597 research outputs found
Genetic diversity in Trypanosoma cruzi: marker development and applications; natural population structures, and genetic exchange mechanisms
Chagas disease remains the most important parasitic infection in Latin America. The
aetiological agent, Trypanosoma cruzi (Kinetoplastida: Trypanosomatidae), is a complex
vector-borne zoonosis transmitted in the faeces of hematophagous triatomine bugs
(Hemiptera: Reduviidae: Triatominae), and maintained by mammalian reservoir hosts
ranging from the southern United States to Argentinean Patagonia. In the absence of
chemotherapy, infection is life-long and can lead to a spectrum of pathological sequelae
ranging from subclinical to lethal cardiac and/or gastrointestinal complications in up to 30%
of patients.
T. cruzi displays remarkable genetic diversity, which has long been suspected to contribute to
the considerable variation in clinical symptoms observed between endemic regions.
Currently, isolates of T. cruzi can be assigned to a minimum of six stable genetic lineages or
discrete typing units (DTUs) (TcI-TcVI), which are broadly associated with disparate
ecologies, transmission cycles and geographical distributions. The principal mode of
reproduction among T. cruzi strains is the subject of an intense, decades-old debate. Despite
the existence of two recent natural hybrid lineages (TcV and TcVI), which resemble meiotic
F1 progeny, a pervasive view is that recombination has been restrained at an evolutionary
scale and is of little epidemiological relevance to contemporary parasite populations.
The aim of this PhD project was to investigate T. cruzi genetic diversity through significant
development of phylogenetic markers and their application to the characterization of natural
parasite population structures and genetic exchange mechanisms. Multiple, single-copy,
chromosomally-independent, nuclear housekeeping genes were assessed initially for their
ability to allocate isolates to DTU-level, to facilitate higher resolution intra-lineage analyses
and finally for their inclusion alongside additional targets in a standardized T. cruzi
multilocus sequence typing (nMLST) scheme. For the immediate future, nuclear MLST,
using a panel of four to seven nuclear loci, is a robust, reproducible and highly discriminatory
method that has potential to become the new gold standard for T. cruzi DTU assignment.
To investigate natural parasite population structures and uncover evidence of genetic
exchange, a high resolution mitochondrial MLST (mtMLST) scheme, based on ten gene
fragments, was developed and evaluated against current nuclear markers (multilocus
microsatellite typing; MLMT) using isolates belonging to the oldest and most widely
distributed lineage (TcI). Observations of gross nuclear-mitochondrial phylogenetic
incongruence indicate that recombination is ongoing, geographically widespread and
continues to influence natural populations, challenging the traditional paradigm of clonality
in T. cruzi.
Application of this combined nuclear-mitochondrial methodology to intensively sampled,
minimally-subdivided TcI populations revealed extensive mitochondrial introgression within
a disease focus in North-East Colombia as well as among arboreal transmission cycles in
Bolivia. Failure to detect any reciprocal nuclear hybridization among recombinant strains
!
4
may be indicative of alternate, cryptic mating strategies in T. cruzi, which are challenging to
reconcile with both in vitro parasexual mechanisms of genetic exchange described, and
patterns of Mendelian allele inheritance among natural hybrid DTUs.
High resolution genotyping of TcI populations was also undertaken to explore the interaction
between parasite genetic heterogeneity and ecological biodiversity, exposing the significant
impact human activity has had on T. cruzi evolution. Reduced genetic diversity, accelerated
parasite dissemination between densely populated areas and mitochondrial gene flow
between domestic and sylvatic populations, suggests humans may have played a crucial role
in T. cruzi dispersal across the Bolivian highlands. Parallel reductions in genetic diversity
were observed among isolates from the Brazilian Atlantic Forest, attributable to ongoing
anthropogenic habitat fragmentation. By comparison domestic TcI isolates (TcIDOM) are
divergent from their sylvatic counterparts, but also genetically homogeneous, and likely to
have originated in North/Central America before distribution southwards. Molecular dating
of Colombian TcIDOM clones confirmed that this clade emerged 23,000 ± 12,000 years,
coinciding with the earliest human migration into South America.
Lastly, Illumina amplicon deep sequencing markers were developed to explore the interaction
between parasite multiclonality and clinical status of chronic Chagas disease. An
unprecedented level of intra-host genetic diversity was detected, highlighting putative
diversifying selection affecting antigenic surface proteases, which may facilitate survival in
the mammalian host. In lieu of comparative genomics of representative T. cruzi field isolates,
not yet a reality, as is the case with other more experimentally-tractable trypanosomatids,
presented herein are some of the highest resolution genotyping techniques developed in T.
cruzi to date, which have the potential to expand our current understanding of parasite
genetic diversity and its relevance to clinical outcome of Chagas disease
Hybridization in parasites: consequences for adaptive evolution, pathogenesis and public health in a changing world
[No abstract available
Towards improving early diagnosis of congenital Chagas disease in an endemic setting.
: Congenital Trypanosoma cruzi transmission is now estimated to account for 22% of new infections, representing a significant public health problem across Latin America and internationally. Treatment during infancy is highly efficacious and well tolerated, but current assays for early detection fail to detect >50% of infected neonates and 9 month follow-up is low. : Women presenting for delivery in two urban hospitals in Santa Cruz department, Bolivia were screened by rapid test. Specimens from infants of infected women were tested by microscopy (micromethod), quantitative PCR (qPCR) and IgM trypomastigote excreted-secreted antigen (TESA)-blots at birth and 1 month, and by IgG serology at 6 and 9 months. : Among 487 infants of 476 seropositive women, congenital T. cruzi infection was detected in 38 infants of 35 mothers (7.8%). In cord blood, qPCR, TESA-blot and micromethod sensitivities/specificities were 68.6%/99.1%, 58.3%/99.1% and 16.7%/100%, respectively. When birth and 1 month results were combined, cumulative sensitivities reached 84.2%, 73.7% and 34.2%, respectively. Low birth weight and/or respiratory distress were reported in 11 (29%) infected infants. Infants with clinical signs had higher parasite loads and were significantly more likely to be detected by micromethod. : The proportion of T. cruzi infected infants with clinical signs has fallen from the 1990s, but symptomatic congenital Chagas disease still represents a significant, albeit increasingly challenging to detect, public health problem. Molecular methods could facilitate earlier diagnosis and circumvent loss to follow-up but remain logistically and economically prohibitive for routine screening in resource-limited settings.<br/
Using a New Odour-Baited Device to Explore Options for Luring and Killing Outdoor-Biting Malaria Vectors: A Report on Design and Field Evaluation of the Mosquito Landing Box.
Mosquitoes that bite people outdoors can sustain malaria transmission even where effective indoor interventions such as bednets or indoor residual spraying are already widely used. Outdoor tools may therefore complement current indoor measures and improve control. We developed and evaluated a prototype mosquito control device, the 'Mosquito Landing Box' (MLB), which is baited with human odours and treated with mosquitocidal agents. The findings are used to explore technical options and challenges relevant to luring and killing outdoor-biting malaria vectors in endemic settings. Field experiments were conducted in Tanzania to assess if wild host-seeking mosquitoes 1) visited the MLBs, 2) stayed long or left shortly after arrival at the device, 3) visited the devices at times when humans were also outdoors, and 4) could be killed by contaminants applied on the devices. Odours suctioned from volunteer-occupied tents were also evaluated as a potential low-cost bait, by comparing baited and unbaited MLBs. There were significantly more Anopheles arabiensis, An. funestus, Culex and Mansonia mosquitoes visiting baited MLB than unbaited controls (P<=0.028). Increasing sampling frequency from every 120 min to 60 and 30 min led to an increase in vector catches of up to 3.6 fold (P<=0.002), indicating that many mosquitoes visited the device but left shortly afterwards. Outdoor host-seeking activity of malaria vectors peaked between 7:30 and 10:30pm, and between 4:30 and 6:00am, matching durations when locals were also outdoors. Maximum mortality of mosquitoes visiting MLBs sprayed or painted with formulations of candidate mosquitocidal agent (pirimiphos-methyl) was 51%. Odours from volunteer occupied tents attracted significantly more mosquitoes to MLBs than controls (P<0.001). While odour-baited devices such as the MLBs clearly have potential against outdoor-biting mosquitoes in communities where LLINs are used, candidate contaminants must be those that are effective at ultra-low doses even after short contact periods, since important vector species such as An. arabiensis make only brief visits to such devices. Natural human odours suctioned from occupied dwellings could constitute affordable sources of attractants to supplement odour baits for the devices. The killing agents used should be environmentally safe, long lasting, and have different modes of action (other than pyrethroids as used on LLINs), to curb the risk of physiological insecticide resistance
All-sky search for periodic gravitational waves in LIGO S4 data
We report on an all-sky search with the LIGO detectors for periodic
gravitational waves in the frequency range 50-1000 Hz and with the frequency's
time derivative in the range -1.0E-8 Hz/s to zero. Data from the fourth LIGO
science run (S4) have been used in this search. Three different semi-coherent
methods of transforming and summing strain power from Short Fourier Transforms
(SFTs) of the calibrated data have been used. The first, known as "StackSlide",
averages normalized power from each SFT. A "weighted Hough" scheme is also
developed and used, and which also allows for a multi-interferometer search.
The third method, known as "PowerFlux", is a variant of the StackSlide method
in which the power is weighted before summing. In both the weighted Hough and
PowerFlux methods, the weights are chosen according to the noise and detector
antenna-pattern to maximize the signal-to-noise ratio. The respective
advantages and disadvantages of these methods are discussed. Observing no
evidence of periodic gravitational radiation, we report upper limits; we
interpret these as limits on this radiation from isolated rotating neutron
stars. The best population-based upper limit with 95% confidence on the
gravitational-wave strain amplitude, found for simulated sources distributed
isotropically across the sky and with isotropically distributed spin-axes, is
4.28E-24 (near 140 Hz). Strict upper limits are also obtained for small patches
on the sky for best-case and worst-case inclinations of the spin axes.Comment: 39 pages, 41 figures An error was found in the computation of the C
parameter defined in equation 44 which led to its overestimate by 2^(1/4).
The correct values for the multi-interferometer, H1 and L1 analyses are 9.2,
9.7, and 9.3, respectively. Figure 32 has been updated accordingly. None of
the upper limits presented in the paper were affecte
All-sky LIGO Search for Periodic Gravitational Waves in the Early S5 Data
We report on an all-sky search with the LIGO detectors for periodic
gravitational waves in the frequency range 50--1100 Hz and with the frequency's
time derivative in the range -5.0E-9 Hz/s to zero. Data from the first eight
months of the fifth LIGO science run (S5) have been used in this search, which
is based on a semi-coherent method (PowerFlux) of summing strain power.
Observing no evidence of periodic gravitational radiation, we report 95%
confidence-level upper limits on radiation emitted by any unknown isolated
rotating neutron stars within the search range. Strain limits below 1.E-24 are
obtained over a 200-Hz band, and the sensitivity improvement over previous
searches increases the spatial volume sampled by an average factor of about 100
over the entire search band. For a neutron star with nominal equatorial
ellipticity of 1.0E-6, the search is sensitive to distances as great as 500
pc--a range that could encompass many undiscovered neutron stars, albeit only a
tiny fraction of which would likely be rotating fast enough to be accessible to
LIGO. This ellipticity is at the upper range thought to be sustainable by
conventional neutron stars and well below the maximum sustainable by a strange
quark star.Comment: 6 pages, 1 figur
Search for gravitational waves from binary inspirals in S3 and S4 LIGO data
We report on a search for gravitational waves from the coalescence of compact
binaries during the third and fourth LIGO science runs. The search focused on
gravitational waves generated during the inspiral phase of the binary
evolution. In our analysis, we considered three categories of compact binary
systems, ordered by mass: (i) primordial black hole binaries with masses in the
range 0.35 M(sun) < m1, m2 < 1.0 M(sun), (ii) binary neutron stars with masses
in the range 1.0 M(sun) < m1, m2 < 3.0 M(sun), and (iii) binary black holes
with masses in the range 3.0 M(sun)< m1, m2 < m_(max) with the additional
constraint m1+ m2 < m_(max), where m_(max) was set to 40.0 M(sun) and 80.0
M(sun) in the third and fourth science runs, respectively. Although the
detectors could probe to distances as far as tens of Mpc, no gravitational-wave
signals were identified in the 1364 hours of data we analyzed. Assuming a
binary population with a Gaussian distribution around 0.75-0.75 M(sun), 1.4-1.4
M(sun), and 5.0-5.0 M(sun), we derived 90%-confidence upper limit rates of 4.9
yr^(-1) L10^(-1) for primordial black hole binaries, 1.2 yr^(-1) L10^(-1) for
binary neutron stars, and 0.5 yr^(-1) L10^(-1) for stellar mass binary black
holes, where L10 is 10^(10) times the blue light luminosity of the Sun.Comment: 12 pages, 11 figure
Search for Gravitational Wave Bursts from Soft Gamma Repeaters
We present the results of a LIGO search for short-duration gravitational
waves (GWs) associated with Soft Gamma Repeater (SGR) bursts. This is the first
search sensitive to neutron star f-modes, usually considered the most efficient
GW emitting modes. We find no evidence of GWs associated with any SGR burst in
a sample consisting of the 27 Dec. 2004 giant flare from SGR 1806-20 and 190
lesser events from SGR 1806-20 and SGR 1900+14 which occurred during the first
year of LIGO's fifth science run. GW strain upper limits and model-dependent GW
emission energy upper limits are estimated for individual bursts using a
variety of simulated waveforms. The unprecedented sensitivity of the detectors
allows us to set the most stringent limits on transient GW amplitudes published
to date. We find upper limit estimates on the model-dependent isotropic GW
emission energies (at a nominal distance of 10 kpc) between 3x10^45 and 9x10^52
erg depending on waveform type, detector antenna factors and noise
characteristics at the time of the burst. These upper limits are within the
theoretically predicted range of some SGR models.Comment: 6 pages, 1 Postscript figur
Tumor protein D54 defines a new class of intracellular transport vesicles
Transport of proteins and lipids from one membrane compartment to another is via intracellular vesicles. We investigated the function of tumor protein D54 (TPD54/TPD52L2) and found that TPD54 was involved in multiple membrane trafficking pathways: anterograde traffic, recycling, and Golgi integrity. To understand how TPD54 controls these diverse functions, we used an inducible method to reroute TPD54 to mitochondria. Surprisingly, this manipulation resulted in the capture of many small vesicles (30 nm diameter) at the mitochondrial surface. Super-resolution imaging confirmed the presence of similarly sized TPD54-positive structures under normal conditions. It appears that TPD54 defines a new class of transport vesicle, which we term intracellular nanovesicles (INVs). INVs meet three criteria for functionality. They contain specific cargo, they have certain R-SNAREs for fusion, and they are endowed with a variety of Rab GTPases (16 out of 43 tested). The molecular heterogeneity of INVs and the diverse functions of TPD54 suggest that INVs have various membrane origins and a number of destinations. We propose that INVs are a generic class of transport vesicle that transfer cargo between these varied locations
- …