首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Responses of maize (Zea mays L.) near isogenic lines carrying Wsm1, Wsm2, and Wsm3 to three viruses in the Potyviridae
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Responses of maize (Zea mays L.) near isogenic lines carrying Wsm1, Wsm2, and Wsm3 to three viruses in the Potyviridae

机译:携带Wsm1,Wsm2和Wsm3的等基因系附近的玉米(Zea mays L.)对Potyviridae中的三种病毒的反应

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摘要

Genes on chromosomes six (Wsm1), three (Wsm2) and ten (Wsm3) in the maize (Zea mays L.) inbred line Pa405 control resistance to Wheat streak mosaic virus (WSMV), and the same or closely linked genes control resistance to Maize dwarf mosaic virus (MDMV) and Sugarcane mosaic virus (SCMV). Near isogenic lines (NIL) carrying one or two of the genes were developed by introgressing regions of the respective chromosomes into the susceptible line Oh28 and tested for their responses to WSMV, MDMV, and SCMV in the field and greenhouse. F-1 progeny from NIL x Oh28 were also tested. Wsm1, or closely linked genes, provided resistance to all three viruses, as determined by symptom incidence and severity. Wsm2 and Wsm3 provided resistance to WSMV. Wsm2 and/or Wsm3 provided no resistance to MDMV, but significantly increased resistance in plants with one Wsm1 allele. NIL carrying Wsm1, Wsm2, or Wsm3 had similar SCMV resistance in the field, but NIL with Wsm2 and Wsm3 were not resistant in the greenhouse. Addition of Wsm2 to Wsm1 increased SCMV resistance in the field. For all viruses, symptom incidence was higher in the greenhouse than in the field, and relative disease severity was higher in the greenhouse for WSMV and MDMV. An Italian MDMV isolate and the Ohio SCMV infected the Wsm1 NIL, while the Ohio MDMV and Seehausen SCMV isolates did not. Our results indicate that the three genes, or closely linked loci, provide virus resistance. Resistance conferred by the three genes is influenced by interactions among the genes, the virus species, the virus isolate, and the environment.
机译:玉米(Zea mays L.)自交系Pa405中第6(Wsm1),第3(Wsm2)和第10(Wsm3)染色体上的基因控制对小麦条纹花叶病毒(WSMV)的抗性,相同或紧密联系的基因控制对玉米矮花叶病毒(MDMV)和甘蔗花叶病毒(SCMV)。通过将各自染色体的区域渗入易感株Oh28中来开发携带一种或两种基因的近等基因系(NIL),并在田间和温室中测试它们对WSMV,MDMV和SCMV的反应。还测试了来自NIL x Oh28的F-1后代。根据症状发生率和严重程度确定,Wsm1或紧密相关的基因对所有三种病毒提供抗药性。 Wsm2和Wsm3提供了对WSMV的抵抗力。 Wsm2和/或Wsm3没有提供对MDMV的抗性,但是在具有一个Wsm1等位基因的植物中却显着增加了抗性。携带Wsm1,Wsm2或Wsm3的NIL在田间具有相似的SCMV抗性,但是在温室中,带有Wsm2和Wsm3的NIL则没有抗性。在现场将Wsm2添加到Wsm1可以提高SCMV抵抗力。对于所有病毒,WSMV和MDMV在温室中的症状发生率都比田间高,相对疾病的严重性也更高。意大利MDMV分离株和俄亥俄SCMV感染了Wsm1 NIL,而俄亥俄MDMV和Seehausen SCMV分离株未感染。我们的结果表明,这三个基因或紧密连锁的基因座提供了病毒抗性。这三个基因赋予的抗性受基因,病毒种类,病毒分离株和环境之间相互作用的影响。

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