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JISIP (Jurnal Ilmu Sosial dan Pendidikan)JISIP (Jurnal Ilmu Sosial dan Pendidikan)

Aerobic gram-negative bacteria Pseudomonas putida is commonly found in soil and air. It is renowned for its extraordinary metabolic ability to break down various complex organic materials, such as aquaculture pollutants. This article discusses the role of P. putida in bioremediation and the ability of P. putida to break down organic compounds such as aromatic and aliphatic chemicals. This study identified key genetic traits and metabolic pathways that enhance the efficiency of bacterial bioremediation by synthesizing relevant literature using a descriptive qualitative approach. These results demonstrate the importance of utilizing innovative bioprocesses that can produce sustainably manufactured products, which in turn promotes biotechnology-based economic development and environmental sustainability.

Pseudomonas putida plays a crucial role in environmental biotechnology, particularly in reducing pollution through its ability to degrade hydrocarbons, heavy metals, and industrial waste.The bacteriums genome can be modified to enhance pollutant degradation efficiency and support sustainable industrial biotechnology.putida contributes to plant health, agricultural productivity, and the utilization of organic waste as a renewable resource.

Penelitian lebih lanjut perlu dilakukan untuk mengidentifikasi dan mengoptimalkan strain P. putida yang memiliki kemampuan degradasi polutan yang lebih tinggi, dengan fokus pada mekanisme genetik dan metabolik yang mendasarinya. Selain itu, studi tentang interaksi antara P. putida dengan mikroorganisme lain dalam ekosistem dapat menghasilkan metode bioremediasi yang lebih efisien dan berkelanjutan. Terakhir, penelitian perlu mengeksplorasi potensi P. putida dalam mengolah limbah organik menjadi sumber daya terbarukan, sehingga mendukung pengembangan ekonomi sirkular yang ramah lingkungan, dengan mempertimbangkan optimasi kondisi lingkungan seperti pH dan suhu untuk meningkatkan efisiensi degradasi dan produksi senyawa bernilai tambah.

  1. Frontiers | bifA Regulates Biofilm Development of Pseudomonas putida MnB1 as a Primary Response to H2O2... doi.org/10.3389/fmicb.2018.01490Frontiers bifA Regulates Biofilm Development of Pseudomonas putida MnB1 as a Primary Response to H2O2 doi 10 3389 fmicb 2018 01490
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