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Ancient allopolyploid speciation in Geinae (Rosaceae): evidence from nuclear granule-bound starch synthase (GBSSI) gene sequences.

A nuclear low-copy gene phylogeny provides strong evidence for the hybrid origin of seven polyploid species in Geinae (Rosaceae). In a gene tree, alleles at homologous loci in an allopolyploid species are expected to be sisters to orthologues in the ancestral taxa rather than to each other. Alleles at a duplicated locus in an autopolyploid, however, are expected to be more closely related to each other than they are to any orthologous copies in closely related species. We cloned and sequenced about 1.9 kilobases from the 5' end of the GBSSI-1 gene from two diploid, one tetraploid, and six hexaploid species. Each of the three loci in the hexaploid species forms a separate group, two of which are more closely related to copies in other species than they are to each other. This finding indicates that the hexaploid lineage evolved through two consecutive allopolyploidization events. Based on the GBSSI-1 gene tree, we hypothesized that there was an initial hybridization between a diploid species from the ancestral lineage of Coluria and Waldsteinia and an unknown diploid species to form the tetraploid Geum heterocarpum lineage. Backcrossing of G. heterocarpum with a representative of the unknown diploid lineage then resulted in a hexaploid lineage that has radiated considerably since its origin, comprising at least 40 extant species with various morphologies. A penalized likelihood analysis indicated that Geinae may be about 17 million years old, implying that the hypothesized allopolyploid speciation events are relatively ancient. Six of the 22 cloned Geinae GBSSI-1 copies in this study, which all are duplicate copies in polyploid taxa, may have become pseudogenes. We compared the GBSSI-1 phylogeny with one from chloroplast data and explored implications for the evolution of some fruit characters.

Base Sequence↗

Floral Ontogeny and Morphology in Subfamily Amygdaloideae T. & G. (Rosaceae).

Relationships within the Amygdaloideae have long been a point of discussion in Rosaceae systematics. Oemleria, a monotypic genus, has been removed from the Amygdaloideae because of its five-pistillate gynoecium since all other genera have a single pistil. Exochorda, with its capsular fruit, has traditionally been placed in Spiraeoideae. Nevertheless, recent phylogenetic analyses of wood anatomy and rbcL sequence variation have demonstrated that both Exochorda and Oemleria should be included in an expanded Amygdaloideae. Comparisons of floral ontogeny in Prunus, Oemleria, and Exochorda, and the mature morphology of these genera and Prinsepia, support inclusion of Oemleria and Exochorda in Amygdaloideae. Inflorescence development demonstrates a close relationship between Exochorda and Oemleria. Gynoecium development in Exochorda and Oemleria is similar in some ways to that of some members of the Maloideae. All genera have a pair of collateral, bitegmic ovules, each of which is associated with an obturator that is composed of cells of the ventral margin of the locule.

Journal Article↗

Floral Ontogeny and Morphology in Subfamily Spiraeoideae Endl. (Rosaceae).

"Spiraeoideae," as traditionally circumscribed, contain the greatest diversity of floral organ morphology of any of the four subfamilies in the Rosaceae. Comparisons of mature floral morphology in 10 spiraeoid genera demonstrate that genera in this subfamily exhibit many floral character states present in the other three subfamilies. Inflorescence development, gynoecium initiation and development, ovule development and morphology, and obturator position all exhibit considerable variation in these taxa. Inflorescences vary from simple and racemose to multibranched and cymose. Gynoecial appendages can be initiated as independent primordia or from a shallow gynoecial ring primordium. Placentation occurs on the ventral margin of the ovary locule and includes apotropic ovules inserted near the base (Porteranthus and Vauquelinia), apotropic and pleurotropic ovules inserted the entire length or midway (Kageneckia and Physocarpus), and apically inserted epitropic ovules (Aruncus, Chamaebatiaria, Holodiscus, Lyonothamnus, Sorbaria, and Spiraea). Associated with the ovules of almost all genera is an obturator that may comprise cells of the funiculus or cells of both the funiculus and locule margin. These results corroborate those of other studies that suggest that the "Spiraeoideae" are an artificial, polyphyletic group.

Journal Article↗

Revision of Lyonothamnus A. Gray (Rosaceae) from the Neogene of Western North America.

Lyonothamnus Gray is a monotypic genus of evergreen trees endemic to California's Channel Islands. There is one species, L. floribundus, with two subspecies, ssp. floribundus and ssp. asplenifolius. Subspecies floribundus has simple and entire-margined leaves, while leaves of ssp. asplenifolius are pinnate and composed of three to seven primary segments. Despite its restricted modern occurrence, three fossil species have been described from Neogene paleofloras in the far western United States. Lyonothamnus mohavensis Axelrod is known from California; L. parvifolius (Axelrod) Wolfe and L. cedrusensis Axelrod, from Nevada. However, the size ranges used to segregate these species were all found to fall within the range of L. parvifolius from Stewart Valley, Nevada. Study of intact leaves reveals that the combination of (1) number of primary segments, (2) length of primary segments, (3) number of medial secondary segments per primary segment, and (4) lengths and widths of medial secondary segments is important in segregating species. Using these characters, L. parvifolius and L. wolfei Erwin et Schorn sp. nov. are recognized from Nevada and Oregon, and two species, L. mohavensis and L. axelrodii Erwin et Schorn sp. nov., from California. This renewed taxonomy within an updated temporal framework provides an important first step toward understanding the evolution, diversity, paleoecology, and paleobiogeographic history of this unusual member of the Rosaceae.

Journal Article↗

Variability patterns and positively selected sites at the gametophytic self-incompatibility pollen SFB gene in a wild self-incompatible Prunus spinosa (Rosaceae) population.

Current models for the generation of new gametophytic self-incompatibility specificities require that neutral variability segregates within specificity classes. Furthermore, one of the models predicts greater ratios of nonsynonymous to synonymous substitutions in pollen than in pistil specificity genes. All models assume that new specificities arise by mutation only. To test these models, 21 SFB (the pollen S-locus) alleles from a wild Prunus spinosa (Rosaceae) population were obtained. For seven of these, the corresponding S-haplotype was also characterized. The SFB data set was also used to identify positively selected sites. Those sites are likely to be the ones responsible for defining pollen specificities. Of the 23 sites identified as being positively selected, 21 are located in the variable (including a new region described here) and hypervariable regions. Little variability is found within specificity classes. There is no evidence for selective sweeps being more frequent in pollen than in pistil specificity genes. The S-RNase and the SFB genes have only partially correlated evolutionary histories. None of the models is compatible with the variability patterns found in the SFB and the S-haplotype data.

Alleles↗

Unraveling evolutionary pathways: allopolyploidization and introgression in polyploid Prunus (Rosaceae).

Allopolyploidization, resulting from hybridization and subsequent whole-genome duplication (WGD), is a fundamental mechanism driving evolutionary diversification across various lineages within the Tree of Life. The polyploid Prunus (Rosaceae), significant for its economic and agricultural value, provides an ideal model for investigating the evolutionary dynamics associated with allopolyploidy. In this study, we utilized deep genome skimming (DGS) data to demonstrate a comprehensive analytical framework for elucidating the underlying allopolyploidy that includes a newly adapted tool (DGS-Tree2GD) tailored explicitly for accurately detecting WGD events. Additionally, we introduced two methods to evaluate the contribution of incomplete lineage sorting (ILS) to lineage diversification. Phylogenomic discordance analyses revealed that allopolyploidization, rather than ILS, played a dominant role in the origin and dynamics of polyploid Prunus. Moreover, we inferred that the uplift of the Himalayas from the Middle to Late Miocene was a key driver in the rapid diversification of the Maddenia clade, an endemic group in East Asia. This geological event facilitated extensive hybridization and allopolyploidization, particularly the introgression between the Himalayas-Hengduan and Central-Eastern China clades. This case study demonstrates the robustness and efficacy of our analytical approach in precisely identifying WGD events and elucidating the evolutionary mechanisms underlying allopolyploidization in polyploid Prunus.

Polyploidy↗

Perioral dermatitis and rosacea-like dermatitis: clinical features and treatment.

Nine cases of perioral dermatitis and 16 cases of rosacea-like dermatitis have been treated for the last 3 years at our clinic. These cases were all females whose ages ranged from 18 to 61 years with a mean of 45 years. All had been under treatment with fluorinated steroids for a period of from 3 months to 10 years, about 3 years on the average. Tetracyclines were beneficial as remedies for these conditions, bringing about healing or remission in approximately 3 months. About 1 year was required for the recovery from atrophy of the skin and telangiectasia. Hydrocortisone 17-butyrate was more useful as a topical medication than hydrocortisone acetate but gave rise to withdrawal rebound eruptions in some cases.

Administration, Oral↗

The genome sequence of Prunus padus L., 1753 (Rosales: Rosaceae).

We present a genome assembly of Prunus padus (bird cherry; Streptophyta; Magnoliopsida; Rosales; Rosaceae). The genome sequence has a total length of 454.49 megabases. Most of the assembly (97.36%) is scaffolded into 16 chromosomal pseudomolecules. The mitochondrial sequences have lengths of 280.28 and 155.92 kilobases and the plastid genome assembly has a length of 158.96 kilobases. This assembly was generated as part of the Darwin Tree of Life project, which produces reference genomes for eukaryotic species found in Britain and Ireland.

Prunus padus↗

The genome sequence of Acaena ovalifolia Ruiz & Pav., 1798 (Rosales: Rosaceae).

We present a genome assembly of Acaena ovalifolia (Two-spined Acaena; Streptophyta; Magnoliopsida; Rosales; Rosaceae). The assembly consists of two haplotypes with total lengths of 687.12 megabases and 687.19 megabases. Most of haplotype 1 (99.59%) is scaffolded into 21 chromosomal pseudomolecules. Most of haplotype 2 (99.12%) is scaffolded into 21 chromosomal pseudomolecules. The mitochondrial sequence has a length of 365.03 kilobases and the plastid genome assembly has a length of 156.05 kilobases. Gene annotation of this assembly on Ensembl identified 51 813 protein-coding genes. This assembly was generated as part of the Darwin Tree of Life project, which produces reference genomes for eukaryotic species found in Britain and Ireland.

Acaena ovalifolia↗

A new cucurbitacin glycoside from Kageneckia oblonga (Rosaceae).

A novel cucurbitacin glycoside has been isolated from aerial parts of Kageneckia oblonga R. et P. and shown to be 3beta-(beta-D-glucosyloxy)-16alpha,23alpha-epoxycuc urbita-5,24-dien-11-one. The structure was established by usual spectroscopic and two-dimensional (2D) NMR techniques. This compound has found to be nontoxic when tested in-vivo cell culture assays. In previous investigations we reported 23,24-dihydrocucurbitacin F and prunasine. This was the first report on cucurbitacins from the genus Kageneckia (Rosaceae).

Animals↗

A phylogenetic analysis of Prunus and the Amygdaloideae (Rosaceae) using ITS sequences of nuclear ribosomal DNA.

The economically important plum or cherry genus (PRUNUS:) and the subfamily Amygdaloideae of the Rosaceae have a controversial taxonomic history due to the lack of a phylogenetic framework. Phylogenetic analysis using the ITS sequences of nuclear ribosomal DNA (nrDNA) was conducted to construct the evolutionary history and evaluate the historical classifications of PRUNUS: and the Amygdaloideae. The analyses suggest two major groups within the Amygdaloideae: (1) PRUNUS: s.l. (sensu lato) and MADDENIA:, and (2) EXOCHORDA:, Oemleria, and PRINSEPIA: The ITS phylogeny supports the recent treatment of including EXOCHORDA: (formerly in the Spiraeoideae) in the Amygdaloideae. MADDENIA: is found to be nested within PRUNUS: s.l. in the parsimony and distance analyses, but basal to PRUNUS: s.l. in the maximum likelihood analysis. Within PRUNUS:, two major groups are recognizable: (1) the AMYGDALUS:-PRUNUS: group, and (2) the CERASUS:-LAUROCERASUS:-PADUS: group. The clades in the ITS phylogeny are not congruent with most subgeneric groups in the widely used classification of PRUNUS: by Rehder. A broadly defined PRUNUS: is supported.

Journal Article↗

Induction of apoptosis by three types of procyanidin isolated from apple (Rosaceae Malus pumila) in human stomach cancer KATO III cells.

We have investigated the effects of three types of procyanidin isolated from apple (Rosaceae Malus pumila) on DNA of human stomach cancer KATO III cells. Induction of apoptosis by these procyanidins was observed in human stomach cancer KATO III cells. Morphological changes showing apoptotic bodies were observed in the KATO III cells treated with procyanidins. The fragmentation of DNA by procyanidins to oligonucleosomal-sized fragments, a characteristic of apoptosis, was observed to be concentration- and time-dependent in the KATO III cells. N-acetyl-L-cysteine, an antioxidant, suppressed the DNA fragmentation induced by these procyanidins. The present study shows that the suppression of KATO III cell-growth by three types of procyanidin results from the induction of apoptosis by these compounds, and that active oxygen is involved in the induction of apoptosis by these compounds in the KATO III cells.

Acetylcysteine↗

Biopsy may help identify early pyoderma faciale (rosacea fulminans).

Pyoderma faciale is an uncommon acute presentation of rosacea. Edema, nodules, and draining sinuses may occur. Women in their early 20s are typically affected, and severe scarring may result in untreated cases. We report the case of a woman in whom a biopsy helped establish an early diagnosis so that decisive intervention could be initiated and scarring avoided. The histologic features of pyoderma faciale only rarely have been described and are illustrated in this case.

Adult↗

[Tannin content and inhibiting activity of elastase in Rosaceae].

From 42 Rosaceae species, only the Rosoideae species exhibit high tannin content and elastase inhibiting activity such as Filipendula ulmaria, Geum montanum, G. rivale, Alchemilla xanthochlora and Sanguisorba minor. Other studied species from Spiraeoideae, Maloideae and Prunoideae subfamilies are less rich in tannin and also less active.

Pancreatic Elastase↗

The diversity of polyprenol pattern in leaves of fruit trees belonging to Rosaceae and Cornaceae.

The polyprenol pattern in leaves of fruit trees belonging to the Rosaceae (genera: Prunus, Malus) and Cornaceae (genus: Cornus) families is presented. The content of polyprenyl acetates varied within plant species between 10-50 mg per gram of dry weight. In genus Prunus, Cornus and in representatives of species Malus domestica, a mixture of polyprenols composed of 18, 19, 20, 21 isoprene units was found. In six species of genus Prunus (sour-cherry): P. serrulata-spontanea, P. yedoensis, P. fruticosa. P. kurilensis, P. subhirtella and P. incisa the presence of a second polyprenol family, i.e. the group of prenologues consisting of prenol -35, -36, -37, etc. up to -42 was detected.

Chromatography, High Pressure Liquid↗

Lupoid rosacea.

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Animals↗