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31.
Historically it has been difficult to study the evolution of bacterial small RNAs (sRNAs) across distantly related species. For example, identifying homologs of sRNAs is often difficult in genomes that have undergone multiple structural rearrangements. Also, some types of regulatory sRNAs evolve at rapid rates. The high degree of genomic synteny among divergent host-restricted bacterial lineages, including intracellular symbionts, is conducive to sRNA maintenance and homolog identification. In turn, symbiont genomes can provide us with novel insights into sRNA evolution. Here, we examine the sRNA expression profile of the obligate symbiont of psyllids, Carsonella ruddii, which has one of the smallest cellular genomes described. Using RNA-seq, we identified 36 and 32 antisense sRNAs (asRNAs) expressed by Carsonella from the psyllids Bactericera cockerelli (Carsonella-BC) and Diaphorina citri (Carsonella-DC), respectively. The majority of these asRNAs were associated with genes that are involved in essential amino acid biosynthetic pathways. Eleven of the asRNAs were conserved in both Carsonella lineages and the majority were maintained by selection. Notably, five of the corresponding coding sequences are also the targets of conserved asRNAs in a distantly related insect symbiont, Buchnera. We detected differential expression of two asRNAs for genes involved in arginine and leucine biosynthesis occurring between two distinct Carsonella-BC life stages. Using asRNAs identified in Carsonella, Buchnera, and Profftella which are all endosymbionts, and Escherichia coli, we determined that regions upstream of these asRNAs encode unique conserved patterns of AT/GC richness, GC skew, and sequence motifs which may be involved in asRNA regulation.  相似文献   
32.
Abstract. Many animals have the ability to delay metamorphosis when conditions are unfavorable. This strategy carries obvious benefits, but may also result in severe consequences for lecithotrophic larvae that run low on time and energy. Precocious activation of postlarval developmental programs—so-called anticipatory development—may be adaptive and increase the survival of older, energy-depleted larvae by allowing more rapid metamorphosis. Three of six solitary ascidian species displayed extensive anticipatory development of postlarval structures, similar to heterochronies normally observed for colonial species. The capacity for anticipatory development may be linked to the length of competent period, taxonomic group, or both: members of suborder Phlebobranchia exhibited extensive anticipatory development and long competent periods, but members of suborder Stolidobranchia exhibited little or no anticipatory development and had shorter competent periods. Delay of metamorphosis of up to 3 d did not negatively impact postlarval and juvenile growth rates for any of three species tested, regardless of taxonomic group or length of competent period, although a longer, 7-d, delay resulted in slower postlarval growth in Ciona intestinalis . Anticipatory development of postlarval structures may ameliorate the negative consequences of delay of metamorphosis in C. intestinalis and Ascidiella aspersa , but Molgula socialis showed neither anticipatory development nor a negative impact of metamorphic delay on postlarval fitness. This is the first demonstration that anticipatory development of postlarval structures, normally associated only with colonial ascidians, can occur as a normal part of the development of solitary ascidians.  相似文献   
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Aims: A public beach was frequently cited for health advisories because of high Escherichia coli levels, the source suspected to be a paper mill located upstream. This investigation sought to confirm whether or not the paper mill was the pollution source, and to characterize the risk to recreational bathers imposed by the source. Methods and Results: Quantification of E. coli in river water collected at incremental distances showed that paper mill effluent caused elevated E. coli levels in beach samples. Samples collected throughout the mill were variably positive for heterotrophic bacteria, total coliforms and E. coli, but negative for pathogenic E. coli O157 and Salmonella. Escherichia coli O157 or Salmonella spiked into mill samples (4·2 log10 or 5·6 log10 CFU per 100 ml, respectively) fell below detection levels within 14–24 h in raw (unaltered) samples, while in heat‐sterilized replicates, the counts remained at initial levels or increased over 36 h. Conclusions: Pathogenic E. coli O157 and Salmonella were not isolated from paper mill samples. The absence of native bacteria allowed the survival of pathogens, while their presence accelerated pathogen decline. Significance and Impact of the Study: The co‐existence of paper mill and swimming beach may be reasonable for now in spite of the limitations of an E. coli‐based assay for beach water.  相似文献   
34.
Gene trees are evolutionary trees representing the ancestry of genes sampled from multiple populations. Species trees represent populations of individuals—each with many genes—splitting into new populations or species. The coalescent process, which models ancestry of gene copies within populations, is often used to model the probability distribution of gene trees given a fixed species tree. This multispecies coalescent model provides a framework for phylogeneticists to infer species trees from gene trees using maximum likelihood or Bayesian approaches. Because the coalescent models a branching process over time, all trees are typically assumed to be rooted in this setting. Often, however, gene trees inferred by traditional phylogenetic methods are unrooted. We investigate probabilities of unrooted gene trees under the multispecies coalescent model. We show that when there are four species with one gene sampled per species, the distribution of unrooted gene tree topologies identifies the unrooted species tree topology and some, but not all, information in the species tree edges (branch lengths). The location of the root on the species tree is not identifiable in this situation. However, for 5 or more species with one gene sampled per species, we show that the distribution of unrooted gene tree topologies identifies the rooted species tree topology and all its internal branch lengths. The length of any pendant branch leading to a leaf of the species tree is also identifiable for any species from which more than one gene is sampled.  相似文献   
35.
The biphasic (pelagobenthic) life cycle is found throughoutthe animal kingdom, and includes gametogenesis, embryogenesis,and metamorphosis. From a tangled web of hypotheses on the originand evolution of the metazoan pelagobenthic life cycle, currentopinion appears to favor a simple, larval-like holopelagic ancestorthat independently settled multiple times to incorporate a benthicphase into the life cycle. This hypothesis derives originallyfrom Haeckel's (1874) Gastraea theory of ontogeny recapitulatingphylogeny, in which the gastrula is viewed as the recapitulationof a gastraean ancestor that evolved via selection on a simple,planktonic hollow ball of cells to develop the capacity to feed.Here, we propose an equally plausible hypothesis that the originof the metazoan pelagobenthic life cycle was a direct consequenceof sexual reproduction in a likely holobenthic ancestor. Indoing so, we take into account new insights from poriferan developmentand from molecular phylogenies. In this scenario, the gastruladoes not represent a recapitulation, but simply an embryologicalstage that is an outcome of sexual reproduction. The embryocan itself be considered as the precursor to a biphasic lifestyle,with the embryo representing one phase and the adult anotherphase. This hypothesis is more parsimonious because it precludesthe need for multiple, independent origins of the benthic form.It is then reasonable to consider that multilayered, ciliatedembryos ultimately released into the water column are subjectto natural selection for dispersal/longevity/feeding that setsthem on the evolutionary trajectory towards the crown metazoanplanktonic larvae. These new insights from poriferan developmentthus clearly support the intercalation hypothesis of bilaterianlarval evolution, which we now believe should be extended todiscussions of the origin of biphasy in the metazoan last commonancestor.  相似文献   
36.
 Increased K+ concentration in seawater induces metamorphosis in the ascidian Herdmania momus. Larvae cultivated at 24°C exhibit highest rates of metamorphosis when treated with 40 mM KCl-elevated seawater at 21°C. At 24°C, H. momus larvae develop competence to respond to KCl-seawater and initiate metamorphosis approximately 3 h after hatching. Larval trunks and tails separated from the anterior papillae region, but maintained in a common tunic at a distance of greater than 60 μm, do not undergo metamorphosis when treated with KCl-seawater; normal muscle degradation does not occur in separated tails while ampullae develop from papillae-containing anterior fragments. Normal programmed degradation of myofibrils occurs when posterior fragments are fused to papillae-containing anterior fragments. These data indicate that H. momus settlement and metamorphosis only occurs when larvae have attained competence, and suggest that an anterior signalling centre is stimulated to release a factor that induces metamorphosis. Received: 15 May 1996 / Accepted: 19 September 1996  相似文献   
37.
Eight species of bifidobacteria were tested for their abilities to grow on a range of monosaccharides (glucose, arabinose, xylose, galactose and mannose). In contrast to the other sugars, glucose and galactose were utilized by all species and, in general, specific growth rates were highest on these sugars. Different substrate preferences were observed between species when the bacteria were grown in the presence of all five monosaccharides. For example, glucose and xylose were coutilized by Bifidobacterium longum, whereas glucose repressed uptake of all other sugars in B. bifidum and B. catenulatum. Galactose was the preferred substrate with B. pseudolongum. In B. angulatum, glucose and galactose were utilized simultaneously. B. breve did not grow on arabinose when this sugar provided the sole source of energy. However, glucose and arabinose were preferentially taken up during growth on sugar mixtures.  相似文献   
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Given a gene tree and a species tree, a coalescent history is a list of the branches of the species tree on which coalescences in the gene tree take place. Each pair consisting of a gene tree topology and a species tree topology has some number of possible coalescent histories. Here we show that, for each n≥7, there exist a species tree topology S and a gene tree topology GS, both with n leaves, for which the number of coalescent histories exceeds the corresponding number of coalescent histories when the species tree topology is S and the gene tree topology is also S. This result has the interpretation that the gene tree topology G discordant with the species tree topology S can be produced by the evolutionary process in more ways than can the gene tree topology that matches the species tree topology, providing further insight into the surprising combinatorial properties of gene trees that arise from their joint consideration with species trees.  相似文献   
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