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51.
番茄斑萎病毒(tomato spotted wilt virus, TSWV)和烟草花叶病毒(tobacco mosaic virus, TMV)是2种重要的植物病原病毒, 对多种经济作物的产量和品质均造成严重影响。2021年-2022年, 在云南省丽江市烟草种植区不同烟区采集叶片黄化、皱缩以及无症状的青蒿Artemisia caruifolia样品共计14份, 利用免疫金标速测卡和RT-PCR对其病原病毒进行检测。利用免疫金标速测卡检测结果显示, 在所检样品中有9份样品检测出TSWV, 检出率为64.28%, 有3份样品检测出TMV, 检出率为21.43%, 2种病毒复合侵染的检出率同样为21.43%;利用RT-PCR对复合侵染的3份样品进行分子检测, 结果显示, 在3份复合侵染青蒿样品中获得3条TSWV N基因序列、3条TMV cp基因序列和2条TMV RdRp部分序列。TSWV青蒿分离物与分离自云南的TSWV-2分离物相似性最高, 为99.6%;TMV青蒿分离物与分离自辽宁的TMV-Shenyang分离物和分离自云南的TMV-Yongren-1相似性最高, 均大于99.4%。这是首次发现TSWV和TMV 2种不同属病毒复合侵染青蒿。 相似文献
52.
Dry fungal biomass ofPenicillium chrysogenum (dry mycelium), a waste product of the pharmaceutical industry, was extracted with water and applied to the roots of melon
plants before or after inoculation withFusarium oxysporum f.sp.melonis (Font). Seedlings (4–6 days after emergence) treated with either acidic dry mycelium extract (DME) or neutralized dry mycelium extract
(NDME) were protected against challenge infection withFom. A single drench with 2–5% DME applied 12–72 h before inoculation provided significant control of the disease compared with
water-drenched, challenged seedlings. No protection was seen in plants treated 0–6 h before inoculation or 0–48 h after inoculation.
Neither DME nor NDME (0.5–5%) had any effect on fungal growthin vitro, which implied that disease controlin vivo was mediated by induced resistance. The resistance induced by DME protected melon plants not only against race 1,2, but also
against the three other races of the pathogen, indicating a race-non-specific resistance againstFom. Both DME and NDME significantly increased peroxidase activity and free L-proline content in seedlings 12 h and 48 h after
soil drench, respectively. Resistance to Fusarium wilt was significantly associated with elevated levels of peroxidase activity
but not with free L-proline content. Thus, peroxidase might be involved in the defense mechanisms activated by DME or NDME.
http://www.phytoparasitica.org posting Aug. 31, 2001. 相似文献
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透射电镜观察比较了蚕豆萎蔫病毒2号(BBWV-2)分离物PV131和P158侵染昆诺藜(Chenopodium quinoa)和蚕豆(Vicia faba)的细胞超微结构变化。结果显示:受PV131分离物侵染的昆诺藜叶肉细胞质中膜结构大量增生,形成有膜状结构、大小泡囊及电子致密物质的特殊膜增生区;病毒粒子散布在细胞质中,形成大块结晶体和管状结构,该管状结构直径约75nm,横切面由9个病毒粒子组成;受PV131侵染的蚕豆叶肉细胞中也形成膜增生区和管状结构,未见病毒结晶体。受P158分离物侵染的昆诺藜和蚕豆叶肉细胞病变情况与PV131分离物相似,形成膜增生区和相同的管状结构,在蚕豆叶肉细胞中也未观察到病毒结晶体。上述结果表明:2个BBWV-2分离物虽然在不同寄主植物上引起的细胞病变程度有差异,但其细胞病理学特征是由病毒基因结构所决定,与寄主的种类无关。 相似文献
56.
Insect reproduction may be affected by a number of factors including seasonal changes in larval or adult nutrition. The effect
of season on the reproductive potential ofMonochamus galloprovincialis (Olivier) females reared inPinus sylvestris L. (Scots pine) logs was investigated by constructing fertility tables for each log that differed only in the season they
were cut. Population parameters were compared among three seasonal cohorts. The intrinsic rate of increase and most of the
associated population parameters of beetles that emerged from logs cut during spring were higher than for beetles emerged
from summer and autumn logs. Slight differences were found between summer and autumn cohorts. We suggest that seasonal differences
in the nutritional quality of logs caused differences inM. galloprovincialis survival and reproductive potential.
http://www.phytoparasitica.org posting March 16, 2008. 相似文献
57.
对154份番茄材料(包括普通番茄76份,樱桃番茄78份)进行两年两次田间番茄斑萎病毒病的病情指数调查,筛选出14份对番茄斑萎病毒病具有稳定抗性的番茄材料,利用sw-5-2共显性SCAR标记对田间表现抗病的材料进行分子标记鉴定,发现3份抗病材料携带抗番茄斑萎病毒病的Sw-5基因。为缩短番茄斑萎病毒病人工接种鉴定周期,以含有sw-5的抗病材料H8和感病材料M82为研究对象,设置4、6、8、10片真叶4个接种时期,分别在接种后14、21、28 d进行病情指数调查和抗性分级,结果表明,6片真叶期接种,接种后28 d进行病情调查即可有效鉴别植株番茄斑萎病毒病抗性,与8、10片真叶期接种效果相同,人工接种抗病性鉴定效率显著提升。 相似文献
58.
59.
不同嫁接方法对甜瓜枯萎病抗性的影响及其生理响应 总被引:2,自引:0,他引:2
本文研究了插接、断根嫁接和靠接3种嫁接方法对甜瓜枯萎病抗性的影响。结果显示,3种嫁接方法均能显著提高甜瓜的抗枯萎病能力.但3种嫁接方法之间无显著差异。接种枯萎病菌后,嫁接苗根系活力、叶绿素含量、根系中SOD、POD、PAL活性显著高于自根苗,而MDA含量、相对电导率显著低于自根苗。以上结果表明,嫁接是提高甜瓜对枯萎病抗性的有效措施,但不同嫁接方法对甜瓜枯萎病抗性无显著影响;嫁接苗通过抗氧化系统和PAL活性的提高抵御了枯萎病菌侵染后所致的膜脂过氧化伤害,维持了根系和叶片的正常生理功能,从而提高了嫁接苗对甜瓜枯萎病的抗性。 相似文献
60.
Sabyasachi Banerjee Seema Singh Shailesh Pandey Maneesh S. Bhandari Amit Pandey Krishna Giri 《Forest Pathology》2020,50(2)
Wilt disease caused by Fusarium solani is a serious constraint to Dalbergia sissoo (shisham) plantations in northern India. In this study, the antagonistic potential of 40 bacterial isolates recovered from rhizophere soil of healthy shisham trees, and a well‐characterized Trichoderma species (Trichoderma virens) were tested for their possibility as biocontrol agents for F. solani. Two promising isolates (S1 and S15) were identified which inhibited pathogen growth, caused chitin degradation, produced siderophores and solubilized phosphate in vitro. Isolate S15 scored highest for hydrogen cyanide (HCN) production while isolate S1 was a non‐HCN producer. These two isolates were identified as Serratia marcescens (S1) and Pseudomonas azotoformans (S15) following sequence analysis of 16S rDNA. In dual culture assays, T. virens caused 80% inhibition of mycelial growth of the test fungus. The three selected antagonists when tested in planta in the glasshouse completely suppressed production of wilt symptoms on 12‐month‐old shisham plants. Further work is needed to ascertain the potential of these isolates to be used as biocontrol agents to manage shisham wilt under field conditions. 相似文献