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Academic Journal of Environmental Biology, 2022, 3(2); doi: 10.38007/AJEB.2022.030205.

Ecological Environment and Pollution Control under the Influence of Modern Biotechnology Development

Author(s)

Mayak Biseen

Corresponding Author:
Mayak Biseen
Affiliation(s)

Indira Gandhi Delhi Technical University for Women, India

Abstract

Modern biotechnology (BT) has EV. On the one hand, by giving full play to the role of technology, the relationship between man and nature can be better handled and the two can coexist harmoniously; on the other hand, if problems have arisen in the ecological environment, it is necessary to use existing technologies to prevent ecological imbalances phenomenon to repair, thereby making sustainable development possible. The main purpose of this paper is to analyze and study the impact of the development of modern BT on the ecological environment and pollution control. This paper will focus on the EV of modern BT from three aspects: ecological manufacturing, EG and environmental restoration. In this paper, the screened biological indicators (Neu%, Eos%, Eos#, Lym%, IL-6, IL-10 and CSF) were calculated by comprehensive index. The experimental results found that no matter the average, maximum or minimum values, there were the comprehensive index of biological samples in the high pollution exposure group > the comprehensive index of biological samples in the low pollution exposure group > the comprehensive index of biological samples in the no pollution exposure group.

Keywords

Modern Biotechnology, Ecological Environment, Pollution Control, Ecological Value

Cite This Paper

Mayak Biseen. Ecological Environment and Pollution Control under the Influence of Modern Biotechnology Development. Academic Journal of Environmental Biology (2022), Vol. 3, Issue 2: 58-68. https://doi.org/10.38007/AJEB.2022.030205.

References

[1] Asa B, Ssa B, Sba B, et al. Synthetic biology techniques to tackle heavy metal pollution and poisoning. Synthetic and Systems BT, 2022, 7( 3):841-846. https://doi.org/10.1016/j.synbio.2022.04.007

[2] Choi Y, Han S W, Kim J S, et al. Biochemical characterization and synthetic application of aromatic l-amino acid decarboxylase from Bacillus atrophaeus. Applied Microbiology and BT, 2021, 105(7):2775-2785. https://doi.org/10.1007/s00253-021-11122-3

[3] Ali N, Zhang Q, Liu Z Y, et al. Emerging technologies for the pretreatment of lignocellulosic materials for bio-based products. Applied Microbiology and BT, 2020, 104(2):455-473.

[4] Bajerski F, Nagel M, Overmann J . Microbial occurrence in liquid nitrogen storage tanks: a challenge for cryobanking?. Applied Microbiology and BT, 2021, 105(20):7635-7650.

[5] Lee M S, Hung C S, Phillips D A, et al. Silk Fibroin as an Additive for Cell-Free Protein Synthesis. Synthetic and Systems BT, 2020, 5( 3):145-154.

[6] Junaid K, Ejaz H, Younas S, et al. Detection of Klebsiella pneumoniae antibiotic-resistant genes: An impending source of multidrug resistance dissemination through raw food. Saudi Journal of Biological Sciences, 2022, 29(5):3347-3353. https://doi.org/10.1016/j.sjbs.2022.02.020

[7] Bae J, Song Y . Engineering a cell-penetrating hyperstable antibody scFv(Ras) – An extraordinary approach to cancer therapeutics. Synthetic and Systems BT, 2021, 6(4):343-350.

[8] Altamirano F, Barr J J . Unlocking the next generation of phage therapy: the key is in the receptors. Current Opinion in BT, 2021, 2021(68):115-123.

[9] Lrb A, Eb B, Kh B, et al. The Fold-Illuminator: A low-cost, portable, and disposable incubator-illuminator device. Synthetic and Systems BT, 2021, 6( 2):95-101. https://doi.org/10.1016/j.synbio.2021.04.003

[10] Naz H, Akram N A, Ashraf M, et al. Leaf extract of neem (Azadirachta indica) alleviates adverse effects of drought in quinoa (Chenopodium quinoa Willd.) plants through alterations in biochemical attributes and antioxidants. Saudi Journal of Biological Sciences, 2022, 29(3):1367-1374. https://doi.org/10.1016/j.sjbs.2022.01.038

[11] Atmc A, Lps B, Joc C, et al. Shape and size of epididymal sperm from Gir bulls using atomic force microscopy: A nanoscale characterization of epididymal sperm - ScienceDirect. Reproductive Biology, 2020, 20( 1):37-41.

[12] Moriyama Y, Takeda K . Removal of Dodecyl Sulfate Ions Bound to Human and Bovine Serum Albumins Using Sodium Cholate. Journal of Oleo Science, 2020, 69(1):65-72. https://doi.org/10.5650/jos.ess19224

[13] Mehta A, Grover C, Bhardwaj K K, et al. Application of Lipase Purified from Aspergillus fumigatus in the Syntheses of Ethyl Acetate and Ethyl Lactate. Journal of Oleo Science, 2020, 69(1):23-29. https://doi.org/10.5650/jos.ess19202

[14] Subramaniyan S B, Senthilnathan R, Arunachalam J, et al. Revealing the Significance of the Glycan Binding Property of Butea monosperma Seed Lectin for Enhancing the Antibiofilm Activity of Silver Nanoparticles against Uropathogenic Escherichia coli. Bioconjugate Chemistry, 2020, 31(1):139-148.

[15] Gupta N J, Nanda R K, Das S, et al. Night Migratory Songbirds Exhibit Metabolic Ability to Support High Aerobic Capacity during Migration. ACS Omega, 2020, 5(43):28088-28095. https://doi.org/10.1021/acsomega.0c03691

[16] Dvorak M, Rysava L, Kuban P . Capillary Electrophoresis with Capacitively Coupled Contactless Conductivity Detection for Quantitative Analysis of Dried Blood Spots with Unknown Blood Volume. Analytical Chemistry, 2020, 92(1):1557-1564.

[17] Musliji Z S, Pollozhani A K, Lisichkov K, et al. Comparative analysis of genes associated with obesity in humans using bioinformatic data and tools. Balkan Journal of Medical Genetics, 2021, 24(1):35-40. https://doi.org/10.2478/bjmg-2021-0012

[18] Thomsen T, Borre-Gude S . Creating a Strong Safety Culture in an Undergraduate Engineering Program. Journal of Chemical Education, 2021, 98(1):118-124. https://doi.org/10.1021/acs.jchemed.0c00035