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排序方式: 共有62条查询结果,搜索用时 15 毫秒
1.
植物苯丙氨酸解氨酶基因的表达调控与研究展望   总被引:43,自引:0,他引:43  
苯丙氨酸解氨酶(phenylalanineammonia-lyase,PAL,EC4.3.1.5)是催化苯丙烷代谢途径第一步反应的酶,也是这个途径的关键酶,对植物有非常重要的生理意义。根据有关文献综述了植物PAL的分布与定位、酶学性质,总结了生长发育、钝化因子与调节因子、末端产物等内部因素及光、温、机械损伤与生长调节剂等外部因素对PAL的调控作用,得出外部因子是在转录水平上对酶活性实施调控的结论,并运用酶学和分子生物学方面的知识阐述了其调控机理。还着重阐述了PAL酶在果树上的研究现状与进展,并对其今后的研究及在果树上的应用进行了展望。  相似文献   
2.
考虑到含间隙运动副副元素的碰撞接触时的边界条件,采用非线性弹簧力和非线性阻尼描述副无素的碰撞接触过程,以此为基础建立了含间隙内燃机曲柄滑块机构的动力学模型;通过数值仿真研究了运动副间隙对机构动态特性的影响,并指出在机构高运转条件下,运动副元素存在连续变形接触现象。  相似文献   
3.
基于不同分析方法研究磷酸根在矿物表面吸附机制的进展   总被引:2,自引:1,他引:2  
磷素是植物生长必需的营养元素,也是联系生态系统中生物与非生物作用的关键元素。对磷酸根在矿物表面吸附反应机制的深入认识,有助于了解其在陆地和水环境中的形态、迁移、转化和生物有效性。本文主要综述了磷酸根在常见(土壤)矿物表面吸附机制的研究进展。各种分析技术或方法,如OH–释放量分析、Zeta电位分析(电泳迁移率测试)、等温滴定量热法、原子力显微镜、X射线光电子能谱、红外光谱、核磁共振波谱、X射线吸收光谱、表面络合模型、量子化学计算等,均以不同方式揭示磷酸根在不同矿物体系的吸附机制。磷酸根在矿物(尤其是铁、铝氧化物)表面的吸附通常伴随着水基和羟基的交换。一般认为磷酸根在矿物表面主要形成双齿双核、单齿单核内圈络合物,且受pH的影响较大。pH以及磷酸根在矿物表面的吸附密度影响内圈络合物的质子化状态。在低pH、高磷浓度、较高反应温度、较长吸附时间,以及弱晶质矿物吸附等条件下矿物表面吸附的磷可在矿物表面转化形成含磷的表面沉淀,造成矿物溶解转化以及磷生物有效性的进一步降低。最后展望了磷酸盐在矿物-水界面吸附有关的研究热点和方向。  相似文献   
4.
水稻(Oryza sativa L.)铝毒害与耐性机制及铝毒害的缓解作用   总被引:7,自引:4,他引:7  
陈荣府  沈仁芳 《土壤》2004,36(5):481-491
铝 (Al) 毒是广泛存在于热带亚热带地区酸性土壤上的主要的生产力限制因子之一。水稻Al毒害主要发生在新开垦的旱地酸性土壤上。本文较详细地总结了: (1) 水稻发生Al毒的环境条件,水稻Al毒害的可见症状和Al毒害的部位;(2) 水稻耐Al指标,营养元素的吸收与分配对水稻耐受Al毒害的影响,以及Al胁迫下根系分泌物、根际pH的变化等对水稻耐Al的贡献,水稻耐Al基因的定位等;(3) 水稻Al毒害的缓解作用机理及可能的解决措施。最后对水稻Al毒害和水稻耐Al机制研究中存在问题进行了分析探讨,同时对今后的研究作了展望。  相似文献   
5.
随着除草剂使用量和使用频率的不断增加,杂草抗药性问题也逐渐成为杂草防除及治理的难点和热点。目前杂草对PS(Photosystem)Ⅱ抑制剂类除草剂产生抗药性主要分为靶标抗性和非靶标抗性。本研究综述了近年来杂草对PSⅡ抑制剂类除草剂抗药性的产生、发展现状及杂草抗PSⅡ抑制剂类除草剂的机理。针对这些问题,提出除草剂使用过程中需要注意的事项,为延缓杂草对该类除草剂产生抗药性提供一定参考。  相似文献   
6.
常年施用化肥会对土壤、大气以及水体等产生有害影响,不符合我国农业发展的绿色环保理念。植物根际促生菌(Plant Growth Promoting Rhizobacteria,PGPR)广泛生存在植物根际,是具有生防并起促生作用的有益微生物菌群,对作物生长发挥重要作用,正逐步成为目前的研究热点。本文回顾了PGPR促进植物生长的机制,包括直接促进植物生长作用及间接控制病原菌作用。同时,综述了PGPR菌剂的应用状况。最后,对PGPR的研究重点进行了展望,以期为PGPR生物肥料的研发与应用提供理论支持。  相似文献   
7.
小麦全蚀病拮抗微生物的分离及其拮抗性能研究   总被引:2,自引:0,他引:2  
从开封北郊的麦田土壤中分离筛选出11株对小麦全蚀病菌(Gaeumannomyces graminis var.tritici)有拮抗作用的细菌,通过对它们进行生理生化检验,确定为4个种,即:巨大芽孢杆菌(Bacillus megaterium)、蜡样芽孢杆菌(Bacillus cereus)、苏云金芽孢杆菌(Bacillus thuringien-sis)、凝结芽孢杆菌(Bacillus coagulans)。分别利用平板拮抗和小麦活体拮抗对分离到的11株拮抗菌株的拮抗能力进行检测。结果表明,菌株的平板拮抗能力较强,在活体试验中,可以降低病害的发病强度。  相似文献   
8.
随着工业化、城镇化水平的不断推进,我国跨行政区域水污染民事侵害事件呈现多发态势,由此类纠纷引发的社会矛盾格外引人关注。排污主体的环境外部不经济性、流域水体整体性同行政区划分割的矛盾、现行解决跨行政区域水污染民事侵害事件的相关法律法规存在“缺陷”等因素是导致此类纠纷不能及时、公正、准确解决的原因。以环保法的相关原则及国外经验模式,提出了建立以流域为整体的水环境信息共享与水污染应急处理机制、水污染事故认定与评估机制、水污染事故协调与调解机制、建立公众监督与公益诉讼机制、建立预防排污主体外部不经济性行为发生的机制、构建畅通环境民事侵害纠纷处理渠道的司法机制等。  相似文献   
9.
Insecticide resistance in the German cockroach can be mediated by a number of mechanisms, the most common being enhanced enzymatic metabolism. Seven field-collected strains of German cockroach, Blattella germanica (L.) with various levels of resistance to pyrethroids, five out of which were also cross-resistant to DDT were used in this study. The investigation of possible mechanisms responsible for permethrin resistance was carried out using the synergists PBO, DEF and DMC and biochemical assays, including general esterases, glutathione S-transeferases and monooxygenases assays, using an automated microtitre plate reader. PBO and DEF, the inhibitors of cytochrome p450 monooxygenases and general esterases, respectively, affected permethrin resistance to varying degrees depending on the strain. DDT resistance in five strains were not completely eliminated by the synergist DMC, an inhibitor of glutathione S-transferase enzymes, suggesting that a further non-metabolic resistance mechanism such as kdr-type may be present. This suggestion was further supported by GST assay data, where a little elevation in GST activity was detected in only two strains. The synergist data supported by biochemical assays implicated that cytochrome p450 monooxygenases or hydrolases are involved in permethrin resistance in some strains. However, these results implicated both enhanced oxidative and hydrolytic metabolism of permethrin as resistance mechanism in the other strains. The results of synergist and biochemical studies implicated that all the field-collected permethrin resistant strains have developed diverse mechanisms of resistance, although these strains have been collected from the same geographic area. The change in resistance ratios of some strains by using PBO or DEF is discussed. It is of interest to note that because resistance to permethrin was not completely eliminated by DEF and PBO, it is likely that one or more additional mechanisms are involved in permethrin resistance in every strain studied.  相似文献   
10.
Resistance to insecticides remains a major problem for the successful control of the horn fly, Haematobia irritans irritans (L.), one of the most important pests of cattle in many countries including the United States. The organophosphate (OP) insecticide diazinon has been used to control pyrethroid-resistant populations of the horn fly. There are only a few reported cases of horn fly resistance to diazinon in the United States and Mexico. Piperonyl butoxide (PBO) has been used successfully as a synergist of pyrethroid insecticides to control horn flies. PBO-synergized diazinon products are also available for horn fly control in the United States, although PBO is known to inhibit the bio-activation of certain OP insecticides including diazinon. A study was conducted to evaluate the effect of PBO on diazinon toxicity to horn flies using a filter paper bioassay technique. These bioassays in both the susceptible and diazinon-resistant horn fly strains revealed a biphasic effect of PBO on diazinon toxicity to horn flies. PBO inhibited diazinon toxicity when the PBO concentration used was high (5%), and no effect was observed when PBO concentration was intermediate (2%). However, at low concentrations (1% and lower), PBO significantly synergized diazinon toxicity. We demonstrated that enhanced esterase activity was associated with survivability of horn flies exposed to diazinon alone. PBO has been shown to inhibit esterase activity in other insect species. However, results of biochemical assays with esterases from this study suggest that PBO did not have significant effect on the overall esterase activity in the horn fly. The observed synergistic effect of PBO at lower concentrations on diazinon toxicity to horn flies could not be explained by reduced esterase activity due to PBO inhibition. It is likely that PBO synergized diazinon toxicity at lower concentrations by facilitating penetration of diazinon through the cuticle and/or inhibiting the oxidative detoxification of diazinon, and reduced diazinon toxicity at high PBO concentration by inhibiting the bio-activation of diazinon.  相似文献   
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