3,748 research outputs found

    Complete chloroplast genome sequence of Holoparasite Cistanche Deserticola (Orobanchaceae) reveals gene loss and horizontal gene transfer from Its host Haloxylon Ammodendron (Chenopodiaceae)

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    The central function of chloroplasts is to carry out photosynthesis, and its gene content and structure are highly conserved across land plants. Parasitic plants, which have reduced photosynthetic ability, suffer gene losses from the chloroplast (cp) genome accompanied by the relaxation of selective constraints. Compared with the rapid rise in the number of cp genome sequences of photosynthetic organisms, there are limited data sets from parasitic plants. The authors report the complete sequence of the cp genome of Cistanche deserticola, a holoparasitic desert species belonging to the family Orobanchaceae

    Novedades taxonómicas y nomenclaturales en el género "Orobanche" L. (Orobanchaceae).

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    Taxonomical and nomenclatural contribution in the genus Orobanche L. (Orobanchaceae). Palabras clave. Nomenclatura, Orobanchaceae, Orobanche, taxonomía.Key words. Nomenclature, Orobanchaceae, Orobanche, taxonomy

    "Orobanche mariana" A. Pujadas (Orobanchaceae) sp. nov. para el sur de la Península Ibérica

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    Orobanche mariana A. Pujadas (Orobanchaceae) sp. nov. from the south of the Iberian Peninsula. Palabras clave. Flora iberica, jopo, Orobanchaceae, Orobanche, parásita.Key words. Broomrape, Flora iberica, Orobanchaceae, Orobanche, parasite

    MarkerMiner 1.0: a new application for phylogenetic marker development using angiosperm transcriptomes

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    Premise of the study: Targeted sequencing using next-generation sequencing (NGS) platforms offers enormous potential for plant systematics by enabling economical acquisition of multilocus data sets that can resolve difficult phylogenetic problems. However, because discovery of single-copy nuclear (SCN) loci from NGS data requires both bioinformatics skills and access to high-performance computing resources, the application of NGS data has been limited. Methods and Results: We developed MarkerMiner 1.0, a fully automated, open-access bioinformatic workflow and application for discovery of SCN loci in angiosperms. Our new tool identified as many as 1993 SCN loci from transcriptomic data sampled as part of four independent test cases representing marker development projects at different phylogenetic scales. Conclusions: MarkerMiner is an easy-to-use and effective tool for discovery of putative SCN loci. It can be run locally or via the Web, and its tabular and alignment outputs facilitate efficient downstream assessments of phylogenetic utility, locus selection, intron-exon boundary prediction, and primer or probe development

    Orobanche L. (Orobanchaceae) sect. Trionychon Wallr., en Andalucía II: Orobanche rosmarina Beck.

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    RESUMEN. Orobanche L. (Orobanchaceae) sect. Trionychon Wallr., en Andalucía II: Orobanche rosmarina Beck. Se indica la presencia de Orobanche rosmarina Beck en Andalucía. Aportamos la descripción de los ejemplares andaluces, su corología y habitat. Se incluyen unas nuevas claves de determinación para las especies andaluzas de la sect Trionychon.Palabras clave. Orobanchaceae, Orobanche, jopo, parásito, Andalucía.ABSTRACT. Orobanche L. (Orobanchaceae) sect. Trionychon Wallr., in Andalusia II: Orobanche rosmarina Beck. The presence of Orobanche rosmarina Beck in Andalusia is noted. Description, chorology and habitat of the Andalusian specimens is given. New identification keys are added.Key words. Orobanchaceae, Orobanche, broomrape, parasite, Andalusia

    Limited mitogenomic degradation in response to a parasitic lifestyle in Orobanchaceae

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    In parasitic plants, the reduction in plastid genome (plastome) size and content is driven predominantly by the loss of photosynthetic genes. The first completed mitochondrial genomes (mitogenomes) from parasitic mistletoes also exhibit significant degradation, but the generality of this observation for other parasitic plants is unclear. We sequenced the complete mitogenome and plastome of the hemiparasite Castilleja paramensis (Orobanchaceae) and compared them with additional holoparasitic, hemiparasitic and nonparasitic species from Orobanchaceae. Comparative mitogenomic analysis revealed minimal gene loss among the seven Orobanchaceae species, indicating the retention of typical mitochondrial function among Orobanchaceae species. Phylogenetic analysis demonstrated that the mobile cox1 intron was acquired vertically from a nonparasitic ancestor, arguing against a role for Orobanchaceae parasites in the horizontal acquisition or distribution of this intron. The C. paramensis plastome has retained nearly all genes except for the recent pseudogenization of four subunits of the NAD(P)H dehydrogenase complex, indicating a very early stage of plastome degradation. These results lend support to the notion that loss of ndh gene function is the first step of plastome degradation in the transition to a parasitic lifestyle

    Limited mitogenomic degradation in response to a parasitic lifestyle in Orobanchaceae

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    In parasitic plants, the reduction in plastid genome (plastome) size and content is driven predominantly by the loss of photosynthetic genes. The first completed mitochondrial genomes (mitogenomes) from parasitic mistletoes also exhibit significant degradation, but the generality of this observation for other parasitic plants is unclear. We sequenced the complete mitogenome and plastome of the hemiparasite Castilleja paramensis (Orobanchaceae) and compared them with additional holoparasitic, hemiparasitic and nonparasitic species from Orobanchaceae. Comparative mitogenomic analysis revealed minimal gene loss among the seven Orobanchaceae species, indicating the retention of typical mitochondrial function among Orobanchaceae species. Phylogenetic analysis demonstrated that the mobile cox1 intron was acquired vertically from a nonparasitic ancestor, arguing against a role for Orobanchaceae parasites in the horizontal acquisition or distribution of this intron. The C. paramensis plastome has retained nearly all genes except for the recent pseudogenization of four subunits of the NAD(P)H dehydrogenase complex, indicating a very early stage of plastome degradation. These results lend support to the notion that loss of ndh gene function is the first step of plastome degradation in the transition to a parasitic lifestyle

    Pedicularis L. Genus. Systematics, botany, phytochemistry, chemotaxonomy, ethnopharmacology, and other

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    In this review, the relevance of the plant species belonging to the Pedicularis L. genus has been considered from different points of view. Particular emphasis was given to phytochemistry and ethnopharmacology, since several classes of natural compounds have been reported within this genus and many of its species are well known to be employed in the traditional medicines of many Asian countries. Some important conclusions on the chemotaxonomic and chemosystematic aspects of the genus have also been provided for the first time. Actually, this work represents the first total comprehensive review on this genus
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