Department of Botany, Visva-Bharati, Santiniketan, 731235 West Bengal India ; P.G. Department of Botany, Hooghly Mohsin College, Chinsurah, Hooghly, 712101 West Bengal India.
Indian J Microbiol. 2012 Jun;52(2):275-80. doi: 10.1007/s12088-011-0212-4. Epub 2011 Aug 13.
Cyanobacterial populations introduced into crop fields as biofertilizer become non-target organisms for the pesticides and fungicides applied in the field. Effect of four commonly used pesticides viz. Bagalol, Mancozeb (fungicides), Thiodan and Phorate (insecticides) was studied on growth and different enzymes of four cyanobacterial species viz. Nostoc ellipsosporum, Scytonema simplex, Tolypothrix tenuis, and Westiellopsis prolifica. EC 50 concentration of each pesticide was determined for all cyanobacteria. Bagalol and Thiodan were found to be the most toxic. Both the fungicides and insecticides inhibited the activity of nitrogenase and glutamine synthetase (GS) at EC 50 concentration in all the four species studied. Bagalol incurred maximum inhibition of nitrogenase and GS activity on N. ellipsosporum and S. simplex while Thiodan and Phorate had maximum effect on T. tenuis, and W. prolifica. Mancozeb had lesser effect on all the above enzymes. One catabolic enzyme of carbohydrate metabolism, isocitrate dehydrogenase (ICDH) and one anabolic enzyme isocitrate lyase (ICL), which is related to glyoxylate pathway as well as gluconeogenesis, were also assayed. Cell free extracts of cyanobacteria treated with pesticides for 7 days show a drastic reduction of ICDH activity. ICL activity was induced in the organisms when treated with pesticides.
作为生物肥料引入农田的蓝藻种群成为田间施用的农药和杀菌剂的非靶标生物。研究了四种常用农药(Bagalol、Mancozeb(杀菌剂)、Thiodan 和 Phorate(杀虫剂))对四种蓝藻物种(Nostoc ellipsosporum、Scytonema simplex、Tolypothrix tenuis 和 Westiellopsis prolifica)的生长和不同酶的影响。确定了每种农药对所有蓝藻的 EC50 浓度。Bagalol 和 Thiodan 被发现毒性最大。两种杀菌剂和杀虫剂都在 EC50 浓度下抑制了所有四种研究物种的固氮酶和谷氨酰胺合成酶 (GS) 的活性。Bagalol 对 N. ellipsosporum 和 S. simplex 的固氮酶和 GS 活性抑制最大,而 Thiodan 和 Phorate 对 T. tenuis 和 W. prolifica 的影响最大。Mancozeb 对上述所有酶的影响较小。还测定了碳水化合物代谢的一种分解代谢酶异柠檬酸脱氢酶 (ICDH) 和一种合成酶异柠檬酸裂解酶 (ICL),它与乙醛酸途径以及糖异生有关。用农药处理 7 天后的蓝藻无细胞提取物显示 ICDH 活性急剧下降。当用农药处理生物体时,ICL 活性被诱导。