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  • 1995-1999  (3)
  • Theobroma cacao  (2)
  • Factor XIIIa  (1)
  • 1
    ISSN: 1437-160X
    Keywords: Factor XIIIa ; Factor XIIIs ; Rheumatoid arthritis ; Osteoarthritis ; Synovial membrane
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Abstract In spite of differences in etiology, RA and OA lead to astonishingly similar synovitic alterations. Fibroblastic transformation of the synovial membrane and an increase in monocytes constitute a rare but highly characteristic feature of RA. Monocytes synthesize factor (F) XIII, implying that FXIII (a and s) in synovial tissue might help to differentiate between RA and OA. Biopsies were obtained at open surgery from 98 unselected patients with the clinical diagnosis of RA (n=54) or OA (n=44). In a three-stage (ABC) immunoperoxidase technique, polyclonal antisera against factor XIIIa and factor XIIIs were investigated. Compared to OA sections, RA synovium showed more FXIIIa-positve cells - monocytes, fibrocytes, fibroblasts and synovial lining cells. In the subsynovial layer, band-like structure of FXIIIa-stained cells was observed in 27.8% of the RA patients, but in only one OA specimen. Higher proportions of FXIIIa-positive monocytes, macrophages, histiocytes and fibroblasts, as well as positive Langhans' giant cells and vascular wall regions (except endothelial cells), were observed in RA. OA specimens revealed more intense FXIIIa labeling of these cells with a lower percentage of stained cells. Overall, labeling with FXIIIs antibody resulted in less intense staining. In conclusion, distinction between synovitis caused by RA and synovitis due to OA is possible, as the former show higher numbers of FXIIIa-positive cells, including monocytes, fibroblasts, fibrocytes and synovial lining cells. Furthermore, RA tissue is stained less intensely than OA tissue. There is evidence for continuous excretion of FXIII in the synovial membrane by the above-mentioned cell systems.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1432-2242
    Keywords: Key words Heterozygosity ; Molecular markers ; Genetic map ; Quantitative trait loci ; Theobroma cacao
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract A genetic linkage map of Theobroma cacao (cocoa) has been constructed from 131 backcross trees derived from a cross between a single tree of the variety Catongo and an F1 tree from the cross of Catongo by Pound 12. The map comprises 138 markers: 104 RAPD loci, 32 RFLP loci and two morphologic loci. Ten linkage groups were found which cover 1068 centimorgans (cM). Only six (4%) molecular-marker loci show a significant deviation from the expected 1:1 segregation ratio.The average distance between two adjacent markers is 8.3 cM. The final genome-size estimates based on two-point linkage data ranged from 1078 to 1112 cM for the cocoa genome. This backcross progeny segregates for two apparently single gene loci controlling (1) anthocyanidin synthesis (Anth) in seeds, leaves and flowers and (2) self-compatibility (Autoc). The Anth locus was found to be 25 cM from Autoc and two molecular markers co-segregate with Anth. The genetic linkage map was used to localize QTLs for early flowering, trunk diameter, jorquette height and ovule number in the BC1 generation using both single-point ANOVA and interval mapping. A minimum number of 2–4 QTLs (P〈0.01) involved in the genetic expression of the traits studied was detected. Coincident map locations of a QTL for jorquette height and trunk diameter suggests the possibility of pleiotropic effects in cocoa for these traits. The combined estimated effects of the different mapped QTLs explained between 11.2% and 25.8% of the phenotypic variance observed in the BC1 population.
    Type of Medium: Electronic Resource
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  • 3
    ISSN: 1432-2242
    Keywords: Heterozygosity ; Molecular markers ; Genetic map ; Quantitative trait loci ; Theobroma cacao
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract A genetic linkage map of Theobroma cacao (cocoa) has been constructed from 131 backcross trees derived from a cross between a single tree of the variety Catongo and an F1 tree from the cross of Catongo by Pound 12. The map comprises 138 markers: 104 RAPD loci, 32 RFLP loci and two morphologic loci. Ten linkage groups were found which cover 1068 centimorgans (cM). Only six (4%) molecular-marker loci show a significant deviation from the expected 1∶1 segregation ratio.The average distance between two adjacent markers is 8.3 cM. The final genome-size estimates based on two-point linkage data ranged from 1078 to 1112 cM for the cocoa genome. This backcross progeny segregates for two apparently single gene loci controlling (1) anthocyanidin synthesis (Anth) in seeds, leaves and flowers and (2) self-compatibility (Autoc). The Anth locus was found to be 25 cM from Autoc and two molecular markers co-segregate with Anth. The genetic linkage map was used to localize QTLs for early flowering, trunk diameter, jorquette height and ovule number in the BC1 generation using both single-point ANOVA and interval mapping. A minimum number of 2–4 QTLs (P〈0.01) involved in the genetic expression of the traits studied was detected. Coincident map locations of a QTL for jorquette height and trunk diameter suggests the possibility of pleiotropic effects in cocoa for these traits. The combined estimated effects of the different mapped QTLs explained between 11.2% and 25.8% of the phenotypic variance observed in the BC1 population.
    Type of Medium: Electronic Resource
    Library Location Call Number Volume/Issue/Year Availability
    BibTip Others were also interested in ...
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