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Grafting and Paladin Pic-21 for Nematode and Weed Management in Vegetable Production

机译:蔬菜生产中线虫和杂草管理的嫁接和圣骑士Pic-21

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摘要

Two years of field trials conducted in a Meloidogyne incognita-infested field evaluated grafting and Paladin Pic-21 (dimethyl disulfide:chloropicrin [DMDS:Pic] 79:21) for root-knot nematode and weed control in tomato and melon. Tomato rootstocks evaluated were; ‘TX301’, ‘Multifort’, and ‘Aloha’. ‘Florida 47’ was the scion and the nongrafted control. A double crop of melon was planted into existing beds following tomato harvest. Melon rootstocks, C. metulifer and ‘Tetsukabuto’, were evaluated with nongrafted ‘Athena’ in year 1. In year 2, watermelon followed tomato with scion variety ‘Tri-X Palomar’ as the control and also grafted onto ‘Emphasis’ and ‘Strongtosa’ rootstocks. Four soil treatments were applied in fall both years under Canslit metalized film; Paladin Pic-21, methyl bromide:chloropicrin (MeBr:C33, 67:33), Midas (iodomethane:chloropicrin 50:50), and a herbicide-treated control. M. incognita J2 in soil were highest in herbicide control plots and nongrafted tomato. All soil treatments produced similar tomato growth, which was greater than the herbicide control. All treatments reduced M. incognita J2 in roots compared to the herbicide control. ‘Multifort’ rootstock produced the largest and healthiest roots; however, the number of M. incognita isolated from roots did not differ among the tomato rootstocks tested. Galling on tomato was highest in herbicide control plots and nongrafted plants. In melon, M. incognita J2 in soil did not differ among melon rootstocks, but numbers isolated from melon rootstocks increased in ‘Tetsukabuto’ compared with C. metuliferus. ‘Tetsukabuto’ were larger root systems than nongrafted ‘Athena’. All fumigants provided protection for all melon rootstocks against galling by M. incognita compared to the herbicide control. Galling on C. metuliferus rootstock was less in all fumigant treatments compared with nongrafted ‘Athena’ and ‘Tetsukabuto’. In watermelon, M. incognita in soil and roots did not differ among soil treatments or watermelon rootstocks, and yield was lower in both grafted rootstocks compared with the nongrafted control. All soil treatments increased average fruit weight of watermelon compared with the herbicide control, and provided effective weed control, keeping the most predominant weed, purple nutsedge (Cyperus rotundus L.), density at or below 1/m row. Grafting commercial scions onto M. incognita-resistant rootstocks has potential for nematode management combined with soil treatments or as a stand-alone component in crop production systems.
机译:在根结线虫感染的田间进行了两年的田间试验,评估了嫁接和圣骑士Pic-21(二甲基二硫化物:氯化苦[DMDS:Pic] 79:21)对番茄和甜瓜根结线虫以及杂草的控制。评估番茄砧木; “ TX301”,“ Multifort”和“ Aloha”。 “佛罗里达47”是接穗和非嫁接对照。番茄收获后,将双倍的甜瓜种植到现有的床上。在第1年用非嫁接的'Athena'对甜瓜的砧木C. metulifer和'Tetsukabuto'进行了评估。在第2年,西瓜继之以接穗变种'Tri-X Palomar'作为对照,并嫁接到了'Emphasis'和'' Strongtosa的砧木。在Canslit金属化膜下,在秋季都进行了四种土壤处理。圣骑士Pic-21,甲基溴:氯仿(MeBr:C33,67:33),麦达斯(碘甲烷:氯仿50:50)和除草剂处理的对照。在除草剂对照样地和未嫁接的番茄中,土壤隐孢子虫M2最高。所有土壤处理均产生相似的番茄生长,大于除草剂对照。与除草剂对照相比,所有处理均降低了根系中的根结线虫J2。 “ Multifort”砧木产生了最大,最健康的根。然而,从根中分离出的隐孢子虫数量在所测试的番茄砧木中没有差异。在除草剂对照地块和非嫁接植物中,番茄的割率最高。在甜瓜中,土壤根结线虫J2在甜瓜根茎之间没有差异,但与梅角线虫相比,“ Tetsukabuto”中从甜瓜根茎中分离的数量有所增加。与未嫁接的雅典娜相比,“ Tetsukabuto”是更大的根系。与除草剂对照相比,所有熏蒸剂均能保护所有瓜类砧木免遭隐线菌咬伤。与非嫁接的“雅典娜”和“特克斯卡布托”相比,在所有熏蒸剂处理中,枯萎病菌根茎的Gall积较少。在西瓜中,土壤处理和根系中的隐孢子虫在土壤处理或西瓜砧木之间没有差异,并且两种嫁接砧木的产量均低于非嫁接对照。与除草剂控制相比,所有土壤处理均增加了西瓜的平均果实重量,并提供了有效的除草控制,保持了最主要的杂草紫色purple(Cyperus rotundus L.),密度在或低于1 / m行。将商业接穗嫁接到抗隐孢子虫的砧木上,具有与土壤处理或作物生产系统中的独立组件结合的线虫管理潜力。

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