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综论最近开发杀菌剂的作用方式 被引量:13
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作者 赖以飞 《农药译丛》 1997年第1期14-19,60,共7页
防治植物罹病最有效的措施,往往离不开杀菌剂。然而防治植物病害使用化学药剂,又会带来哺乳动物毒性和抗性病原发展之虞。对付这些问题亟待杀菌剂新品种不断问世,而创制杀菌剂主要成份首先要验明其合适和新颖的靶标部位。杀菌剂作用方... 防治植物罹病最有效的措施,往往离不开杀菌剂。然而防治植物病害使用化学药剂,又会带来哺乳动物毒性和抗性病原发展之虞。对付这些问题亟待杀菌剂新品种不断问世,而创制杀菌剂主要成份首先要验明其合适和新颖的靶标部位。杀菌剂作用方式的最新评论,美国科学研究协调理事会(CRC)刊物(1992)的《杀菌剂作用靶标部位》和德国Gustav Fisher Verlag的《现代选择性杀菌剂:性质、应用、作用机制》(1995)有详细介绍。本文着重论述近来苯胺基嘧啶类、苯基吡咯类呼吸作用抑制剂生化认识的进展。并对植物防御系统激活剂进行初步探究。 展开更多
关键词 农药 杀菌剂 化学结构 活性关系
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由铜精矿生产硫酸铜 被引量:1
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作者 梁保安 陈经明 《江苏科技信息》 1997年第3期17-19,共3页
目前,铜精矿主要用来生产金属铜。而硫酸铜则主要由铜及其合金来制备。这样制备硫酸铜由于工艺复杂,成本高,所以经济效益低,而用铜精矿直接生产硫酸铜却具有较高的经济价值。本文具体介绍了由铜精矿生产硫酸铜的工业生产工艺及操作方法。
关键词 铜精矿 硫酸铜 焙烧 浸出
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硫酸铜试验试样根数的确定
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作者 刘美荣 《冶金标准化与质量》 1990年第6期59-61,共3页
关键词 硫酸铜 试验 计算 试样根数 镀锌
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铜锌类复配杀菌剂的功效探讨
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作者 王俊谦 郭维民 《山西化工》 1991年第4期28-29,共2页
近年来,我省运城地区开发了一批铜锌类复配杀菌剂,其中包括抗枯宁、克萎灵、菌枯灵、枯萎灵、保丰灵等。由于未及时办理登记手续,去年《山西日报》作为伪劣农药公布,引起了各方面的关注,从而在一定程度上影响了这类农药的发展。其实它... 近年来,我省运城地区开发了一批铜锌类复配杀菌剂,其中包括抗枯宁、克萎灵、菌枯灵、枯萎灵、保丰灵等。由于未及时办理登记手续,去年《山西日报》作为伪劣农药公布,引起了各方面的关注,从而在一定程度上影响了这类农药的发展。其实它们和已登记的抗枯灵,都是以硫酸铜和硫酸锌为主要原料配制的植物保护性杀菌剂。只是各生产单位在组份上进行了适当调整、增减, 展开更多
关键词 杀菌剂 药效 硫酸铜 硫酸锌
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利用硫化铜矿生产硫酸铜
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作者 张文杰 《中小企业科技信息》 1992年第3期11-12,共2页
关键词 硫化铜矿 硫酸铜
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Structure - Antimicrobial Activity Relationship Investigation of Some Butadiene and Chalcone Derivatives
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作者 Hanoy AL-Amood Hadeel T.AL-Hadithi Ghazwan F. Fadhil 《Journal of Life Sciences》 2013年第7期705-711,共7页
关键词 查尔酮衍生物 活性关系 丁二烯 金黄色葡萄球菌 卤代化合物 二氯苯基 结构 抗菌
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硫酸铜杀菌剂扩展复配制剂
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《农药快讯》 2002年第19期12-12,共1页
关键词 登记 硫酸铜 杀菌剂 复配制剂
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Structure and Activity of Strigolactones: New Plant Hormones with a Rich Future 被引量:9
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作者 Binne Zwanenburg Tomás Pospísil 《Molecular Plant》 SCIE CAS CSCD 2013年第1期38-62,共25页
Strigolactones (SLs) constitute a new class of plant hormones which are active as germination stimulants for seeds of parasitic weeds of Striga, Orobanche, and Pelipanchi spp, in hyphal branching of arbuscular mycor... Strigolactones (SLs) constitute a new class of plant hormones which are active as germination stimulants for seeds of parasitic weeds of Striga, Orobanche, and Pelipanchi spp, in hyphal branching of arbuscular mycorrhizal (AM) fungi and as inhibitors of shoot branching. In this review, the focus is on molecular features of these SLs. The occurrence of SLs in root exudates of host plants is described. The naming protocol for SL according to the International Union of Pure and Applied Chemistry (IUPAC) rules and the 'at a glance' method is explained. The total synthesis of some natural SLs is described with details for all eight stereoisomers of strigol. The problems encountered with assign- ing the correct structure of natural SLs are analyzed for orobanchol, alectrol, and solanacol. The structure-activity relationship of SLs as germination stimulants leads to the identification of the bioactiphore of SLs. Together with a tentative mechanism for the mode of action, a model has been derived that can be used to design and prepare active SL analogs. This working model has been used for the preparation of a series of new SL analogs such as Nijmegen-1, and analogs derived from simple ketones, keto enols, and saccharine. The serendipitous finding of SL mimics which are derived from the D-ring in SLs (appropriately substituted butenolides) is reported. For SL mimics, a mode of action is proposed as well. Recent new results support this proposal. The stability of SLs and SL analogs towards hydrolysis is described and some details of the mechanism of hydrolysis are discussed as well. The attempted isolation of the protein receptor for germination and the current status concerning the biosynthesis of natural SLs are briefly discussed. Some non-SLs as germinating agents are mentioned. The structure-activity relationship for SLs in hyphal branching of AM fungi and in repression of shoot branching is also analyzed. For each of the principle functions, a working model for the design of new active SL analogs is described and its applicability and implications are discussed. It is shown that the three principal functions use a distinct perception system. The importance of stereochemistry for bioactivity has been described for the various functions. 展开更多
关键词 germination stimulant hyphal branching AM fungi inhibition shoot branching plant hormones strigolac-tones structure-activity relationship.
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