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1.
Cold plasma, an ionized gas produced by applying an electrical current to air, can be used to produce plasma-activated water (PAW), which has excellent antimicrobial properties. In this study PAW was applied to conidia of Colletotrichum alienum to investigate its impact on conidial germination in vitro. PAW was produced by treating tap, deionized, or distilled water with cold plasma for 30 or 60 min to produce PAW30 or PAW60, each of which was then incubated for up to 24 hr with a conidial suspension of C. alienum in a ratio of 1:1, 1:2, or 1:3 (conidial suspension:PAW), and the percentage germination measured. The greatest reduction in germination occurred when conidia were incubated with PAW60 produced from deionized water or distilled water, for all ratios. For PAW30, deionized water was the most effective for all three ratios, and on this basis, deionized water was selected for all further experiments. PAW produced from smaller volumes of water and at shorter distances from the cold plasma source was more effective at reducing germination. Treatment of conidia with acidified water was not as effective as PAW at inhibiting germination. Nitrates and nitrites were present in the PAW in varying concentrations and may have contributed to the inhibition of germination. PAW retained activity and reduced germination even after storage for 15 days. These findings demonstrate the potential of PAW as a novel treatment for postharvest fungal pathogens. 相似文献
2.
In 2016-2019, sixty new varieties and 31 main cultivated varieties were evaluated for their resistance to sugarcane brown stripe disease under field condition. The results showed that 32 (53.33%) of 60 new sugarcane varieties were highly to moderately resistant, and 28 (46.67%) were susceptible to highly susceptible. Twenty-one (67.74%) of 31 main cultivated sugarcane varieties were highly to moderately resistant, and ten (32.26%) were susceptible to highly susceptible. This work may facilitate brown stripe resistance breeding and provide new elite resistant varieties for effectively control of sugarcane brown stripe. 相似文献
3.
2012年,北美地区发生了一种由山毛榉李氏垫刃线虫麦肯恩亚种(Litylenchus crenatae mccannii)引起的森林新病害——山毛榉叶线虫病,病情蔓延迅速,已扩散至美国和加拿大30个县。病原为害山毛榉属植物,可造成病树成片死亡。由于山毛榉是北美温带阔叶林的主要构成树种和重要用材树种,新病害已引起美国农业部的高度重视并采取积极的应对措施。我国分布5种山毛榉属植物(均为特有种),是我国南方森林的主要组成树种。鉴于我国每年从北美进口大量山毛榉木材,病原线虫存在随进境木材传入国内的巨大风险。因此,检疫部门应开展风险评估,口岸应针对性开展山毛榉叶线虫病的检测。本文主要介绍了山毛榉叶线虫病的发生历史、分布范围、为害症状、病原线虫形态学特征、生活史、传播途径、分子检测方法等方面的信息,以期为口岸检疫工作提供参考。 相似文献
4.
木寡糖是一种植物源寡糖,对动物体的生理功能多且显著,而其是否作为寡糖素诱发植物防卫尚不明确。本文分析了不同浓度木寡糖诱导拟南芥植株对不同营养型病原的抗性。结果表明,木寡糖能诱发拟南芥对半活体病原细菌丁香假单胞菌番茄致病变种、活体病原烟草花叶病毒和死体病原真菌核盘菌的抗性,且具有剂量依赖效应,随着木寡糖浓度的提高到100 μg/mL,对Pst DC3000和TMV诱导抗病效果逐渐增强;当木寡糖浓度提高到50 μg/mL,对核盘菌的诱导抗病效果不再升高;说明木寡糖是一种新的可诱发拟南芥广谱抗病性的寡糖素。本研究为进一步解析木寡糖诱发植物免疫的信号传导和开发新的病害控制策略提供了依据。 相似文献
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为获得烟草镰刀菌根腐病拮抗真菌菌株,试验以河南省豫中烟区烟草根际土壤为试材,以主要致病菌尖孢镰刀菌Fusarium oxysporum为主要靶标,采用稀释涂布平板法分离获得土壤真菌371株,平板对峙培养法测定获得1株具有明显抑制效果的拮抗菌株,利用形态学和分子生物学的方法将其鉴定为棘孢木霉Trichoderma asperellum Tr-0111。抑制效果测定表明,该菌株对尖孢镰刀菌的抑制率最高可达93.13%,对根串珠霉菌、拟茎点霉、链格孢菌等其他8种烟草病原菌均具有较强的抑制效果。促生作用测定结果表明,菌株发酵液使烟草种子萌发率提高5.34%,烟苗根长增长率为62.39%,对盆栽烟草的最大叶面积和地上部鲜重也具有显著的促生效果。为进一步相关机理的研究和生防菌剂的研制奠定了基础。 相似文献
7.
Beet yellows virus (BYV), beet mild yellowing virus (BMYV), beet chlorosis virus (BChV), and beet mosaic virus (BtMV) cause virus yellows (VY) disease in sugar beet. The main virus vector is the aphid Myzus persicae. Due to efficient vector control by neonicotinoid seed treatment over the last decades, there is no current knowledge regarding virus species distribution. Therefore, Europe-wide virus monitoring was carried out from 2017 to 2019, where neonicotinoids were banned in 2019. The monitoring showed that closterovirus BYV is currently widely spread in northern Europe. The poleroviruses BMYV and BChV were most frequently detected in the northern and western regions. The potyvirus BtMV was only sporadically detected. To study virus infestation and influence on yield, viruses were transmitted to sugar beet plants using viruliferous M. persicae in quadruplicate field plots with 10% inoculation density simulating natural infection. A plant-to-plant virus spread was observed within 4 weeks. A nearly complete infection of all plants was observed in all treatments at harvest. In accordance with these findings, a significant yield reduction was caused by BMYV and BChV (−23% and −24%) and only a moderate reduction in yield was observed for BYV (−10%). This study showed that inoculation at low densities mimics natural infection, and quick spreading induced representative yield effects. Within the background of a post-neonicotinoid era, this provides the basis to screen sugar beet genotypes for the selection of virus tolerance/resistance and to test the effectiveness of insecticides for the control of M. persicae with a manageable workload. 相似文献
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为探讨葡萄籽提取物(GSE)对采后猕猴桃接种青霉菌后青霉病的防治效果,本试验以贵长猕猴桃为试材,通过测定猕猴桃果实发病率、病斑直径以及与果实抗病相关物质的含量和防御相关酶的活性,研究GSE对采后猕猴桃果实青霉菌的作用效果。结果表明,GSE处理延迟了猕猴桃在损伤接种扩展青霉(Penicillium expansum)后果实发病率的上升,抑制了果实病斑直径的扩大。同时,GSE处理极显著提高了猕猴桃果实总酚和总类黄酮含量,降低了膜降解标志性代谢产物丙二醛(MDA)含量以及脂氧合酶(LOX)活性,提高了猕猴桃果实几丁质酶(CHI)、β-1,3葡聚糖酶(GLU)和过氧化物酶(POD)活性。接种扩展青霉后,接种前期GSE处理显著提高了果实的多酚氧化酶(PPO)活性,接种后期GSE处理显著提高了苯丙氨酸氨解酶(PAL)活性。综上,GSE处理通过激活抗氧化防御代谢从而提高了猕猴桃果实对青霉病的抗性。本研究为利用GSE防治青霉病研究提供了理论指导和技术参考。 相似文献
10.