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Biology subjects

Tenhola-Roininen, T.

Publications and source records attributed to Tenhola-Roininen, T..

4 recordsLinked to original sources

Early cadmium responses in developing oat caryopses indicate an unexpected regulatory network linked to low grain cadmium accumulation

Heavy-metal accumulation in cereal grains is becoming critical for European food safety, regulation and plant breeding. In the EU, Cd maximum levels in certain foodstuffs have been revised, including lowering or establishing limits for relevant food categories, while new maximum levels for nickel (Ni) have recently been introduced for several foodstuffs, including cereal categories, with limits for oats and selected cereals applying from 2026. Together, these developments create an urgent need to identify genetic and physiological mechanisms that reduce Cd and Ni accumulation in cereal grains while maintaining crop quality and productivity. Against this regulatory and food-safety background, our broader RNA-seq experiment investigates early transcriptional responses to Cd and Ni in oat F2 segregants contrasting for metal accumulation. The full dataset includes low- and high-accumulating segregants, roots and developing caryopses sampled at 3 h and 7 h after treatment. In the present pilot analysis, we focus on the Cd response in developing caryopses of the low-Cd accumulating segregant AS131 to identify candidate processes associated with reduced grain Cd accumulation. The strongest transcriptional responses were not dominated by canonical Cd-detoxification pathways. At 3 h after Cd exposure, differentially expressed transcripts were mainly associated with cell-wall functions, endosperm transfer-cell-specific PR60 proteins, DUF239-containing proteins and cysteine proteinase inhibitors, whereas several dehydration-, pathogen-, defence-, cell-wall-loosening- and ROS- related genes were repressed. By 7 h, the response suggested a shift towards homeostatic acclimation, with induction of TIP2 aquaporins, thiamine thiazole synthases, EF-Tu proteins, coatomer-related genes and carbohydrate metabolism-associated genes, together with repression of LEA/SMP/dehydrin genes, FRO7-like genes, EF-hand calcium-binding proteins and stress-regulatory transcription factors. Pathway-level analyses were broadly consistent with these transcript-level patterns, highlighting structural, nucleosome-associated, translation-related, metabolic and developmental processes. Several Cd-responsive transcripts were also associated with broader abiotic-stress responses, suggesting recruitment of shared stress-regulatory modules rather than Cd-specific detoxification pathways alone. Overall, these results support a working hypothesis in which low Cd accumulation in developing oat grain may involve regulation of solute-transfer interfaces, cellular protection, intracellular homeostasis, trafficking pathways and caryopsis developmental programmes. These findings provide candidate processes for future comparison with high-Cd accumulating segregants, root tissues and Ni responses in the broader dataset.

genomics↗

Solvent specific bioactivities of cone, leaf, and stem extracts from a native Finnish wild hop

The genetically authenticated Finnish hop genotype LUKE 2541 obtained from wild was evaluated for antibacterial, anti-inflammatory, and anticancer activities. Water extracts from hop cones inhibited the Gram-positive bacteria Staphylococcus aureus and Bacillus cereus, with MIC values of 0.094- 0.188mg/mL, whereas Gram-negative strains showed limited sensitivity. In LPS-primed THP-1 cells, both IPA and IPA-Control extracts reduced reactive oxygen species formation in a dose-dependent manner, exhibiting similar IC50 values (50.41{micro}g/mL and 35.41{micro}g/mL). This hop genotype also displayed clear tissue- and solvent-dependent antiproliferative effects in human cancer cell lines. Bioactivity was strongly enriched in hop cones and predominantly associated with non-polar extracts, particularly hexane and dichloromethane fractions, which produced marked, dose-dependent reductions in cell viability. In contrast, aqueous and methanolic extracts were largely inactive, underscoring the critical importance of extraction chemistry and tissue selection. Sensitivity varied among cancer cell lines, with colorectal cells generally more responsive and leukemia cells less affected, highlighting cell-specific susceptibility. Further research is needed to elucidate underlying mechanisms, determine selectivity toward non-malignant cells, and identify the active compounds responsible for all in all investigated effects.

biochemistry↗

Genetic Structure and Diversity of Amaranth Populations across Multi-Environmental Sites in Burkina Faso Revealed by Simple Sequence Repeats (SSRs) and Genotyping-by-Sequencing (GBS)

The genus Amaranthus L. (Amaranthaceae) comprises 70-80 species, including leafy vegetables, pseudocereals, ornamentals, and weedy forms, and is widely distributed across tropical and temperate regions. Despite its nutritional and agronomic importance, the taxonomy of Amaranthus remains challenging due to extensive phenotypic plasticity, sporadic hybridization, and limited diagnostic traits. In Burkina Faso, three species (A. cruentus, A. hypochondriacus, and A. dubius) are commonly cultivated, displaying considerable morphological variability and forming seven distinct morphotypes. To better understand the genetic diversity and population structure of West African Amaranthus, we analyzed accessions from multi-environmental sites in Burkina Faso using both simple sequence repeat (SSR) markers and genotyping-by-sequencing (GBS). SSR-based STRUCTURE analysis revealed a pronounced {Delta}K peak at K = 2, indicating two major genetic groups, with additional substructure at K = 4. Principal Coordinates Analysis confirmed species-level separation and morphotype-based clustering, while bar plots from STRUCTURE analysis highlighted admixture among several accessions. Complementary GBS analysis provided higher-resolution insights, partitioning species into multiple sub-clusters, detecting introgression, and linking genetic differentiation to morphological traits such as leaf shape, pigmentation, and inflorescence type. These findings are consistent with previous studies in Burkina Faso that reported both major genetic groups and significant morphological diversity. Together, SSR and GBS analyses underscore the multilayered nature of Amaranthus diversity, with SSRs capturing broad population subdivision and GBS refining fine-scale structure. This dual approach provides a robust framework for conservation of genetic resources and for genomics-assisted breeding aimed at exploiting heterosis, preserving unique alleles, and developing resilient varieties to enhance food and nutrition security in sub-Saharan Africa.

genetics↗

Genetic Fingerprinting of Herbarium Hop Specimens Reveals Genetic Diversity and Relationships with Modern Finnish Hops

We sampled 351 hop herbarium specimens for genetic analyses of their identities through definition of unique set of samples by extraction of duplicates and comparative analyses with modern hop samples from Finland and worldwide. We also analyzed genetic diversity and assessed genetic clustering and structure within and between herbarium hops specimens and modern hop germplasm. A set of 26 previously published hop microsatellites (SSRs) proven in diversity analyses have been used for genetic evaluations of herbarium hop DNA extracted from pressed and dried specimens of which the oldest was dated back to the year of 1841. A genetic fingerprint was generated for all samples and unique ones has been generated in pairwise comparisons of pairs of samples and eliminations of duplicates. For unique set of samples, a genetic distance matrix was created for clustering analyses as well allele frequencies matrix for model-based clustering analyses. Herbarium hop samples representing historical DNA showed no clear differentiation (clustering or sub-clustering) when analyzed with presently grown modern hops. Weak tendency of hops to cluster according to the geographical origin has been noticed. We detected 39 groups of hop herbarium duplicates representing 94 specimens, where redundancy showed to be low when compared to modern Finnish hops (redundancy >70%). Analyzing herbarium hops through DNA extraction will add another link in investigating the origin and spread of Finnish hops from ancient times. Finnish hops has been described as a millennia old and native to Finland.

evolutionary biology↗