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Solovyev, A. G.

Publications and source records attributed to Solovyev, A. G..

2 recordsLinked to original sources

Occurrence of plant-specific 4/1 gene in streptophyte algae: brief view on the gene and protein evolution

Previously, the plant-specific 4/1 proteins have been found to be encoded by single-copy genes in most land plants (clade Embryophyta) but not in green algae. We first identified and characterized 4/1 genes in arabidopsis (At-4/1) and tobacco (Nt-4/1). Importantly, the 4/1 proteins in Magnoliophyta species are characterized by a highly conserved C-terminal domain of 30-37 amino acids. In this paper, we report the analysis of 4/1 genes in streptophyte algae - ancestors of lower land plants. AUGUSTUS ab initio gene prediction was used to predict 4/1 protein-coding genes in the chromosomal DNA sequences of several algae from classes Mesostigmatophyceae, Klebsormidiophyceae and Zygnemophyceae. Interestingly, in contrast to an inronless 4/1-like gene previously found in another charophyte alga Chara braunii, these genes contain several introns that is consistent with the 4/1 exon-intron organization of land plants. In general, the chromosomes of the studied charophyte algae were found to encode Magnoliophyta-like 4/1 proteins that share their previously described general gene structure and protein properties. These new data on the 4/1-like genes and proteins in the Streptophyta clade suggest that 4/1 proteins are probably function as accessory factors in stress response, but these polypeptides are not required for the primary metabolic functions of streptophyte cells.

plant biology↗

ORIGIN OF THREE RELATED MOVEMENT GENE MODULES IN PLANT VIRUSES: EVOLUTIONARY RADIATIONS OF BENYVIRUS-LIKE RNA REPLICONS

Previous studies have shown that the RNA genomes of some plant viruses encode two related genetic modules required for the virus movement over host body, containing 2 or 3 genes and named as triple gene block (TGB) and binary movement block (BMB). In this paper, we revealed a novel related movement gene module, called Tetra-Cistron Movement Block (TCMB). It was found to be encoded by virus-like transcriptome assemblies of moss Dicranum scoparium and Antarctic flowering plant Colobanthus quitensis. These TCMBs are encoded by second RNA components of the putative two-component viruses related to plant benyviruses. Like RNA-2 of benyviruses, TCMB RNA-2 contains the 5-terminal coat protein gene. General organization of TCMB is very similar to TGB: it includes RNA helicase gene which is followed by two small overlapping cistrons encoding hydrophobic proteins with a distant sequence similarity to TGB2 and TGB3 genes. However, TCMB includes also forth 5-terminal gene coding for protein with an obvious similarity to double-stranded RNA-binding proteins belonging to the DSRM AtDRB-like superfamily. Finally, we suggest the proposed involvement of replicative beny-like helicases in evolution of the BMB and TCMB movement genetic modules.

microbiology↗