首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Inheritance and molecular characterization of broad range tolerance to herbicides targeting acetohydroxyacid synthase in sunflower.
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Inheritance and molecular characterization of broad range tolerance to herbicides targeting acetohydroxyacid synthase in sunflower.

机译:对向日葵中靶向乙酰羟酸合酶的除草剂具有广泛耐受性的遗传和分子表征。

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摘要

Ahasl1 is a multilallelic locus where all the induced and natural mutations for herbicide tolerance were described thus far in sunflower (Helianthus annuus L.). The allele Ahasl1-1 confers moderate tolerance to imidazolinone (IMI), Ahasl1-2, and Ahasl1-3 provides high levels of tolerance solely to sulfonylurea (SU) and IMI, respectively. An Argentinean wild sunflower population showing plants with high level of tolerance to either an IMI and a SU herbicide was discovered and used to develop an inbred line designated RW-B. The objectives of this work were to determine the relative level and pattern of cross-tolerance to different AHAS-inhibiting herbicides, the mode of inheritance, and the molecular basis of herbicide tolerance in this line. Slight or no symptoms observed after application of different herbicides indicated that RW-B possesses a completely new pattern of tolerance to AHAS-inhibiting herbicides in sunflower. Biomass response to increasing doses of metsulfuron or imazapyr demonstrated a higher level of tolerance in RW-B with respect to Ahasl1-1/Ahasl1-1 and Ahasl1-2/Ahasl1-2 lines. On the basis of genetic analyses and cosegregation test, it was concluded that tolerance to imazapyr in the original population is inherited as a single, partially dominant nuclear gene and that this gene is controlling the tolerance to four different AHAS-inhibiting herbicides. Pseudo-allelism test permitted us to conclude that the tolerant allele present in RW-B is an allelic variant of Ahasl1-1 and was designated as Ahasl1-4. Nucleotide and deduced amino acid sequence indicated that the Ahasl1-4 allele sequence of RW-B has a leucine codon (TTG) at position 574 (relative to the Arabidopsis thaliana AHAS sequence), whereas the enzyme from susceptible lines has a tryptophan residue (TGG) at this position. The utilization of this new allele in the framework of weed control and crop rotation is discussed.
机译:Ahasl1 是一个多位点基因座,迄今已在向日葵( Helianthus annuus L.)中描述了所有诱导的除草剂耐受性突变和自然突变。等位基因 Ahasl1-1 对咪唑啉酮(IMI), Ahasl1-2 和 Ahasl1-3 具有中等耐受性,仅对磺酰脲(SU)和IMI。发现了显示对IMI和SU除草剂具有高度耐受性的植物的阿根廷野生向日葵种群,并将其用于开发名为RW-B的近交系。这项工作的目的是确定对不同AHAS抑制性除草剂的交叉耐受性的相对水平和模式,遗传模式以及该系列中除草剂耐受性的分子基础。施用不同的除草剂后观察到轻微或没有症状,表明RW-B对向日葵中抑制AHAS的除草剂具有全新的耐受性。生物素对甲磺隆或吡虫嗪剂量增加的反应表明,RW-B对 Ahasl1-1 / Ahasl1-1 和 Ahasl1-2 / Ahasl1-2 行。根据遗传分析和共偏析测试,得出的结论是,原始种群中对吡虫啉的耐受性是作为单个,部分优势的核基因遗传的,并且该基因正在控制对四种不同的抑制AHAS的除草剂的耐受性。伪等位基因测试允许我们得出结论,RW-B中存在的耐受等位基因是 Ahasl1-1 的等位基因变体,并被命名为 Ahasl1-4 。核苷酸和推导的氨基酸序列表明RW-B的 Ahasl1-4 等位基因序列在574位具有一个亮氨酸密码子(TTG)(相对于拟南芥AHAS序列) ),而来自易感品系的酶在此位置具有色氨酸残基(TGG)。讨论了该新等位基因在杂草控制和作物轮作框架中的利用。

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