Publications by authors named "C Gerotto"

Article Synopsis
  • Scientists tested a mix of three types of algae in different kinds of wastewater to see how well they could grow and clean the water.
  • They found that the algae could grow well even in high levels of wastewater and adjusted to the different types of sewage they were exposed to.
  • The algae also removed almost all nutrients from the wastewater, but the final pH was too high, which could be a problem if used on a bigger scale.
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Article Synopsis
  • Domesticated rice is highly sensitive to salinity, whereas its wild ancestor exhibits better tolerance to salt stress.
  • A study compared the responses of three rice types to 80 mM NaCl for 7 days, finding that the wild accession was the most resilient, preserving plant health and stability.
  • The Italian variety Vialone Nano showed significant stress and poor growth response, whereas Baldo displayed moderate salt tolerance, making it a promising candidate for breeding salt-resistant rice.
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Reversible thylakoid protein phosphorylation provides most flowering plants with dynamic acclimation to short-term changes in environmental light conditions. Here, through generating Serine/Threonine protein kinase 7 (STN7)-depleted mutants in the moss Physcomitrella (Physcomitrium patens), we identified phosphorylation targets of STN7 kinase and their roles in short- and long-term acclimation of the moss to changing light conditions. Biochemical and mass spectrometry analyses revealed STN7-dependent phosphorylation of N-terminal Thr in specific Light-Harvesting Complex II (LHCII) trimer subunits (LHCBM2 and LHCBM4/8) and provided evidence that phospho-LHCBM accumulation is responsible for the assembly of two distinct Photosystem I (PSI) supercomplexes (SCs), both of which are largely absent in STN7-depleted mutants.

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Avoidance of photoinhibition at photosystem (PS)I is based on synchronized function of PSII, PSI, Cytochrome bf and stromal electron acceptors. Here, we used a special light regime, PSI photoinhibition treatment (PIT), in order to specifically inhibit PSI by accumulating excess electrons at the photosystem (Tikkanen and Grebe, 2018). In the analysis, Arabidopsis thaliana WT was compared to the pgr5 and ndho mutants, deficient in one of the two main cyclic electron transfer pathways described to function as protective alternative electron acceptors of PSI.

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In all eukaryotes, protein phosphorylation is a key regulatory mechanism in several cellular processes, including the acclimation of photosynthesis to environmental cues. Despite being a well-conserved regulatory mechanism in the chloroplasts of land plants, distinct differences in thylakoid protein phosphorylation patterns have emerged from studies on species of different phylogenetic groups. Here, we analyzed thylakoid protein phosphorylation in the moss , assessing the thylakoid phospho-protein profile and dynamics in response to changes in white light intensity.

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