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More generally, range changes as well as demographic responses to climate change may affect genetic variability within populations, and thus exploration of patterns of genetic structure represents a critical component of characterizing potential responses to changing environmental conditions.
Differences in ethnic groups may affect genetic predisposition to human diseases [ 36, 37].
Multiple interacting factors, including distance, water, terrain ruggedness etc., may affect genetic structure in our study area.
Environment gene interaction may affect genetic alleles, indicating that the gut microbiome is likely to play an important role in the genetic mutation of genes related to systemic autoimmune diseases [55].
miRNAs play crucial roles in a broad range of physiological and pathological processes, including the processes that may affect genetic damage levels, such as DNA damage response (Lal et al. 2009; Pothof et al. 2009) and oxidative stress (Sangokoya et al. 2010).
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Besides affecting average phenotypes, fisheries-induced selection may also affect genetic diversity in quantitative traits.
Previous studies identified such differences, but little is known about the possible interaction with another cultural factor that may potentially affect genetic diversity, i.e. linguistic differences.
This bias may not only affect genetic analyses, but also categorical or quantitative analyses of neurobiological or neuropsychological markers.
This study provides the first survey of population genetic variation in a South American ratite, suggesting that, in an agricultural landscape, recent fragmentation and isolation may affect the genetic structure of flightless bird species.
In this review, we describe how the RAPD technique can be applied in an ecotoxicological context, providing information on all direct and indirect routes through which toxicants may affect the genetic structure of populations.
Human iPSCs generated by episomal vectors were then used to assess whether human iPSCs and ESCs are really equivalent at the molecular and functional levels, avoiding artifacts that may affect their genetic signature, differentiation behavior or developmental potential.
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may affect genomic
may impact genetic
may affect biological
may affect reproductive
may influence genetic
may hurt genetic
may affect dna
may affect genome
may affect vulnerable
may cause genetic
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may reflect genetic
may mediate genetic
may affect clinical
may subvert genetic
may accumulate genetic
may bear genetic
may share genetic
may affect individual
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