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Brown, G. E.

Publications and source records attributed to Brown, G. E..

2 recordsLinked to original sources

Periodical cicadas suffer legacy effects of century-old forest removal

Periodical cicada (Magicicada spp.) ranges have continued to decline even as their forest habitat has rebounded from historic lows. This counterintuitive trajectory may be a consequence of Magicicadas limited dispersal capabilities combined with their requirement that individual host trees survive across decades. We studied the relationship between >150 years of landscape change and brood XIII periodical cicada activity in Johnson County, IA. We found that the presence of Magicicada breeding populations was better predicted by tree cover in 1930 than by present-day tree cover, with cicadas primarily relegated to sites that did not fall below 17.4% tree cover. While total forest has increased since 1930, this is a net increase, inclusive of considerable turnover every 17 years, and cicada ranges have declined more than they have expanded. A model based on empirical measures of forest turnover and cicada dispersal distances suggests that cicada ranges will continue to decline under nearly all conditions. A managed relocation of 20,126 adult Magicicada to a restored forest failed, reinforcing that dispersal to new sites cannot be artificially accelerated to offset declines. Preservation of forest habitat across centuries may be the only bollard standing between periodical cicadas and their extinction.

ecology↗

Speciation in kleptoparasites of oak gall wasps often correlates with shifts into new tree habitats, tree organs, and gall morphospace

Host shifts to new plants can drive speciation for plant-feeding insects, but how commonly do host shifts also drive diversification for the parasites of those same insects? Oak gall wasps induce galls on oak trees and shifts to novel tree hosts and new tree organs have been implicated as drivers of oak gall wasp speciation. Gall wasps are themselves attacked by many insect parasites, which must find their hosts on the correct tree species and organ, but which also must navigate the morphologically variable galls with which they interact. Thus, we ask whether host shifts to new trees, organs, or gall morphologies correlate with gall parasite diversification. We delimit species and infer phylogenies for two genera of gall kleptoparasites, Synergus and Ceroptres, reared from a variety of North American oak galls. We find that most species were reared from galls induced by just one gall wasp species, and no parasite species was reared from galls of more than four species. Most kleptoparasite divergence events correlate with shifts to non-ancestral galls. These shifts often involved changes in tree habitat, gall location, and gall morphology. Host shifts are thus implicated in driving diversification for both oak gall wasps and their kleptoparasitic associates.

evolutionary biology↗