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31.
暗期干扰对环带锦斑蛾滞育诱导的影响   总被引:1,自引:0,他引:1  
在短日照条件下,环带锦斑蛾Pseudopidorus fasciata以4龄幼虫进入冬季滞育,其滞育诱导的临界暗长为10.5 h。本文系统测试了暗期干扰实验[即在暗期采用单一的光(亦称光脉冲)干扰光周期反应的实验]对环带锦斑蛾幼虫滞育的抑制影响。幼虫孵化后在25℃,短日照L9∶D15(光9 h∶暗15 h),L10∶D14、L11∶D13及L12∶D12暗期的不同时段给予1 h或30 min光脉冲干扰。结果表明: 滞育是否被抑制主要取决于暗期的长度,当光脉冲干扰前的暗长(D1)或光脉冲干扰后的暗长(D2)超过临界暗长(10.5 h)时,100%的幼虫被诱导进入滞育;当D1D2都短于(或等于)临界暗长时,滞育不同程度被抑制,抑制的效果则取决于所干扰的光周期、光脉冲的长度和光脉冲落入的位点。结果说明该虫滞育诱导的暗期干扰反应是基于临界暗长的时间测量。  相似文献   
32.
Most bees forage for floral resources during the day, but temporal patterns of foraging activity vary extensively, and foraging in dim-light environments has evolved repeatedly. Facultative dim-light foraging behaviour is known in five of nine families of bees, while obligate behaviour is known in four families and evolved independently at least 19 times. The light intensity under which bees forage varies by a factor of 108, and therefore the evolution of dim-light foraging represents the invasion of a new, extreme niche. The repeated evolution of dim-light foraging behaviour in bees allows tests of the hypothesis that behaviour acts as an evolutionary pacemaker. With the exception of one species of Apis , facultative dim-light foragers show no external structural traits that are thought to enable visually mediated flight behaviour in low-light environments. By contrast, most obligate dim-light foragers show a suite of convergent optical traits such as enlarged ocelli and compound eyes. In one intensively studied species ( Megalopta genalis ) these optical changes are associated with neurobiological changes to enhance photon capture. The available ecological evidence suggests that an escape from competition for pollen and nectar resources and avoidance of natural enemies are driving factors in the evolution of obligate dim-light foraging.  相似文献   
33.
云南新平哀牢山秋季夜间网捕鸟类的影响因素   总被引:1,自引:0,他引:1  
2007-09-05—2007-11-05和2008-09-03—2008-11-07期间,在云南省新平县哀牢山金山丫口(23º57’ N, 101º30’E)对影响秋季夜间网捕鸟类组成因素进行了调查。主要利用温湿度表和定性观察对各因素进行判断。其研究结果表明, 地理特点是影响夜间网捕鸟类种类的主要因素;气象条件是影响夜间网捕鸟类种类和数量的重要因素。气象条件中的风向、风力、雾以及月相周期对夜间网捕鸟类数量和种类的影响极其显著(P<0.01)。风向的影响比风力大,其中,在西南风大雾新月或者在西南风大雾残月期间,夜间网捕鸟类数量和种类最多;光也是夜间网捕鸟类的必要条件。然而,温湿度对夜间网捕鸟类数量和种类影响不显著。  相似文献   
34.
We have analyzed the stress-associated proteins in a high-rubber-yielding guayule (Parthenium argentatum Gray cv. 11591) leaves. Protein profiles in leaf fractions, resolved by SDS-PAGE and visualized by Coomassie Brilliant Blue staining, were different under various stresses. Changes in 25, 34 and 74 kDa polypeptides were noticed in response to low night temperature treatment while 24, 40, 47 and 81 kDa proteins responded to low irradiance. 23, 50, 75 and 82 kDa proteins were altered in response to drought stress. Certain proteins may play a significant role in the acquisition of tolerance in parenchyma cells of guayule leaves and might be useful markers to study adaptation in guayule plants. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   
35.
The combined effect of temperature (5, 10, 15, and 20°C) and illumination (40 and 60 mE/(m2 s)) on growth and reproduction of the green marine alga Ulva fenestrata P. et R. from the sublittoral zone of Amursky Bay, Sea of Japan, was studied in the laboratory environment in the months April–July, 2000. It was demonstrated that the temperature of 5°C and illumination of 40 mE/(m2 s) are the most favorable for maintaining the vegetative mass of the algae. A water temperature of 10°C and illumination of 40 mE/(m2 s) are the optimum conditions for vegetative growth of U. fenestrata thalli. A temperature decrease and increase by 5°C reduces the growth rate on average by 30%. Sporo- and gametogenesis in U. fenestrata are the most regular (every 10 days) and occupy the greatest disk area at a water temperature of 15°C and illumination of 40 mE/(m2 s). Vegetative growth of thalli is sharply inhibited at the stage of cell preparation to gametogenesis a day before the beginning of gamete formation.  相似文献   
36.
High-latitude environments, such as the Antarctic McMurdo Dry Valley lakes, are subject to seasonally segregated light–dark cycles, which have important consequences for microbial diversity and function on an annual basis. Owing largely to the logistical difficulties of sampling polar environments during the darkness of winter, little is known about planktonic microbial community responses to the cessation of photosynthetic primary production during the austral sunset, which lingers from approximately February to April. Here, we hypothesized that changes in bacterial, archaeal and eukaryotic community structure, particularly shifts in favor of chemolithotrophs and mixotrophs, would manifest during the transition to polar night. Our work represents the first concurrent molecular characterization, using 454 pyrosequencing of hypervariable regions of the small-subunit ribosomal RNA gene, of bacterial, archaeal and eukaryotic communities in permanently ice-covered lakes Fryxell and Bonney, before and during the polar night transition. We found vertically stratified populations that varied at the community and/or operational taxonomic unit-level between lakes and seasons. Network analysis based on operational taxonomic unit level interactions revealed nonrandomly structured microbial communities organized into modules (groups of taxa) containing key metabolic potential capacities, including photoheterotrophy, mixotrophy and chemolithotrophy, which are likely to be differentially favored during the transition to polar night.  相似文献   
37.
姜宁  余昌霞  董浩然  周峰  李正鹏  李玉 《菌物学报》2021,40(12):3169-3181
香菇Lentinula edodes是世界第一大食药用真菌,随着香菇工厂化生产逐渐规模化、周年化、标准化,香菇工厂对环境集约化及智能化控制的要求也越来越高。光照是香菇生长发育过程中重要的环境因素,本研究将转色后的香菇菌棒分别置于红光(R)、绿光(G)、蓝光(B)、红绿光(RG)、红蓝光(RB)、绿蓝光(GB)、红绿蓝光(RGB)7种光线下照射培养,以黑暗处理(CK)的香菇菌棒作为对照,探究不同光质光照对香菇子实体农艺性状与质构品质的影响。结果表明:红绿蓝光照射下单个菌棒蕾数最多,为24.33个,黑暗处理下蕾数最少,16.17个;蓝光和红绿蓝光照射下子实体产量较高,达到228.12g/棒和220.82g/棒;红光条件下子实体产量最低,为173.53g/棒。不同光质光照对香菇子实体的形态特征有影响,红光和黑暗环境会影响子实体菌盖和菌柄的颜色,使其颜色偏淡,色彩饱和度增加,并且促使菌柄的生长。绿光和蓝光照射下子实体农艺性状和质构品质好。本研究表明蓝光可以作为香菇工厂化生产出菇阶段的首选光质。  相似文献   
38.
Single-molecule detection and tracking is important for observing biomolecule interactions in the microenvironment. Here we report selective plane illumination microscopy (SPIM) with single-molecule detection in living organisms, which enables fast imaging and single-molecule tracking and optical penetration beyond 300 μm. We detected single nanocrystals in Drosophila larvae and zebrafish embryo. We also report our first tracking of single quantum dots during zebrafish development, which displays a transition from flow to confined motion prior to the blastula stage. The new SPIM setup represents a new technique, which enables fast single-molecule imaging and tracking in living systems.  相似文献   
39.
Significant advances in fluorescence microscopy tend be a balance between two competing qualities wherein improvements in resolution and low light detection are typically accompanied by losses in acquisition rate and signal-to-noise, respectively. These trade-offs are becoming less of a barrier to biomedical research as recent advances in optoelectronic microscopy and developments in fluorophore chemistry have enabled scientists to see beyond the diffraction barrier, image deeper into live specimens, and acquire images at unprecedented speed. Selective plane illumination microscopy has provided significant gains in the spatial and temporal acquisition of fluorescence specimens several mm in thickness. With commercial systems now available, this method promises to expand on recent advances in 2-photon deep-tissue imaging with improved speed and reduced photobleaching compared to laser scanning confocal microscopy. Superresolution microscopes are also available in several modalities and can be coupled with selective plane illumination techniques. The combination of methods to increase resolution, acquisition speed, and depth of collection are now being married to common microscope systems, enabling scientists to make significant advances in live cell and in situ imaging in real time. We show that light sheet microscopy provides significant advantages for imaging live zebrafish embryos compared to laser scanning confocal microscopy.  相似文献   
40.
雪灾干扰后林冠开阔度对黄心树幼苗更新的影响   总被引:1,自引:0,他引:1  
冯力  陈斯  夏尚文  王博 《生态学杂志》2020,39(3):786-793
幼苗更新是森林更新的关键过程,而林窗对于植物幼苗更新、生长及最终存活具有重要影响。极端气候事件会使森林在短时间内形成大量林窗,从而显著影响林内幼苗更新和存活。本研究以2015年雪灾后云南省哀牢山中山湿性常绿阔叶林优势种黄心树(Machilus bombycina)幼苗为对象,对194个1 m×1 m样方中的幼苗生长和死亡动态进行为期4年的监测,利用线性混合模型(LMM)和广义线性混合模型(GLMM),分析林冠开阔度对幼苗高度相对生长率、叶片相对增长率、新增率和死亡率的影响,研究了雪灾干扰后的林冠开阔度对植物幼苗更新的影响。结果表明:(1)林冠开阔度随时间推移逐渐变小(20.07%~9.97%),且速度由快到慢;(2)2015-2016年,已有幼苗高度相对生长率与林冠开阔度呈显著正相关(P<0.05),其余年份两者间无显著相关性;2016-2017年已有幼苗叶片相对增长率与林冠开阔度呈显著正相关(P<0.05),其余年份两者间无显著相关性;(3)林冠开阔度与幼苗新增率和死亡率均无显著相关性。本研究表明,雪灾后造成的林冠开阔度增加有利于黄心树幼苗生长。  相似文献   
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