1000 resultados para Amphora ovalis


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5 1/8 in.x 2 41/64 in.; glass with splash decoration

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Niobid Painter, attributed to; 2 ft. 7/32 in.x 1 ft. 1 25/64 in.; potery, black figure

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The effects of eutrophication on short term changes in the microbial community were investigated using high resolution lipid biomarker and trace metal data for sediments from the eutrophic Lake Rotsee (Switzerland). The lake has been strongly influenced by sewage input since the 1850s and is an ideal site for studying an anthropogenically altered ecosystem. Historical remediation measures have had direct implications for productivity and microbial biota, leading to community composition changes and abundance shifts. The higher sewage and nutrient input resulted in a productivity increase, which led predominantly to a radiation in diatoms, primary producers and methanogens between about 1918 and 1921, but also affected all microorganism groups and macrophytes between about 1958 and 1972. Bacterial biomass increased in 1933, which may have been related to the construction of a mechanical sewage treatment plant. Biomarkers also allowed tracing of fossil organic matter/biodegraded oil contamination in the lake. Stephanodiscus parvus, Cyclotella radiosa and Asterionella formosa were the dominant sources of specific diatom biomarkers. Since the 1850s, the cell density of methanogenic Archaea (Methanosaeta spp.) ranged within ca. 0.5-1.8 x 10**9 cells/g dry sediment and the average lipid content of Rotsee Archaea was ca. 2.2 fg iGDGTs/cell. An altered BIT index (BITCH), indicating changes in terrestrial organic matter supply to the lake, is proposed.

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Recolonisation and succession in a multi-species tropical seagrass meadow was examined by creating gaps (50×50 cm) in the meadow and manipulating the supply of sexual and asexual propagules. Measurements of leaf shoot density and estimates of above-ground biomass were conducted monthly to measure recovery of gaps between September 1995 and November 1997. Measurements of the seeds stored in the sediment (seed bank) and horizontal rhizome growth of colonising species were also conducted to determine their role in the recovery process. Asexual colonisation through horizontal rhizome growth from the surrounding meadow was the main mechanism for colonisation of gaps created in the meadow. The seed bank played no role in recolonisation of cleared plots. Total shoot density and above-ground biomass (all species pooled) of cleared plots recovered asexually to the level of the undisturbed controls in 10 and 7 months, respectively. There was some sexual recruitment into cleared plots where asexual colonisation was prevented but seagrass abundance (shoot density and biomass) did not reach the level of unmanipulated controls. Seagrass species did not appear to form seed banks despite some species being capable of producing long-lived seeds. The species composition of cleared plots remained different to the undisturbed controls throughout the 26-month experiment. Syringodium isoetifolium was a rapid asexual coloniser of disturbed plots and remained at higher abundances than in the control treatments for the duration of the study. S. isoetifolium had the fastest horizontal rhizome growth of species asexually colonising cleared plots (6.9 mm day−1). Halophila ovalis was the most successful sexual coloniser but was displaced by asexually colonising species. H. ovalis was the only species observed to produce fruits during the study. Small disturbances in the meadow led to long-term (>2 years) changes in community composition. This study demonstrated that succession in tropical seagrass communities was not a deterministic process. Variations in recovery observed for different tropical seagrass communities highlighted the importance of understanding life history characteristics of species within individual communities to effectively predict their response to disturbance. A reproductive strategy involving clonal growth and production of long-lived, locally dispersed seeds is suggested which may provide an evolutionary advantage to plants growing in tropical environments subject to temporally unpredictable major disturbances such as cyclones

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In this study, we examined the photosynthetic responses of five common seagrass species from a typical mixed meadow in Torres Strait at a depth of 5–7 m using pulse amplitude modulated (PAM) fluorometry. The photosynthetic response of each species was measured every 2 h throughout a single daily light cycle from dawn (6 am) to dusk (6 pm). PAM fluorometry was used to generate rapid light curves from which measures of electron transport rate (ETRmax), photosynthetic efficiency (α), saturating irradiance (Ek) and light-adapted quantum yield (ΔF/F′m) were derived for each species. The amount of light absorbed by leaves (absorption factor) was also determined for each species. Similar diurnal patterns were recorded among species with 3–4 fold increases in maximal electron rate from dawn to midday and a maintenance of ETRmax in the afternoon that would allow an optimal use of low light by all species. Differences in photosynthetic responses to changes in the daily light regime were also evident with Syringodium isoetifolium showing the highest photosynthetic rates and saturating irradiances suggesting a competitive advantage over other species under conditions of high light. In contrast Halophila ovalis, Halophila decipiens and Halophila spinulosa were characterised by comparatively low photosynthetic rates and minimum light requirements (i.e. low Ek) typical of shade adaptation. The structural makeup of each species may explain the observed differences with large, structurally complex species such as Syringodium isoetifolium and Cymodocea serrulata showing high photosynthetic effciciencies (α) and therefore high-light-adapted traits (e.g. high ETRmax and Ek) compared with the smaller Halophila species positioned lower in the canopy. For the smaller Halophila species these shade-adapted traits are features that optimise their survival during low-light conditions. Knowledge of these characteristics and responses improves our understanding of the underlying causes of changes in seagrass biomass, growth and survival that occur when modifications in light quantity and quality arise from anthropogenic and climatic disturbances that commonly occur in Torres Strait.

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This study uses chlorophyll a fluorescence to examine the effect of environmentally relevant (1-4 h) exposures of thermal stress (35-45 [deg]C) on seagrass photosynthetic yield in seven tropical species of seagrasses. Acute response of each tropical seagrass species to thermal stress was characterised, and the capacity of each species to tolerate and recover from thermal stress was assessed. Two fundamental characteristics of heat stress were observed. The first effect was a decrease in photosynthetic yield (Fv / Fm) characterised by reductions in F and Fm'. The dramatic decline in Fv / Fm ratio, due to chronic inhibition of photosynthesis, indicates an intolerance of Halophila ovalis, Zostera capricorni and Syringodium isoetifolium to ecologically relevant exposures of thermal stress and structural alterations to the PhotoSystem II (PSII) reaction centres. The decline in Fm' represents heat-induced photoinhibition related to closure of PSII reaction centres and chloroplast dysfunction. The key finding was that Cymodocea rotundata, Cymodocea serrulata, Halodule uninervis and Thalassia hemprichii were more tolerant to thermal stress than H. ovalis, Z. capricorni and S. isoetifolium. After 3 days of 4 h temperature treatments ranging from 25 to 40 [deg]C, C. rotundata, C. serrulata and H. uninervis demonstrated a wide tolerance to temperature with no detrimental effect on Fv / Fm' qN or qP responses. These three species are restricted to subtropical and tropical waters and their tolerance to seawater temperatures up to 40 [deg]C is likely to be an adaptive response to high temperatures commonly occurring at low tides and peak solar irradiance. The results of temperature experiments suggest that the photosynthetic condition of all seagrass species tested are likely to suffer irreparable effects from short-term or episodic changes in seawater temperatures as high as 40-45 [deg]C. Acute stress responses of seagrasses to elevated seawater temperatures are consistent with observed reductions in above-ground biomass during a recent El Nino event.

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The distribution and nutritional profiles of sub-tidal seagrasses from the Torres Strait were surveyed and mapped across an area of 31,000 km2. Benthic sediment composition, water depth, seagrass species type and nutrients were sampled at 168 points selected in a stratified representative pattern. Eleven species of seagrass were present at 56 (33.3%) of the sample points. Halophila spinulosa, Halophila ovalis, Cymodocea serrulata and Syringodium isoetifolium were the most common species and these were nutrient profiled. Sub-tidal seagrass distribution (and associated seagrass nutrient concentrations) was generally confined to northern-central and south-western regions of the survey area (ovalis possessed the highest starch concentrations (2.76±0.12% DW) and highest digestibility (83.24±0.66% DW) as well as the lowest fibre (27.2±0.66% DW). The high relative abundance (found at 55% of the sites that had seagrass) and nutrient quality characteristics of H. ovalis make it an important source of energy to marine herbivores that forage sub-tidally in the Torres Strait. There were two regions in Torres Strait (north-central and south-western) where sub-tidal seagrass meadows were prevalent and of relatively higher nutritional value. This spatial and nutritional information can be used by local agencies to manage and to protect the ecological, economic and cultural values of the sub-tidal seagrass ecosystems and associated fisheries of the Torres Strait.

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The effect of age of the larvae on the manifestation of the "Sappe" disease of the silkworm by oral inoculation of different pathogens, viz., Aerobacter cloacae, Pseudomonas boreopolis, Escherichia freundii, Achromobacter delmarvae, A. Superficialis, Pseudomonas ovalis, and Staphylococcus albus was tested. It was found that the reaction of the larva to the pathogen was influenced by its age. Some, e.g., Escherichia freundii, were more lethal when introduced at early stages whereas certain others, e.g., Aerobacter cloacae and Staphylococcus albus, caused maximum damage when invading older larvae. Irrespective of the age of infection, death of the worms mainly occurred during molting and before spinning. The studies also indicated that growth and mortality of the larvae were affected differentially by the pathogens.

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Atrial fibrillation (AF) is the most common tachyarrhythmia and is associated with substantial morbidity, increased mortality and cost. The treatment modalities of AF have increased, but results are still far from optimal. More individualized therapy may be beneficial. Aiming for this calls improved diagnostics. Aim of this study was to find non-invasive parameters obtained during sinus rhythm reflecting electrophysiological patterns related to propensity to AF and particularly to AF occurring without any associated heart disease, lone AF. Overall 240 subjects were enrolled, 136 patients with paroxysmal lone AF and 104 controls (mean age 45 years, 75% males). Signal measurements were performed by non-invasive magnetocardiography (MCG) and by invasive electroanatomic mapping (EAM). High-pass filtering techniques and a new method based on a surface gradient technique were adapted to analyze atrial MCG signal. The EAM was used to elucidate atrial activation in patients and as a reference for MCG. The results showed that MCG mapping is an accurate method to detect atrial electrophysiologic properties. In lone paroxysmal AF, duration of the atrial depolarization complex was marginally prolonged. The difference was more obvious in women and was also related to interatrial conduction patterns. In the focal type of AF (75%), the root mean square (RMS) amplitudes of the atrial signal were normal, but in AF without demonstrable triggers the late atrial RMS amplitudes were reduced. In addition, the atrial characteristics tended to remain similar even when examined several years after the first AF episodes. The intra-atrial recordings confirmed the occurrence of three distinct sites of electrical connection from right to left atrium (LA): the Bachmann bundle (BB), the margin of the fossa ovalis (FO), and the coronary sinus ostial area (CS). The propagation of atrial signal could also be evaluated non-invasively. Three MCG atrial wave types were identified, each of which represented a distinct interatrial activation pattern. In conclusion, in paroxysmal lone AF, active focal triggers are common, atrial depolarization is slightly prolonged, but with a normal amplitude, and the arrhythmia does not necessarily lead to electrical or mechanical dysfunction of the atria. In women the prolongation of atrial depolarization is more obvious. This may be related to gender differences in presentation of AF. A significant minority of patients with lone AF lack frequent focal triggers, and in them, the late atrial signal amplitude is reduced, possibly signifying a wider degenerative process in the LA. In lone AF, natural impulse propagation to LA during sinus rhythm goes through one or more of the principal pathways described. The BB is the most common route, but in one-third, the earliest LA activation occurs outside the BB. Susceptibility to paroxysmal lone AF is associated with propagation of the atrial signal via the margin of the FO or via multiple pathways. When conduction occurs via the BB, it is related with prolonged atrial activation. Thus, altered and alternative conduction pathways may contribute to pathogenesis of lone AF. There is growing evidence of variability in genesis of AF also within lone paroxysmal AF. Present study suggests that this variation may be reflected in cardiac signal pattern. Recognizing the distinct signal profiles may assist in understanding the pathogenesis of AF and identifying subgroups for patient-tailored therapy.

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The authors investigated various life history aspects of 19 rockfish species (Sebastes chlorostictus, S. constellatus, S. dalli, S. elongatus, S. ensifer, S. entomelas, S. flavidus, S. goodei, S. hopkinsi, S. levis, S. melanostomus, S. miniatus, S. ovalis, S. paucispinis, S. rosaceus, S. rosenblatti, S. rufus, s. saxicola, S. semicinctus) from the southern California Bight. These aspects included depth distribution, age-length relationships (of 7 species), length-weight relationships, size at first maturity, spawning season, and fecundity. Growth rates of female S. elongatus, S. hopkinsi, S. ova/is, S. saxicola, and S. semicinctus were higher than male conspecifics. Multiple spawning per season was found in 12 species. Generally, most species spawned between late winter and early summer, though there was some spawning within the genus throughout the year. Spawning season duration ranged from 2 (S. flavidus) to 10 months (S. paucispinis). Spawning seasons tended to start earlier in the year and be of longer duration in the southern California Bight, compared to published data on central California conspecifics. Males matured at a smaller length in 7 of the 17 species studied. Maximum fecundities ranged from 18,000 (S. dalll) to about 2,680,000 (S. levis). (PDF file contains 44 pages.)

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Rockfish (Sebastes spp.) juveniles are often difficult to identify by using morphological characters. This study independently applies morphological characters and a key based on mitochondrial restriction site variation to identify juvenile rockf ishes collected in southern California during juvenile rockfish surveys. Twenty-four specimens of Sebastes were examined genetically without knowledge of the morphological assignment. Seventeen fish were identified genetically as S. semicinctus, S. goodei, S. auriculatus, S. jordani, S. levis, S. rastrelliger, and S. saxicola. Identities for the remaining fish were narrowed to two or three species: 1) three fish were either S. carnatus or S. chrysomelas; 2) one fish was either S. chlorosticus, S. eos, or S. rosenblatti; and 3) three fish could have been either S. hopkinsi or S. ovalis, the latter for which we now have distinguishing mitochondrial markers. The genetic and morphological assignments concurred except for the identity of one fish that could only be narrowed down to S. hopkinsi or S. semicinctus by using morphological characters. Genetics excluded more species from multispecies groupings than did the morphological approach, especially species within the subgenus Sebastomus. Species in the genetically unresolvable groups may be similar because of recent divergence or because of interspecies introgression.

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黄精族隶属于广义的百合科,通过对其研究历史的回顾,指出了它目前存在的问题,即(1)族的概念和范围不清、(2)属间的界限模糊、(3)族内各属的系统排列不明确.针对这些问题,本文从形态、解剖、胚胎、孢粉和细胞方面对族内各类群进行了野外调查和一些实验工作,本此基础上,并结合前人的工作,对黄精族的系统发育进行了探讨. 一, 形态本文通过黄精族各属大量标本,尤其是国产类群标本的认真研究,并结合6个多月的野外调查资料,分析了本族植物21个形态性状及其状态在属间和属内的分布,指出了一些性状的稳定性及其系统学价值, 二,解剖本文对黄精族5属17个种的茎、根状茎及子房进行了解剖学观察,同时对7属41种植物的叶表皮进行光镜观察,并对5属12种的叶表皮进行扫描电镜的观察,结果表明:(1)七筋姑属花葶的维管柱缺乏纤维鞘,这和本族其它类群不同.(2)扭柄花属、黄精属、竹根七属和鹿药属植物子房中具草酸盐针晶,而七筋姑属和万寿草属未发现这种晶体.(3)本族植物的气孔器均为无规则型,但邻近细胞及其周壁的形状在不同类群中是不同的,据此我们将本族叶表皮划分为七个类型,并认为叶表皮邻近细胞呈多边形、周壁直是黄精族叶表皮最基本的形式. 三,胚胎本文对黄精族3属4种植物以及铃兰(Convallaria majalis)进行了胚胎学研究,其中小玉竹(Polygonatum humile)和铃兰得到了完整的胚胎学资料,实验结果显示(1)黄精族植物小孢子发生过程中胞质分裂均为连续型,胚乳发育为核型;(2)小玉竹的胚囊发育方式为葱型,鹿药(Smilacina japonica)为英地百合型.万寿竹(Disporum cantoniense)和长蕊万寿竹(D. bodinicri)为蓼型,铃兰为葱型或英地百合型;(3)周缘细胞的有或无在小玉竹,鹿药和铃兰中是不稳定的. 四,孢粉本文对6属42种植物花粉进行了扫描电镜观察,结果表明(1)萌发孔的类型和数目在本族中不稳定,系统价值不大;(2)花粉外壁纹饰比较稳定,是一个十分重要的分类学性状.我们将黄精族植物的花粉外壁纹饰划分为9种类型.并认为孔穴型是一种原始类型,其它类型是由它演化而成, 五,细胞在前人工作的基础上,通过与其它性状的综合分析,本文认为黄精族植物有五种原始染色体基数:七筋姑属x=7;万寿竹属和扭柄花属x=8;黄精属x=9:鹿药属和舞鹤草属x= 18;竹根七属x=20. 在上述实验结果的基础上,结合前人的工作,对黄精族的各种性状进行了分析,本文得出如下结论: 1.包括万寿竹属、扭柄花属、七筋姑属、黄精属、竹根七属、鹿药属和舞鹤草属的黄精族是一个单系类群. 2.本文赞同Dahlgren et al.(1985),Tahktajan (1987)对黄精族系统位置的处理,即它与铃兰族,蜘蛛抱蛋族和沿阶草族关系较近,且共同组成铃兰科.相比之下,黄精族是该科中比较原始的一个族. 3.本文在性状分析的基础上,总结出20个比较稳定、系统价值较大的性状,并指出了它们的演化趋势;同时总结出黄精族原始类群应具有如下特征:(1).具细线形根状茎;(2).地上茎具分枝;(3).叶茎生;(4).具腋生的圆锥或总状花序;(5).花为三基数,花被片离生;(6).花被片具多条开放型脉;(7) .胚珠多数;(8).胚囊发育为单孢子型;(9).厚珠心胚珠;(10) .花粉外壁具覆盖层. 4.本文认为黄精族植物可分为三支:一是以染色体基数x=9及其衍生的类群,包括黄精属,竹根七属、鹿药属和舞鹤草属;二是以x=8为基数的一支,它包括万寿竹属和扭柄花属;三是七筋姑属单独形成的一支,它的染色体基数x=7.同时认为万寿竹属是本族比较原始的一个类群. 5.本文认为东亚北方是黄精族植物起源地. 6.本文赞同汤彦承(1978.见汪发缵、唐进1978)对卵叶扭柄花(Streptopus ovalis (Ohwi) Wang et Y.C.Tang)的分类学处理,而不赞同汪发缵、唐进(1983)把金佛山鹿药(Smilacina jinfoshanica Wang et Tang)从鹿药属转隶至黄精属的观点. 7.本文认为鹿药属和舞鹤草属亲缘关系较近,但区别特征明显,从而不赞同LaFrankie (1986),李恒(1990)将二者合并的观点。

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为了比较不同地域萤火虫荧光素酶基因的进化关系,通过GenBank中已知的荧光素酶基因保守区段设计引物,利用5'-RACE(rapid-amplification of cDNA ends)和3'-RACE技术克隆了来自云南省文山州和西双版纳州的同种卵黄萤荧光素酶基因cDNA和全基因序列.来自不同地域的2种卵黄萤荧光素酶在基因序列上存在3个不同碱基位点,但是它们编码的荧光素酶只存在1个不同的氨基酸.卵黄萤荧光素酶基因全长(从起始密码子到终止密码子)1998 bp,包含7个外显子,6个内含子,其cDNA序列共1976 bp,包含102 bp 5'UTR(untranslated region)、1635 bp的荧光素酶基因开放阅读框和239 bp的3'UTR序列.卵黄萤荧光素酶基因的开放阅读框编码1个544个氨基酸的蛋白质,比同属的其它几种荧光素酶少4个氨基酸.来自2个不同地域的卵黄萤荧光素酶在进化上是比较保守的,它们与北美萤火虫Photinus pyralis荧光素酶在碱基序列上分别有62.9%和63%相似性.