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1.
对异硫氰酸丙烯酯毒杀松材线虫作用机制进行了初步研究。测定了其对线虫虫体形态、运动行为、体内总糖和蛋白质含量的影响,以及处理前后线虫体内过氧化氢酶(CAT)、乙酰胆碱酯酶(AChE)和谷胱甘肽-S-转移酶(GST)活性变化。结果表明:经异硫氰酸丙烯酯处理后的松材线虫虫体形态严重扭曲,运动形态出现由正常的S形变化为多节弯曲和螺旋状卷曲等异常状况,线虫行动随时间的推移变得迟缓,最终呈C形、新月形或直接死亡。随着异硫氰酸丙烯酯处理质量浓度的增大,线虫体内总糖和蛋白质含量显著上升,糖和蛋白质的代谢发生紊乱;线虫体内CAT、AChE和GST活性显著降低,且均低于对照组,表明线虫体内氧化和抗氧化作用失衡;细胞受到极大的影响,神经系统遭到破坏,解毒能力明显降低。研究结果可为研究利用异硫氰酸丙烯酯作为植物源杀线虫剂提供依据。 相似文献
2.
基于汕头市濠江区已发现松材线虫病疫情的实际情况,针对该病的防治特点,结合汕头市各辖区山林的实际情况,从判断、预防、治理三个方面提出相应的防治对策,为科学防控该病在我市的扩散危害提供参考。 相似文献
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Pheromones are communication chemicals and regulatory signals used by animals and represent unique tools for organisms to mediate behaviors and make “decisions” to maximize their fitness. Phenotypic plasticity refers to the innate capacity of a species to tolerate a greater breadth of environmental conditions across which it adapts to improve its survival, reproduction, and fitness. The pinewood nematode, Bursaphelenchus xylophilus, an invasive nematode species, was accidentally introduced from North America into Japan, China, and Europe; however, few studies have investigated its pheromones and phenotypic plasticity as a natural model. Here, we demonstrated a novel phenomenon, in which nematodes under the condition of pheromone presence triggered increased reproduction in invasive strains (JP1, JP2, CN1, CN2, EU1, and EU2), while it simultaneously decreased reproduction in native strains (US1 and US2). The bidirectional effect on fecundity, mediated by presence/absence of pheromones, is henceforth termed pheromone-regulative reproductive plasticity (PRRP). We further found that synthetic ascaroside asc-C5 (ascr#9), the major pheromone component, plays a leading role in PRRP and identified 2 candidate receptor genes, Bxydaf-38 and Bxysrd-10, involved in perceiving asc-C5. These results suggest that plasticity of reproductive responses to pheromones in pinewood nematode may increase its fitness in novel environments following introduction. This opens up a new perspective for invasion biology and presents a novel strategy of invasion, suggesting that pheromones, in addition to their traditional roles in chemical signaling, can influence the reproductive phenotype among native and invasive isolates. In addition, this novel mechanism could broadly explain, through comparative studies of native and invasive populations of animals, a potential underlying factor behind of the success of other biological invasions. 相似文献
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Pine Wilt Disease Caused by the Pine Wood Nematode: The Induced Resistance of Pine Trees by the Avirulent Isolates of Nematode 总被引:6,自引:0,他引:6
Hajime Kosaka Takuya Aikawa Nobuo Ogura Katsuhiro Tabata Tomoya Kiyohara 《European journal of plant pathology / European Foundation for Plant Pathology》2001,107(7):667-675
Since the beginning of the 20th century, pine trees in Japan have been seriously damaged by the pine wilt disease. This disease is caused by the pine wood nematode, Bursaphelenchus xylophilus, which is transmitted by the Japanese pine sawyer, Monochamus alternatus. The control of disease depends to a large extent on chemicals, but the public is now demanding environmentally friendly control methods. The virulence of B. xylophilus varies very widely. Pre-inoculation of young pine trees in a nursery with avirulent B. xylophilus has induced systemic resistance of trees against a subsequent inoculation with virulent B. xylophilus. This induced resistance was considered a hopeful means for developing a biological control for the disease. The induced resistance by the avirulent nematodes was also expressed in mature pine trees in a forest where the disease was naturally epidemic. However, the effects of induced resistance were not satisfactory for practical biological control. Since the inoculation with higher concentrations of the avirulent B. xylophilus induced the resistance more effectively, the pre-inoculation method will need to be improved to develop the biological control. The induced resistance of pine trees by avirulent B. xylophilus should be one of the candidate biological control methods against pine wilt disease. This induced resistance also provides an experimental system to clarify physiological interactions between the nematodes and pine trees. 相似文献
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松材线虫病生物防治研究进展 总被引:2,自引:0,他引:2
松材线虫Bursaphelenchus xylophilus是外来入侵生物,主要依靠媒介昆虫的携带在自然界中扩散传播。目前松材线虫病的生物防治研究主要集中在对松材线虫本身及其传播媒介——松墨天牛的控制两方面。本文对国内外松材线虫病的生物防治方法研究做了总结。 相似文献
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苯甲酸在松材线虫病中的作用 总被引:1,自引:0,他引:1
在室内条件下,初步研究苯甲酸对松树和松材线虫病的作用.用不同浓度的苯甲酸溶液分别处理松枝,显示低浓度苯甲酸溶液能显著延长松枝的存活期,高浓度苯甲酸溶液处理的松枝针叶出现褐变现象,但对松枝的存活期没有影响,其症状与松材线虫病不同.分别用1.0 mmol·L-1的苯甲酸溶液和自来水培养接种松材线虫的松枝,在用苯甲酸溶液处理的接种松枝中,虽然松材线虫仍能大量增殖,但与用自来水培养的接种松枝相比,其蒸腾强度显著增强,失水萎蔫程度显著降低,存活期显著延长,这说明苯甲酸在松材线虫病树中可能起着抑制与病害相关的致病菌或提高松树抗病能力的作用. 相似文献
9.
松材线虫侵染对松树苯丙氨酸解氨酶及酚类物质的影响 总被引:2,自引:0,他引:2
以湿地松(Pinus elliottii Engelm)、日本黑松(Pinus thunbergii Parl)为材料,研究松材线虫[Bursaphelenchus xylophilus(Steiner&Buhrer,1934)Nickle]感染对苯丙氨酸解氨酶和酚类物质的影响.两种松树的苯丙氨酸解氨酶的活性在发病过程中都有明显增加,并且伴随着酶活性的变化,各种苯丙烷次生代谢产物,如总酚、类黄酮的含量也发生明显的变化.但湿地松在苯丙氨酸解氨酶活力和酚类物质的积累上的变化比黑松要大些.结果表明,松材线虫病的发生、发展与寄主植物苯丙氨酸解氨酶活性和酚类物质含量变化有关. 相似文献
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