975 resultados para Dow, Harriet, 1810-1823.


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Spencer Fullerton Baird was born in Reading, Pennsylvania, February 3, 1823. In 1834 he was sent to a Quaker boarding-school kept by Dr. McGraw, at Port Deposit, Maryland, and the year following to the Reading Grammar School. In 1836 he entered Dickinson College, and was graduated at the age of seventeen. After leaving college, his time for several years was devoted to studies in general natural history, to long pedestrian excursions for the purpose of observing animals and plants and collecting specimens, and to the organization of a private cabinet of natural history, which a few years later became the nucleus of the museum of the Smithsonian Institution. During this period he published a number of original papers on natural history. He also read medicine with Dr. Middleton Goldsmith, attending a winter course of lectures at the College of Physicians and Surgeons, in New York, in 1842. His medical course was never formally completed, although in 1848 he received the degree of M. D., honoris causa, from the Philadelphia Medical College. In 1845 he was chosen professor of natural history in Dickinson College, and in 1846 his duties and emoluments were increased by election to the chair of natural history and chemistry in the same institution. In 1848 he declined a call to the professorship of natural science in the University of Vermont. In 1849 he undertook his first extensive literary work, translating and editing the text for the "Iconographic Encyclopedia," an English version of Heck's Bilder Atlas, published in connection with Brockhaus's Conversations Lexikon.

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A comparison of Mycobacterium tuberculosis complex isolates from seals (pinnipeds) in Australia, Argentina, Uruguay, Great Britain and New Zealand was undertaken to determine their relationships to each other and their taxonomic position within the complex. Isolates from 30 cases of tuberculosis in six species of pinniped and seven related isolates were compared to representative and standard strains of the M. tuberculosis complex. The seal isolates could be distinguished from other members of the M. tuberculosis complex, including the recently defined ‘Mycobacterium canettii’ and ‘Mycobacterium caprae’, on the basis of host preference and phenotypic and genetic tests. Pinnipeds appear to be the natural host for this ‘seal bacillus’, although the organism is also pathogenic in guinea pigs, rabbits, humans, Brazilian tapir (Tapirus terrestris) and, possibly, cattle. Infection caused by the seal bacillus is predominantly associated with granulomatous lesions in the peripheral lymph nodes, lungs, pleura, spleen and peritoneum. Cases of disseminated disease have been found. As with other members of the M. tuberculosis complex, aerosols are the most likely route of transmission. The name Mycobacterium pinnipedii sp. nov. is proposed for this novel member of the M. tuberculosis ...

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在模式植物金鱼草中的花对称性分子发育与遗传学研究揭示出相关调控基因在花对称性形成过程中的功能和表达式样及其相互作用机制,但被子植物中花对称性的繁杂多样远非模式植物的表达模式所能概括。因此,我们选择车前科和苦苣苔科中与金鱼草较近缘的典型类群地黄属和非洲紫罗兰属作为研究对象,针对它们在花对称性形成方面区别于金鱼草的不同式样,开展这些类群中花对称性主控基因CYCLOIDEA(CYC)类基因的进化发育生物学研究。该研究旨在探讨CYC 类基因的功能和表达式样的变化在进化上的内在联系。 地黄花对称性基因的进化发育研究结果显示,地黄中CYC 类基因RgCYC 的表达模式与CYC 基因在金鱼草中和McCYC 基因在Mohavea 中的表达模式存在明显的差异。首先, RgCYC 基因在近轴雄蕊预期发生位置表皮细胞下的强烈表达与地黄近轴雄蕊的缺失密切相关。转录因子中的氨基酸替代所导致蛋白质功能的改变使RgCYC 基因对细胞周期基因cyclin D3b 抑制作用的增强可能是地黄中近轴雄蕊原基发生过程被彻底阻断的主要原因。由此看来,CYC 类基因的作用不仅导致近轴花器官生长缓慢或退化,而且可能与自然类群中花近轴器官丢失的现象有关。其次,同McCYC 基因在Mohavea 中的表达模式相似,RgCYC 基因的表达也从近轴雄蕊延伸到了两侧雄蕊,但是并没有强烈地抑制两侧雄蕊的发育,仅仅使得两侧雄蕊短于远轴雄蕊从而在地黄中形成二强雄蕊。这一现象可能是由于RgCYC 基因的表达与McCYC 基因的表达在时间和空间上的差异所造成的,并显示地黄中二强雄蕊的形成机制和金鱼草完全不同。第三,RgCYC 基因在近轴花冠裂片的表达没有象CYC 在金鱼草中一样明显促进它们的生长。此外,近轴花冠裂片明显的自身对称性显示在地黄中RgCYC 基因在两侧对称性形成方面可能单独对近轴花器官进行调控。地黄中RgCYC 基因的表达模式反映了广义唇形目中从五数花到四数花进化过程的一种新的进化机制。 两侧对称花向次生辐射对称花的反演进化机制在花对称性进化发育研究中倍受关注。我们在苦苣苔科中选择非洲紫罗兰栽培品种作为研究材料,通过 mTAIL-PCR 分别在两侧对称花和辐射对称花的栽培品种中分离出了包含完整的 ORF 的CYC 类基因:SiCYC1A 和SiCYC1B。这两个基因的完整序列在DNA 水平的相似性为88%,均包含了完整的TCP domain, R domain 和 5’ 端区段。令人意外的是SiCYC1A 和SiCYC1B 这两个基因的DNA 序列在两侧和辐射对称花品种中均完全一致。根据对导致辐射对称花产生机制的比较分析,我们认为在这两个栽培品种中的SiCYC1A 和 SiCYC1B 基因可能存在着某一共同的调节因子对其进行调控。其可能途径是该调节因子同时调控SiCYC1A 和 SiCYC1B 基因,这一共同的调节因子的改变导致了SiCYC1A 和 SiCYC1B 基因部分或完全失去功能,从而使两侧对称花转变为辐射对称花。 崖白菜属的花部器官发生研究显示其花萼和花冠裂片的发生顺序与毛地黄族和婆婆纳族相似,花冠裂片早期生长的迟滞和花冠裂片折叠式样介于毛地黄族和婆婆纳族之间。但是,近轴雄蕊的发育缺失完全不同于毛地黄族中的其它类群。对地黄属和崖白菜属以及它们近缘类群的ITS 或trnL-F 序列所构建的系统树的分析显示,地黄属和崖白菜属呈姊妹群。然而,分子系统学研究结果并不支持传统系统学和个体发育研究对这两个属科级系统位置的认识。毛地黄属与婆婆纳属和车前属构成一个单系分支,而地黄属与崖白菜属则形成另外一个独立的分支,并与泡桐属与透骨草科所形成的分支首先聚在一支。因此,毛地黄族可能并不是一个单系类群,地黄属和崖白菜属的科级系统位置可能需要重新考虑。

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The measured toughness J(C) of adipose and dermal porcine tissues are 4.1 and 17 kJ m(-2), respectively, via a trouser tear test. An assessment is made of the contribution to overall toughness from the microstructural elements. The analysis suggests that the toughness of adipose tissue is determined by the collagen network that surrounds the adipocytes. The volume fraction of the interlobular septa is sufficiently low for it to make a negligible contribution to the macroscopic toughness.

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The increase in harbor seal (Phoca vitulina richardsi) abundance, concurrent with the decrease in salmonid (Oncorhynchus spp.) and other fish stocks, raises concerns about the potential negative impact of seals on fish populations. Although harbor seals are found in rivers and estuaries, their presence is not necessarily indicative of exclusive or predominant feeding in these systems. We examined the diet of harbor seals in the Umpqua River, Oregon, during 1997 and 1998 to indirectly assess whether or not they were feeding in the river. Fish otoliths and other skeletal structures were recovered from 651 scats and used to identify seal prey. The use of all diagnostic prey structures, rather than just otoliths, increased our estimates of the number of taxa, the minimum number of individuals and percent frequency of occurrence (%FO) of prey consumed. The %FO indicated that the most common prey were pleuronectids, Pacific hake (Merluccius productus), Pacific stag-horn sculpin (Leptocottus armatus), osmerids, and shiner surfperch (Cymatogaster aggregata). The majority (76%) of prey were fish that inhabit marine waters exclusively and fish found in marine and estuarine areas (e.g. anadromous spp.) which would indicate that seals forage predominantly at sea and use the estuary for resting and opportunistic feeding. Salmonid remains were encountered in 39 samples (6%); two samples contained identifiable otoliths, which were determined to be from chi-nook salmon (O. tshawytscha). Because of the complex salmonid composition in the Umpqua River, we used molecular genetic techniques on salmonid bones retrieved from scat to discern species that were rare from those that were abundant. Of the 37 scats with salmonid bones but no otoliths, bones were identified genetically as chinook or coho (O. kisutch) salmon, or steelhead trout (O. mykiss) in 90% of the samples.

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Twenty-six stocks of Pacific salmon and trout (Oncorhynchus spp.), representing evolutionary significant units (ESU), are listed as threatened or endangered under the Endangered Species Act (ESA) and six more stocks are currently being evaluated for listing. The ecological and economic consequences of these listings are large; therefore considerable effort has been made to understand and respond to these declining populations. Until recently, Pacific harbor seals (Phoca vitulina richardsi) on the west coast increased an average of 5% to 7% per year as a result of the Marine Mammal Protection Act of 1972 (Brown and Kohlman2). Pacific salmon are seasonally important prey for harbor seals (Roffe and Mate, 1984; Olesiuk, 1993); therefore quantifying and understanding the interaction between these two protected species is important for Morphobiologically sound management strategies. Because some Pacific salmonid species in a given area may be threatened or endangered, while others are relatively abundant, it is important to distinguish the species of salmonid upon which the harbor seals are preying. This study takes the first step in understanding these interactions by using molecular genetic tools for species-level identification of salmonid skeletal remains recovered from Pacific harbor seal scats.

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Along the west coast of the United States, the potential impact of increasing pinniped populations on declining salmonid (Oncorhynchus spp.) stocks has become an issue of concern. Fisheries managers need species-specific estimates of consumption by pinnipeds to evaluate their impact on salmonid stocks. To estimate consumption, we developed a model that estimates diet composition by reconstructing prey biomass from fecal samples. We applied the model to data collected from harbor seals (Phoca vitulina) that are present year-round in the lower Columbia River where endangered stocks of salmonids pass as returning adults and as seaward-migrating smolts. Using the same data, we applied the split-sample frequency of occurrence model, which avoids reconstructing biomass by assuming that each fecal sample represents an equal volume of consumption and that within each sample each prey item represents an equal proportion of the volume. The two models for estimating diet composition yielded size-specific differences in consumption estimates that were as large as tenfold for the smallest and largest prey. Conclusions about the impact of harbor seal predation on adult salmonids, some of their largest prey species, remain uncertain without some appropriate rationale or further information (e.g. empirical captive studies) to discriminate between these models.

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The relevance of the effective stress intensity range to crack growth is considered for constant and for variable amplitude loading. The accelerated and retarded growth associated with simple programmed loadings is reported for two steels and an aluminium alloy. The load interaction effects are due to several competing mechanisms, and not due to the single, popular mechanism of crack closure.

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