bioRxiv Science⌕ Search

Biology subjects

Herzog, O.

Publications and source records attributed to Herzog, O..

2 recordsLinked to original sources

The eIF4E-homologous protein 4EHP (nCBP) regulates thermotolerance by modulating heat-responsive mRNAs and the HSP repertoire in Arabidopsis thaliana

Translation initiation factors of the eIF4E family play a crucial role in regulating translation and the cellular metabolism of mRNAs. Research has addressed the role of canonical 4E family isoforms in development, stress response, and during viral infection. Nevertheless, the class-II eIF4E family member cap-binding protein 4EHP (nCBP), has remained poorly characterized in plant stress responses. In this study, we show that loss of 4EHP confers enhanced basal and acquired thermotolerance and causes a mild flowering delay without major root defects. Under heat stress, 4EHP-GFP re-localizes from a diffuse cytosolic pattern to cytoplasmatic foci, co-localizing with canonical stress granule (SG) markers. Transcriptomic analysis under control, acclimation and heat stress conditions reveals that 4EHP limits the accumulation of heat-responsive mRNAs, especially those encoding heat shock proteins (HSPs), which remain constitutively expressed in 4ehp-1 mutant under control and heat stress conditions. Proteomic analysis also indicates that the absence of 4EHP alters the repertoire of HSPs compared with wild type (Col-0), especially upon heat stress, without significantly impairing the recruitment of corresponding mRNAs to translationally active polysomes. Together, our results indicate that 4EHP negatively modulates the accumulation of a specific subset of heat-responsive mRNAs fine-tuning chaperone production, via heat-responsive SG regulatory pathways.

plant biology↗

A Physcomitrella PIN protein acts in spermatogenesis and sporophyte abortion

O_LIThe auxin efflux PIN-FORMED (PIN) proteins are conserved in all land plants and important players in plant development. In the moss Physcomitrella (Physcomitrium patens) three canonical PINs (PpPINA-C) are expressed in the leafy shoot (gametophore). PpPINA and PpPINB show functional activity in vegetative growth and sporophyte development. Here, we examined the role of PpPINC in the life cycle of Physcomitrella. C_LIO_LIWe established reporter and knockout lines for PpPINC and analysed vegetative and reproductive tissues using microscopy and transcriptomic sequencing of moss gametangia. C_LIO_LIPpPINC is expressed in immature leaves, mature gametangia and during sporophyte development. The sperm cells (spermatozoids) of pinC knockout mutants exhibit increased motility and an altered flagella phenotype. Further, the pinC mutants have a higher portion of differentially expressed genes (DEGs) related to spermatogenesis, increased fertility, and an increased abortion rate of premeiotic sporophytes. C_LIO_LIHere, we show that PpPINC is important for spermatogenesis and sporophyte retention. We propose an evolutionary conserved way of polar growth during early moss embryo development and sporophyte attachment to the gametophore, while suggesting the mechanical function in sporophyte retention of a ring structure, the Lorch ring. C_LI

plant biology↗