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31.
32.
Sandra R. Ethridge Saket Chandra Anna M. Locke Wesley J. Everman David L. Jordan Micheal D.K. Owen Ramon G. Leon 《Pest management science》2023,79(10):4048-4056
BACKGROUND
The potential of weed species to respond to selection forces affecting the evolution of weedy traits such as competitive ability is poorly understood. This research characterized evolutionary growth changes in a single Abutilon theophrasti Medik. population comparing multiple generations collected from 1988 to 2016. A competition study was performed to understand changes in competitive ability, and a herbicide dose–response study was carried out to assess changes in sensitivity to acetolactate synthase-inhibiting herbicides and glyphosate over time.RESULTS
When grown in monoculture, A. theophrasti biomass production per plant increased steadily across year-lines while leaf number decreased. In replacement experiments, A. theophrasti plants from newer year-lines were more competitive and produced more biomass and leaf area than the oldest year-line. No clear differences in sensitivity to imazamox were observed among year-lines. However, starting in 1995, this A. theophrasti population exhibited a progressive increase in growth in response to a sublethal dose of glyphosate (52 g a.e. ha−1), with the 2009 and 2016 year-lines having more than 50% higher biomass than the nontreated control.CONCLUSION
This study demonstrates that weeds can rapidly evolve increased competitive ability. Furthermore, the results indicate the possibility of changes in glyphosate hormesis over time. These results highlight the importance of the role that rapid (i.e., subdecadal) evolution of growth traits might have on the sustainability of weed management strategies. © 2023 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry. 相似文献33.
Jorge Torres-Sánchez Francisco Javier Mesas-Carrascosa Fernando Pérez-Porras Francisca López-Granados 《Pest management science》2023,79(2):645-654
BACKGROUND
Ecballium elaterium (common name: squirting cucumber) is an emerging weed problem in hedgerow or superintensive olive groves under no tillage. It colonizes the inter-row area infesting the natural or sown cover crops, and is considered a hard-to-control weed. Research in other woody crops has shown E. elaterium has a patchy distribution, which makes this weed susceptible to design a site-specific control strategy only addressed to E. elaterium patches. Therefore, the aim of this work was to develop a methodology based on the analysis of imagery acquired with an uncrewed aerial vehicle (UAV) to detect and map E. elaterium infestations in hedgerow olive orchards.RESULTS
The study was conducted in two superintensive olive orchards, and the images were taken using a UAV equipped with an RGB sensor. Flights were conducted on two dates: in May, when there were various weeds infesting the orchard, and in September, when E. elaterium was the only infesting weed. UAV-orthomosaics in the first scenario were classified using random forest models, and the orthomosaics from September with E. elaterium as the only weed, were analyzed using an unsupervised algorithm. In both cases, the overall accuracies were over 0.85, and the producer's accuracies for E. elaterium ranged between 0.74 and 1.00.CONCLUSION
These results allow the design of a site-specific and efficient herbicide control protocol which would represent a step forward in sustainable weed management. The development of these algorithms in free and open-source software fosters their application in small and medium farms. © 2022 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry. 相似文献34.
Alfredo Manicardi Laura Scarabel Josep María Llenes José María Montull María Dolores Osuna Joel Torra Farré Andrea Milani 《Pest management science》2023,79(12):4886-4896
BACKGROUND
Amaranthus palmeri is an aggressive annual weed native to the United States, which has become invasive in some European countries. Populations resistant to acetolactate synthase (ALS) inhibitors have been recorded in Spain and Italy, but the evolutionary origin of the resistance traits remains unknown. Bioassays were conducted to identify cross-resistance to ALS inhibitors and a haplotype-based genetic approach was used to elucidate the origin and distribution of resistance in both countries.RESULTS
Amaranthus palmeri populations were resistant to thifensulfuron-methyl and imazamox, and the 574-Leu mutant ALS allele was found to be the main cause of resistance among them. In two Spanish populations, 376-Glu and 197-Thr mutant ALS alleles were also found. The haplotype analyses revealed the presence of two and four distinct 574-Leu mutant haplotypes in the Italian and Spanish populations, respectively. None was common to both countries, but some mutant haplotypes were shared between geographically close populations or between populations more than 100 km apart. Wide genetic diversity was found in two very close Spanish populations.CONCLUSION
ALS-resistant A. palmeri populations were introduced to Italy and Spain from outside Europe. Populations from both countries have different evolutionary histories and originate from independent introduction events. ALS resistance then spread over short and long distances by seed dispersal. The higher number and genetic diversity among mutant haplotypes from the Spanish populations indicated recurrent invasions. The implementation of control tactics to limit seed dispersal and the establishment of A. palmeri is recommended in both countries. © 2023 The Authors. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry. 相似文献35.
为实现蔬菜大棚内自动化除草的目的,针对其中的杂草识别环节,提出了一种基于三维点云的新型蔬菜大棚杂草识别方法。采用RGB-D相机获取青菜田、生菜田的三维点云图像,采用超绿色算法去除其中的土壤等背景,采用体素滤波法在保留点云图像形状特征的同时降低点云数量,然后采用欧式聚类法分割出单株青菜和单棵杂草的点云簇,分别计算得到每个点云簇的最高点的Z坐标值,最后结合深度信息Z坐标值实现蔬菜大棚杂草识别。结果表明:这种基于三维点云的杂草识别方法能够有效的识别出杂草,识别率为86.48%。该方法能够对蔬菜大棚中的杂草进行准确识别,为蔬菜大棚自动化除草提供有效的解决方案。 相似文献
36.
37.
近年来, 我国万寿菊单一种植规模不断扩大, 有害生物的发生越发严重, 影响万寿菊产量与品质, 造成较大的经济损失。关于万寿菊有害生物调查, 前人报道多集中于吉林、海南、黑龙江、贵州、甘肃、山西等地, 对云南万寿菊主产区的有害生物缺乏系统调查。因此, 本次研究在全国最大的万寿菊种植区和近两年来万寿菊叶黄素含量最高的种植区, 即曲靖市沾益区和蒙自市冷泉镇进行有害生物系统调查, 发现曲靖地区万寿菊主要病害有褐斑病和枯萎病; 主要害虫包括美洲斑潜蝇、斜纹夜蛾、棉铃虫等10种; 主要杂草有粗毛牛膝菊、鬼针草、马唐、千针苋等19种。蒙自地区万寿菊主要病害有褐斑病和炭疽病; 主要害虫包括美洲斑潜蝇、四斑长跗萤叶甲、棉铃虫等9种; 主要杂草有粗毛牛膝菊、马唐、尼泊尔蓼、细柄野荞麦等13种。 相似文献
38.
扶桑绵粉蚧Phenacoccus solenopsis Tinsley是我国重要观赏和药用植物木芙蓉上的主要害虫之一,但迄今对其被优势天敌亚利桑那跳小蜂Aenasius arizonensis (Girault)(班氏跳小蜂A. bambawalei Hayat)的寄生情况了解甚少。为此,自2017年开始,在浙江兰溪西部的一个木芙蓉种植区开展了为期四年的调查,每年6—9月,分批从木芙蓉植株上采集3龄若虫及未产卵雌成虫,于室内观察寄生情况;并于其中两年观察了不同生境中的寄生情况,探讨了寄生季节变化的动态特征及相关影响因素、杂草促进寄生的途径以及增强该粉蚧自然控制的措施。结果表明,在前期(6—7月)寄生率总体上较低,其中两年最高分别仅有38%和32%,另外两年也很少发现被寄生个体,而且该时期寄生率年份间存在明显波动。而在后期(8—9月),寄生率相对较高,且具有从8月上旬开始逐步上升这一显著特点。观察期间,最高寄生率均出现于各年份9月下旬,四年中分别为89%、62%、55%和13%,年份间差异十分明显。生境类型可对寄生水平产生较大影响,与木芙蓉地块内和杂草稀疏的田埂相比,杂草丛生的田埂上和路... 相似文献
39.
在安徽省沿江棉区开展了油菜秸秆覆盖对棉田杂草发生、棉花生长及土壤杂草种子库影响的研究。结果表明,随着油菜秸秆覆盖量的增加,对棉田杂草的抑制效果增强。与未覆盖秸秆且不除草处理相比较,7000Kg/hm2秸秆覆盖量处理棉花单株铃数和子棉产量显著提高。7000Kg/hm2秸秆覆盖量处理在覆盖后30d、60d和120d逐步减少0-20cm土层杂草种子库密度,与全程除草剂处理较一致;随着覆盖量减少,对0-20cm土层杂草种子库密度降低幅度减小。全程除草剂处理降低0-5cm土层杂草种子库多样性,而油菜秸秆覆盖则可能增加0-5cm土层的杂草种子库多样性。3500Kg/hm2覆盖量+秸秆覆盖30d后喷施除草剂处理的抑草效果和增产效果与全程除草剂处理一致。因此,在安徽省沿江棉区油-棉连作棉田推荐使用3500Kg/hm2油菜秸秆覆盖量+秸秆覆盖30d后喷施除草剂。 相似文献
40.
野茼蒿黄脉病毒的田间寄主范围及其基因多样性特征 总被引:1,自引:0,他引:1
为明确野茼蒿黄脉病毒(Crassocephalum yellow vein virus,CraYVV)的田间寄主范围及其群体基因结构特征,分别采用克隆和测序技术对采自云南省西双版纳傣族州、红河哈尼族彝族自治州的7种杂草和2种作物进行CraYVV的分离和鉴定,并通过生物信息学软件对分离到的CraYVV进行基因组结构、重组及基因遗传结构分析。结果显示,在赛葵、龙葵、臭牡丹、水茄、豨莶、野茼蒿和一点红7种杂草以及茄子和草莓2种作物中均分离到CraYVV,共获得20条CraYVV全长序列;CraYVV所有分离物分属2个株系,将其命名为YJ株系和JH株系;JH株系具有地理隔离特征,与YJ株系存在一定的遗传距离;重组分析显示,CraYVV是由烟草曲茎病毒(tobacco curly shoot virus,TbCSV)和云南烟草曲叶病毒(tobacco leaf curl Yunnan virus,TbLCYnV)重组产生;遗传结构分析显示,CraYVV中C1基因变异最显著,其次是C4基因和基因间隔区。表明CraYVV能侵染5科9种杂草和作物,具有较广的寄主范围,且菜豆金色花叶病毒属病毒能够侵染草莓、CraYVV能够侵染茄子,显示来源于杂草的菜豆金色花叶病毒属病毒在自然条件下能够侵染作物。 相似文献