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11.
Juan A. García Mauricio A. Navarro Karina Fresneda Francisco A. Uzal 《Journal of veterinary diagnostic investigation》2022,34(3):421
Tyzzer disease (TD) is caused by Clostridium piliforme, a gram-negative and obligate intracellular bacterium. The disease occurs in multiple species. A triad of lesions, namely colitis, hepatitis, and myocarditis, is described in cases of TD in some species, such as rats and mice. We carried out a retrospective analysis of 25 equine cases with a diagnosis of TD; 24 of 25 cases occurred in foals <45 d old; the remaining foal was 90 d old. There were 12 males and 12 females; no sex information was available for one foal. The affected breeds were Quarter Horse, Thoroughbred, Arabian, Paint, and Hanoverian. Most of the cases (19 of 25) occurred in the spring. There were 9 cases of sudden death; the remaining animals had diarrhea, fever, distended abdomen, depression, weakness, non-responsiveness, and/or recumbency. Gross findings included icterus, hepatomegaly with acinar pattern, serosal hemorrhages, pulmonary edema, and/or fluid content in small and large intestine. Microscopically, all foals had severe, multifocal, necrotizing hepatitis. Necrotizing lymphohistiocytic colitis was observed in 10 of 25 foals, and multifocal necrotizing myocarditis was found in 8 of 25. Gram-negative, Steiner-positive, intracytoplasmic filamentous bacteria were observed in hepatocytes, enterocytes, and myocardiocytes, respectively. PCR detected C. piliforme DNA in the liver (24 of 24), colon (20 of 24), and heart (5 of 25). Our results indicate that necrotic hepatitis is the hallmark of TD in horses; the so-called triad of lesions is not a consistent characteristic of the disease in this species. 相似文献
12.
Seven types of fungal melanins were compared with humic compounds from chernozem and podzol soils and with commercial humic acid. The results indicate some similarities but also distinct differences between the melanins and humic substances in spectral characteristics in the UV and visible regions and in their resistance to thermal degradation. 相似文献
13.
Dr. Fritz Müller-Ludwigshafen a. Rh. 《Journal of pest science》1950,23(9):131-132
Ohne Zusammenfassung 相似文献
14.
Mar Woelfle 《Forstwissenschaftliches Centralblatt》1937,59(3):77-92
Ohne Zusammenfassung 相似文献
15.
Prof. Dr. Mar Dingler 《European Journal of Forest Research》1933,55(22):350-351
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17.
Mar Dingler und Fabricius 《Forstwissenschaftliches Centralblatt》1925,47(3):231-235
Ohne Zusammenfassung 相似文献
18.
Geh. Obersorstrat a. D. Dr. Thaler 《European Journal of Forest Research》1914,36(8-9):434-443
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20.
C.?Silvar J.?M.?Duncan D.?E.?L.?Cooke N.?A.?Williams J.?Díaz F.?MerinoEmail author 《European journal of plant pathology / European Foundation for Plant Pathology》2005,112(1):43-52
A PCR-based method was developed for the identification and detection of Phytophthora capsici in pepper plants. Three PCR primers (CAPFW, CAPRV1 and CAPRV2) specific for P. capsiciwere designed based on the sequence of its internal transcribed spacer regions. CAPFW/CAPRV1 amplify a 452 bp product from P. capsici DNA whereas CAPFW/CAPRV2 a 595 bp fragment; neither set amplifies DNA from pepper or several fungi pathogenic to pepper. In conventional (single-round) PCR, the limit of detection was 5 pg DNA for both primer sets, whereas in nested PCR the detection limit for both was of 0.5 fg. However, when the dilution series of target DNA were spiked with plant DNA, amplification declined two-fold in both conventional and nested PCR. The CAPFW/CAPRV2 set in conventional PCR was used to detect P. capsici DNA in inoculated plants. Detection occurred as soon as 8h post-inoculation in stem samples from infected but still symptomless plants. The method was also tested to detect fungal DNA in infected soils. 相似文献