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首页> 外文期刊>Journal of the American Society for Horticultural Science >A Common Genetic Basis for Cross-sensitivity to Mesotrione and Nicosulfuron in Sweet Corn Hybrid Cultivars and Inbreds Grown throughout North America.
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A Common Genetic Basis for Cross-sensitivity to Mesotrione and Nicosulfuron in Sweet Corn Hybrid Cultivars and Inbreds Grown throughout North America.

机译:在整个北美种植的甜玉米杂交品种和自交系中,对甲基磺草酮和烟嘧磺隆具有交叉敏感性的常见遗传基础。

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摘要

Mutation of a cytochrome P450 (CYP) gene on the short arm of chromosome five, referred to as nsf1 or ben1, conditions sensitivity to certain P450-metabolized herbicides in corn (Zea mays L.). Previous research has shown that the sweet corn inbred Cr1 is sensitive to nicosulfuron, mesotrione, and at least seven other P450-metabolized herbicides with five different modes of action. Although the nsf1/ben1 CYP gene has not been sequenced from Cr1, a QTL that conditions cross-sensitivity to P450-metabolized herbicides was detected in a segregating population of Cr1 x Cr2 (herbicide tolerant) on the short arm chromosome five in tight linkage disequilibrium with the nsf1/ben1 CYP locus. Sweet corn hybrid cultivars and inbreds that had been identified in previous research as being susceptible to injury from P450-metabolized herbicides were tested in this study to determine if they were allelic with Cr1 for cross-sensitivity to nicosulfuron and mesotrione. These cultivars and inbreds were developed by 12 independent commercial breeding programs. These cultivars include sugary, sugary enhancer, and shrunken-2 endosperm types that are grown for processing and fresh consumption in markets throughout North America and in other temperate climates throughout the world. Each hybrid cultivar, their F2 progeny, and progeny from testcrosses of cultivars with Cr1 and Cr2 were evaluated for responses to mesotrione and nicosulfuron. Each inbred line, progeny from crosses of inbreds with Cr1 and Cr2, and F2 progeny from crosses of inbreds with Cr1 were also tested. Based on segregation of progeny from testcrosses with Cr1 and Cr2 and the F2 generation, 45 sweet corn hybrid cultivars and 29 sweet corn inbreds, including lines from each of the 12 breeding programs, appeared to be sensitive to nicosulfuron and mesotrione as the result of a gene that is the same as or very closely linked to the gene in Cr1. None of the cultivars or inbreds appeared to be sensitive to these herbicides as a result of other independent genes; however, additional genes that modify responses to these herbicides may be present in a few cases. The presence of a gene conditioning sensitivity to nicosulfuron and mesotrione, and probably to several other P450-metablolized herbicides, provides an explanation for varied levels of injury and inconsistent responses of sweet corn hybrid cultivars under differing environmental conditions. This information provides a basis from which an industry-wide concern with herbicide sensitivity in sweet corn can be addressed by various methods, including the elimination of an allele rendering germplasm sensitive.
机译:第五号染色体短臂上的细胞色素P450(CYP)基因突变称为nsf1或ben1,这导致对玉米中某些P450代谢除草剂的敏感性受到限制。先前的研究表明,甜玉米自交系Cr1对烟嘧磺隆,甲基磺草酮和至少其他七个具有五种不同作用方式的P450代谢除草剂敏感。尽管尚未从Cr1测序nsf1 / ben1 CYP基因,但在紧密连锁不平衡的短臂染色体5的Cr1 x Cr2(耐除草剂)隔离种群中检测到了对P450代谢除草剂具有交叉敏感性的QTL。 nsf1 / ben1 CYP位点。在这项研究中,对在先前研究中确定为易受P450代谢除草剂伤害的甜玉米杂交品种和近交系进行了测试,以确定它们是否与Cr1等位基因对烟嘧磺隆和甲基磺草酮具有交叉敏感性。这些品种和近交系由12个独立的商业育种计划开发而成。这些品种包括含糖,含糖增强剂和收缩型2胚乳,这些品种在北美各地以及全球其他温带气候下的加工和新鲜食用中生长。评估每个杂交品种,它们的F2后代以及来自品种与Cr1和Cr2的测试杂交的后代对甲基磺草酮和烟嘧磺隆的响应。还测试了每个自交系,即自交系与Cr1和Cr2杂交的后代,以及自交系与Cr1杂交的F2后代。基于与Cr1和Cr2的测交和F2代的后代分离,包括45个甜玉米杂交品种和29个甜玉米自交系,包括来自12个育种计划中的每个系的品系,由于对a的影响,对烟嘧磺隆和甲基磺草酮敏感。与Cr1中的基因相同或紧密相连的基因。由于其他独立基因的影响,所有品种或近交系对这些除草剂均不敏感。但是,在少数情况下可能会存在修饰对这些除草剂反应的其他基因。基因对烟嘧磺隆和甲基磺草酮,以及可能对其他几种经P450代谢的除草剂敏感的条件调节,为不同水平的环境条件下甜玉米杂交品种的伤害水平不同和响应不一致提供了解释。该信息提供了一个基础,可以通过各种方法解决甜玉米中除草剂敏感性的整个行业问题,包括消除对种质敏感的等位基因。

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