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首页> 外文期刊>Pesticide Biochemistry and Physiology >Characterization of the acetolactate synthase gene family in sensitive and resistant biotypes of two tetraploid Monochoria weeds, M. vaginalis and M. korsakowii
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Characterization of the acetolactate synthase gene family in sensitive and resistant biotypes of two tetraploid Monochoria weeds, M. vaginalis and M. korsakowii

机译:两只四倍体单影杂草敏感性和抗性生物型的丙酮酸合成酶基因系列的表征,M.阴道和M. Korsakowii

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摘要

Monochoria vaginalis and M. korsakowii are allotetraploid noxious weeds in rice cultivation. Occurrences of resistance to acetolactate synthase (ALS)-inhibiting herbicides have been reported in these weeds in Japan since the 1990s. The existence of multiple copies of ALS genes in both species has hindered and complicated the detailed study of molecular mechanisms in them. To determine the copy number and full-length of ALS genes in both species, we first amplified partial sequences of ALS genes and separated them by cloning. Five and three distinct sequences were identified in M. vaginalis and M. korsakowii, respectively. RACE and TAIL PCR successfully isolated full-length ALS genes, revealing that one copy of ALS genes in both species is a pseudogene formed by a frameshift mutation. Interestingly, one of the four putative functional ALS genes in M. vaginalis contains an intron in the 3'-untranslated region. Amplification and sequencing of the full-length ALS genes in sensitive and suspected resistant lines revealed a non-synonymous point mutation at codon Pro197, resulting in amino acid substitutions (Leu, Ser, or Ala) well known to endow ALS inhibitor resistance. Importantly, codon Prol 97 of the M. korsakowii pseudogene encodes leucine (Leu) both in resistant and sensitive plants, which is also known to confer ALS inhibitor resistance when ALS genes are functional. Dose responses to imazosulfuron of the lines analyzed for ALS genes were in agreement with the existence of the mutations. These results suggest that some caution is needed when diagnosing molecular resistance in M. korsakowii. The information of copy number and full-length sequences will help diagnose ALS resistance and make a basis for the study of the evolution of ALS resistance in Monochoria spp.
机译:Monochoria阴道和M. Korsakowii是水稻种植中的同种异体传递杂草。自20世纪90年代以来,在日本的这些杂草中报道了对乙酰乳酸合酶(ALS)的抗性发生的抵抗力。两种物种中Als基因的多拷贝的存在已经阻碍并复杂化了它们的分子机制的详细研究。为了确定两个物种中的拷贝数和全长的ALS基因,我们首先扩增Als基因的部分序列并通过克隆分离它们。分别在M.Vaginalis和M. Korsakowii中鉴定了五个和三种不同的序列。种族和尾PCR成功分离出全长Als基因,揭示了两种物种中的一种Als基因的拷贝是由框架突变形成的伪组合。有趣的是,M.阴道中的四个推定的官能Als基因中的一种中的一种在3'-未翻译的区域中含有内含子。在敏感和疑似抗性线中的全长Als基因的扩增和测序显示了密码子Pro197的非同义点突变,导致氨基酸取代(Leu,Ser,或Ala)熟知,该型均可赋予Als抑制剂抗性。重要的是,M.Korsakowii假蛋白的密码子Pross 97在抗性和敏感的植物中编码亮氨酸(Leu),当Als基因是功能性时,也已知批准促进ALS抑制剂阻力。对Als基因分析的线的咪唑氟嗪的剂量反应与突变的存在一致。这些结果表明,在诊断M. Korakowii的分子抗性时需要一些小心。拷贝数和全长序列的信息将有助于诊断ALS抗性,并为单色SPP抗性的演变进行依据。

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