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31.
Split hand/split foot (SHFD) is a human developmental defect characterized by missing digits, fusion of remaining digits, and a deep median cleft in the hands and feet. Cytogenetic studies of deletions and translocations associated with this disorder have indicated that an autosomal dominant split hand/split foot locus (gene SHFD1) maps to 7q21-q22. To characterize the SHFD1 locus, somatic cell hybrid lines were constructed from cytogenetically abnormal individuals with SHFD. Molecular analysis resulted in the localization of 93 DNA markers to one of 10 intervals surrounding the SHFD1 locus. The translocation breakpoints in four SHFD patients were encompassed by the smallest region of overlap among the SHFD-associated deletions. The order of DNA markers in the SHFD1 critical region has been defined as PON–D7S812–SHFD1–D7S811–ASNS. One DNA marker, D7S811, detected altered restriction enzyme fragments in three patients with translocations when examined by pulsed-field gel electro-phoresis (PFGE). These data map SHFD1, a gene that is crucial for human limb differentiation, to a small interval in the q21.3-q22.1 region of human chromosome 7.  相似文献   
32.
Zusammenfassung Beim Blaunackenmausvogel (Urocolius macrourus pulcher) wurde die Ausnutzung der verschiedenen Nährstoffe (Fette, Eiweiße, Kohlenhydrate) und die Assimilationseffizienz des Gesamtfutters untersucht. Mausvögel sind Vegetarier und hauptsächlich frugivor. Im Versuch erhielten die Vögel vier Diäten: I. Mischfutter (Bananen, Salat, gekochtes Ei, gekochter Reis, Apfel); II. Bananen; III. Fruchtfutter (Pfirsiche und Birnen); IV. Eiweißfutter (Quark und gekochtes Weißei). Die minimalen Darmpassagezeiten betrugen für alle vier Diäten zusammengefaßt zwischen 6 und 18 min. Damit kommen die Mausvögel an die Werte für Nektarfresser heran (unter 15 min). Der Darmtrakt ist mit 19,0 ±2,4 cm (n = 16) für einen Vogel dieser Körpermasse ( 56,4 ±2,7 g; 49,2 ±2,9 g) extrem kurz und zeigt den für Fruchtfresser typischen einfachen Bau. Blinddärme fehlen. Die mittlere Gesamteffizienz für die vier Diäten liegt bei 71,0 %. Die Werte variieren in einem relativ engen Bereich zwischen 65,9 % (Banane) und 74,0 % (Mischfutter). Damit sind Blaunackenmausvögel innerhalb der Vögel als relativ schlechte Nahrungsverwerter zu bezeichnen. Für Fruchtfresser allgemein werden allerdings noch niedrigere Werte zwischen 30 % und 70 % angegeben. Die Assimilationsrate der einzelnen Nährstoffe hängt in starkem Maße vom Angebot im Futter ab. Die Zusammensetzung der assimilierten Nahrung zeigt, daß Kohlenhydrate mit 89,0–91,1 % den weitaus größten Anteil am Energiestoffwechsel haben. Vermutlich werden nur gelöste oder leicht verdauliche Einfachzucker bzw. Stärken verwertet. Zellulose wird praktisch ungenutzt ausgeschieden. Fette und Proteine spielen unter Normalbedingungen nur eine untergeordnete Rolle. Der Energieumsatz ist nahrungsabhängig und beträgt 62,5 J/g·h bei der Bananendiät, 69,2 J/g·h bei der Fruchtdiät, 87,3 J/g·h bei der Eiweißdiät und 99,6 J/g·h beim Mischfutter.
Nutrient physiology of the Blue-naped Mousebird (Urocolius macrourus pulcher)
Blue-naped Mousebirds were fed with four different diets: I. mixed food (bananas, salad, boiled eggs, boiled rice, apples); II. bananas only; III. soft fruits (pears and peaches); and IV. food enriched with protein (curd cheese and egg-white). The minimal times for food passage through the digestive tract were 6–18 min altogether. This is similar to the data known from nectarivorous birds (<15 min). The intestines are extremely short (19,0 ±2,4 cm; n = 16) and simple-structured, without specialization and without any caeca. The overall efficiency for the diets with 71,0 %, ranging between 65,9 % (bananas) and 74,0 % (mixed food), is relatively low. However, for frugivorous birds in general, far lower efficiencies are recorded (30–70 %). The assimilation efficiencies of nutrients depend on their amount in food and the physiological and seasonal requirements. The composition of the assimilated food shows that carbohydrates, having the largest part with 89,0–91,1 %, are most important for energy supply. Presumably, the birds utilize only sugars being easy to digest, because cellulose is removed. Fat and protein are playing a subordinate role in metabolism. The metabolic turnover differs with the diet and ranges between 62,5 J/g·h (bananas), 69,2 J/g·h (fruits), 87,3 J/g·h (protein food) and 99,6 J/g·h (mixed food).
  相似文献   
33.
The genome of Drosophila bifasciata harbours two distinct subfamilies of P-homologous sequences, designated M-type and O-type elements based on similarities to P element sequences from other species. Both subfamilies have some general features in common: they are of similar length (M-type: 2935 bp, O-type: 2986 bp), are flanked by direct repeats of 8 by (the presumptive target sequence), contain terminal inverted repeats, and have a coding region consisting of four exons. The splice sites are at homologous positions and the exons have the coding capacity for proteins of 753 amino acids (M-type) and 757 amino acids (O-type). It seems likely that both types of element represent functional transposons. The nucleotide divergence of the two P element subfamilies is high (31%). The main structural difference is observed in the terminal inverted repeats. Whereas the termini of M-type elements consist of 31 by inverted repeats, the inverted repeats of the O-type elements are interrupted by non-complementary stretches of DNA, 12 by at the 5 end and 14 by at the 3 end. This peculiarity is shared by all members of the O-type subfamily. Comparison with other P element sequences indicates incongruities between the phylogenies of the species and the P transposons. M-type and O-type elements apparently have no common origin in the D. bifasciata lineage. The M-type sequence seems to be most closely related to the P element from Scaptomyza pallida and thus could be considered as a more recent invader of the D. bifasciata gene pool. The origin of the O-type elements cannot be unequivocally deduced from the present data. The sequence comparison also provides new insights into conserved domains with possible implications for the function of P transposons.  相似文献   
34.
The gene encoding the extracellular neutral metalloprotease ShpI from Staphylococcus hyicus subsp. hyicus was cloned. DNA sequencing revealed an ORF of 1317 nucleotides encoding a 438 amino acid protein with Mr of 49698. When the cloned gene was expressed in Staphylococcus carnosus, a 42 kDa protease was found in the culture medium. The protease was purified from both S. carnosus (pCAshp1) and S. hyicus subsp. hyicus. The N-terminal amino acid sequences of the two proteases revealed that ShpI is organized as a pre-pro-enzyme with a proposed 26 amino acid signal peptide, a 75 amino acid hydrophilic pro-region, and a 337 amino acid extracellular mature form with a calculated Mr of 38394. The N-termini showed microheterogeneity in both host strains. ShpI had a maximum proteolytic activity at 55°C and pH 7.4–8.5. The protease, which had a low substrate specificity, could be inhibited by metal- and zinc-specific inhibitors, such as EDTA and 1,10-phenanthroline. Insensitivity to phosphoramidon separates ShpI from the thermolysin-like family. The conserved Zn2+ binding motif, the only homology to other proteases, and the reactivation of the apoenzyme by Zn2+, indicated that Zn2+ is the catalytic ion. Ca2+ very probably acts as a stabilizer. We also demonstrated the presence of a second extracellular protease in S. hyicus subsp. hyicus.  相似文献   
35.
The gram-positive bacterium Rhodococcus sp. strain IGTS8 is able to remove sulfur from certain aromatic compounds without breaking carbon-carbon bonds. In particular, sulfur is removed from dibenzothiophene (DBT) to give the final product, 2-hydroxybiphenyl. A genomic library of IGTS8 was constructed in the cosmid vector pLAFR5, but no desulfurization phenotype was imparted to Escherichia coli. Therefore, IGTS8 was mutagenized, and a new strain (UV1) was selected that had lost the ability to desulfurize DBT. The genomic library was transferred into UV1, and several colonies that had regained the desulfurization phenotype were isolated, though free plasmid could not be isolated. Instead, vector DNA had integrated into either the chromosome or a large resident plasmid. DNA on either side of the inserted vector sequences was cloned and used to probe the original genomic library in E. coli. This procedure identified individual cosmid clones that, when electroporated into strain UV1, restored desulfurization. When the origin of replication from a Rhodococcus plasmid was inserted, the efficiency with which these clones transformed UV1 increased 20- to 50-fold and they could be retrieved as free plasmids. Restriction mapping and subcloning indicated that the desulfurization genes reside on a 4.0-kb DNA fragment. Finally, the phenotype was transferred to Rhodococcus fascians D188-5, a species normally incapable of desulfurizing DBT. The mutant strain, UV1, and R. fascians produced 2-hydroxybiphenyl from DBT when they contained appropriate clones, indicating that the genes for the entire pathway have been isolated.  相似文献   
36.
A psychrotrophic toxin-producing strain of Aeromonas hydrophila grew well in a range of food slurries (scallop, prawn, fish, chicken liver paté, liverwurst, chicken luncheon slice and commercial baby food preparations) held at refrigeration temperatures. In most foods, excluding the baby food preparations, exotoxins were produced at levels comparable with production in bacteriological broth without apparent food spoilage (all but prawn and fish). Addition of ultra-heat treated (UHT) milk to toxin-containing broth culture supernatants markedly decreased or removed haemolytic and cytotoxic activities, explaining low levels of toxins found in milk in a previous study. Baby food preparations did not inactivate exotoxins under similar conditions suggesting production of toxins rather than their inactivation was inhibited in these foods.  相似文献   
37.
To better understand the behavior of selected vesicular-arbuscular mycorrhizal (VAM) isolates in the field, we documented the growth of roots, root hairs, and VAM colonization of inoculated and noninoculated sweet potato plants (Ipomea batatas (L.) Lam. cv White Star) over a growing season. We also determined the seasonal dynamics of P and Zn uptake, and shoot and storage-root growth. Shoot cuttings were inoculated with an isolate of either Glomus etunicatum Becker and Gerdemann or Acaulospora rugosa Mortan, or were not inoculated, and were harvested 2, 4, 8, 13, 20, and 27 weeks after planting (WAP). At each harvest, roots were sampled at 0 to 30, 30 to 60, and 60 to 90 cm depths and at 0, 23, 83, and 116 cm from the base of the shoot. At the end of the study, the roots of three non-inoculated plants were sampled by soil horizon. Inoculation had no affect on shoot growth or total shoot uptake of P and Zn; shoot dry mass and P and Z content increased rapidly up to 20 WAP, while shoot length continued to increase through 27 WAP. Shoot-P concentration of plants inoculated with A. rugosa at 2 and 8 WAP were higher than the noninoculated plants, while shoot-Zn concentration was not affected by inoculation. Storage-root yields of inoculated plants were higher than yields for noninoculated plants. Root length density, and percentage of root length with root hairs and VAM colonization were highest and most dynamic near the base of the plant. Percentage of root length colonization by VAM fungi was highest in the E2 horizon, intermediate in the Bh horizon, and lowest in the Ap horizon. Percentage of root length with root hairs had the opposite pattern. Intensive measurements of root characteristics close to the base of the plant, and shoot P-content and concentration during the period of rapid yield production, provided the most useful data for evaluating the activity of effective isolates.Published as Florida Agricultural Experimental Station Journal Series No. R-02576  相似文献   
38.
Screening over 100 isolates from human faeces for cellulolytic activity led to the isolation of a weakly cellulolytic anaerobic, curved, motile bacterium which produced H2, lactate and butyrate from wheatbran. The mol% of G + C in the DNA was 39–42. These properties, together with the Gram-positive cell wall ultrastructure and SDS-PAGE profile, are consistent with the genus Butyrivibrio. The isolate is believed to be the most active wheatbran-degrading bacterium so far described.  相似文献   
39.
 Previously, transgenic mice were constructed overexpressing human insulin-like growth factor II (IGF-II) under control of the H2kb promoter. The IGF-II transgene was highly expressed in thymus and spleen, and these organs showed an increase in weight. In the current study we have analyzed the sites of IGF-II mRNA expression, the distribution of IGF-II, IGF-I, and both IGF receptors, and histomorphometrical changes in thymus and spleen. With in situ mRNA hybridization, expression of the IGF-II transgene is found with high intensity in the thymic medulla and in the white pulp/marginal zone of the spleen, whereas there were scattered positive cells in the thymic cortex and in the splenic red pulp. Hybridization was restricted to non-lymphocytic cells. Immunohistochemistry revealed intense IGF-II peptide staining with the same distribution as IGF-II mRNA. There was additional intense IGF-II staining of all elements in the splenic red pulp (including trabeculae) and diffuse, low level staining in the thymic cortex. These findings were not observed in control mice. In the thymic medulla, most IGF-II producing cells co-labelled with keratin, whereas a minor population also stained for the monocyte/macrophage marker MOMA-2. In the spleen, co-labelling of IGF-II producing cells was found with MOMA-1 (marginal zone), or with the dendritic cell marker NLDC-145 (red pulp). IGF-I and both IGF receptors were found in these organs in nearly all cell types, with a similar pattern in transgenic mice and in control animals. Histomorphometric analysis revealed a marked increase of thymus cortex size and an increased trabecular size in the spleen. This suggests that IGF-II overproduction induces local effects (auto/paracrine) in the thymic cortex, but not in the thymic medulla. Trabecular growth in the spleen most likely is a distant effect (paracrine or endocrine) of IGF-II overproduction. Accepted: 5 September 1996  相似文献   
40.
A susceptibility gene on chromosome 18 and a parent-of-origin effect have been suggested for bipolar affective disorder (BPAD). We have studied 28 nuclear families selected for apparent unilineal transmission of the BPAD phenotype, by using 31 polymorphic markers spanning chromosome 18. Evidence for linkage was tested with affected-sib-pair and LOD score methods under two definitions of the affected phenotype. The affected-sib-pair analyses indicated excess allele sharing for markers on 18p within the region reported previously. The greatest sharing was at D18S37: 64% in bipolar and recurrent unipolar (RUP) sib pairs (P = .0006). In addition, excess sharing of the paternally, but not maternally, transmitted alleles was observed at three markers on 18q: at D18S41, 51 bipolar and RUP sib pairs were concordant for paternally transmitted alleles, and 21 pairs were discordant (P = .0004). The evidence for linkage to loci on both 18p and 18q was strongest in the 11 paternal pedigrees, i.e., those in which the father or one of the father's sibs is affected. In these pedigrees, the greatest allele sharing (81%; P = .00002) and the highest LOD score (3.51; θ = 0.0) were observed at D18S41. Our results provide further support for linkage of BPAD to chromosome 18 and the first molecular evidence for a parent-of-origin effect operating in this disorder. The number of loci involved, and their precise location, require further study.  相似文献   
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