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1.
Abstract – Foraging juvenile fish with relatively high food demands are usually vulnerable to various aquatic and avian predators. To compromise between foraging and antipredator activity, they need exact and reliable information about current predation risk. Among direct predator-induced cues, visual and olfactory signals are considered to be most important. Food intake rates and prey-size selectivity of laboratory-reared, naive young-of-the-year (YOY) perch, Perca fluviatilis , were studied in experiments with Daphnia magna of two size classes: 2.8 and 1.3 mm as prey and northern pike, Esox lucius , as predator. Neither total intake rate nor prey-size selectivity was modified by predator kairomones alone (water from an aquarium with a pike was pumped into the test aquaria) under daylight conditions. Visual presentation of pike reduced total food intake by perch. This effect was significantly more pronounced (synergistic) when visual and olfactory cues were presented simultaneously to foraging perch. Moreover, the combination of cues caused a significant shift in prey-size selection, expressed as a reduced proportion of large prey in the diet. Our observations demonstrate that predator-induced olfactory cues alone are less important modifiers of the feeding behaviour of naive YOY perch than visual cues under daylight conditions. However, pike odour acts as a modulatory stimulus enhancing the effects of visual cues, which trigger an innate response in perch. 相似文献
2.
为建立一种快速检测鸭Ⅰ型肝炎病毒(DHV I)的方法,本研究根据基因库中DHV Ⅰ基因的保守序列,设计特异性环介导等温扩增(LAMP)引物,建立了DHV I的RT-LAMP可视化检测方法。该方法的敏感性可达10fg,高于常规PCR方法 100倍;全部反应可在1 h内完成;可以通过肉眼观察颜色直接判定结果;对其它鸭常见病原体的检测结果均为阴性。实验结果表明建立的RT-LAMP方法简便、快速、灵敏、特异,可用于DHV Ⅰ感染的快速检测。 相似文献
3.
T. Batey 《Soil Use and Management》2015,31(1):60-66
Since the 1970s a network of underground pipes, up to 1200 mm diameter, has been installed in the UK to transmit crude oil to refineries and gas from onshore terminals for distribution. Chosen routes are subject to significant constraints. Current techniques for pipe installation involve topsoil removal and storage. Trench depth is set to allow a cover of 1200 mm overburden after pipes have been installed. The heavy machinery involved results in severe compaction of exposed subsoil. Subsoil is loosened comprehensively and topsoil replaced. Existing field drains are reconnected, and, if necessary, new drains with gravel backfill installed. Pipe installation usually takes place between April and October. Preventative measures to limit compaction during installation are not a practical option. If subsequent arable crops or grass are poorer or drainage more defective than before disturbance, the loss is assessed and compensation paid. To determine the cause of the loss >60, investigations have been made throughout the UK. Soil physical properties were assessed in an open trench using visual and tactile methods. Consistently, severe compaction in the subsoil was identified as the cause of poor crop growth or drainage; it was not observed in the topsoil. Specific recommendations for remedial action were made based on location, depth and severity of the compaction. These included the installation of additional land drains, increasing the amount of gravel above the drains, or further subsoil loosening orientated to cross gravel backfill. After appropriate remedial action, net compensation for crop losses was frequently small or negligible. 相似文献
4.
骨形态发生蛋白15(bone morphogenetic protein 15,BMP15)基因突变对绵羊排卵率、产仔数以及繁殖力有很大影响,本研究旨在建立快速可视化检测BMP15基因B2突变的技术。将改良的扩增阻滞突变系统(amplification refractory mutation system,ARMS)与核酸染料SYBR Green Ⅰ结合,针对BMP15基因B2突变设计ARMS特异性引物,使引物下游3'端的最后一个碱基为A,并在下游引物3'端的第3位碱基处设计额外的错配,以提高引物的特异性;经ARMS PCR扩增后,向产物中加入SYBR Green Ⅰ,通过肉眼观察PCR管内的颜色变化来检测BMP15基因的B2突变。经测序发现所采集的样本均为野生型,因此,利用重叠延伸PCR构建BMP15基因B2突变型模板,测序结果显示BMP15基因B2突变型模板构建成功。ARMS PCR结果显示,ARMS特异性引物能够只扩增突变型模板,而不会扩增野生型模板,且扩增效果良好。ARMS PCR扩增后加入SYBR Green Ⅰ发现已知野生型模板与阴性对照一致,呈SYBR Green Ⅰ原始颜色橙黄色,而已知突变型模板呈亮绿色,且色差明显,肉眼可辨。用建立的可视化检测BMP15基因B2突变的技术检测50个小尾寒羊基因组DNA (随机向其中20个样本中加入构建的BMP15基因B2突变型模板),将可视化检测的突变型样本编号与混合样本时记录的编号对比,结果表明该技术能够准确检测绵羊BMP15基因的B2突变,且准确率高达100%。将构建的BMP15基因B2突变型的模板进行梯度稀释,对本试验可视化检测体系的灵敏度进行检测,发现ARMS可视化检测技术的灵敏度达到0.006 ng/μL。因此,本研究建立的技术能够可视化地检测绵羊BMP15基因B2突变,且准确率高,有望为高繁殖力绵羊的选育提供技术支持。 相似文献
5.
6.
Eugenia Fezza Joe M. Roberts Toby J. A. Bruce Lael E. Walsh Michael T. Gaffney Tom W. Pope 《Pest management science》2023,79(11):4635-4643
BACKGROUND
Monitoring is an integral component of integrated pest management (IPM) programmes used to inform crop management decisions. Vine weevil, Otiorhynchus sulcatus F. (Coleoptera: Curculionidae), continues to cause economically significant losses in horticultural crops due to an inability to reliably detect the presence of this species before crop damage occurs. To improve vine weevil monitoring we investigated the behavioural responses of adult vine weevils to visual (monitoring tool shade/colour, height and diameter as well as the effect of monitoring tool and plant density) and olfactory (host plant and conspecifics) cues under glasshouse conditions.RESULTS
Monitoring tool shade, height and diameter all influenced monitoring tool efficacy, with individuals exhibiting a preference for black, tall and wide monitoring tools. The total number of individuals recorded in monitoring tools increased with monitoring tool density. By contrast, plant density did not influence the number of individuals recorded in monitoring tools. Yew-baited monitoring tools retained a larger number of individuals compared to unbaited ones. Similarly, more vine weevils were recorded in monitoring tools baited with yew and conspecifics than in unbaited monitoring tools or those baited with only yew. Baiting monitoring tools with conspecifics alone did not enhance the number of vine weevils recorded in monitoring tools.CONCLUSIONS
Our study confirms that visual and olfactory cues influence vine weevil behaviour. This provides information on key factors that influence vine weevil monitoring tool efficacy and can be used to inform the development of a new monitoring tool for this pest. © 2023 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry. 相似文献7.
8.
基于视觉的苗期作物和杂草的图像分割技术逐渐成熟,通过视觉技术对苗期作物进行精准识别和定位,是实现株间除草的关键技术和难点。作物的精准识别首先需要利用颜色特征将图像中的作物、杂草和土壤背景进行分割;其次利用实际识别对象的位置特征,形状特征,纹理特征,光谱特征等构造新的特征向量,结合成熟的分类算法对作物和杂草进行特征分类识别。针对棉苗和大豆苗,主要提取位置特征、形状特征,多采用支持向量机为主分类算法;针对玉米,主要提取位置特征、纹理特征,多采用人工神经网络为主的分类算法;针对部分蔬菜苗,主要提取形状特征、光谱特征,多采用算法结合的优化算法,具体实现时需要根据离线样本学习的结果来平衡苗期作物的识别准确率与实时性。在目前的算法中,主要存在三方面的问题:作物特征提取效果易受到遮挡、光照等干扰;分类算法目前还不能得到非常令人满意的准确性和实时性;目前算法一般是针对某种时段的作物,不具有通用性。这些都是后续算法研究中需要进一步解决的问题。 相似文献
9.
Norihiko Nakano Ryo Kawabe Nariharu Yamashita Tomonori Hiraishi Katsutaro Yamamoto Katsuaki Nashimoto 《Fisheries Science》2006,72(2):239-249
ABSTRACT: Color vision, spectral sensitivity, accommodation, and visual acuity were examined in juvenile masu salmon Oncorhynchus masou masou to obtain fundamental information about the visual system. Two types of S-potentials were recorded from 415 horizontal cells in isolated retinas from 34 cultured freshwater masu salmon (114–219 mm standard length, SL). Although horizontal cells recording S-potentials were not identified, the horizontal cells were confirmed because their responses were maintained while the stimulus remained. The variety of chromaticity (C)-type S-potentials indicated well-developed color vision. The analysis of the luminosity (L)-type S-potentials indicated that the peak spectral sensitivity was at 522 nm. S-potentials were also recorded in response to ultraviolet light. The direction and extent of lens movement induced by electrical stimulation was measured in 12 cultured masu salmon (99.0–142.5 mm SL). The results indicated that the visual axis was upward and forward, and that the range of accommodation was from 0.79 × SL in front of the eye to infinity. In histological analysis of the retinas of five wild smolts (100–118 mm SL), the maximum cone densities (276–345 cones/0.01 mm2 ) were detected in the ventral to temporal regions. The visual acuities assessed by histological methods were 0.069–0.075. 相似文献
10.
近几年,基于图像的高通量水稻表型研究取得了极大进展,但从三维层面进行研究的工作则相对较少。一般而言,相对于二维图像,从三维模型中能提取更为全面的性状参数。三维模型重建是作物三维表型研究的基础,提出一种适用于盆栽水稻三维点云的重建方法。该方法在相机固定、样本旋转的拍摄模式下获取水稻多视角图像,根据相机标定参数以及水稻轮廓二值图,通过轮廓投影方法重建水稻三维可视外壳点云模型,并通过反投影方法进行点云着色。结果表明,该方法对于不同时期及不同品种的水稻样本均能取得较好重建效果。 相似文献