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Raiyemo, D. A.

Publications and source records attributed to Raiyemo, D. A..

3 recordsLinked to original sources

Chromosome-level genome assemblies and annotations of Amaranthus spinosus, Amaranthus acanthochiton, Amaranthus arenicola, and Amaranthus floridanus

Amaranthus L. spans aggressive agricultural weeds, ornamentals, and ancient pseudocereals. Species within the genus vary in morphology, environmental tolerance, and sexual systems, making them well-suited for studying reproductive evolution and plant adaptation. To investigate sex chromosome architecture within the genus, we generated chromosome-level assemblies of a monoecious amaranth (Amaranthus spinosus) and three dioecious species (A. acanthochiton, A. arenicola, and A. floridanus) using PacBio high-fidelity (HiFi) long reads. We paired these data with Dovetail Genomics Omni-C sequencing to achieve haplotype resolution for A. spinosus and A. acanthochiton, and we used reference-guided scaffolding for the remaining two species. The assemblies are highly contiguous, with sizes ranging from 394.24 to 607.10 Mbp, contig N50 from 0.63 to 8.76 Mbp, and scaffold N50 from 22.44 to 37.97 Mbp. Evaluation of the assemblies and annotations revealed 96.3 to 97.6%, and 97.6 to 98.3% BUSCO completeness, respectively. Comparative genomic analysis revealed that the Chromosome 1 inversions and Robertsonian fusion previously reported in A. tuberculatus are conserved in A. acanthochiton and consistent with the architecture of A. arenicola and A. floridanus, suggesting that the evolution of dioecy in this clade predates subsequent speciation. In parallel, multiple homologs of Rf1 on Chromosome 3 of A. spinosus, a monoecious species that exhibits spatial separation of male and female flowers and is closely related to the dioecious A. palmeri, were identified. Together, this study provides foundational resources for advancing evolutionary, ecological, and agronomic research across the genus, including herbicide resistance evolution and weediness traits.

genomics↗

Chromosome-level assemblies of Amaranthus palmeri, Amaranthus retroflexus, and Amaranthus hybridus allow for genomic comparisons and identification of a sex-determining region

Amaranthus palmeri (Palmer amaranth), A. retroflexus (redroot pigweed), and A. hybridus (smooth pigweed) are troublesome weeds that are economically damaging to several cropping systems. Collectively referred to as pigweeds, these species are incredibly adaptive and have become successful competitors in diverse agricultural settings. Development of genomic resources for these species promises to facilitate the elucidation of the genetic basis of traits such as biotic and abiotic stress tolerance (e.g., herbicide resistance) and sex determination. Here, we sequenced and assembled chromosome-level genomes of these three pigweed weed species. By combining the haplotype-resolved assembly of A. palmeri with existing restriction site-associated DNA sequencing data, we identified a [~]2.84 Mb region on chromosome 3 of Hap1 that is male-specific and contains 37 genes. Transcriptomic analysis revealed two genes within the male-specific region, RESTORER OF FERTILITY 1 (Rf1) and TLC DOMAIN-CONTAINING PROTEIN (TLC), were upregulated in male individuals across the shoot apical meristem, the floral meristem, and mature flowers, indicating their potential involvement in sex determination in A. palmeri. In addition, we rigorously classified cytochrome P450 genes in all three pigweeds due to their involvement in non-target site herbicide resistance. Finally, we identified contiguous extrachromosomal circular DNA (eccDNA) in A. palmeri, a critical component of glyphosate resistance in this species. The findings of this study advance our understanding of sex determination in A. palmeri and provide genomic resources for elucidating the genetic basis and evolutionary origins of adaptive traits within the genus.

genomics↗

A phased chromosome-level genome assembly provides insights into the evolution of sex chromosomes in Amaranthus tuberculatus

O_LIAmaranthus tuberculatus (waterhemp) is a troublesome weed species of agronomic importance that is dioecious with an XY sex-determination system. The evolution of sex chromosomes, the contiguity of sex-determining region (SDR) and the expression pattern of genes within the SDR remain poorly understood. C_LIO_LIWe assembled the genome of a male A. tuberculatus, phased the genome into two chromosome-level haplotypes, and performed restriction site-associated DNA genome- wide association (RAD-GWA) analysis, comparative genomics, adaptive evolution analysis, and, with existing data, transcriptomic profiling to characterize the species sex chromosomes. C_LIO_LIComparative analysis enabled the identification of a [~]32.8 Mb SDR on chromosome 1 that is gene-poor, abundant in long terminal repeat (LTR) retrotransposons, and harbors two inversions. Synteny analysis revealed that chromosome 1 likely originated from the fusion of two ancestral chromosomes, and mRNA data indicated 93 genes out of the 531 protein-coding genes within the SDR of haplome 2 were differentially expressed between mature male and female flowers, with several of the genes enriched for Gene Ontology (GO) terms involved in floral development. C_LIO_LIBeyond adding to our understanding of sex chromosome evolution, the genomic resource provided here will be valuable for addressing further questions on adaptive trait evolution in Amaranthus. C_LI

genomics↗