首页> 外文期刊>Acta Physiologiae Plantarum >Paraquat and roundup effects on nucleases activities of alfalfa seedlings and alfalfa nucleases activities on paraquat-treated and roundup-treated nucleic acids
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Paraquat and roundup effects on nucleases activities of alfalfa seedlings and alfalfa nucleases activities on paraquat-treated and roundup-treated nucleic acids

机译:百草枯和综述对苜蓿幼苗核酸酶活性的影响以及苜蓿核酸酶对百草枯处理和综述处理的核酸的活性

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The specific activities of acid (pH 5.5) and neutral (pH 7) DNases and RNases were determined in alfalfa (Medicago sativa L.) seedlings grown in the dark in the presence of 3.7 mM paraquat (PQ) or 1 mM roundup (RD). Seedlings were taken at 0, 1, 3, and 5 days. Plant growth parameters (plant height and fresh weight) were dramatically reduced under these conditions of growth comparing to the control (grown in water). The DNase and RNase specific activities of herbicide-treated seedlings were reduced. The reduction of activities ranged by about 50-90 and 15-70% in PQ- and RD-treated seedlings, respectively. In vitro, PQ- and RD-treated nucleic acids [single-stranded DNA (ssDNA), RNA, and plasmid DNA (pl-DNA)] were incubated with acid and neutral nucleases. Both enzymes were isolated and purified from alfalfa seedlings. Electrophoretic analysis on agarose gel of the above incubated mixtures revealed the following: (a) neutral nuclease (pH 7) was capable of hydrolyzing PQ-treated ssDNA while acid nuclease (pH 5.5) was incapable. This could be due to the fact that acid and neutral nucleases displayed different base linkage specificity toward ssDNA; (b) RD formed strong complexes with ssDNA that were unable to be hydrolyzed by both nucleases; (c) in contrast, both enzymes were capable of hydrolyzing PQ- or RD-treated RNA; (d) neutral nuclease was capable of nicking and linearizing both PQ- and RD-treated pl-DNA while acid nuclease had the same activity only toward the PQ-treated pl-DNA; (e) the enzyme activities were not inhibited in the presence of both herbicides. The data suggest that the complexes of PQ or RD with DNA should not be functional substrates of nucleases, and consequently cell processes (e.g., metabolism of nucleic acids, gene expression, replication), in which DNA and nucleases are involved, could be disturbed.
机译:测定了在暗处生长的苜蓿(Medicago sativa L.)幼苗中在3.7 mM百草枯(PQ)或1 mM综述(RD)的条件下酸(pH 5.5)和中性(pH 7)DNase和RNase的比活。在0、1、3和5天取苗。在这些生长条件下,与对照(在水中生长)相比,植物生长参数(植物高度和鲜重)显着降低。除草剂处理的幼苗的DNase和RNase比活性降低。在PQ和RD处理的幼苗中,活性降低的幅度分别为约50-90%和15-70%。在体外,将经PQ和RD处理的核酸[单链DNA(ssDNA),RNA和质粒DNA(p1-DNA)]与酸性和中性核酸酶一起孵育。从苜蓿幼苗中分离并纯化了两种酶。上述孵育混合物的琼脂糖凝胶电泳分析显示:(a)中性核酸酶(pH 7)能够水解经PQ处理的ssDNA,而酸性核酸酶(pH 5.5)无法。这可能是由于酸性和中性核酸酶对ssDNA显示出不同的碱基连接特异性。 (b)RD与ssDNA形成了牢固的复合物,无法被两种核酸酶水解; (c)相反,两种酶都能够水解经PQ或RD处理的RNA; (d)中性核酸酶能够使经PQ处理和RD处理的pl-DNA形成切口并线性化,而酸性核酸酶仅对经PQ处理的pl-DNA具有相同的活性; (e)在两种除草剂的存在下酶的活性均未被抑制。数据表明PQ或RD与DNA的复合物不应是核酸酶的功能底物,因此可能会干扰涉及DNA和核酸酶的细胞过程(例如核酸的代谢,基因表达,复制)。

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