首页> 外文期刊>International microbiology: the official journal of the Spanish Society for Microbiology >Isolation and characterization of a lindane degrading bacteria Paracoccus sp. NITDBR1 and evaluation of its plant growth promoting traits
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Isolation and characterization of a lindane degrading bacteria Paracoccus sp. NITDBR1 and evaluation of its plant growth promoting traits

机译:林丹降解细菌帕拉科氏菌的分离与表征。 NITDBR1和其植物生长的评估促进特征

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摘要

Lindane contamination in different environmental compartments is still posing a serious threat to our environment and effective measures need to be taken for the detoxification of lindane. Soil bacteria isolated from agricultural fields are known to possess certain plant growth promoting traits like the production of phytohormones, production of ammonia, nitrogen fixation and solubilization of phosphorus, etc. In the present study, an indigenous bacterial strain Paracoccus sp. NITDBR1 have been isolated from an agricultural field in Manipur, India which could grow on 100 mg L~(-1) lindane as the sole source of carbon and could degrade up to 90%of lindane in mineral salt media under liquid culture conditions in 8 days. The strain NITDBR1 was able to form biofilmin lindane media and the addition of substrate like glucose and sucrose enhanced the biofilmformation by 1.3 and 1.17-fold respectively in 3 days. The strain NITDBR1 could produce glycolipid and glycoprotein based biosurfactants. It was also found to possess plant growth promoting traits like nitrogen fixation and indole-3-acetic acid production to assist crop production. The phytotoxicity studies carried out on mustard seeds revealed that the degradation products formed after treatment with NITDBR1 could lower the toxicity of lindane for root elongation by 1.3-fold. Therefore, strain NITDBR1 could be useful for the bioremediation of soil contaminated with lindane with lesser damage to the environment, biofilmforming ability may help the bacteria survive under stressed environmental conditions, and biosurfactant production will help in increasing the bioavailability of contaminants. The plant growth promoting traits can be beneficial for agriculture. With such soil friendly activities coupled with pesticide degradation, this strain can be used for environmental as well as agricultural applications.
机译:不同环境隔间中的林丹污染仍然对我们的环境构成严重威胁,需要采取有效措施,以便林丹排毒。已知从农业领域中分离的土壤细菌拥有某些植物生长促进特征,如植物激素的生产,氨,氮固定和磷的溶解等磷等。在本研究中,一种土着细菌菌株Paracoccus sp。 NITDBR1已从曼皮尔的农业领域被隔离,这可能在100毫克L〜(-1)林丹中作为唯一的碳源生长,并且在液体培养条件下,矿物盐培养基中的林丹最多可降低90%的林丹天。菌株NITDBR1能够形成生物膜林丹介质,并在3天内分别增强葡萄糖和蔗糖等糖和蔗糖的添加增强1.3和1.17倍。菌株NITDBR1可以产生基于糖脂和基于糖蛋白的生物表面活性剂。还发现植物生长促进氮素固定和吲哚-3-乙酸产生等特征,以协助作物生产。在芥菜籽中进行的植物毒性研究表明,用NITDBR1处理后形成的降解产物可降低林丹的毒性1.3倍。因此,菌株NITDBR1对林丹污染的土壤生物修复有用,对环境造成较小的损害,生物无模块能力可能有助于细菌在强调的环境条件下存活,并且生物活性剂的产生将有助于增加污染物的生物利用度。促进特征的植物生长可能是有益的农业。随着这种土壤友好的活动与农药降解相结合,这种菌株可用于环境和农业应用。

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