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1.
Colonization of red raspberry flowers and fruit by Botrytis cinerea was determined during 2017–2018 growing seasons under commercial fungicide application programmes used for grey mould management in northwestern Washington, USA. Colonization of flowers and fruit was assessed qualitatively (incidence, %) and quantitatively (abundance, number of colonies) by recovering B. cinerea from surface-disinfested samples. Both incidence and abundance of flower colonization were significantly lower than fruit colonization in both untreated and fungicide-treated plots. Incidence of flower colonization did not differ significantly between untreated and fungicide-treated plots (43% vs. 45%, respectively). In contrast, significantly greater colonization incidence was detected at green fruit stage in untreated compared to fungicide-treated plots (96% vs. 77%, respectively). Ripe fruit had the greatest colonization incidence among the three stages sampled and colonization was not significantly different between untreated and fungicide-treated plots (100% vs. 92%, respectively). Similarly, colonization abundance of flowers did not differ significantly between untreated and fungicide-treated plots (1.0 colonies per colonized flower in both treatments), but colonization abundance of green and ripe fruit was decreased 2.3- and 2.1-fold, respectively, in fungicide-treated plots. DNA fingerprinting analysis of the pathogen revealed that different multilocus genotypes colonized flowers and fruit within the same inflorescence and that genotypic diversity increased through time, suggesting independent infection events. Overall, our results demonstrate that under current environmental conditions, raspberry flowers may not be the exclusive or major route of infection for grey mould of red raspberry in northwestern Washington. Implications of current findings for management and further research are discussed.  相似文献   
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Minimizing losses to pests and diseases is essential for producing sufficient food to feed the world's rapidly growing population. The necrotrophic fungus Botrytis cinerea triggers devastating pre‐ and post‐harvest yield losses in tomato (Solanum lycopersicum). Current control methods are based on the pre‐harvest use of fungicides, which are limited by strict legislation. This investigation tested whether induction of resistance by β‐aminobutyric acid (BABA) at different developmental stages provides an alternative strategy to protect post‐harvest tomato fruit against B. cinerea. Soil‐drenching plants with BABA once fruit had already formed had no impact on tomato susceptibility to B. cinerea. However, BABA application to seedlings significantly reduced post‐harvest infection of fruit. This resistance response was not associated with a yield reduction; however, there was a delay in fruit ripening. Untargeted metabolomics revealed differences between fruit from water‐ and BABA‐treated plants, demonstrating that BABA triggered a defence‐associated metabolomics profile that was long lasting. Targeted analysis of defence hormones suggested a role of abscisic acid (ABA) in the resistance phenotype. Post‐harvest application of ABA to the fruit of water‐treated plants induced susceptibility to B. cinerea. This phenotype was absent from the ABA‐exposed fruit of BABA‐treated plants, suggesting a complex role of ABA in BABA‐induced resistance. A final targeted metabolomic analysis detected trace residues of BABA accumulated in the red fruit. Overall, it was demonstrated that BABA induces post‐harvest resistance in tomato fruit against B. cinerea with no penalties in yield.  相似文献   
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isopropylstilbene (3, 5-二羟基-4-异丙基二苯乙烯) 是发光杆菌Photohabdus temperata产生的一种二苯乙烯类化合物,具有多种生物活性。为促进isopropylstilbene在农业抗生素领域应用价值的开发,采用固相萃取、柱层析等技术从发光杆菌P. temperata SN 35的发酵液中分离纯化得到1个化合物,通过核磁共振氢谱对其结构进行了确认,并采用高效液相色谱测定了其纯度;通过Plackett-Burman试验和响应面法对发光杆菌SN 35摇瓶发酵培养条件进行了优化,并初步研究了所分离化合物对灰葡萄孢Botrytis cinerea的离体抑菌活性及对灰霉病的防治效果。结果表明:所分离的化合物为isopropylstilbene,纯度为93%;对发光杆菌SN 35摇瓶发酵培养条件进行优化后,isopropylstilbene的产量是优化前的2.22倍。离体抑菌试验结果表明:isopropylstilbene对灰葡萄孢的菌丝生长具有较好的抑制作用,其EC50值为 (9.17 ± 0.17) μg/mL,但低于对照药剂百菌清[EC50值为 (0.90 ± 0.08) μg/mL];在10 μg/mL下,isopropylstilbene对灰葡萄孢孢子萌发的抑制率为63.01%。活体盆栽试验结果表明,在200 μg/mL下,isopropylstilbene对黄瓜灰霉病的防治效果达92.19%,与百菌清的防效 (97.63%) 相当,对番茄灰霉病的防治效果为72.12%,略低于百菌清 (81.61%)。本研究通过对isopropylstilbene发酵条件的优化,为其工业化生产奠定了理论基础。该化合物对灰霉病具有很好的防治效果,可为天然杀菌剂的研究与开发提供参考。  相似文献   
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为探究灰葡萄孢霉角质酶的酶学性质以及角质酶对植物角质层的降解作用,以灰葡萄孢霉为材料,采用角质诱导的方法得到角质酶发酵液,上清液经过分离得到角质酶粗提液,采用分光光度法探究温度、pH值、金属离子及有机溶剂对角质酶活力的影响,并通过扫描电镜探究角质酶粗提液对葡萄角质层的作用。结果表明,灰葡萄孢霉角质酶的最适反应温度为35℃,最适反应pH值为7.5,此条件下能够保持较高的热稳定性;Na+、Mg2+、Ca2+对酶活有促进作用,而Zn2+、Cu2+、Fe3+对酶活有抑制作用;甲醇、丙酮、异丙醇对酶活具有促进作用,乙醇、乙腈和三氯甲烷对酶活具有抑制作用;角质酶粗酶液对葡萄角质层具有明显的降解作用。本研究结果为果蔬采后病害的控制提供了理论依据。  相似文献   
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为进一步分析活性氧和抗氧化防御系统在番茄抗病信号调控机制中的作用,为提高产量和品质提供科学依据,以4叶1心的番茄幼苗为试验材料,比较番茄幼苗受灰霉菌侵染后叶片O_2~-·以及抗氧化酶、内源褪黑素等的变化。结果表明:番茄幼苗接种灰霉菌后,随着时间的延长,幼苗叶片上病斑斑点逐渐增多,灰霉菌含量显著增多,叶色逐渐变浅,植株表现明显的发病症状;灰霉病菌侵染后番茄体内O_2~-·活性爆发,超氧化物歧化酶(SOD)和过氧化物酶(POD)活性下降,过氧化氢酶(CAT)和谷胱甘肽还原酶(GR)活性上升,褪黑素含量增加;上述变化都是番茄幼苗为了抵御灰霉菌的生物胁迫而发生的应激反应。综上,植物在遭受病原菌等生物胁迫时不能简单地推断SOD、CAT和POD等抗氧化酶活性一定升高,植物抵御病原菌侵染更多地依赖于抗性信号路径中信号物质的激活和积累。  相似文献   
7.
Phycobiliproteins (PBPs) are proteins of cyanobacteria and some algae such as rhodophytes. They have antimicrobial, antiviral, antitumor, antioxidative, and anti-inflammatory activity at the human level, but there is a lack of knowledge on their antifungal activity against plant pathogens. We studied the activity of PBPs extracted from Arthrospira platensis and Hydropuntia cornea against Botrytis cinerea, one of the most important worldwide plant-pathogenic fungi. PBPs were characterized by using FT-IR and FT-Raman in order to investigate their structures. Their spectra differed in the relative composition in the amide bands, which were particularly strong in A. platensis. PBP activity was tested on tomato fruits against gray mold disease, fungal growth, and spore germination at different concentrations (0.3, 0.6, 1.2, 2.4, and 4.8 mg/mL). Both PBPs reduced fruit gray mold disease. A linear dose–response relationship was observed for both PBPs against disease incidence and H. cornea against disease severity. Pathogen mycelial growth and spore germination were reduced significantly by both PBPs. In conclusion, PBPs have the potential for being also considered as natural compounds for the control of fungal plant pathogens in sustainable agriculture.  相似文献   
8.
为了研究植物内源褪黑素与植物抗性的关系,以4叶1心的番茄幼苗为试验材料,采用酶联免疫吸附测定(ELISA)法测定正常番茄、鱼腥草提取液和灰霉菌侵染后的番茄茎叶中的褪黑素含量。结果表明:番茄叶片和茎的褪黑素含量分别为14.53、2.80 ng/g,二者之间差异极显著,叶片的褪黑素含量是茎的5.19倍;经鱼腥草提取液预处理和灰霉菌侵染后,番茄叶片的褪黑素含量显著增加,鱼腥草提取液预处理有助于减轻番茄叶片上的灰霉病发病症状,但并不依赖于叶片内源褪黑素含量的增加。可以检出的番茄茎叶中的褪黑素含量高于2.60 ng/g,就灵敏度而言,ELISA法完全可以用来检测番茄的组织器官的褪黑素含量。  相似文献   
9.
针对不同浓度80%腐霉利WP进行葡萄灰霉病的田间防效试验研究。结果表明:在葡萄灰霉病发病初期,公顷用药量(有效成分)333-500mg/kg兑水750kg,对葡萄灰霉病有较好的防治效果。喷药间隔期为7d,共喷2次。药后7d防治效果在77.06%-82.34%之间,对葡萄生长安全。  相似文献   
10.
魔芋灰霉病致病菌及其生理特性的研究   总被引:3,自引:2,他引:1  
为探明魔芋灰霉病的发病规律,对其发病症状、致病菌及其生理特性进行了较系统的研究。结果表明,魔芋灰霉病菌为葡萄孢菌属(Botryotinia);其分生孢子萌发的温度范围为10~30℃,最适温度为20~25℃;在pH 4~9条件下均能萌发,最适pH为5;在各种营养液中均能萌发,在2%的蔗糖液中萌发最好,其次为2%的葡萄糖和魔芋甘露低聚糖;分生孢子的致死温度为57℃、5 min。魔芋灰霉病菌菌丝在4种培养基上均能生长,其中PDA培养基最适宜菌丝生长,最适的产孢培养基为PDA+魔芋甘露低聚糖;菌丝在5~30℃均能生长和产孢,适宜温度为20~25℃;在pH 4~9均能生长及产孢,最适pH为5。  相似文献   
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