Newhouse K E, Smith W A, Starrett M A, Schaefer T J, Singh B K
American Cyanamid Company, Princeton, New Jersey 08543-0400.
Plant Physiol. 1992 Oct;100(2):882-6. doi: 10.1104/pp.100.2.882.
An imidazolinone-tolerant wheat (Triticum aestivum L. em Thell) mutant in the winter wheat cultivar Fidel has been identified and characterized. The mutant was isolated from a population derived through seed mutagenesis of the variety with an aqueous solution containing sodium azide. Imidazolinone-tolerant wheat seedlings were selected from the M(2) generation of the population in the presence of imazethapyr herbicide and identified as herbicide-insensitive individuals. The trait is inherited as a single semidominant gene and confers high levels of tolerance to imazethapyr. Acetohydroxyacid synthase activity in extracts from imidazolinonetolerant plants was less inhibited by imazethapyr than the enzyme from the wild type. The herbicide-tolerant plants have a completely normal phenotype and display no negative effects on growth and yield in either the absence or presence of imazethapyr.
在冬小麦品种“菲德尔”中已鉴定并表征了一个对咪唑啉酮耐受的小麦(普通小麦)突变体。该突变体是从用含叠氮化钠的水溶液对该品种进行种子诱变产生的群体中分离出来的。在甲氧咪草烟除草剂存在的情况下,从该群体的M(2)代中筛选出对咪唑啉酮耐受的小麦幼苗,并将其鉴定为对除草剂不敏感的个体。该性状作为单个半显性基因遗传,并赋予对甲氧咪草烟的高耐受性。与野生型的酶相比,咪唑啉酮耐受植物提取物中的乙酰羟酸合酶活性受甲氧咪草烟的抑制较小。耐除草剂植物具有完全正常的表型,在不存在或存在甲氧咪草烟的情况下,对生长和产量均无负面影响。