814 resultados para Maijala, Minna


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Minna Freund-Barsi

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6 Briefe zwischen E. Lederer und Max Horkheimer, 1936-1939; 1 Brief von Theodor W. Adorno an Minna Ledermann, 26.04.1941; 1 Brief von W. W. Lee an Max Horkheimer, 15.11.1938; 69 Brief zwischen Berta Lehmann, Flora Lehmann an Max Horkheimer, 1939-1944; 2 Briefe von Berta Lehmann, Flora Lehmann an Juliette Favez, März 1939; 1 Brief vom Reisebüro Anselm Stuttgart an Max Horkheimer, 02.04.1941; 4 Briefe zwischen der Auswandererstelle Marx Stuttgart und Max Horkheimer, 28.11.1940, 1941; 1 Brief von Max Horkheimer an Karl Adler, 24.01.1941; 2 Briefe von Max Horkheimer an Walter C. Louchheim, 1940; 5 Briefe zwischen dem American Consul General Stuttgart und Max Horkheimer, 1939-23.11.1940; 4 Brief zwischen der Auswandererstelle Adler Stuttgart und Max Horkheimer, 1940; 2 Briefe zwischen der Auswandererstelle Stuttgart und Max Horkheimer, 20.02.1940; 5 Briefe zwischen N. C. Leites und Max Horkheimer, 17.05.1937, 1937; 4 Briefe zwischen Irmgard Lenel und Max Horkheimer, 1941, 1942; 3 Briefe zwischen Heidi Lenssen und Max Horkheimer, 01.02.1937, 1937; 3 Briefe zwischen Theo F. Lentz und Max Horkheimer, 05.07.1945, 1945; 11 Briefe zwischen Jella Lepman und Max Horkheimer,1939-1941; 2 Briefe von Max Horkheimer an das American Consul General London, 1941; 1 Brief von R. Leppla an Max Horkheimer, 21.06.1948; 7 Briefe zwischen Max Lerner und Max Horkheimer, 1941, 1942; 5 Briefe und Beilagen zwischen Adolf Laschnitzer und Max Horkheimer, 1939-1940; 2 Briefe ziwschen dem The Emergency Committee in Aid of Displaced Foreign Scholars, New York und Max Horkheimer, 23.110.1940, 07.11.1940; 3 Briefe und 1 Beilage zwischen Andrée Lespiaut und Max Horkheimer, 13.11.1948; 1 Brief von Max Horkheimer an A. Lesser, 21.05.1935; 1 Brief von Bobby Level und Frank Level an Max Horkheimer, 20.07.1949; 1 Brief von Julius Walter Levi an Max Horkheimer, 15.05.1940; 1 Brief von Bernhard W. Levmore an Leo Löwenthal, 13.08.1940; 3 Briefe von Margot von Mendelssohn an Bernhard W. Levmore, 1940; 3 Briefe zwischen Ernst Levy und Max Horkheimer, 21.05.1927, 1937; 1 Brief von Erwin Levy an Max Horkheimer, 23.03.1935; 17 Briefe zwsichen Hanna Levy und Max Horkheimer, Friedrich Pollock, 1936-1937; 6 Briefe zwischen Herbert Levy und Friedichpollock, 1939-1940; 1 Brief von Friedrich Pollock an Heinz Langerhans, 11.08.1939; 2 Briefe von Max Horkheimer an die Society of the Protection of Science and Learning, The Scott Polar Research Institut, Cambridge, England, 24.11.1939; 2 Briefe zwischen Marie Levy und Max Horkheimer, 18.12.1938, 03.08.1939; 10 Briefe und 1 Beilage zwischen Max Lexandrowitz, Magarete Lexandrowitz und Max Horkheimer, 1940; 1 Brief vom National Refugee Service New York an Max Horkheimer, 19.03.1940; 1 Rechnung vom Librairie Generale de Droit & de Jurisprudence Paris an Max Horkheimer, 18.05.1938; 2 Briefe zwsichen L. Lichtwitz und Max Horkheimer, 16.04.1936, 25.07.1938;

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u.a.: Auseinandersetzung mit dem Werk Philipp Mainländers; Minna Batz; Dr. Vogler; Theodor Grieben;

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In groundwater-fed fen peatlands, the surface biomass decays rapidly and, as a result, highly humified peat is formed. A high degree of humification constrains palaeoecological studies because reliable identification of plant remains is hampered. Organic geochemistry techniques as a means of identifying historical plant communities have been successfully applied tobog peat. The method has also been applied to fen peat, but without reference to the composition of fen plants. We have applied selected organic geochemistry methods to determine the composition of the neutral lipid fractions from 12 living fen plants, to investigate the potential for the distributions to characterize and separate different fen plants and plant groups. Our results show correspondence with previous studies, e.g. C23 and C25n-alkanes dominating Sphagnum spp. and C27 to C31 alkanes dominating vascular plants. However, we also found similarities in n-alkane distributions between Sphagnum spp. and the below ground parts of some vascular plants. We tested the efficiency of different n-alkane ratios to separate species and plant groups. The ratios used for bog studies (e.g. n-C23/n-C25 and n-C23/n-C29) did not work as consistently for fen plants. Some differences in sterol distribution were found between vascular plants and mosses; in general vascular plants had a higher concentration of sterols. When distributions of n-alkanes, n-alkane ratios and sterols were all included as variables, redundancy analysis (RDA) separated different plant groups into their own clusters. Our results imply that the pattern for bog biomarkers cannot directly be applied to fen environments. Nevertheless, they encourage further testing to determine whether or not the identification of plant groups, plants or plant parts from highly humified peat is possible by applying fen species-specific biomarker proxies.

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Soft-rot Enterobacteriaceae (SRE), which belong to the genera Pectobacterium and Dickeya, consist mainly of broad host-range pathogens that cause wilt, rot, and blackleg diseases on a wide range of plants. They are found in plants, insects, soil, and water in agricultural regions worldwide. SRE encode all six known protein secretion systems present in gram-negative bacteria, and these systems are involved in attacking host plants and competing bacteria. They also produce and detect multiple types of small molecules to coordinate pathogenesis, modify the plant environment, attack competing microbes, and perhaps to attract insect vectors. This review integrates new information about the role protein secretion and detection and production of ions and small molecules play in soft-rot pathogenicity.

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A computational system for the prediction of polymorphic loci directly and efficiently from human genomic sequence was developed and verified. A suite of programs, collectively called pompous (polymorphic marker prediction of ubiquitous simple sequences) detects tandem repeats ranging from dinucleotides up to 250 mers, scores them according to predicted level of polymorphism, and designs appropriate flanking primers for PCR amplification. This approach was validated on an approximately 750-kilobase region of human chromosome 3p21.3, involved in lung and breast carcinoma homozygous deletions. Target DNA from 36 paired B lymphoblastoid and lung cancer lines was amplified and allelotyped for 33 loci predicted by pompous to be variable in repeat size. We found that among those 36 predominately Caucasian individuals 22 of the 33 (67%) predicted loci were polymorphic with an average heterozygosity of 0.42. Allele loss in this region was found in 27/36 (75%) of the tumor lines using these markers. pompous provides the genetic researcher with an additional tool for the rapid and efficient identification of polymorphic markers, and through a World Wide Web site, investigators can use pompous to identify polymorphic markers for their research. A catalog of 13,261 potential polymorphic markers and associated primer sets has been created from the analysis of 141,779,504 base pairs of human genomic sequence in GenBank. This data is available on our Web site (pompous.swmed.edu) and will be updated periodically as GenBank is expanded and algorithm accuracy is improved.