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Biology subjects

Vaidya, R. V.

Publications and source records attributed to Vaidya, R. V..

2 recordsLinked to original sources

Context matters: A meta-analysis of the variable impact of transgenerational and developmental plasticity on responses to stress

O_LIUnderstanding organisms abilities to adapt and acclimate to stressors in their environments is essential for predicting the distributions and persistence of species and populations during environmental change. Beyond genetic adaptation, prior experiences with a given stressor across life stages can dictate how an individual will fare when exposed to that stressor again. There is now a robust literature on the impacts of parental experiences on offspring traits (transgenerational plasticity), plus an even broader literature on the carry-over effects of early-life experience on phenotypic outcomes (within-generational or developmental plasticity); however, less is understood about the relative strengths of these two forms of plasticity and how they interact to shape stress tolerance. C_LIO_LIWe explored these questions by conducting a meta-analysis of peer-reviewed studies that tested both within- and transgenerational effects of naturally occurring environmental stressors. In particular, we explored contextual moderators or predictor variables including the traits measured, the type of stressor, taxonomic group, and organismal life history traits to elucidate patterns and develop a predictive framework for when we should expect to see effects of transgenerational plasticity, within-generational plasticity, both, or neither. C_LIO_LIWe found that there was not a strong or consistent directional effect of either parental or early-life exposure on subsequent offspring traits. Instead, experimental context (what stressor was used and what traits were measured) as well as biological context (taxonomy, life history traits) were important predictors for understanding the strength and direction of plasticity. We found several contexts where there were meaningful effects of parental and early-life stress exposure and where there was evidence that these may interact to impact phenotypic and fitness outcomes. C_LIO_LIOur study highlights the need for careful consideration of context when exploring patterns of plasticity. We hope to underscore the need for additional, fully factorial studies that measure the interaction between these forms of plasticity across a variety of systems and stressors to better understand how stress may carry forward across life stages and generations. C_LI

ecology↗

Comparative transcriptomic analyses reveal differences in the responses of diploid and triploid eastern oysters to environmental stress during a summer mortality event

Triploid oysters are commonly used as the basis for production in the aquaculture of eastern oysters along the U.S East and Gulf of Mexico coasts. While they are valued for their rapid growth, incidents of triploid mortality during summer months have been well documented in eastern oysters, especially at low salinity sites. We compared global transcriptomic responses of diploid and triploid oysters bred from the same three maternal lines and outplanted to a high (annual mean salinity = 19.4 {+/-} 6.7) and low (annual mean salinity = 9.3 {+/-} 5.0) salinity site at the onset of mortality event in summer of 2021 to test for effect of parental contribution on triploid performance. We compared transcriptomic responses of same diploid and triploid oysters to test for ploidy specific differences in gene expression in response to high and low salinity sites and tested for instances of aneuploidy in experimental triploid oyster lines. Maternal parentage did not affect triploid mortality, but a strong effect of hatchery conditions (cohort) was observed. We detected a higher number of DEGs in response to outplant sites (salinity) and cohorts, indicating stronger influence of these two factors on triploid mortality. At the low salinity site where triploid oysters experienced high mortality, we observed downregulation of transcripts related to calcium signaling (Calmodulin-a, Histidine-rich calcium binding protein (HRC), and cadherin EGF LAG seven-pass G-type receptor 1(CELSR1)), ciliary activity (axonemal and cytoplasmic dyneins), and cell cycle check points (CDK1, HAUS augmin-like complex subunit 3, and MAPKKK, MCM7, SMCs, RTEL1). These transcripts suggest dampening of the salinity stress response and problems during cell division as key contributors to elevated summer mortality in triploid oysters. No instances of aneuploidy were detected in our triploid oyster lines.

evolutionary biology↗