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Biology subjects

Oz, I.

Publications and source records attributed to Oz, I..

3 recordsLinked to original sources

In-situ energy budget of needle-leaves reveals shift from evaporative to 'air cooling' under drought

O_LIThe modulation of the leaf energy budget and the balance between its sensible heat (H) and latent heat (LE) fluxes is vital for vegetation functioning and survival, as it is linked to maintaining leaf temperature below the thermal threshold, an increasingly important mechanism under a drying and warming climate, when evaporative cooling is suppressed. C_LIO_LICombining measurements and theoretical estimates using a new methodology, we obtained rare and comprehensive energy budgets of leaves on twigs under field conditions in droughted and non-droughted plots of a semi-arid pine forest with low and high evapotranspiration rates, respectively. C_LIO_LIAn examination of all components of the needle-leaf energy budget indicated that under the same radiative load, leaf cooling shifts from nearly equal contributions to H and LE in non-droughted trees to almost exclusively H in droughted ones while maintaining a similar leaf temperature. C_LIO_LIThis LE-to-H shift in leaves of droughted trees highlights the efficiency of the air cooling mechanism in maintaining temperature, which can enhance the resilience of trees to drying conditions. Additionally, leaf energy budgets are a fundamental tool to help understand leaf cooling and aerodynamic resistance under field conditions, and to improve modelling of ecosystem activity and its effect on the climate system. C_LI

plant biology↗

Evidence for efficient non-evaporative leaf-to-air heat dissipation in a pine forest under drought conditions

O_LIDrier climates predicted for many regions can result in reduced evaporative cooling leading to leaf heat stress and enhanced mortality. To what extent non-evaporative cooling can contribute to plant resilience to the increasingly stressful conditions is poorly known at present. C_LIO_LIUsing a novel, high accuracy infrared system for continuous measurements of leaf temperature in mature trees under field conditions, we assessed leaf-to-air temperature differences {Delta}Tleaf-air of pine needles during drought. C_LIO_LIOn mid-summer days, {Delta}Tleaf-air remained <1.5 {degrees}C, both in trees exposed to summer drought, and in those provided with a supplement irrigation having a 10x higher transpiration rate. The non-evaporative cooling in the drought-exposed trees must be facilitated by low resistance to heat transfer generating large H. {Delta}Tleaf-air was weakly related to variations in the radiation load and mean wind speed in the lower part of the canopy, but highly dependent on canopy structure and within-canopy turbulence that enhanced the sensible heat flux H. C_LIO_LINon-evaporative cooling is demonstrated as an effective cooling mechanism in needle-leaf trees, which can be a critical factor in forest resistance to drying climates. The generation of a large H at the leaf scale provides a basis for the development of the previously identified canopy-scale convector effect. C_LI

physiology↗

Itk promotes the integration of TCR and CD28 costimulation, through its direct substrates, SLP-76 and Gads

The costimulatory receptor, CD28, synergizes with the T cell antigen receptor (TCR) to promote IL-2 production, cell survival and proliferation. Despite their profound synergy, the obligatory interdependence of the signaling pathways initiated by these two receptors is not well understood. Upon TCR stimulation, Gads, a Grb2-family adaptor, bridges the interaction of two additional adaptors, LAT and SLP-76, to form a TCR-induced effector signaling complex. SLP-76 binds the Tec-family tyrosine kinase, Itk, which phosphorylates SLP-76 at Y173 and PLC-{gamma}1 at Y783. Here we identified Gads Y45 as an additional TCR-inducible, Itk-mediated phosphorylation site. Y45 is found within the N-terminal SH3 domain of Gads, an evolutionarily conserved domain with no known binding partners or signaling function. Gads Y45 phosphorylation depended on the interaction of Gads with SLP-76 and on the preferentially-paired binding of Gads to phospho-LAT. Three Itk-related features, Gads Y45, SLP-76 Y173, and a proline-rich Itk SH3-binding motif on SLP-76, were selectively required for activation of the CD28 RE/AP transcriptional element from the IL-2 promoter, but were not required to activate NFAT. This study illuminates a new regulatory module, in which Itk-targeted phosphorylation sites on two adaptor proteins, SLP-76 and Gads, control the transcriptional response to TCR/CD28 costimulation, thus enforcing the obligatory interdependence of the TCR and CD28 signaling pathways.

immunology↗