Transgenerational impacts of herbivory and inbreeding on reproductive output in Solanum carolinense release_frwkyzc3wfczfbwoqmfqbvlq3i

by Chad Nihranz, William S. Walker, Steven J. Brown, Mark Mescher, Consuelo De Moraes, Andrew G. Stephenson

Published in American Journal of Botany by Wiley.

2020   Volume 107, Issue 2, p286-297

Abstract

Plant maternal effects on offspring phenotypes are well documented. However, little is known about how herbivory on maternal plants affects offspring fitness. Furthermore, while inbreeding is known to reduce plant reproductive output, previous studies have not explored whether and how such effects may extend across generations. Here, we addressed the transgenerational consequences of herbivory and maternal plant inbreeding on the reproduction of Solanum carolinense offspring. Manduca sexta caterpillars were used to inflict weekly damage on inbred and outbred S. carolinense maternal plants. Cross-pollinations were performed by hand to produce seed from herbivore-damaged outbred plants, herbivore-damaged inbred plants, undamaged outbred plants, and undamaged inbred plants. The resulting seeds were grown in the greenhouse to assess emergence rate and flower production in the absence of herbivores. We also grew offspring in the field to examine reproductive output under natural conditions. We found transgenerational effects of herbivory and maternal plant inbreeding on seedling emergence and reproductive output. Offspring of herbivore-damaged plants had greater emergence, flowered earlier, and produced more flowers and seeds than offspring of undamaged plants. Offspring of outbred maternal plants also had greater seedling emergence and reproductive output than offspring of inbred maternal plants, even though all offspring were outbred. Moreover, the effects of maternal plant inbreeding were more severe when plant offspring were grown in field conditions. This study demonstrates that both herbivory and inbreeding have fitness consequences that extend across generations even in outbred progeny.
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Type  article-journal
Stage   published
Date   2020-01-15
Language   en ?
DOI  10.1002/ajb2.1402
PubMed  31944272
PMC  PMC7064912
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