首页> 外文期刊>Journal of Spices and Aromatic Crops >Mitigating Phytophthora foot rot and slow decline diseases of black pepper through the deployment of bacterial antagonists
【24h】

Mitigating Phytophthora foot rot and slow decline diseases of black pepper through the deployment of bacterial antagonists

机译:通过部署细菌拮抗剂,减轻植物植物脚腐和缓慢的黑胡椒疾病

获取原文
获取原文并翻译 | 示例
       

摘要

Field trial was conducted at ICAR-IISR Experimental Farm, Peruvannamuzhi, Kozhikode district, Kerala, during 2008-2013 for managing foot rot and slow decline diseases of black pepper using IPM modules. Planting material of black pepper was produced by raising two node runner cuttings treated with chemicals/bioagents. A plot having non-living standards in 3 x 2 m runner was selected. Pits of 50 cm~3 were made and buffered with lime and cow dung. Planting was done with three month old rooted plants whereroots were primed with bacterium/chemical. The experiment was in RCBD with eight treatments viz., Pseudomonas aeruginosa (Bp 35) + Phorate, P. putida (Bp 25) + Phorate, P. fluorescence (IISR 6) (later identified as P.aeruginosa) + Phorate, Bacillus megaterium (Bp 17) + Metalaxyl Mz, Curtobacterium luteum (TC10) + Metalaxyl Mz, P. aeruginosa (IISR 853) + Metalaxyl Mz and Phorate + Metalaxyl Mz (chemical check) and an absolute control with no treatments. The treatments were imposed at planting in May andsubsequent applications in September and thereafter every year. During the initial two years, plants were maintained weed free by plastic mulching. Shades and irrigation were provided during summer in the first two years and thereafter only mulching andirrigation were continued. All the plants were sprayed with ZnS0_4 (0.25%), DAP (0.5%) and MgS04 (0.25%) during May and September from second year onwards. For controlling 'Pollu' beetle (Longitarsus nigripennis) and anthracnose (Colletotrichum gloeosporioides), quinalphos (0.075%) + Bordeaux mixture (1%) was sprayed twice in September and November. Soil biological properties and pathogen population were monitored regularly. No foot rot incidence due to Phytophthora spp. could be noticed in any of the treatments till the end of the experimental period. However, nematode infection, manifested as yellowing of the vines, as well as nematode population showed a gradual increase. Among the treatments, C. luteum (TC 10) with Metalaxyl Mz showed significant reduction in nematode population with better growth and yield.
机译:在2008 - 2013年,在2008 - 2013年,在2008 - 2013年,在2008 - 2013年,在2008 - 2013年,喀拉拉邦的秘鲁·伊斯兰实验农场,秘鲁·苏志岛,喀拉拉邦,用于使用IPM模块进行黑胡椒的腐败和缓慢下降疾病。通过培养用化学物质/生物蛋白处理的两个节点旋流器切屑来制作黑胡椒的种植材料。选择了在3 x 2 m跑步器中具有非生活标准的绘图。用石灰和牛粪进行50厘米〜3的凹坑。用三个月的生根植物进行种植,曲目次引发细菌/化学品。该实验是在RCBD中,八种治疗,铜绿假单胞菌,铜绿假单胞菌(BP 35)+ P.PTIDA(BP 25)+电池,P.荧光(IISR 6)(后来鉴定为P.Aeruginosa)+ Phorate,Bacillus Megaterium (BP 17)+ Metalaxyl MZ,凝胶杆菌(TC10)+ Metalaxyl MZ,P.铜绿假单胞菌(IISR 853)+ Metalaxyl MZ和Phore + Metalaxyl MZ(化学检查)和无治疗的绝对控制。该治疗在9月份和每年9月的5月份和股票申请中施加治疗。在最初的两年内,植物通过塑料覆盖而自由地维持杂草。在前两年内夏天提供了色调和灌溉,此后继续覆盖和测量。在5月和9月从第二年开始,将所有植物用ZnS0_4(0.25%),DAP(0.5%)和MGS04(0.25%)喷洒。对于控制'甘蓝甲虫(Longitarsus nigripenis)和炭疽病(Colletotrichum gloooSporoIroides),9月和11月在9月和11月喷洒两次喹吖啶酚(0.075%)+波尔多混合物(1%)。定期监测土壤生物学性质和病原体群。由于植物培尔萨SPP而没有脚腐型入射。可以在任何治疗中被注意到直到实验期结束。然而,线虫感染,表现为葡萄藤的泛黄,以及线虫人群表现出逐渐增加。在治疗中,C.含有金属结构的C. Luteum(TC 10)在Nematode群具有更好的生长和产率的情况下显着降低。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号