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Studies of 16 polymorphic loci in the fish Fundulus heteroclitushave uncovered significant directional changes in gene frequencieswith latitude (i.e., clines). These spatial patterns could havearisen by primary and/or secondary intergradation. While wecannot presently distinguish between these two models, mitochondrialDNA analyses indicate that if previous isolation occurred asrequired for secondary intergradation, it must have been relativelyrecent and of short duration. Herein we discuss the roles ofgenetic drift, random migration, nonrandom migration, selectionand others as potential driving forces for both modes of clineformation. In addition, we address the potential role of thelast glacial period in (1) creating isolating barriers, (2)the opening of unoccupied habitats for range extension, and(3) as a mechanism for thermal selection. While some evidenceexists that at least one of the driving forces is selection,the extent to which it and other deterministic forces participateas opposed to various stochastic processes must await furtheranalysis  相似文献   
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The sympton of dwarfing in the sea campion, Silene vulgaris(Moench) Garcke sub sp. maritima(With.) A. & D. Löveinfected with the anther smut fungus Ustilago violacea (Pers.)Fuckel, a systemic, perennial parasite, has been investigated. Extracts of both healthy and diseased plants contain IAA andGA3, but diseased plants contain less gibberellins than healthyplants. Neither IAA nor gibberellins were detected in significantquantities in the medium when U. violacea was grown in pureculture, but IAN was present. IAN was also found m extractsof diseased plants and it is tentatively suggested that it isformed by the fungus and may accumulate in the host owing tothe inability of the plant to convert IAN to IAA The exogenousapplication of IAN to healthy plants does not produce any diseasesymptoms. The dwarfing symptom of the diseased plant may be due to thelower levels of gibberellins which it contains compared withhealthy plants since the exogenous application of GA3, restoresthe diseased plant to normal growth  相似文献   
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Two human melanoma cell lines, derived from metastases of two patients with epithelioid malignant amelanotic melanomas, and designated IIB-MEL-LES and IIB-MEL-IAN, have been established. Both cell lines have been in continuous culture over 2 years and were propagated continuously for 85 and 75 serial passages, respectively. Morphologically, IIB-MEL-LES is composed predominantly of spindle shaped cells, whereas IIB-MEL-IAN grows as a monolayer of cuboid and stellate shaped cells with many rounded cells in suspension. Immunocytochemical studies revealed that both cell lines express S-100 protein, vimentin, and GD3 and GD2 gangliosides but are negative for keratin and collagen. Both cell lines express HLA class I and HLA-DR antigens in variable proportions. The MAGE-1 gene is expressed only by the IIB-MEL-IAN cell line, as revealed by PCR analysis. Cytogenetic analysis of both cell lines revealed abnormal karyotypes; the modal chromosome numbers of IIB-MEL-LES and IIB-MEL-IAN were 48 and 81, respectively. IIB-MEL-LES cells presented rearrangements in chromosomes 1, 14 and X, gains in chromosomes 10,20, and 21 losses in chromosomes 15 and Y. The most frequent markers observed in IIB-MEL-IAN cells were 7q+, 10p+, 2p+, i(6p), 2q+, and 10q-. Clonal gains were observed in chromosomes 12 and 21, whereas losses were seen in chromosomes 1, 2, 3, 4, 6, 7, 11, and 17. Both cell lines were capable of forming colonies in soft agar and developed tumors when transplanted into nude mice, reproducing and maintaining the characteristics of the original tumors. These cell lines and their xenografts appear to provide useful systems for studying the biology, genetics and histogenesis of human malignant melanoma and could be utilized for the development of melanoma vaccines.  相似文献   
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1. Pacific salmon are a textbook example of migratory animals that transfer nutrients between ecosystems, but little is known about how salmon‐derived nutrients (SDN) affect the biodiversity of recipient freshwater ecosystems. We examined paleolimnological records from six Alaskan lakes to define how changes in SDN from sockeye salmon (Oncorhynchus nerka) influenced sedimentary diatom community structure and beta‐diversity among lakes and through time. 2. Using an isotopic mixing model, we showed that SDN loading could account for >80% of the lake total nitrogen budgets and strongly regulated diatom community composition. Spatial dissimilarity in diatom communities was positively related to differences in SDN among lakes (r2 = 0.69, P < 0.01, n = 10). Likewise, temporal dissimilarity in diatom communities was positively related to differences in SDN in a sediment core with substantial variation in salmon spawner dynamics between 1700 and 1950 AD (r2 = 0.34, P < 0.01, n = 19). Finally, beta‐diversity metrics quantifying temporal turnover within each lake’s sediment record were also positively related to the variance in SDN loading among lakes (r2 = 0.88, P < 0.05, n = 5). Mean SDN was only negatively correlated to temporal diatom beta‐diversity. 3. Spatially subsidised systems often receive temporally variable resource inputs, and thus, it is not surprising that, unlike previous studies, we found that resource variability was the key driver of community composition and beta‐diversity. In habitats that receive strongly fluctuating external nutrient loads, environment heterogeneity may overweigh stochastic community processes. In addition, freshwater diatoms are characterised by great dispersal capabilities and short life cycles and therefore may be a more sensitive indicator for evaluating the role of resource variability than previously used model organisms. These results suggest that productivity–diversity relationship vary with the nature of nutrient loading and the life history of the community studied. 4. Overall, our study highlights that the transport of nutrients by sockeye salmon across ecosystem boundaries is a significant driver of algal community and biodiversity in nursery lakes, mainly through changing the magnitude of nutrient variation. As such, freshwater species diversity in regions like the U.S. Pacific Northwest may become impoverished where there have been long‐term declines in salmon populations and decreases in nutrient variability among lakes.  相似文献   
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