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81.
Phytoplankton blooms are elements in repeating annual cycles of phytoplankton biomass and they have significant ecological and biogeochemical consequences. Temporal changes in phytoplankton biomass are governed by complex predator–prey interactions and physically driven variations in upper water column growth conditions (light, nutrient, and temperature). Understanding these dependencies is fundamental to assess future change in bloom frequency, duration, and magnitude and thus represents a quintessential challenge in global change biology. A variety of contrasting hypotheses have emerged in the literature to explain phytoplankton blooms, but over time the basic tenets of these hypotheses have become unclear. Here, we provide a “tutorial” on the development of these concepts and the fundamental elements distinguishing each hypothesis. The intent of this tutorial is to provide a useful background and set of tools for reading the bloom literature and to give some suggestions for future studies. Our tutorial is written for “students” at all stages of their career. We hope it is equally useful and interesting to those with only a cursory interest in blooms as those deeply immersed in the challenge of understanding the temporal dynamics of phytoplankton biomass and predicting its future change.  相似文献   
82.
Reproductive cycles in a reared strain of the mummichog, a daily spawner   总被引:1,自引:0,他引:1  
Annual, lunar, and diel samplings were taken from a strain of mummichog (Arasaki strain) reared in outdoor tanks under natural conditions, to examine gonadal maturity. Gonads of yearling fish were quite immature in September. During late autumn and winter, a gradual increase in the GSI of both sexes was observed, and the growth of cortical alveolus phase oocytes in females and basal spermatogenesis in males progressed. In late February, a rapid increase in the GSI of both sexes, vitellogenesis in females, and active spermatogenesis in males, occurred. The spawning period of the yearling fish was from late March to August judging from the presence of milt-producing males and ovulated females. The spawning period of the underyearling fish started in the same month as the yearlings, but terminated 1 month earlier. Plasma levels of oestradiol-17 β (E2) in females and testosterone in males were high during the spawning period in the yearlings. In the underyearlings, however, E2 levels peaked in early spring, and declined in the latter part of the spawning period. Neither a lunar nor semilunar cycle was evident in the reproductive activity of this fish, which proved to be a typical daily spawner. Females showed an apparent daily reproductive cycle; oocyte maturation commenced at about 1200 hours, germinal vesicle breakdown (GVBD) occurred at about 2400 hours, and ovulation was completed by 2400 hours, 24 h after GVBD. Such clear annual and daily reproductive cycles make this strain of mummichog a suitable model for the study of environmental and endocrine regulation of reproductive cycles in marine and estuarine teleosts.  相似文献   
83.
玉米农田水热通量动态与能量闭合分析   总被引:16,自引:0,他引:16       下载免费PDF全文
 基于锦州农田生态系统野外观测站玉米农田涡度相关系统近2年的水热通量观测数据,分析了玉米农田水热通量的日际、年际变化特征及其能量 平衡状况。结果表明: 1)玉米农田水热通量日变化与年变化均呈单峰型二次曲线,峰值出现在12∶00~13∶00左右,与净辐 射的日变化、年 变化同步,潜热通量最大可达到655 w•m-2(出现在2004年7月8日1 3∶00),显热通量最大值大约为369 w•m-2(出现在2004年5月31日13∶ 00)。2)玉米农田水热通量强度与局地的环境条件密切相关:显热通量与大气压的年变化呈负相关,潜热通量与气温年变化呈正相关。水热通 量受降水的影响较大,对降水的反应较敏感。其中,潜热通量(LE)不仅与降水的强度有关,而且随着降水的季节分布的不同而出现不同的响应 ,即使同样量级的降水在夜间与白天对LE的影响也是不同的。3)玉米农田通量观测呈现能量不闭合现象,主要原因可能是未包含0~5 cm土壤 热储量与冠层热储量,造成大约15.5%的能量损失。  相似文献   
84.
The morphological variation in the annual killifish Austrolebias luteoflamulatus was studied using meristic and pigmentation characters analysed with univariate and multivariate analysis, and morphometric characters analysed with a geometric morphometry approach (thin plate spline). The results showed that morphological variation in this species was associated with a geographical pattern. In the case of meristic and pigmentation characters, the strongest distinction occured in males, while females were more similar among different drainages. Males from Rocha (eastern Uruguay) exhibited the greatest differences from the others. The number of dorsal fin rays and bars on the flanks were the characters that contributed most to this segregation. When morphometrics were considered, the three populations analysed could be distinguished well from each other in both sexes. Some of the characters that contributed to this pattern were dorsal fin origin, position of eyes and length of snout. Since pigmentation characteristics and some characters of the dorsal fin in males were involved in the differences observed, sexual selection could have played an important role in the differentiation of populations of this species. Since Austrolebias luteoflamulatus has a restricted geographical distribution, conservation of this species should include consideration of these populations individually since they might represent different evolutionary units.  相似文献   
85.
While substantial cold-season respiration has been documented in most arctic and alpine ecosystems in recent years, the significance of cold-season photosynthesis in these biomes is still believed to be small. In a mesic, subartic heath during both the cold and warm season, we measured in situ ecosystem respiration and photosynthesis with a chamber technique at ambient conditions and at artificially increased frequency of freeze–thaw (FT) cycles during fall and spring. We fitted the measured ecosystem exchange rates to respiration and photosynthesis models with R2-values ranging from 0.81 to 0.85. As expected, estimated cold-season (October, November, April and May) respiration was significant and accounted for at least 22% of the annual respiratory CO2 flux. More surprisingly, estimated photosynthesis during this period accounted for up to 19% of the annual gross CO2 uptake, suggesting that cold-season photosynthesis partly balanced the cold-season respiratory carbon losses and can be significant for the annual cycle of carbon. Still, during the full year the ecosystem was a significant net source of 120 ± 12 g C m−2 to the atmosphere. Neither respiration nor photosynthetic rates were much affected by the extra FT cycles, although the mean rate of net ecosystem loss decreased slightly, but significantly, in May. The results suggest only a small response of net carbon fluxes to increased frequency of FT cycles in this ecosystem.  相似文献   
86.
Perennial crops can deliver a wide range of ecosystem services compared to annual crops. Some of these benefits are achieved by lengthening the growing season, which increases the period of crop water and nutrient uptake, pointing to a potential role for perennial systems to mitigate soil nitrous oxide (N2O) emissions. Employing a micrometeorological method, we tested this hypothesis in a 3‐year field experiment with a perennial grass‐legume mixture and an annual corn monoculture. Given that N2O emissions are strongly dependent on the method of fertilizer application, two manure application options commonly used by farmers for each crop were studied: injection vs. broadcast application for the perennial; fall vs. spring application for the annual. Across the 3 years, lower N2O emissions (P < 0.001) were measured for the perennial compared to the annual crop, even though annual N2O emissions increased tenfold for the perennial after ploughing. The percentage of N2O lost per unit of fertilizer applied was 3.7, 3.1 and 1.3 times higher for the annual for each consecutive year. Differences in soil organic matter due to the contrasting root systems of these crops are probably a major factor behind the N2O reduction. We found that a specific manure management practice can lead to increases or reductions in annual N2O emissions depending on environmental variables. The number of freeze‐thaw cycles during winter and the amount of rainfall after fertilization in spring were key factors. Therefore, general manure management recommendations should be avoided because interannual weather variability has the potential to determine if a specific practice is beneficial or detrimental. The lower N2O emissions of perennial crops deserve further research attention and must be considered in future land‐use decisions. Increasing the proportion of perennial crops in agricultural landscapes may provide an overlooked opportunity to regulate N2O emissions.  相似文献   
87.
88.
Summary DNA fingerprinting of nestlings ofFalco cherrug was used to determine indirectly the survival of the corresponding adult parent birds, which are difficult to catch in sufficient numbers. This approach is possible because Saker falcons show a high degree of site and mate tenacity. DNA profiles of nestlings from the same territory but from different years were compared. Three patterns of band-sharing coefficients between broods from the same territory were found: if band-sharing coefficients within and between broods from consecutive years were similar but significantly different from those of unrelated birds, it indicated that all young were full sibs and that neither adult was replaced between years. If band-sharing coefficients between broods at the same site indicated no relatedness across years and were equal to those of unrelated birds, then both breeding partners apparently had changed. If the band-sharing coefficients between broods of the same territory and consecutive years were significantly lower than those of full sibs, but higher than those of unrelated birds, the loss of one adult bird was indicated. The analysis of 32 broods (years 1993 to 1997) provided a minimal estimate for annual adult survival of 82% for a wild population of Saker Falcons in Kazakhstan.
Abschätzung der jährlichen Überlebensraten des Sakerfalken(Falco cherrug) mittels DNA-Fingerprinting
Zusammenfassung Um die Gefährdung und Populationsdynamik des Sakerfalken (Falco cherrug) beurteilen zu können, benötigen wir genaue Angaben zu Mortalität und Überlebensraten. Während es bei dieser Art relativ einfach ist, Nestlinge zu fangen, ist es nahezu unmöglich, eine ausreichend große Zahl an Altvögeln zu markieren, um durch Wiederfang oder Ringfundmeldungen die jährliche Überlebensrate zu ermitteln. Durch DNA-Fingerprinting von Jungfalken haben wir versucht, die minimale Überlebensrate von Altfalken indirekt zu bestimmen. Dieser Forschungsansatz wird dadurch möglich, daß die Sakerfalken eine hohe Philopatrie aufweisen und jedes Jahr im selben Revier brüten. Wenn man mehrere Jahre lang Blutproben der Jungvögel aus denselben Revieren sammelt, so kann man mittels DNA Fingerprinting indirekt ermitteln, ob die jeweiligen Altvögel identisch waren oder gewechselt haben: Vergleicht man die Band-Sharing-Koeffizienten (BSK) von Jungvögeln von zwei oder mehr Jahren aus demselben Revier, so ergeben sich drei Muster: Wenn die BSK-Werte innerhalb der Bruten und zwischen den Bruten identisch aber signifikant verschieden von denen nicht verwandter Vögel sind, so handelt es sich bei den Jungvögeln um Vollgeschwister; demnach sind die Altvögel identisch geblieben, d. h. sie haben von einem Jahr zum nächsten überlebt. Wenn die BSK-Werte zwischen zwei Bruten aus demselben Revier einen Wert annehmen, wie man ihn für unverwandte Tiere ermittelt, so müssen die Eltern gewechselt haben. Liegen die Werte zwischen zwei Bruten signifikant höher als die von nicht verwandten Tieren, aber niedriger als diejenigen von Vollgeschwistern, so ist vermutlich 1 Altvogel gewechselt worden. Die Analyse von 32 Bruten des Sakerfalken aus Kasachstan zeigt, daß die minimale jährliche Adultüberlebensrate bei 82% liegt.
  相似文献   
89.
环境因素对油松林木材生产影响的定量评价   总被引:1,自引:1,他引:0  
肖瑜 《应用生态学报》1990,1(3):193-200
本文使用多元统计分析方法, 定量评价了环境因素对陕西省油松人工林木材生产的影响程度。在地理-地形-土壤环境因素组中, 土壤类型对油松林的生长影响最大, 占38.75%。在气候因素组中, 7月平均气温对陕南及秦岭一带油松林的生长影响最大, 占34.46%。在陕北地区, 对油松林生长影响最大的因素是年降雨量, 占27.8%。不同气候因素作用于不同地区森林的程度有较大差异。根据综合环境因素对油松林木材生产的影响及林分生长表现, 在陕西省划分了3个油松生长区:(1)陕南及秦岭油松生长区;(2)关中及陕北南部生长区;(3)陕北北部生长区。并对各区的特点进行了总结。  相似文献   
90.
Plants are sessile organisms and, consequently, are exposed to a plethora of stresses in their local habitat. As a result, different populations of a species are subject to different selection pressures leading to adaptation to local conditions and intraspecific divergence. The annual brassicaceous plant Arabidopsis thaliana is an attractive model for ecologists and evolutionary biologists due to the availability of a large collection of resequenced natural accessions. Accessions of A. thaliana display one of two different life cycle strategies: summer and winter annuals. We exposed a collection of 308 European Arabidopsis accessions, that have been genotyped for 250K SNPs, to a range of stresses: one abiotic stress (drought), four biotic stresses (Pieris rapae caterpillars, Plutella xylostella caterpillars, Frankliniella occidentalis thrips and Myzus persicae aphids) and two combined stresses (drought plus P. rapae and Botrytis cinerea fungus plus P. rapae). We identified heritable genetic variation for responses to the different stresses, estimated by narrow‐sense heritability. We found that accessions displaying different life cycle strategies differ in their response to stresses. Winter annuals are more resistant to drought, aphids and thrips and summer annuals are more resistant to P. rapae and P. xylostella caterpillars. Summer annuals are also more resistant to the combined stresses of drought plus P. rapae and infection by the fungus Botryris cinerea plus herbivory by P. rapae. Adaptation to drought displayed a longitudinal gradient. Finally, trade‐offs were recorded between the response to drought and responses to herbivory by caterpillars of the specialist herbivore P. rapae.  相似文献   
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