood size in spirorbids. The scaling exponent relating fecundity and body weight is not significantly less than one, the null predicted by isometry, for any of four species studied, nor is it less than the scaling exponent measured in a free-spawning serpulid polychaete. Interspecific comparisons among spirorbids indicate that there is no effect of species size or brooding mode on the scaling of brood size and body size that is consistent with the allometric-constraint hypothesis. These results rely on reduced major axis regressions. Reanalysis of data from a previous study reveals that an ordinary least-squares regression model underestimates scaling exponents and can falsely indicate there are scaling constraints where none exist." @default.
- W1982253054 created "2016-06-24" @default.
- W1982253054 creator A5042880328 @default.
- W1982253054 date "1993-04-01" @default.
- W1982253054 modified "2023-09-27" @default.
- W1982253054 title "The Evolution of Parental Care in Brooding Spirorbid Polychaetes: The Effect of Scaling Constraints" @default.
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- W1982253054 doi "https://doi.org/10.1086/285492" @default.
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