首页> 外文期刊>Journal of Nematology, with Annual of Applied Nematology >Mustard seed meal mixtures: management of Meloidogyne incognita on pepper and potential phytotoxicity
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Mustard seed meal mixtures: management of Meloidogyne incognita on pepper and potential phytotoxicity

机译:芥菜籽粉混合物:胡椒根结线虫的处理和潜在的植物毒性

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摘要

Meals produced when oil is extracted from seeds in the Brassicaceae have been shown to suppress weeds and soilborne pathogens. These seed meals are commonly used individually as soil amendments; the goal of this research was to evaluate seed meal mixes of Brassica juncea (Bj) and Sinapis alba (Sa) against Meloidogyne incognita. Seed meals from Bj 'Pacific Gold' and Sa TdaGold' were tested alone and in combinations to determine rates and application times that would suppress M. incognita on pepper (Capsicum annuum) without phototoxicity. Rates of soil application (% w/w) for the phytotoxicity study were: 0.5 Sa, 0.2 Bj, 0.25 Sa + 0.25 Bj, 0.375 Sa + 0.125 Bj, 0.125 Sa + 0.375 Bj, and 0, applied 0-5 weeks before transplant. Overall, 0.2% Bj was the least toxic meal to pepper seedlings. By comparison, 0.5% S. alba seed meal did not reduce lettuce (Lactuca sativa) seed germination at week 0, but all seed meal treatments containing B. juncea prevented or significantly reduced germination at week 0. Theseed meals did not affect lettuce seed germination at weeks 1-5, but hypocotyl growth was reduced by all except 0.2% Bj at weeks 1, 4 and 5. Brassica juncea and Sa meals were tested for M. incognita suppression at 0.2, 0.15, 0.1 and 0.05%; mixtures were0.1 % Sa + 0.1% Bj, 0.15% Sa + 0.05% Bj, and 0.05% Sa + 0.15% Bj. All treatments were applied 2 weeks before transplant. The 0.2% Bj and 0.05% Sa + 0.15% Bj treatments overall had the longest shoots and highest fresh weights. Eggs per g root were lowestwith 0.1 - 0.2% Bj amendments and the seed meal mixtures. The results indicate that Bj and some Bj + Sa mixtures can be applied close to transplant to suppress M. incognita populations on pepper; consequently, a seed meal mixture could be selected to provide activity against more than one pest or pathogen. For pepper, care should be taken in formulating mixtures so that Sa rates are low compared to Bj.
机译:从十字花科的种子中提取油时产生的膳食已被证明能抑制杂草和土壤传播的病原体。这些种子粉通常单独用作土壤改良剂。这项研究的目的是评估芥菜(Bj)和白菜芥(Sainapis alba(Sa))对根结线虫的抗性。对Bj'Pacific Gold'和Sa TdaGold'的粕粉进行了单独测试,并进行了组合测试,以确定可以抑制无芒分枝杆菌对辣椒(Capsicum annuum)产生光害的速率和施用时间。用于植物毒性研究的土壤施用率(%w / w)为:0.5 Sa,0.2 Bj,0.25 Sa + 0.25 Bj,0.375 Sa + 0.125 Bj,0.125 Sa + 0.375 Bj和0,在移植前0-5周施用。总体而言,0.2%Bj对胡椒幼苗的毒性最低。相比之下,0.5%的白菜种子粕在第0周时并未降低生菜(Lactuca sativa)种子的发芽,但所有含芥菜芽孢杆菌的种子粉处理均在第0周时阻止或显着降低了发芽。在1-5周时,但在第1、4和5周时,除0.2%的Bj外,所有胚轴的生长都降低了。测试了芥菜和meal粕对M. incognita的抑制率分别为0.2、0.15、0.1和0.05%;混合物为0.1%Sa + 0.1%Bj,0.15%Sa + 0.05%Bj和0.05%Sa + 0.15%Bj。移植前2周进行所有治疗。总体上0.2%Bj和0.05%Sa + 0.15%Bj的处理具有最长的芽和最高的鲜重。每克根的鸡蛋含量最低,添加0.1-0.2%Bj修正剂和种粉混合物。结果表明,Bj和某些Bj + Sa的混合物可在移栽附近使用,以抑制辣椒上的隐孢子虫种群。因此,可以选择一种粕粉混合物以提供针对一种以上有害生物或病原体的活性。对于胡椒,应注意配制混合物,以使Sa的含量低于Bj。

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