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121.
122.
Zusammenfassung Im Hoden von Hund und Katze werden folgende Enzyme histochemisch nachgewiesen: NADH-Tetrazoliumreduktase (NADH-T-Red), NADPH-Tetrazoliumreduktase (NADPH-T-Red), Cytochromoxydase (Cyt-Ox), Lactat-Dehydrogenase (LDH), Aldolase (ALD), Alkohol-Dehydrogenase (ADH), Glycerin-1-phosphat-Dehydrogenase (GDH), Glucose-6-phosphat-Dehydrogenase (G-6-PDH), Succinat-Dehydrogenase (SDH), NAD-spezifische Isocitrat-Dehydrogenase (NAD-ICDH). Die starke Fermentaktivität der G-6-PDH und der LDH in den Leydig-Zellen beider Spezies, der relativ hohe Gehalt an histochemisch nachweisbarer ADH in den Zwischenzellen der Katze sowie eine deutliche Reaktion auf GDH in den Sertoli-Zellen der Katze werden diskutiert.
Summary In the testes of dog and cat the distribution pattern of NADH-tetrazolium reductase, NADPH-tetrazolium reductase, cytochrome oxydase, lactate dehydrogenase, aldolase, alcohol dehydrogenase, -glycerophosphate dehydrogenase, glucose-6-phosphate dehydrogenase, succinate dehydrogenase and NAD specific isocitrate dehydrogenase was studied by histochemical means. The strong reaction of G-6-PDH and LDH in the Leydig cells of both species, the relatively high amount of ADH in the interstitial cells of the cat testis and the principal site of -GPDH in the Sertoli cells of the cat are discussed.
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123.
Summary 1. Copper is an element of great importance for crustaceans such as isopods and amphipods. While their marine relatives can obtain all necessary chemical components from the surrounding sea water via gills or other epithelia, the species which have conquered terra firma face the problem of extracting practically all vital substances from their food.2. In marine forms, the water flow maintained via ciliary or muscular mechanisms is sufficient to provide several orders of magnitude more copper than required; food probably plays only a minor role in copper supply.3. Terrestrial isopods have to rely entirely on their food as a source of copper. They can do several things in order to ensure an adequate supply: increase food consumption, improve the selective absorption of copper from the food material passing through the gut (possibly in symbiosis with copper concentrating micro-organisms), increase copper stores, thus widening safety margins for times of low supply, reduce copper losses by regulating the transport of this metal between the stores and other body parts.4. It was shown that terrestrial isopods consume about as much food as their marine relatives.5. Extraction of copper from primary vegetable matter seems to be very difficult, both for terrestrial forms likePorcellio scaber and for intertidal forms such asLigia oceanica or the amphipodOrchestia gammarella; extraction is possible only at very high copper concentrations.6. A way out of this calamitous situation seems to be in cooperation with micro-organisms which liberate copper from the tightly bound states in which it exists in the primary plant material. This is true forP. scaber but it probably also holds forO. gammerella, L. oceanica and other species feeding on decaying algae on the shore.7. The amount of copper stored in the hepatopancreas increases with increasing dependence of the species on the terrestrial environment, the values obtained for intertidal species being intermediate between marine and truly terrestrial species.8.P. scaber (and probablyOniscus asellus) will extract up to 95% of the copper present in artificially enriched leaf litter whereas intertidal forms feeding onFucus will not extract more than 50%, mostly only 20% or less, from artificially enriched seaweeds.9. Copper is more strictly relegated to storage cells of the hepatopancreas in terrestrial isopods than it is in marine or intertidal ones. Extensive movements of copper inP. scaber are accompanied by the synthesis of special carrier proteins, whereas in marine or intertidal species this metal seems to be able to move more freely in an easily dissociable state between the storage cells and other cells of the hepatopancreas.
Eroberung des Festlands: Das Kupferproblem vom Gesichtspunkt der Isopoden
Kurzfassung Marine Crustaceen müßten theoretisch in der Lage sein, dem Atemwasser genügend viel Kupfer zu entnehmen, um selbst schwerste tägliche Verluste zu ersetzen. Im Vergleich dazu dürfte das in der Pflanzennahrung angebotene Cu mengenmäßig eine nur geringe Rolle spielen. Dennoch muß das vegetabilische Cu ausreichen, um den Bedarf herbivorer terrestrischer Crustaceen an diesem Metall zu decken. Die Probleme, die im Zusammenhang mit der Immigration vom Meer zum Land hinsichtlich der Kupferversorgung entstehen, werden am Beispiel litoraler und terrestrischer Isopoden und Amphipoden — zum Teil in spekulativer Form — diskutiert. Vergleichende Untersuchungen haben ergeben, daß terrestrische und litorale Isopoden die Menge der aufgenommenen Nahrung gegenüber marinen Arten nicht erhöhen und daß die Assimilation von Cu aus der Nahrung in ausreichender Weise nur durch die Beihilfe von Mikroorganismen möglich zu sein scheint. Der Zugang zu einem nährstoffreichen, von Mikroorganismen gut durchgearbeitetem Substrat muß also eine der Hauptvoraussetzungen für eine funktionierende Kupferversorgung aus pflanzlichem Material sein. Außerdem nimmt die Menge des im Hepatopancreas gespeicherten Cu in der Reihe marine — litorale — terrestrische Crustaceen zu. Auch die Leistungsfähigkeit der Kupferassimilation ist im Vergleich zu litoralen bei terrestrischen Isopoden größer. Während beiPorcellio scaber die Kupferassimilation in direkter Abhängigkeit vom Kupfergehalt der Nahrung steht und Werte über 90% erreichen kann, beträgt beiLigia oceanica undOrchestia gammarella die Kupferassimilation bei mittlerem Kupfergehalt (0,2 bis 0,3µg/mg Trockengewicht) nur etwa 66%, um dann wieder abzunehmen. Schließlich wird im Vergleich zu marinen und litoralen Isopoden der Kupferstoffwechsel terrestrischer Isopoden besser geregelt, indem Cu ausschließlicher in besonderen Zellen gespeichert und jede umfangreiche Mobilisierung des Metalls von der Synthese charakteristischer Sekrete begleitet wird, die Stoffe (wahrscheinlich Proteide) enthalten, deren Aufgabe zu sein scheint, freies Cu zu binden. Dies würde sowohl dessen toxische Eigenschaften reduzieren, als auch Verluste dieses Metalls an das Blut und in das Darmlumen verhindern.
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124.
(Bellevalia ciliata was recorded in north-east Bulgaria south of the Dobrudsha, within field and steppe vegetation. Vegetation records and a distribution map are presented. Based on taxonomic studies it is proposed to combineB. ciliata, B. sarmatica (Pall.) Wor. andB. speciosa Wor. under the oldest nameB. ciliata (Cyr.) Nees.  相似文献   
125.
126.
127.
Chenopodium rubrum photoautotrophic cell suspensions were grown in plastic tissue culture dishes under photoautotrophic conditions. Growth was monitored by measuring cell number, packed cell volume, chlorophyll content and oxygen production. Such microtiter dishes are suitable systems for the serial assay of growth inhibition and various physiological effects (i.e. chlorophyll fluorescence, cell viability, oxygen production) of photoautotrophic cells as caused by herbicides and fungal phytotoxins. The applicability of the test system is discussed.Abbreviations pcv packed cell volume - fr.w. fresh weight - rpm revol. per minute - DMSO dimethyl sulfoxide - PMS phenazine methosulfate - NBT nitro-blue tetrazolium chloride  相似文献   
128.
Summary Various rodent and primate DNAs exhibit a stronger intra- than interspecies cross-hybridization with probes derived from the N-terminal domain exons of human and rat carcinoembryonic antigen (CEA)-like genes. Southern analyses also reveal that the human and rat CEA gene families are of similar complexity. We counted at least 10 different genes per human haploid genome. In the rat, approximately seven to nine different N-terminal domain exons that presumably represent different genes appear to be present. We were able to assign the corresponding genomic restriction endonuclease fragments to already isolated CEA gene family members of both human and rat. Highly similar subgroups, as found within the human CEA gene family, seem to be absent from the rat genome. Hybridization with an intron probe from the human nonspecific cross-reacting antigen (NCA) gene and analysis of DNA sequence data indicate the conservation of noncoding regions among CEA-like genes within primates, implicating that whole gene units may have been duplicated. With the help of a computer program and by calculating the rate of synonymous substitutions, evolutionary trees have been derived. From this, we propose that an independent parallel evolution, leading to different CEA gene families, must have taken place in, at least, the primate and rodent orders.  相似文献   
129.
Summary In their natural environment, scrub jays harvest pinyon pine seeds and store them in subterranean caches. In our tests, the birds performed this behavior in an octagonal outdoor aviary with sand-filled cups inserted in the floor. For caching, only 12 such cups in a 90° sector were available, while for the recovery session 4 to 6 days later all 48 cups in the entire aviary were open. In control tests, the birds concentrated their search in the sector where the seeds had been cached. When the internal clock of the birds was shifted 6 h between caching and recovery, they preferentially probed in the adjacent 90° sector. This indicated that they used sun compass information to relocate their caches, largely ignoring visual cues from surrounding landmarks.The dominant role of the sun compass which has a parallel in the orientation of homing pigeons, may reflect a general tendency to prefer compass information in spatial orientation tasks; it is in agreement with the model that birds generally have a directionally oriented view of space.Abbreviations OR Original caches - SH shifted caches  相似文献   
130.
Rhizobia are soil bacteria which symbiotically infect legume roots and generate nodules in which they fix atmospheric nitrogen for the plant in exchange for photosynthetically fixed carbon. A crucial aspect of signal exchange between these symbionts is the secretion of phenolic compounds by the host root which induce nodulation gene expression in the bacteria. Stimulation of nod gene expression by host phenolics is required for nodule formation, is biochemically specific at 10-6 M, and is mediated by nodD. We and others have shown that rhizobia display chemotaxis to 10-9 M of the same phenolic compounds. Chemotaxis to inducer phenolics is selectively reduced or abolished by mutations in certain nod genes governing nodulation efficiency or host specificity. Conversely, mutations in rhizobia that affect general motility or chemotaxis have substantial effects on nodulation efficiency and competitiveness. These findings suggest that microbes entering the rhizosphere environment may utilize minor, non-nutrient components in root exudates as signals to guide their movement towards the root surface and elicit changes in gene expression appropriate to this environment.  相似文献   
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