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Identification of field tolerance to bean pod mottle and soybean mosaic viruses in soybean.

机译:鉴定大豆中豆荚斑驳和大豆花叶病毒的田间耐受性。

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Development of a method to identify field tolerance to bean pod mottle and soybean mosaic viruses (BPMV and SMV) in soybean [Glycine max (L.) Merr.] allowed evaluation of 33 soybean accessions for field response to BPMV and SMV. Based on measurement of parameters that included relative level of virus antigen in seed and mottling of soybean seed coats, three accessions showed tolerance to SMV and BPMV (PI 561353, M90-18411, PI 507353), eight were tolerant to SMV (MN 1301, M92-160047, M91-113037, PI 423826A, A99-216031, NE 3001, U96-2408, Colfax), and four were tolerant to BPMV (PI 184042, M93-326056, M95-255017, Spansoy 201). Treatment of seed with the insecticide imidacloprid (1-[(6-chloro-3-pyridinyl)methyl]-N-nitro-2-imidazolidinimine) did not effect disease control. The relative level of virus antigen in seed harvested from experimental plots was shown to correlate significantly with virus incidence in plots. The data suggest that quantitative assay of virus seed antigen may provide a useful estimate of relative virus incidence in test plots and aid identification of field tolerance to seed-borne viruses..
机译:鉴定大豆对豆荚斑驳和大豆花叶病毒(BPMV和SMV)的田间耐受性的方法的开发[Glycine max(L.)Merr。]允许评估33种大豆对BPMV和SMV的田间响应。根据包括种子中的病毒抗原相对水平和大豆种皮斑驳的参数在内的参数测量结果,三个种质显示出对SMV和BPMV的耐受性(PI 561353,M90-18411,PI 507353),八个种质表现出对SMV的耐受性(MN 1301, M92-160047,M91-113037,PI 423826A,A99-216031,NE 3001,U96-2408,Colfax),其中四个耐受BPMV(PI 184042,M93-326056,M95-255017,Spansoy 201)。用杀虫剂吡虫啉(1-[(6-氯-3-吡啶基)甲基] -N-硝基-2-咪唑啉亚胺)处理种子不影响病害防治。从实验地块收获的种子中病毒抗原的相对水平显示出与地块中病毒发生率显着相关。数据表明,病毒种子抗原的定量测定可提供试验区中相对病毒发生率的有用估计,并有助于鉴定对种子传播的病毒的田间耐受性。

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