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61.
Zhizhong Dai Henry Lackland Stanley Stein Qian Li Robin Radziewicz Stephanie Williams Leonard H. Sigal 《生物化学与生物物理学报:疾病的分子基础》1993,1181(1):97-100
A monoclonal antibody (H9724), specific for the 41-kDa flagellar protein of the Lyme disease pathogen Borrelia burgdorferi, cross-reacts with human axons and detects one major protein in human neuroblastoma cell extracts. The homologous cross-reacting protein has now been isolated from calf adrenal and identified as chaperonin-HSP60 by N-terminal sequencing. 相似文献
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稻根象甲种群空间格局及其受耕法的影响 总被引:5,自引:1,他引:4
本文根据36块田的调查,用种群空间格局参数I、C_A、I_δ、m~*/m和α、β值进行分析,稻根象甲幼虫和(?)≥0.6头/样方(每样方为0.5m~2)的成虫种群,在稻田均属具公共k值的负二项分布;(?)<0.6头/样方的成虫种群则为随机分布。成虫聚块的大小和面积与平均密度有关。低密度时种群的聚集主要由于环境的异质性;高密度时种群的聚集则由本身的行为习性所致。随着耕作强度的增加,幼虫种群的聚集度和越冬死亡率增大。 相似文献
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本文除对主流商品茜草的生药性状和组织构造作了较全面的描述,还利用图、表及照片列出狭叶茜草P.truppeliana Loes、Loeb、小红参(滇茜草)R.yunnomensis Dtels、中华茜草R.chinensis Regel et maack、大叶茜草R.schumanniana Pritz、按针叶茜草R.lanceolata Hayata、大茜草R.magna Hisao、钩毛茜草R.oncotrucha Hand-Mazz、红花茜草R.podantha Diels、金剑草R.alata Wall、新疆茜草(洋茜草)R.tinctorum L等10种与茜草Rubia cordifolia L的主要区别点,并作药材检索表,以利鉴别。 相似文献
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从四川省汶川县产平截独活Heracleum vicinum根的乙醇提取物中分离鉴定了6个成分,分别为虎耳草素(pimpinellin)(1),异佛手柑内酯(2),6-甲氧基当归素(sphondin)(3)。佛手柑内酯(bergapten)(4),异虎耳草素(isopimpincllin)(5),falcarindi01)(6). 相似文献
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Nguyen Huy Hung Pham Minh Quan Do Ngoc Dai Prabodh Satyal Le Thi Huong Le Duc Giang Le Thanh Hung William N. Setzer 《化学与生物多样性》2023,20(3):e202200210
There is an ongoing interest to identify alternative pesticidal agents to avoid the chronic problems associated with synthetic pesticides. Essential oils have shown promise as botanical pest control agents. In the present study, the essential oils of four members of the Lamiaceae (Callicarpa candicans, C. erioclona, C. macrophylla, and Karomia fragrans; Vietnamese names: Nàng nàng, Tu châu lông mem, Tu châu lá to and Cà diện, respectively), obtained from wild populations in Vietnam, have been obtained by hydrodistillation and analyzed by gas chromatography-mass spectrometry. The essential oils were formulated into microemulsions and the essential oils and their microemulsions were screened for mosquito larvicidal activity against Aedes aegypti, Aedes albopictus, Culex quinquefasciatus, and for molluscicidal activity against Pomacea canaliculata. Atractylone and (E)-caryophyllene dominated the volatiles of C. candicans (CCEO) and C. erioclona (CEEO), while the major component in C. macrophylla (CMEO) and K. fragrans (KFEO) was (E)-caryophyllene. The essential oils and microemulsions of both C. candicans and C. erioclona exhibited excellent larvicidal activity against all three mosquito species (Ae. aegypti, Ae. albopictus, and Cx. quinquefasciatus) with LC50 values <10 μg/mL. Additionally, the larvicidal activity of the microemulsions were significantly improved compared with their free essential oils, especially for C. candicans and C. erioclona. All four essential oils and their microemulsions showed excellent molluscicidal activity with LC50 <10 μg/mL. In most cases, the essential oils and microemulsions showed greater pesticidal activity against target organisms than the non-target freshwater fish, Oreochromis niloticus. The in silico studies on physicochemical and ADMET properties of the major components in the studied essential oils were also investigated and most of the compounds possessed a favorable ADMET profile. Computational modeling studies of the studied compounds demonstrated a favorable binding interaction with the mosquito odorant-binding protein target and support atractylone, β-selinene, and caryophyllene oxide as potential inhibitors. Based on the observed pesticidal activities of the essential oils and their microemulsions, the Callicarpa species and K. fragrans should be considered for potential cultivation and further exploration as botanical pesticidal agents. 相似文献
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Xindong Xu Yifeng Wang Changhong Wang Gangqiang Guo Xinyu Yu Yang Dai Yaobao Liu Guiying Wei Xiaohui He Ge Jin Ziqiu Zhang Qingtian Guan Arnab Pain Shengyue Wang Wenbao Zhang Neil D. Young Robin B. Gasser Donald P. McManus Jun Cao Qi Zhou Qingfeng Zhang 《Molecular ecology resources》2023,23(1):205-221
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