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Assembling genomes of non-model plants: A case study with evolutionary insights from Ranunculus (Ranunculaceae).

Whereas genome sequencing and assembly technologies are improving, cost can still be prohibitive for plant species with large, complex genomes. As a consequence, genomics work on some taxa in evolutionarily pivotal positions in the vascular plant tree of life has been hampered. The species-rich genus Ranunculus (Ranunculaceae) is an important angiosperm group for the study of polyploidy, apomixis, and reticulate evolution. However, neither mitochondrial nor high-quality nuclear genome sequences are available. This limits phylogenomic, functional, and taxonomic analyses thus far. Here, we tested Illumina short-read, Oxford Nanopore Technology (ONT) and PacBio (HiFi) long-read, and hybrid-read assembly strategies. We sequenced the diploid progenitor species R. cassubicifolius (R. auricomus species complex) and selected the best assemblies in terms of completeness, contiguity, and quality scores. We first assembled the plastome (156 kbp, 85 genes) and mitogenome (1.18 Mbp, 40 genes) sequences using Illumina and Illumina-PacBio-hybrid strategies, respectively. We also present an updated plastome and the first mitogenome phylogeny of Ranunculaceae, including studies of gene loss (e.g., infA, ycf15, or rps) with evolutionary implications. For the nuclear genome sequence, we favored a PacBio-based assembly polished three times with filtered short reads and subsequently scaffolded into eight pseudochromosomes by chromatin conformation data (Hi-C). We obtained a haploid genome sequence of 2.69 Gbp, with 94.1% complete BUSCO genes found and 35 482 annotated genes, and inferred ancient gene duplications compared to existing Ranunculales genomes. The genomic information presented here will enable advanced evolutionary-functional analyses for the species complex, but also for the genus and beyond Ranunculaceae.

Ranunculus

Antifungal properties of leaf extract of Ranunculus sceleratus L.

Studies on various antifungal properties of the leaf extraxt of Ranunculus sceleratus L. showed that it was thermostable up to 100 degrees C, retained activity on autoclaving, and remained active up to 15 days at room temperature. It possessed quick fungicidal action, tolerance against heavy fungal inoculum, activity on broad pH range, broad fungicidal spectrum, non-phytotoxicity and non-systemic activity. The extract was lethal at 1:40 dilution and its volatile vapours were also fungitoxic.

Antifungal Agents

New procedure for direct bioautographic TLC assay as applied to a tincture of Ranunculus bulbosus.

A new procedure for TLC bioautographic assay using a flooding method to inoculate the developed plates is described. Details about several microbiological parameters allow good reproducibility for this method which appears rapid, easy to perform and requiring no specialized equipment. Significantly results obtained with a commercial tincture of Ranunculus bulbosus illustrate this method which can be extended to complex mixtures of natural products in order to isolate active fractions.

Biological Assay

Analgesic and anti-inflammatory effects of Ranunculus japonicus extract.

The analgesic and anti-inflammatory effects of Ranunculus japonicus extract after parenteral administration were determined in several animal models. The extract inhibited the mice writhing responses caused by acetic acid and raised the pain thresholds of mice in the hot-plate test. The extract also inhibited the paw edema of rats induced by carrageenin, ear swelling of mice caused by xylene, mice vascular permeability increase induced by acetic acid, and granuloma formation in rats.

Analgesics

Suspected buttercup (Ranunculus bulbosus) toxicosis with secondary photosensitization in a Charolais heifer.

A presumptive diagnosis of buttercup toxicosis with photosensitization secondary to hepatotoxicity was made in an 18-mo-old Charolais heifer. The differential diagnosis included salmonellosis, aflatoxicosis, bovine virus diarrhea, internal parasite infestation, and plant toxicosis with either primary or secondary photosensitization. All these possibilities were excluded except buttercup toxicosis with photosensitization secondary to hepatotoxicity. While this diagnosis was not absolutely confirmed, it was the most likely cause of the disease and raised the intriguing possibility that protoanemonin, buttercup's toxic principle, is hepatotoxic.

Animals

Light and electron microscopic investigation of in vitro starch synthesis in chromoplasts.

Chromoplasts having a globular inner structure in the petals of Forsythia suspensa can form starch grains in their stroma when incubated with glucose solution. The same result was obtained with chromoplasts, similar in structure, from Laburnum anagyroides and Ranunculus acer. Fibrillar chromoplasts in tepals of Lilium croceum are able to synthesize starch in vitro, not, however, from glucose but from glucose-1-phosphate. This starch differs from the above mentioned both in respect of electron microscopic structure and digestibility with alpha-amylase, a feature presumably caused by the relatively high activity of the branching (Q) enzyme. The substrate specificity of Lilium-starch synthesis can be explained by blocking of the phosphorylation of glucose in the cytoplasm, rather than by the selective permeability of the plasmalemma.

Microscopy, Electron