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71.
Donald M Gardiner Kemal Kazan Sebastien Praud Francois J Torney Anca Rusu John M Manners 《BMC plant biology》2010,10(1):289
Background
The fungal pathogen Fusarium graminearum causes Fusarium Head Blight (FHB) disease on wheat which can lead to trichothecene mycotoxin (e.g. deoxynivalenol, DON) contamination of grain, harmful to mammalian health. DON is produced at low levels under standard culture conditions when compared to plant infection but specific polyamines (e.g. putrescine and agmatine) and amino acids (e.g. arginine and ornithine) are potent inducers of DON by F. graminearum in axenic culture. Currently, host factors that promote mycotoxin synthesis during FHB are unknown, but plant derived polyamines could contribute to DON induction in infected heads. However, the temporal and spatial accumulation of polyamines and amino acids in relation to that of DON has not been studied. 相似文献72.
Alizon S von Wyl V Stadler T Kouyos RD Yerly S Hirschel B Böni J Shah C Klimkait T Furrer H Rauch A Vernazza PL Bernasconi E Battegay M Bürgisser P Telenti A Günthard HF Bonhoeffer S;Swiss HIV Cohort Study 《PLoS pathogens》2010,6(9):e1001123
HIV virulence, i.e. the time of progression to AIDS, varies greatly among patients. As for other rapidly evolving pathogens of humans, it is difficult to know if this variance is controlled by the genotype of the host or that of the virus because the transmission chain is usually unknown. We apply the phylogenetic comparative approach (PCA) to estimate the heritability of a trait from one infection to the next, which indicates the control of the virus genotype over this trait. The idea is to use viral RNA sequences obtained from patients infected by HIV-1 subtype B to build a phylogeny, which approximately reflects the transmission chain. Heritability is measured statistically as the propensity for patients close in the phylogeny to exhibit similar infection trait values. The approach reveals that up to half of the variance in set-point viral load, a trait associated with virulence, can be heritable. Our estimate is significant and robust to noise in the phylogeny. We also check for the consistency of our approach by showing that a trait related to drug resistance is almost entirely heritable. Finally, we show the importance of taking into account the transmission chain when estimating correlations between infection traits. The fact that HIV virulence is, at least partially, heritable from one infection to the next has clinical and epidemiological implications. The difference between earlier studies and ours comes from the quality of our dataset and from the power of the PCA, which can be applied to large datasets and accounts for within-host evolution. The PCA opens new perspectives for approaches linking clinical data and evolutionary biology because it can be extended to study other traits or other infectious diseases. 相似文献
73.
Beaubois E Girard S Lallechere S Davies E Paladian F Bonnet P Ledoigt G Vian A 《Plant, cell & environment》2007,30(7):834-844
74.
75.
Disruption of diacylglycerol kinase delta (DGKD) associated with seizures in humans and mice 下载免费PDF全文
Leach NT Sun Y Michaud S Zheng Y Ligon KL Ligon AH Sander T Korf BR Lu W Harris DJ Gusella JF Maas RL Quade BJ Cole AJ Kelz MB Morton CC 《American journal of human genetics》2007,80(4):792-799
We report a female patient with a de novo balanced translocation, 46,X,t(X;2)(p11.2;q37)dn, who exhibits seizures, capillary abnormality, developmental delay, infantile hypotonia, and obesity. The 2q37 breakpoint observed in association with the seizure phenotype is of particular interest, because it lies near loci implicated in epilepsy in humans and mice. Fluorescence in situ hybridization mapping of the translocation breakpoints showed that no known genes are disrupted at Xp11.2, whereas diacylglycerol kinase delta (DGKD) is disrupted at 2q37. Expression studies in Drosophila and mouse suggest that DGKD is involved in central nervous system development and function. Electroencephalographic assessment of Dgkd mutant mice revealed abnormal epileptic discharges and electrographic seizures in three of six homozygotes. These findings implicate DGKD disruption by the t(X;2)(p11.2;q37)dn in the observed phenotype and support a more general role for DGKD in the etiology of seizures. 相似文献
76.
Crisponi syndrome is caused by mutations in the CRLF1 gene and is allelic to cold-induced sweating syndrome type 1 下载免费PDF全文
Crisponi L Crisponi G Meloni A Toliat MR Nurnberg G Usala G Uda M Masala M Hohne W Becker C Marongiu M Chiappe F Kleta R Rauch A Wollnik B Strasser F Reese T Jakobs C Kurlemann G Cao A Nurnberg P Rutsch F 《American journal of human genetics》2007,80(5):971-981
Crisponi syndrome is a severe autosomal recessive condition that is phenotypically characterized by abnormal, paroxysmal muscular contractions resembling neonatal tetanus, large face, broad nose, anteverted nares, camptodactyly, hyperthermia, and sudden death in most cases. We performed homozygosity mapping in five Sardinian and three Turkish families with Crisponi syndrome, using high-density single-nucleotide polymorphism arrays, and identified a critical region on chromosome 19p12-13.1. The most prominent candidate gene was CRLF1, recently found to be involved in the pathogenesis of cold-induced sweating syndrome type 1 (CISS1). CISS1 belongs to a group of conditions with overlapping phenotypes, also including cold-induced sweating syndrome type 2 and Stuve-Wiedemann syndrome. All these syndromes are caused by mutations of genes of the ciliary neurotrophic factor (CNTF)-receptor pathway. Here, we describe the identification of four different CRLF1 mutations in eight different Crisponi-affected families, including a missense mutation, a single-nucleotide insertion, and a nonsense and an insertion/deletion (indel) mutation, all segregating with the disease trait in the families. Comparison of the mutation spectra of Crisponi syndrome and CISS1 suggests that neither the type nor the location of the CRLF1 mutations points to a phenotype/genotype correlation that would account for the most severe phenotype in Crisponi syndrome. Other, still-unknown molecular factors may be responsible for the variable phenotypic expression of the CRLF1 mutations. We suggest that the syndromes can comprise a family of "CNTF-receptor-related disorders," of which Crisponi syndrome would be the newest member and allelic to CISS1. 相似文献
77.
78.
Tommy J. Rauch 《Environmental Biology of Fishes》2007,78(4):347-351
Interspecific interactions can determine the abundance and distributions of animals. Seaweed blennies, Parablennius marmoreus, and tesselated blennies, Hypsoblennius invemar, are found in barnacle cavities on offshore petroleum platforms in the northern Gulf of Mexico. I measured the interspecific
resource defense interactions between these fishes in aquaria. Seaweed blennies were dominant over tesselated blennies when
equal-sized fishes were tested. No difference in dominance was found when tesselated blennies had a 10% advantage in size.
However, tesselated blennies were able to successfully defend cavities against equal-sized competitors when given the advantage
of prior residence. This prior residence advantage persisted despite seaweed blennies having the advantage of past experience.
Seaweed blennies attain a larger size on petroleum platforms, but empty barnacle cavities are common in this environment.
Tesselated blennies are able to colonize and successfully spawn because they can enter an empty barnacle cavity, gain the
advantage of prior residence, and successfully defend this cavity. 相似文献
79.
80.
The shikimate pathway is essential for the biosynthesis of aromatic compounds. The seventh and last step is catalysed by chorismate synthase, which has an absolute requirement for reduced FMN in its active site. There are two classes of this enzyme, which are distinguished according to the origin of the reduced cofactor. Monofunctional chorismate synthases sequester it from the cellular environment whereas bifunctional enzymes can generate reduced FMN at the expense of NADPH. These bifunctional enzymes are found in fungi and the ciliated protozoan Euglena gracilis while all bacterial and plant enzymes are monofunctional. In this study, we introduce an in vivo screen, which is based on a chorismate synthase-deficient Saccharomyces cerevisiae strain, allowing the classification of hitherto uncharacterized chorismate synthases. This analysis revealed that bifunctionality is present in the enzymes of protozoan species. In contrast, all bacterial and plant enzymes tested are monofunctional. In addition, we demonstrate that a monofunctional chorismate synthase confers prototrophy in conjunction with a NADPH : FMN oxidoreductase indicating that bifunctionality is required due to the lack of free reduced FMN in fungal and possibly protozoan species. Interestingly, the distribution of bifunctional chorismate synthase concurs with the presence of a pentafunctional enzyme complex. 相似文献