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Although intraspecies researches within the black pine (Pinus nigra Arnold) have a long tradition, the intraspecies taxonomy, classification and chorology are still unclear. Among the numerous reasons that have caused this situation the most important are: the absence of a study that would completely cover the whole range of this species, the impossibility of connection of results of the existing detailed studies of certain areas, and the high variability of traits which have been used so far. Since the characteristics of the molecular systematic techniques could make possible the research free of the mentioned shortages, the intention of this study was to determine the relationships among nine populations of black pine using the random amplified polymorphic DNA (RAPD). The obtained results were compared to the recent results of the morphological and anatomical analysis of the leaves of the same populations. The RAPD results clearly divided the Croatian populations from populations of Austria (subsp. nigra) and Turkey (subsp. pallasiana), while among Croatian populations, as in previous study, the existence of several groups (subsp. illyrica, subsp. dalmatica and transitional population between them) was noticed. It is assumed that the optimisations conducted in this study will finally make possible estimating the relationships on the level of the whole range of the black pine and the classification based on molecular traits that are probably less dependent on environmental influences than it has been the case with the characteristics mostly used so far.
Two species previously unrecorded from the Aegean Sea, Nemichthys scolopaceus Richardson, 1848 and Benthocometes robustus (Goode et Bean, 1886), were captured during a bottom trawl off the Marmaris coasts (Turkey). These new records represent respectively the easternmost occurrence of N. scolopaceus and the second record of B. robustus from the eastern Mediterranean Basin.
This paper describes the distribution of Ole e 3 allergen and its transcripts in the developing anther and in mature olive pollen. Northern blot and RT-PCR analyses over the course of pollen development show that Ole e 3 transcripts accumulate exclusively in mature pollen. This gene therefore corresponds to a "late gene." The sequences amplified by RT-PCR display high identity with those already reported for Ole e 3, including two Ca2+-binding motifs. Immunoblot analysis of the allergen shows that Ole e 3 accumulates during the same stage as the corresponding transcripts, suggesting a transcriptional regulation mechanism for the expression of the gene. Finally, the use of transmission electron microscopy techniques has shown that (a) the allergen is located mainly in the vicinity of membrane systems and in the aperture regions of the mature pollen grain, and (b) Ole e 3 transcripts are detectable after using in situ RT-PCR. These data are significant clues to the biological roles of the protein in olive pollen biology. Such putative functions are discussed.
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