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Scala, A.

Publications and source records attributed to Scala, A..

2 recordsLinked to original sources

AB-free kava enhances resilience against the adverse health effects of tobacco smoke in mice

Tobacco smoke remains a serious global issue, resulting in serious health complications, contributing to the onsets of numerous preventive diseases, and imposing significant financial burdens. Despite regulatory policies and cessation measures aimed at curbing its usage, novel interventions are urgently needed for effective damage reduction. Our preclinical and pilot clinical studies showed that AB-free kava has the potential to reduce tobacco smoke-induced lung cancer risk, mitigate tobacco dependence, and reduce tobacco use. To understand the scope of its benefits in damage reduction and potential limitations, this study evaluated the effects of AB-free kava on a panel of health indicators in mice exposed to 2 - 4 weeks of daily tobacco smoke exposure. Our comprehensive assessments included global transcriptional profiling of the lung and liver tissues, analysis of lung inflammation, evaluation of lung function, exploration of tobacco nicotine withdrawal, and characterization of the causal PKA signaling pathway. As expected, Tobacco smoke exposure perturbed a wide range of biological processes and compromised multiple functions in mice. Remarkably, AB-free kava demonstrated the ability to globally mitigate tobacco smoke-induced deficits at the molecular and functional levels with promising safety profiles, offering a unique promise to mitigate tobacco smoke-related health damages. Further pre-clinical evaluation and clinical translation are warranted to fully harness the potential of AB-free kava in combating tobacco smoke-related harms. Graphical Abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=105 SRC="FIGDIR/small/599576v1_ufig1.gif" ALT="Figure 1"> View larger version (26K): org.highwire.dtl.DTLVardef@1f6ee4corg.highwire.dtl.DTLVardef@96e062org.highwire.dtl.DTLVardef@16579a0org.highwire.dtl.DTLVardef@1140a8e_HPS_FORMAT_FIGEXP M_FIG C_FIG

pharmacology and toxicology↗

Competitor Displacement by an Herbivore that Manipulates Plant Defences

Tetranychus evansi is an herbivorous mite specialised on solanaceous hosts, although it has also been observed to colonise non-solanaceous species. It has the ability to suppress the defences of tomato (Solanum lycopersicum), and it can displace competitors from this host using a diverse array of traits. T. evansi is an invasive species in Africa and Europe, where it often displaces native species. While recent evidence suggests that T. evansi can also suppress defences of non-solanaceous hosts, there is a lack of understanding of the molecular changes induced upon mite infestation on hosts other than tomato, as well as how these changes may impact populations of competing herbivores. Here, we investigate the transcriptomic and metabolomic responses of bean (Phaseolus vulgaris) to T. evansi infestation and to T. urticae infestation, a cosmopolitan congeneric that often competes with T. evansi for hosts in areas of co-occurrence. We ask whether the presence of T. evansi facilitates bean colonization for T. urticae, and whether the spatial distribution of mite feeding sites depends on the presence of competitors on bean leaves. We examine whether this facilitation is attributed to jasmonic acid (JA) or salicylic acid (SA) defences by treating plants with exogenous SA and JA and comparing the transcriptomes and metabolomes of bean exposed to either phytohormones or to mite feeding. Finally, we measure phytohormone concentrations and the expression of JA- and SA-responsive genes in plants infested with either mite species or co-infested with both, at different spatial scales. We found that, as previously observed on tomato, T. urticae benefits from the suppression of bean defences when sharing a leaf with T. evansi. Phytohormone treatments revealed that the reproductive performance of both species decreases with artificially induced JA defences, irrespective of the presence of SA. We found that the molecular suppression and induction of defences is mostly, but not exclusively restricted to the leaf area from where the mites feed. In full leaves co-infested with both mites, levels of marker gene induction were comparable to the inducer mite T. urticae, although not as prominent, while in smaller feeding arenas where both species fed closely to each other, the expression of a JA-responsive proteinase inhibitor was suppressed. When residing alone on a leaf, both mites had distinct preferred feeding sites with only partial overlap, but when sharing a leaf, T. evansi retained its preferred feeding site and T. urticae moved away from its own. We argue that the suppression of defences by T. evansi is mostly, although not exclusively, locally restricted, and thus the spatial distribution of individuals on the leaf is a strong determinant of competitor facilitation. This suggests that traits that displace competitors from plant tissues with suppressed defences would be under selection to co-evolve together with defence suppression.

ecology↗