57 resultados para trnH (GUG)-psbA
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Tribe Rhipsalideae is composed of unusual epiphytic or lithophytic cacti that inhabit humid tropical and subtropical forests. Members of this tribe present a reduced vegetative body, a specialized adventitious root system, usually spineless areoles and flowers and fruits reduced in size. Despite the debate surrounding the classification of Rhipsalideae, no studies have ever attempted to reconstruct phylogenetic relationships among its members or to test the monophyly of its genera using DNA sequence data; all classifications formerly proposed for this tribe have only employed morphological data. In this study, we reconstruct the phylogeny of Rhipsalideae using plastid (trnQ-rps16, rpl32-trnL, psbA-trnH) and nuclear (ITS) markers to evaluate the classifications previously proposed for the group. We also examine morphological features traditionally used to delimit genera within Rhipsalideae in light of the resulting phylogenetic trees. In total new sequences for 35 species of Rhipsalideae were produced (out of 55: 63%). The molecular phylogeny obtained comprises four main clades supporting the recognition of genera Lepismium, Rhipsalis, Hatiora and Schlumbergera. The evidence gathered indicate that a broader genus Schlumbergera, including Hatiora subg. Rhipsalidopsis, should be recognized. Consistent morphological characters rather than homoplastic features are used in order to establish a more coherent and practical classification for the group. Nomenclatural changes and a key for the identification of the genera currently included in Rhipsalideae are provided. (C) 2011 Elsevier Inc. All rights reserved.
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Background and Aims The amount of data collected previously for Velloziaceae neither clarified relationships within the family nor helped determine an appropriate classification, which has led to huge discordance among treatment by different authors. To achieve an acceptable phylogenetic result and understand the evolution and roles of characters in supporting groups, a total evidence analysis was developed which included approx. 20 % of the species and all recognized genera and sections of Velloziaceae, plus outgroups representatives of related families within Pandanales. Methods Analyses were undertaken with 48 species of Velloziaceae, representing all ten genera, with DNA sequences from the atpB-rbcL spacer, trnL-trnF spacer, trnL intron, trnH-psbA spacer, ITS ribosomal DNA spacers and morphology. Key Results Four groups consistently emerge from the analyses. Persistent leaves, two phloem strands, stem cortex divided in three regions and violet tepals support Acanthochlamys as sister to Velloziaceae s. s., which are supported mainly by leaves with marginal bundles, transfusion tracheids and inflorescence without axis. Within Velloziaceae s. s., an African Xerophyta + Talbotia clade is uniquely supported by basal loculicidal capsules; an American clade, Barbacenia s. l. + Barbaceniopsis + Nanuza + Vellozia, is supported by only homoplastic characters. Barbacenia s. l. (Aylthonia + Barbacenia + Burlemarxia + Pleurostima) is supported by a double sheath in leaf vascular bundles and a corona; Barbaceniopsis + Nanuza + Vellozia is not supported by an unambiguous character, but Barbaceniopsis is supported by five characters, including diclinous flowers, Nanuza + Vellozia is supported mainly by horizontal stigma lobes and stem inner cortex cells with secondary walls, and Vellozia alone is supported mainly by pollen in tetrads. Conclusions The results imply recognition of five genera (Acanthochlamys (Xerophyta (Barbacenia (Barbaceniopsis, Vellozia)))), solving the long-standing controversies among recent classifications of the family. They also suggest a Gondwanan origin for Velloziaceae, with a vicariant pattern of distribution.
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Phylogenetic relationships of Croton section Cleodora (Klotzsch) Baill. were evaluated using the nuclear ribosomal ITS and the chloroplast trnl-F and trnH-psbA regions. Our results show a strongly supported clade containing most previously recognized section Cleodora species, plus some other species morphologically similar to them. Two morphological synapomorphies that support section Cleodora as a clade include pistillate flowers in which the sepals overlap to some degree, and styles that are connate at the base to varying degrees. The evolution of vegetative and floral characters that have previously been relied on for taxonomic decisions within this group are evaluated in light of the phylogenetic hypotheses. Within section Cleodora there are two well-supported clades, which are proposed here as subsections (subsection Sphaerogyni and subsection Spruceani). The resulting phylogenetic hypothesis identifies the closest relatives of the medicinally important and essential oil-rich Croton cajucara Benth. as candidates for future screening in phytochemical and pharmacological studies. (C) 2011 Elsevier Inc. All rights reserved.
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Em estudos prévios sobre a filogenia de Passiflora, as espécies P. actinia e P. elegans destacaram-se pela sua grande similaridade genética, apesar de sua classificação em séries taxonômicas distintas. As duas espécies apresentam distribuição geográfica muito diferente. Enquanto P. actinia é encontrada em áreas de Mata Atlântica desde o estado do Espírito Santo até o Rio Grande do Sul (RS), P. elegans está restrita ao RS e a poucas regiões limítrofes. Para melhor avaliar as relações evolutivas entre estas duas espécies foram realizadas coletas intensivas em todo o estado e desenvolvidos testes quanto às seqüências dos espaçadores intergênicos cloroplasmáticos trnL-trnF e psbA-trnH, e dos espaçadores transcritos dos genes ribossomais nucleares ITS de plantas de diferentes localidades. As análises revelaram uma baixa variabilidade intraespecífica, e evidenciaram um perfil genético próprio a cada espécie. Nas comparações interespecíficas, foram utilizadas seqüências de espécies do subgênero (Passiflora) estudadas previamente, pertencentes às séries Simplicifoliae e Lobatae, as mesmas de P. actinia e P. elegans, respectivamente. Nos três marcadores as menores distâncias genéticas encontradas foram entre estas duas espécies, sugerindo o pouco tempo de divergência entre elas. Estas comparações não mostraram diferenças marcantes nas diversidades dentro e entre as duas séries, indicando similaridade genética entre elas Apesar da intensa amostragem realizada na área limítrofe das distribuições de P. actinia e P. elegans, somente foi encontrado um híbrido entre as duas. Além do fenótipo morfológico intermediário, o híbrido pôde ser reconhecido através das suas características genéticas, o espaçador nuclear ITS apresentando padrão aditivo nos sítios variáveis destas duas espécies; as seqüências dos marcadores cloroplasmáticos foram iguais às de P. actinia, indicando que esta é a espécie doadora deste genoma. Os padrões genéticos e geográficos destas duas espécies sugerem que o processo de especiação que se desenvolveu entre as duas seja recente e tenha ocorrido em alopatria, estando provavelmente ligado aos eventos geológicos do Holoceno que influenciaram a migração da Mata Atlântica no RS. A investigação das características abióticas das regiões de ocorrência das espécies não apresentou grandes dissimilaridades, podendo indicar que a atual segregação espacial deva-se à fragmentação florestal ou que haja exclusão competitiva entre elas, pois apresentam nichos ecológicos muito semelhantes.
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Pós-graduação em Biotecnologia - IQ
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La terra, nel corso della sua storia, ha subito molteplici cambiamenti con la comparsa e scomparsa di numerose specie animali e vegetali. Attualmente, l’estinzioni delle specie, la riduzione degli areali e il depauperamento degli ecosistemi è da ricollegare alle attività dell’uomo. Per tali motivi, in questi ultimi decenni si è iniziato a dare importanza alla conservazione della biodiversità, alla creazione di zone protette e a sviluppare interventi di reintroduzione e rafforzamento di specie rare e a rischio di estinzione. Questo lavoro di tesi si propone di analizzare la variabilità genetica delle popolazioni di Rhododendron ferrugineum L. lungo il suo areale, con particolare attenzione alle aree marginali dell’Appennino, dove la specie rappresenta un caso di pseudo rarità, al fine di valutare lo stato di salute della specie al limite del suo areale e valutare appropriati interventi di conservazione o reintroduzione. Per effettuare le analisi sono stati messi a punto dei marcatori molecolari discontinui, i microsatelliti, che, essendo dei marcatori co-dominati, permettono di valutare differenti parametri legati alla diversità genetica delle popolazioni inclusi i livelli di eterozigotà ed il flusso genico tra popolazioni limitrofe. I campionamenti sono stati effettuati nelle uniche 3 stazioni presenti sugli Appennini. Al fine di confrontare la struttura genetica di queste popolazioni sono state considerate anche popolazioni delle Alpi Marittime, delle Alpi centro-orientali e dei Pirenei. L’analisi della diversità genetica effettuata su questo pool di popolazioni analizzate con 7 marcatori microsatelliti, ha messo in evidenza che le popolazioni relitte dell’Appennino Tosco-Emiliano presentano un ridotto livello di eterozigosità che suggerisce quindi un elevato livello di inbreeding. Si ritiene che ciò sia dovuto alla loro dislocazione sul territorio, che le rende isolate sia tra di loro che dalle popolazioni delle vicine Alpi Marittime. La stima delle relazioni genetiche tra le popolazioni appenniniche e le vicine piante alpine evidenzia come non vi sia scambio genetico tra le popolazioni. Le analisi dei cluster suggeriscono che due delle popolazioni Appenniniche siano più simili alle popolazioni della Alpi Marittime, mentre la terza ha più affinità con le popolazioni delle Alpi centro-orientali. Le popolazioni dei Pirenei risultano essere geneticamente più simili alle popolazioni delle Alpi Marittime, in particolare alle tre popolazioni del versante francese. In questo lavoro abbiamo affrontato anche il problema delle specie ibride. Rhododendron x intermedium Tausch è un ibrido frutto dell’incrocio tra Rhododendron ferrugineum L. e Rhododendron hirsutum L., in grado di incrociarsi sia con altri ibridi, sia con i parentali (fenomeno dell’introgressione). L’origine di questo ibrido risiede nella simpatria delle due specie parentali, che tuttavia, presentano esigenze ecologiche differenti. Ad oggi la presenza di Rhododendron x intermedium è stata accertata in almeno tre stazioni sulle Alpi Italiane, ma la letteratura documenta la sua presenza anche in altre zone dell’Arco Alpino. L’obiettivo di questa ricerca è stato quello di verificare la reale natura ibrida di Rhododendron x intermedium in queste stazioni utilizzando un approccio integrato ossia sia attraverso un’analisi di tipo morfologico sia attraverso un analisi di tipo molecolare. In particolare l’approccio molecolare ha previsto prima un’analisi filogenetica attraverso l’utilizzo di marcatori molecolari filogenetici nucleari e plastidiali (ITS, At103, psbA-trnH e matK) e quindi un’analisi della struttura delle popolazioni della specie ibrida attraverso l’utilizzo di marcatori molecolari microsatelliti. Da un’analisi morfologica, risulta che gli esemplari ibridi possono essere molto differenti tra loro e ciò supporta la formazione di sciami ibridi. Al fine di verificare la natura di questa specie e la struttura delle popolazioni ibride e dei rispettivi parentali, sono state campionate differenti popolazioni in tutta l’area di interesse. I campioni ottenuti sono stati quindi analizzati geneticamente mediante marcatori molecolari del DNA. I risultati ottenuti hanno permesso innanzitutto di confermare l’origine ibrida degli individui di prima generazione della specie Rhododendron x intermedium e quindi di distinguere i parentali dagli ibridi ed evidenziare la struttura genetica delle popolazioni ibride.
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I investigated the systematics, phylogeny and biogeographical history of Juncaginaceae, a small family of the early-diverging monocot order Alismatales which comprises about 30 species of annual and perennial herbs. A wide range of methods from classical taxonomy to molecular systematic and biogeographic approaches was used. rnrnIn Chapter 1, a phylogenetic analysis of the family and members of Alismatales was conducted to clarify the circumscription of Juncaginaceae and intrafamilial relationships. For the first time, all accepted genera and those associated with the family in the past were analysed together. Phylogenetic analysis of three molecular markers (rbcL, matK, and atpA) showed that Juncaginaceae are not monophyletic. As a consequence the family is re-circumscribed to exclude Maundia which is pro-posed to belong to a separate family Maundiaceae, reducing Juncaginaceae to include Tetroncium, Cycnogeton and Triglochin. Tetroncium is weakly supported as sister to the rest of the family. The reinstated Cycnogeton (formerly included in Triglochin) is highly supported as sister to Triglochin s.str. Lilaea is nested within Triglochin s. str. and highly supported as sister to the T. bulbosa complex. The results of the molecular analysis are discussed in combination with morphological characters, a key to the genera of the family is given, and several new combinations are made.rnrnIn Chapter 2, phylogenetic relationships in Triglochin were investigated. A species-level phylogeny was constructed based on molecular data obtained from nuclear (ITS, internal transcribed spacer) and chloroplast sequence data (psbA-trnH, matK). Based on the phylogeny of the group, divergence times were estimated and ancestral distribution areas reconstructed. The monophyly of Triglochin is confirmed and relationships between the major lineages of the genus were resolved. A clade comprising the Mediterranean/African T. bulbosa complex and the American T. scilloides (= Lilaea s.) is sister to the rest of the genus which contains two main clades. In the first, the widespread T. striata is sister to a clade comprising annual Triglochin species from Australia. The second clade comprises T. palustris as sister to the T. maritima complex, of which the latter is further divided into a Eurasian and an American subclade. Diversification in Triglochin began in the Miocene or Oligocene, and most disjunctions in Triglochin were dated to the Miocene. Taxonomic diversity in some clades is strongly linked to habitat shifts and can not be observed in old but ecologically invariable lineages such as the non-monophyletic T. maritima.rnrnChapter 3 is a collaborative revision of the Triglochin bulbosa complex, a monophyletic group from the Mediterranean region and Africa. One new species, Triglochin buchenaui, and two new subspecies, T. bulbosa subsp. calcicola and subsp. quarcicola, from South Africa were described. Furthermore, two taxa were elevated to species rank and two reinstated. Altogether, seven species and four subspecies are recognised. An identification key, detailed descriptions and accounts of the ecology and distribution of the taxa are provided. An IUCN conservation status is proposed for each taxon.rnrnChapter 4 deals with the monotypic Tetroncium from southern South America. Tetroncium magellanicum is the only dioecious species in the family. The taxonomic history of the species is described, type material is traced, and a lectotype for the name is designated. Based on an extensive study of herbarium specimens and literature, a detailed description of the species and notes on its ecology and conservation status are provided. A detailed map showing the known distribution area of T. magellanicum is presented. rnrnIn Chapter 5, the flower structure of the rare Australian endemic Maundia triglochinoides (Maundiaceae, see Chapter 1) was studied in a collaborative project. As the morphology of Maundia is poorly known and some characters were described differently in the literature, inflorescences, flowers and fruits were studied using serial mictrotome sections and scanning electron microscopy. The phylogenetic placement, affinities to other taxa, and the evolution of certain characters are discussed. As Maundia exhibits a mosaic of characters of other families of tepaloid core Alismatales, its segregation as a separate family seems plausible.
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Recently divergent species that can hybridize are ideal models for investigating the genetic exchanges that can occur while preserving the species boundaries. Petunia exserta is an endemic species from a very limited and specific area that grows exclusively in rocky shelters. These shaded spots are an inhospitable habitat for all other Petunia species, including the closely related and widely distributed species P. axillaris. Individuals with intermediate morphologic characteristics have been found near the rocky shelters and were believed to be putative hybrids between P. exserta and P. axillaris, suggesting a situation where Petunia exserta is losing its genetic identity. In the current study, we analyzed the plastid intergenic spacers trnS/trnG and trnH/psbA and six nuclear CAPS markers in a large sampling design of both species to understand the evolutionary process occurring in this biological system. Bayesian clustering methods, cpDNA haplotype networks, genetic diversity statistics, and coalescence-based analyses support a scenario where hybridization occurs while two genetic clusters corresponding to two species are maintained. Our results reinforce the importance of coupling differentially inherited markers with an extensive geographic sample to assess the evolutionary dynamics of recently diverged species that can hybridize. (C) 2013 Elsevier Inc. All rights reserved.
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The psbA gene of the chloroplast genome has a codon usage that is unusual for plant chloroplast genes. In the present study the evolutionary status of this codon usage is tested by reconstructing putative ancestral psbA sequences to determine the pattern of change in codon bias during angiosperm divergence. It is shown that the codon biases of the ancestral genes are much stronger than all extant flowering plant psbA genes. This is related to previous work that demonstrated a significant increase in synonymous substitution in psbA relative to other chloroplast genes. It is suggested, based on the two lines of evidence, that the codon bias of this gene currently is not being maintained by selection. Rather, the atypical codon bias simply may be a remnant of an ancestral codon bias that now is being degraded by the mutation bias of the chloroplast genome, in other words, that the psbA gene is not at equilibrium. A model for the evolution of selective pressure on the codon usage of plant chloroplast genes is discussed.
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The psbA2 gene of a unicellular cyanobacterium, Microcystis aeruginosa K-81, encodes a D1 protein homolog in the reaction center of photosynthetic Photosystem II. The expression of the psbA2 transcript has been shown to be light-dependent as assessed under light and dark (12/12 h) cycling conditions. We aligned the 5′-untranslated leader regions (UTRs) of psbAs from different photosynthetic organisms and identified a conserved sequence, UAAAUAAA or the ‘AU-box’, just upstream of the SD sequences. To clarify the role of 5′-upstream cis-elements containing the AU-box for light-dependent expression of psbA2, a series of deletion and point mutations in the region were introduced into the genome of heterologous cyanobacterium Synechococcus sp. strain PCC 7942, and psbA2 expression was examined. A clear pattern of light-dependent expression was observed in recombinant cyanobacteria carrying the K-81 psbA2 –38/+36 region (which includes the minimal promoter element and a light-dependent cis-element with the AU-box), +1 indicating the transcription start site. A constitutive pattern of expression, in which the transcripts remained almost stable under dark conditions, was obtained in cells harboring the –38/+14 region (the minimal element), indicating that the +14/+36 region with the AU-box is important for the observed light-dependent expression. Point mutations analyses within the AU-box also revealed that changes in number, direction and identity (as assayed by adenine/uridine nucleotide substitutions) influenced the light-dependent pattern of expression. The level of psbA2 transcripts increased markedly in CG- or deletion-box mutants in the dark, strongly indicating that the AU- (AT-) box acts as a negative cis-element. Furthermore, characterization of transcript accumulation in cells treated with rifampicin suggests that psbA2 5′-mRNA is unstable in the dark, supporting the view that the light-dependent expression is controlled at the post-transcriptional level. We discuss various mechanisms that may lead to altered mRNA stability such as the binding of factor(s) or ribosomes to the 5′-UTR and possible roles of the AU-box motif and the SD sequence.
Highly organized structure in the non-coding region of the psbA minicircle from clade C Symbiodinium
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The chloroplast genes of dinoflagellates are distributed among small, circular dsDNA molecules termed minicircles. In this paper, we describe the structure of the non-coding region of the psbA minicircle from Symbiodinium. DNA sequence was obtained from five Symbiodinium strains obtained from four different coral host species (Goniopora tenuidens, Heliofungia actiniformis, Leptastrea purpurea and Pocillopora damicornis), which had previously been determined to be closely related using LSU rDNA region D1/D2 sequence analysis. Eight distinct sequence blocks, consisting of four conserved cores interspersed with two metastable regions and flanked by two variable regions, occurred at similar positions in all strains. Inverted repeats (IRs) occurred in tandem or 'twin' formation within two of the four cores. The metastable regions also consisted of twin IRs and had modular behaviour, being either fully present or completely absent in the different strains. These twin IRs are similar in sequence to double-hairpin elements (DHEs) found in the mitochondrial genomes of some fungi, and may be mobile elements or may serve a functional role in recombination or replication. Within the central unit (consisting of the cores plus the metastable regions), all IRs contained perfect sequence inverses, implying they are highly evolved. IRs were also present outside the central unit but these were imperfect and possessed by individual strains only. A central adenine-rich sequence most closely resembled one in the centre of the non-coding part of Amphidinium operculatum minicircles, and is a potential origin of replication. Sequence polymorphism was extremely high in the variable regions, suggesting that these regions may be useful for distinguishing strains that cannot be differentiated using molecular markers currently available for Symbiodinium.
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Pseudomonas cepacia CSV90 is able to utilize 2,4-dichlorophenoxyacetate (2,4-D) and 2-methyl-4-chlorophenoxyacetate as sole sources of carbon and energy. Mutants of the strain CSV90 which had lost this ability appeared spontaneously on a nonselective medium. The wild-type strain harbored a 90-kb plasmid, pMAB1, whereas 2,4-D-negative mutants either lost the plasmid or had a 70-kb plasmid, pMAB2. The plasmid pMAB2 was found to have undergone a deletion Of a 20-kb fragment of pMAB1. The plasmid-free mutants regained the ability to degrade 2,4-D after introduction of purified pMAB1 by electroporation. Cloning in Escherichia coli of a 10-kb BamHI fragment from pMAB1, the region absent in pMAB2, resulted in the expression of the gene tfdC encoding 3,5-dichlorocatechol 1,2-dioxygenase. After subcloning, the tfdC gene was located in a 1.6-kb HindIII fragment. The nucleotide sequence of the tfdC gene and the restriction map of its contiguous region are identical to those of the well-characterized 2,4-D-degradative plasmid pJP4 of Alcaligenes eutrophus, whereas the overall restriction maps of the two plasmids are different. The N-terminal 44-amino-acid sequence of the enzyme purified from the strain CSV90 confirmed the reading frame in the DNA sequence for tfdC and indicated that the initiation codon GUG is read as methionine instead of valine.
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The accuracy of pairing of the anticodon of the initiator tRNA (tRNA(fMet)) and the initiation codon of an mRNA, in the ribosomal P-site, is crucial for determining the translational reading frame. However, a direct role of any ribosomal element(s) in scrutinizing this pairing is unknown. The P-site elements, m(2)G966 (methylated by RsmD), m(5)C967 (methylated by RsmB) and the C-terminal tail of the protein S9 lie in the vicinity of tRNA(fMet). We investigated the role of these elements in initiation from various codons, namely, AUG, GUG, UUG, CUG, AUA, AUU, AUC and ACG with tRNA(CAU)(fmet) (tRNA(fMet) with CAU anticodon); CAC and CAU with tRNA(GUG)(fme); UAG with tRNA(GAU)(fMet) using in vivo and computational methods. Although RsmB deficiency did not impact initiation from most codons, RsmD deficiency increased initiation from AUA, CAC and CAU (2- to 3.6-fold). Deletion of the S9 C-terminal tail resulted in poorer initiation from UUG, GUG and CUG, but in increased initiation from CAC, CAU and UAC codons (up to 4-fold). Also, the S9 tail suppressed initiation with tRNA(CAU)(fMet)lacking the 3GC base pairs in the anticodon stem. These observations suggest distinctive roles of 966/967 methylations and the S9 tail in initiation.
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Resumen: El objetivo de este trabajo analizar las prácticas de un partido sub-nacional y de oposición en una coyuntura electoral: el Partido Socialista de la Provincia de Buenos Aires (PSBA) de caras a las elecciones legislativas de 2013. Este artículo se propone hacer un doble juego entre supuestos teóricos y evidencia empírica. En ese sentido, intentaremos definir los problemas que se desprenden de tomar al partido político como unidad de* análisis: la heteronomía normativa, económica y funcional, y la compleja articulación de intereses. Ofreceremos un contrapunto empírico para confrontar dichas discusiones y analizar la combinación entre prácticas informales e instituciones formales en la toma de decisiones, conformación de coaliciones y confección de listas electorales. Nuestra hipótesis es que el PSBA muestra un despliegue de prácticas informales muchas veces explicado por condicionantes tales como la heteronomía y por la dificultad de articular eficientemente los intereses divergentes en su seno, las decisiones políticas son fruto de la compleja interacción de todas esas variables.