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首页> 外文期刊>Toxicological and Environmental Chemistry >Evaluation of cytogenetic effects of deltamethrin in root meristem cells of Allium sativum and Allium cepa: A possible mechanism of chromosome damage
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Evaluation of cytogenetic effects of deltamethrin in root meristem cells of Allium sativum and Allium cepa: A possible mechanism of chromosome damage

机译:评价溴氰菊酯对大蒜和洋葱的分生组织细胞的细胞遗传学作用:染色体损伤的可能机制

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To establish the use of Allium sativum as a sensitive test model for genotoxicity, cytogenetic effects of commercially formulated deltamethrin were examined through chromosomal and mitotic aberrations in the root meristem cells of A. sativum and Allium cepa. Ultraviolet (UV) and Fourier transform infrared (FTIR) spectral measurements were also carried out to understand the interaction of deltamethrin with DNA. Test concentrations of deltamethrin 0.06, 0.12, 0.25, 0.5, 1, or 2 mg kg~(-1) were mixed in soil and the garlic cloves/onion bulbs were placed over deltamethrin-contaminated soil. Some roots were sampled at 48 h exposure and other intact roots were washed thoroughly with distilled water and left for 48 h recovery in normal soil. Cells analyzed immediately after the exposure showed a significant, concentration-dependent inhibition of mitotic index (MI) and induction of mitotic and chromosomal aberrations (MA and CA) in both the test systems. The observed CA and MA were relatively higher in A. sativum system compared to A. cepa. The 48 h recovery period reduced the effect of the test compound on % aberrations; however, cells exposed to 1 and 2 ppm showed a significant frequency of aberrations despite the recovery period. Data indicate that higher concentrations of deltamethrin induce CA and MA in A. sativum and A. cepa. The present study demonstrates greater sensitivity of A. sativum versus A. cepa and may be used as a sensitive and reliable test system for environmental monitoring. A bathochromic shift observed in UV absorption spectra reveals that deltamethrin binds with DNA. Role of vibrational modes of the active site in the recognition (via polarization) and reaction of deltamethrin with DNA was described. Based on data of valence charge distributions on the atoms of deltamethrin, spectroscopic studies and structural properties, a possible mechanism was proposed for the interaction of deltamethrin with DNA resulting in chromosomal damage.
机译:为了建立使用大蒜作为遗传毒性敏感测试模型的用途,通过在番茄和大蒜的根分生组织细胞中通过染色体和有丝分裂畸变检查了商业配制的溴氰菊酯的细胞遗传学作用。还进行了紫外线(UV)和傅立叶变换红外(FTIR)光谱测量,以了解溴氰菊酯与DNA的相互作用。在土壤中混合测试浓度为0.06、0.12、0.25、0.5、1或2 mg kg〜(-1)的溴氰菊酯,并将大蒜丁香/洋葱鳞茎放在受溴氰菊酯污染的土壤上。在暴露的48小时内取样一些根,并用蒸馏水彻底清洗其他完整的根,并在正常土壤中放置48小时。暴露后立即分析的细胞在两个测试系统中均显示出浓度依赖性的有丝分裂指数(MI)显着抑制以及有丝分裂和染色体畸变的诱导(MA和CA)。相较于洋葱曲霉,所观察到的CA和MA在番茄芽孢杆菌系统中相对较高。 48小时的恢复期降低了测试化合物对畸变百分数的影响。然而,尽管处于恢复期,但暴露于1和2 ppm的细胞仍显示出明显的畸变频率。数据表明,较高的溴氰菊酯浓度可诱导番茄和番茄中的CA和MA。本研究表明,相对于洋葱,A。sativum具有更高的敏感性,可以用作环境监测的灵敏可靠的测试系统。在紫外线吸收光谱中观察到的红移表明溴氰菊酯与DNA结合。描述了活性部位的振动模式在溴氰菊酯与DNA的识别(通过极化)和反应中的作用。基于溴氰菊酯原子上的价电荷分布数据,光谱研究和结构性质,提出了溴氰菊酯与DNA相互作用导致染色体损伤的可能机理。

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