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Aro, T.

Publications and source records attributed to Aro, T..

2 recordsLinked to original sources

Comparative co-expression reveals a regulatory core shared by angiosperm and conifer roots under cold

* Climate change is reducing the boreal snowpack that insulates soils, exposing tree roots to more frequent freezing. The molecular cold response of roots is poorly characterised, and its conservation across the angiosperm-gymnosperm divide is unknown. We asked how much of the root cold response is shared among divergent boreal trees. * We profiled fine-root transcriptomes of four boreal trees (Picea abies, Pinus sylvestris, Betula pendula and Populus tremula) and two Arabidopsis thaliana ecotypes during a ten-day 5 {degrees}C treatment by RNA sequencing, and used comparative co-expression to detect conserved regulation independently of response timing. * Expressed genes were largely shared, but the genes differentially expressed, and the timing of their response, diverged between species. Despite this, a core of orthologues retained conserved co-expression neighbourhoods across more than 300 million years, enriched for growth regulation, metabolism and stress signalling, including a gibberellin-related metabolic component of the growth response. * The root cold response is therefore species specific in identity and timing, yet underlain by a conserved co-expression core.

plant biology↗

Heart-brain coupling and its relevance for individual trait characteristics

A bulk of recent neurophysiological research has focused on how bodily functions are intertwined with neural activity, but the dynamic heart-brain coupling and its relevance for individual trait characteristics remains largely unexamined. Thus, our aim was to investigate how ongoing oscillatory brain activity is modulated by the natural fluctuations in heart rate variability (HRV). We further explored whether heart-brain coupling is associated with individual trait characteristics. Magnetoencephalography (MEG) together with electrocardiography (ECG) were used to record neural activity and HRV during rest. Self-reported trait characteristics were examined using Behavioral Inhibition and Activation Systems Scale (BIS/BAS) and attunement to internal bodily sensations using Body Vigilance Scale (BVS). Statistically significant increases were observed for low HRV vs. high HRV state in alpha and beta power (p < 0.05) indicating that oscillatory brain activity is modulated by fluctuations in HRV. Moreover, we demonstrated that heart-brain coupling was associated with self-reported behavioral approach and avoidance tendencies. The results of the moderator analysis further indicated that the relationship between heart-brain coupling and trait characteristics is at least partly moderated by the attunement to internal bodily sensations. Our findings bring insights to the intricate interplay between cardiac and neural signaling and its relationship with individual trait characteristics. HighlightsO_LIOscillatory brain activity is modulated by the natural fluctuations in HRV C_LIO_LIAlpha and beta power increase during states of lower parasympathetic activity C_LIO_LIHeart-brain coupling is linked with self-reported individual trait characteristics C_LIO_LIThis association is influenced by the attunement to the internal bodily milieu C_LI

neuroscience↗