测定从 Dactylorhiza urvilleana 根瘤菌中分离出的芽孢杆菌的生物修复潜力和促进植物生长的特性

Ülkü Zeynep ÜREYEN ESERTAŞ, A. Bozdeveci, Emel Uzunali̇oğlu, Şengül Alpay Karaoğlu
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摘要

几十年来,工业活动一直是影响自然资源、破坏环境的最大因素之一。重金属是对生物圈危害最大的物质之一,工业废水中就含有重金属。通过工业废水进入农业区的重金属在一定时期后会在土壤中积累。这些累积的重金属因其有毒特性而成为威胁生物生命的重要环境问题。在被含重金属废水污染的土壤中,微生物种群的数量和多样性都会受到严重破坏。重金属在水和土壤中的积累已成为全球健康的威胁。在对抗重金属污染的斗争中,需要采用替代工艺。生物修复活动是指通过微生物和植物清除环境污染物的过程,近年来,生物修复活动的重要性日益凸显。在我们的研究中,调查了从瑞泽省奥维特高原的 Dactylorhiza urvilleana (Steudel) Bauman 根瘤菌中分离出来的芽孢杆菌对金属(如铜、铅、锌、铁和银)的耐受潜力。此外,还测定了促进植物生长的吲哚乙酸(IAA)产量、磷酸盐溶解度和 ACC(1-氨基环丙烷-1-羧酸)脱氨酶产量。结果表明,分离出的芽孢杆菌具有较宽的 pH 生长范围,部分芽孢杆菌具有耐盐性。结果表明,芽孢杆菌具有生物修复潜力和促进植物生长的特性。研究认为,从这项研究中分离出的细菌可用于使重金属污染地区适合种植植物,并在这些地区起到促进植物生长的作用。计划在农业或重金属污染地区的研究中使用这些菌株作为更便宜、更有效的方法。
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Determination of Bioremediation Potentials and Plant Growth-Promoting Properties of Bacillus Species Isolated from The Rhizosphere of Dactylorhiza urvilleana
Industrial activities have been one of the biggest factors of environmental destruction by affecting natural resources for decades. Heavy metals, which are one of the greatest dangers especially for the biosphere, can be found in industrial waste. Heavy metals that enter agricultural areas through industrial wastewater cause heavy metals to accumulate in the soil after a certain period. These accumulated heavy metals become an important environmental problem, threatening the life of living beings due to their toxic properties. In soils contaminated with wastewater containing heavy metals, microorganism populations are severely damaged in terms of both number and diversity. This heavy metal accumulation in water and soil has become a global health threat. Alternative processes are needed in the fight against heavy metal pollution. Bioremediation activity, defined as the removal process of environmental pollutants through microorganisms and plants, has gained significant importance in recent years. In our study, the tolerance potentials of Bacillus species isolated from the rhizosphere of Dactylorhiza urvilleana (Steudel) Bauman in the Ovit plateau of Rize province to metals (such as copper, lead, zinc, iron and silver) were investigated. In addition, plant growth promoting Indole Acetic Acid (IAA) production, phosphate dissolution, and ACC (1-Aminocyclopropane-1-Carboxylic acid) deaminase production were determined. It was determined that the isolated Bacillus species had a wide pH growth range and some Bacillus species were salt tolerant. The results showed that Bacillus species have bioremediation potential and plant growth promoting properties. It is thought that the bacteria isolated from the study can be used to make areas with heavy metal pollution suitable for plant cultivation and act as plant growth promoters in these areas. These bacteria strains are planned to be used as cheaper and more effective methods in studies in agriculture or areas with heavy metal pollution.
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