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Improvement in imidazolinone resistance in Cicer species by induced mutation

机译:通过诱导突变改善对柑橘属物种的咪唑啉酮抗性

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With 1 figure and 1 table Abstract Yield of the cultivated chickpea (Cicer arietinum L.) can be doubled when the sowing time is shifted from spring to autumn in the Mediterranean region; however, weeds are one of the most important and unsolved problems in autumn-sown or irrigated chickpea. To solve weed problem, improvement in herbicide resistance has given priority for effective weed management by the farmers. This study deals with the selection of resistance to imidazolinone (IMI) using induced mutagenesis in three Cicer species including five macrosperma (ILC 8617, CA 2969, Sierra, Mexican white and Spanish), four microsperma (ICC 552, ICC 4951, ICC 4958 and ICC 6119) chickpeas as well as three accessions of annual wild species, one accession of C.similar to bijugum K.H. Rech. and two accessions of C.similar to reticulatum Ladiz., in the field and pot experiments. At the first time, one highly IMI-resistant mutant of C.similar to reticulatum was isolated after active ingredient of IMI on proposed dose was applied with increasing 10 times in field and 20 times in pot experiments. Bottleneck because of weeds on autumn-sown and irrigated chickpea will be solved using the new gene in plant breeding programmes.
机译:用1图1表将地中海地区的播种时间从春季转移到秋季,可以将栽培鹰嘴豆(Cicer arietinum L.)的产量提高一倍。然而,杂草是秋播或灌溉鹰嘴豆中最重要且尚未解决的问题之一。为了解决杂草问题,提高除草剂的抵抗力已成为农民有效管理杂草的重点。这项研究涉及通过诱导诱变在三种Cicer物种中选择对咪唑啉酮(IMI)的抗性,其中包括五个大精子(ILC 8617,CA 2969,Sierra,墨西哥白和西班牙),四个微精子(ICC 552,ICC 4951,ICC 4958 ICC 6119)鹰嘴豆以及一年生野生种的3种种,其中一种C.类似于Bijugum KH Rech。在田间和盆栽实验中,还有两个与网状网状种相似的C.第一次,在建议的剂量下施用IMI的活性成分后,在田间试验中增加了10倍,在盆栽实验中增加了20倍,从而分离出了一个对网纹球菌高度抗IMI的突变体。通过在植物育种计划中使用新基因,将解决由于秋季播种和灌溉鹰嘴豆上的杂草造成的瓶颈。

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