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Katsarou, K.

Publications and source records attributed to Katsarou, K..

2 recordsLinked to original sources

The Cretan Carob Virome

Carob (Ceratonia siliqua) is an important yet often underestimated Mediterranean tree species. Historically used as a sweetener by ancient Greeks and Arabs, it also supported populations during periods of famine. Beyond its cultural value, carob exhibits notable agronomic traits, including drought and temperature tolerance, soil erosion prevention, and potential contributions to rural development. Although a Cretan carob genome assembly has recently become available, little is known about pathogens associated with this species, particularly viruses. Here, we characterized the virome of carob trees in Crete using high throughput sequencing (HTS) and targeted molecular validation. We collected 134 leaf samples from 34 growers across the island four prefectures. HTS analysis revealed novel isolates of two Secoviridae members (Artichoke yellow ringspot virus - AYRSV) and Strawberry latent ringspot virus - SLRSV), as well as Soybean ilarvirus 1 (SolV1), a putative and incompletely characterized jivivirus, and a previously undescribed coguvirus of the family Phenuiviridae, all confirmed by PCR screening. Phylogenetic and sequence analyses support the classification of the coguvirus as a distinct viral species, for which we propose the name Carob coguvirus 1 (CaCoV1). To our knowledge, this study provides the first comprehensive characterization of the carob virome. These findings expand current knowledge of viral diversity in carob and establish a foundation for future epidemiological studies, certification of propagation material, and the sustainable expansion of carob cultivation in Crete and other Mediterranean regions.

microbiology↗

VIRP1 bromodomain shapes nuclear condensate formation and has a positive effect on PSTVd accumulation

O_LIViroids are small, non-coding RNAs that rely on host factors for replication, intracellular trafficking and systemic movement. VIRP1, a Bromodomain and Extra-terminal domain (BET) protein, has previously been implicated in Potato spindle tuber viroid (PSTVd) infection, yet its precise role and mode of action remain unresolved. C_LIO_LIIn this work, we highlight VIRP1 as the only Solanaceae BET protein containing a proline-rich domain, which overlaps with the PSTVd-binding site. VIRP1-deficient plants exhibit delayed flowering and increased ABA sensitivity, with differentially expressed genes enriched in stress-related pathways. C_LIO_LIVIRP1 forms condensates in planta and in vitro, consistent with phase-separation behaviour. Condensate morphology is altered by PSTVd RNA, deletion of the intrinsically disordered CTD and bromodomain mutations. C_LIO_LIVIRP1 is particularly important for the early establishment of PSTVd infection, while nuclear localization and bromodomain integrity are required for efficient viroid accumulation. By contrast, the disordered CTD region is dispensable for complementation of PSTVd accumulation. C_LIO_LIOur results support a model in which VIRP1 acts as a host nuclear factor that links stress-related functions, nuclear condensate formation and early viroid infection. C_LI

plant biology↗