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WRR4C基因正调控拟南芥对橡胶树白粉菌和豇豆白粉菌的抗病性
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作者 王昊 戎伟 《植物病理学报》 CAS CSCD 北大核心 2024年第2期355-363,共9页
橡胶树白粉菌(Oidium heveae)与拟南芥野生型Col-0是一种非亲和相互作用,激发依赖于EDS1(ENHANCED DISEASE SUSCEPTIBILITY 1)和PAD4(PHYTOALEXIN DEFICIENT 4)的抗病性,推测TIR-NB-LRR(TOLL INTERLEUKIN 1 RECEPTOR NUCLEOTIDE-BINDING... 橡胶树白粉菌(Oidium heveae)与拟南芥野生型Col-0是一种非亲和相互作用,激发依赖于EDS1(ENHANCED DISEASE SUSCEPTIBILITY 1)和PAD4(PHYTOALEXIN DEFICIENT 4)的抗病性,推测TIR-NB-LRR(TOLL INTERLEUKIN 1 RECEPTOR NUCLEOTIDE-BINDING LEUCINE-RICH REPEATS)类抗病基因参与对O.heveae的抗病性。本研究通过筛选针对O.heveae的TIR-NB-LRR类差异表达基因,发现WRR4C(white rust resistance 4 C)基因受O.heveae的诱导上调表达。经过表型分析鉴定,O.heveae可以在2个wrr4c单突变体上形成浓密的菌丝网络和少量的分生孢子。同时,O.heveae在wrr4c突变体上激发的细胞死亡、胼胝体沉积和致病相关基因PR1(Pathogenesis related 1)的表达都显著降低,暗示着WRR4C基因正调控拟南芥对橡胶树白粉菌的抗病性。然而,通过白粉菌细胞进入率测定,WRR4C基因并不参与拟南芥对O.heveae的细胞进入抗性。进一步利用荧光定量PCR分析发现,WRR4C基因受O.heveae的诱导,在侵染后的48 h表达量达到最高,推测WRR4C基因主要在白粉菌细胞进入后发挥抗病功能。另外,通过接种豇豆白粉菌,发现WRR4C基因同时正调控拟南芥对豇豆白粉菌的抗病性。 展开更多
关键词 拟南芥 橡胶树白粉 抗病基因 WRR4C 豇豆白粉菌
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Effect of Four Pesticides on Controlling Autumn Cowpea Greenhouse Whitefly
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作者 彭昌家 白体坤 +2 位作者 丁攀 冯礼斌 杨宇衡 《Agricultural Science & Technology》 CAS 2016年第9期2119-2123,共5页
In order to mitigate the occurrence and damage of cowpea whitefly, reduce chemical pesticide consumption, residue and environmental pollution, the methods of forecasting, randomized block design andstatistical analysi... In order to mitigate the occurrence and damage of cowpea whitefly, reduce chemical pesticide consumption, residue and environmental pollution, the methods of forecasting, randomized block design andstatistical analysis were used in field efficacy trials, to study the control effect of cowpea anthracnose by usingchemical pesticides dinotefuran, acetamiprid, pymetrozine, and bio-pesticide avermectin. The results showed that after applying 1.85% avermectin EC 375 g, 20% dinotefuran SP 600 g, 5% acetamiprid WP 600 g, and 25% pymetrozine WP 600 g (control pesticide) per hm2 once every 5-8 days, and 3 times continuously underserious autumn occurrence of greenhouse whitefly, the control efficacy was 90.9%, 97.0%, 88.0%, 93.9%respectively on the 7th day after the pesticides application; 97.4%, 92.1%, 84.2%, 89.4% respectively on the 14th day after the pesticides application; and 95.6%, 86.7%, 82.2%, 84.5%, respectively on the 20th day afterthe pesticides application. The control effects among avermectin, acetamiprid and pymetrozine were not significantly different, while the effects of avermectin and pymetrozine were significantly higher than that of acetamiprid on the 7th day. The control effects among avermectin, dinotefuran and pymetrozine were not significantly different, while significantly higher than that of acetamiprid on the 14th day. The control effect of avermectin was significantly higher than that of dinotefuran, acetamiprid and pymetrozine on the 20th day. Meanwhile, the control effect of avermectin was slightly lower, higher and much higher than that of dinotefuran on the 7th, 14th, 20th day respectively after the treatment. These results indicated that the four pesticides,especiaLly biopesticide avermectin, were ideal pesticides, which could not only be used for controlling cowpea whitefly, but also realize modern, green, organic and ecological agricultural production. 展开更多
关键词 COWPEA Greenhouse whitefly Bio-pesticide AVERMECTINS Chemical pesticides DINOTEFURAN ACETAMIPRID PYMETROZINE Control effect
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