Digging deep into a GAC filter – Temporal and spatial profiling of adsorbed organic micropollutants DOI
Ellen Edefell,

Ola Svahn,

Per Falås

et al.

Water Research, Journal Year: 2022, Volume and Issue: 218, P. 118477 - 118477

Published: April 19, 2022

Language: Английский

Role of Insect Gut Microbiota in Pesticide Degradation: A Review DOI Creative Commons
Junaid Ali Siddiqui, Muhammad Musa Khan, Bamisope Steve Bamisile

et al.

Frontiers in Microbiology, Journal Year: 2022, Volume and Issue: 13

Published: May 3, 2022

Insect pests cause significant agricultural and economic losses to crops worldwide due their destructive activities. Pesticides are designed be poisonous intentionally released into the environment combat menace caused by these noxious pests. To survive, insects can resist toxic substances introduced humans in form of pesticides. According recent findings, microbes that live insect as symbionts have recently been found protect hosts against toxins. Symbioses formed between various microbes, a defensive mechanism pathogens Insects’ guts provide unique conditions for microbial colonization, resident bacteria deliver numerous benefits hosts. Insects vary significantly reliance on gut basic functions. digestive tracts very different shape chemical properties, which big impact structure composition community. microbiota has contribute feeding, parasite pathogen protection, immune response modulation, pesticide breakdown. The current review will examine roles detoxification mechanisms behind development resistance better understand detoxifying agriculturally pest insects, we provided comprehensive information regarding role

Language: Английский

Citations

102

Environmental occurrence, toxicity concerns, and biodegradation of neonicotinoid insecticides DOI
Xidong Zhang, Yaohua Huang, Wenjuan Chen

et al.

Environmental Research, Journal Year: 2022, Volume and Issue: 218, P. 114953 - 114953

Published: Nov. 28, 2022

Language: Английский

Citations

101

Adsorptive and photocatalytic degradation of imidacloprid pesticide from wastewater via the fabrication of ZIF-CdS/Tpy quantum dots DOI

Homa Targhan,

Aram Rezaei, Alireza Aliabadi

et al.

Chemical Engineering Journal, Journal Year: 2024, Volume and Issue: 482, P. 148983 - 148983

Published: Jan. 22, 2024

Language: Английский

Citations

30

Photocatalytic removal of imidacloprid pesticide from wastewater using CdS QDs passivated by CQDs containing thiol groups DOI Creative Commons

Homa Targhan,

Aram Rezaei, Alireza Aliabadi

et al.

Scientific Reports, Journal Year: 2024, Volume and Issue: 14(1)

Published: Jan. 4, 2024

Over the past decade, CdS QDs have become versatile semiconductors. Surface modification of has an interesting case study, as it can eliminate surface defects and improve their photochemical properties. In this we report a new strategy using carbon quantum dots containing large number thiol groups (CQDs-SH) passivating agent for stabilization (QDs). Various characterization techniques clearly revealed that been successfully passivated by CQDs-SH. The photocatalytic performance CQDs-SH/CdS was investigated degradation insecticide imidacloprid from aqueous solution. Parameters affecting photodegradation process, including light source, photocatalyst amount, initial concentration pollutant, radiation time, pH, oxidizing agent, temperature, were investigated. Furthermore, HPLC technique applied to quantitatively analyze its products. results analysis under simulated visible at pH 9, scarcely existed after 90 min irradiation (90.13% degradation). LC-MS method also used detect products investigate mechanism pesticide. showed composite promising in wastewater.

Language: Английский

Citations

21

Enhanced biodegradation of thiamethoxam with a novel polyvinyl alcohol (PVA)/sodium alginate (SA)/biochar immobilized Chryseobacterium sp H5 DOI

Xuezhu Xiang,

Xiaohui Yi,

Wanbing Zheng

et al.

Journal of Hazardous Materials, Journal Year: 2022, Volume and Issue: 443, P. 130247 - 130247

Published: Oct. 22, 2022

Language: Английский

Citations

63

Insect Microbial Symbionts: Ecology, Interactions, and Biological Significance DOI Creative Commons

Sankhadeep Mondal,

Jigyasa Somani,

Somnath Roy

et al.

Microorganisms, Journal Year: 2023, Volume and Issue: 11(11), P. 2665 - 2665

Published: Oct. 30, 2023

The guts of insect pests are typical habitats for microbial colonization and the presence bacterial species inside gut confers several potential advantages to insects. These bacteria located symbiotically digestive tracts insects help in food digestion, phytotoxin breakdown, pesticide detoxification. Different shapes chemical assets gastrointestinal have a significant impact on structure makeup population. number communities system differs owing varying shape composition tracts. Due their short generation times rapid evolutionary rates, can develop numerous metabolic pathways adapt diverse ecological niches. In addition, despite hindering insecticide management programs, they still biotechnological uses, including industrial, clinical, environmental uses. This review discusses prevalent associated with guts, mode symbiotic interaction, role resistance, various other biological significance, along knowledge gaps future perspectives. practical consequences microbiome its interaction host may lead encountering mechanisms behind evolution resistance

Language: Английский

Citations

29

Regulation, Biosynthesis, and Extraction of Bacillus-Derived Lipopeptides and Its Implications in Biological Control of Phytopathogens DOI Creative Commons
Valeria Valenzuela Ruíz,

Azucena Gándara‐Ledezma,

María Fernanda Villarreal-Delgado

et al.

Stresses, Journal Year: 2024, Volume and Issue: 4(1), P. 107 - 132

Published: Jan. 16, 2024

In recent years, the adoption of sustainable pest management strategies has increased interest in utilization biopesticides, with a focus on harnessing beneficial microorganisms. Among these, lipopeptides, such as surfactins, iturins, and fengycins produced by genus Bacillus, have gained significant attention due to their multifaceted biocontrol mechanisms wide-ranging inhibitory effects. This review aims address regulation, biosynthesis, production three main lipopeptide families secreted well identification quantification analysis used date, through omic tools approach. The been identified key contributors abilities these bacteria, broad-spectrum activity making them valuable integrated approaches that aim reduce reliance chemical pesticides use while maintaining crop health productivity.

Language: Английский

Citations

13

Pesticides Toxicity, Removal and Detoxification in Plants: A Review DOI Creative Commons
Boyu Zhang, Fang Lv, Jing Yang

et al.

Agronomy, Journal Year: 2024, Volume and Issue: 14(6), P. 1260 - 1260

Published: June 11, 2024

Pesticides play a crucial role in agricultural production by preventing diseases and pests ensuring food yield. However, the irrational use of pesticides can lead to numerous issues that compromise crop quality counteract original intentions their application. Therefore, it is necessary identify more effective methods pesticide stress. Here we review impacts herbicides, insecticides, fungicides on plants measures taken reduce residues plants. We have found despite substantial differences mechanisms action aforementioned three types pesticides, adverse effects they inflict are similar, at certain dosages, severely constrain plant growth disrupt physiological functions. Also, most current research using exogenous regulators alleviate stress still focuses photosynthesis, antioxidant system, three-stage detoxification, secondary metabolites, neglecting search for genes respond believe combining biological protection with post-harvest treatment techniques exploring potential responsive stress, better strategy dealing be found, thereby promoting sustainable development.

Language: Английский

Citations

10

What Socio-Economic and Political Factors Lead to Global Pesticide Dependence? A Critical Review from a Social Science Perspective DOI Open Access
Zhanping Hu

International Journal of Environmental Research and Public Health, Journal Year: 2020, Volume and Issue: 17(21), P. 8119 - 8119

Published: Nov. 3, 2020

Dependence on chemical pesticides has become one of the most pressing challenges to global environmental sustainability and public health. Considerable regulatory efforts have been taken mitigate pesticide dependence, which however resulted in a prevalent ‘managerial failure’. Massive application generated severe genetic resistance from pests, turn further aggravated dependence thus induced agrochemical industries develop new varieties. This review proposes look beyond resistance-dependence nexus presents comprehensive discussion about social science perspective, i.e., revealing socio-economic political factors that reinforce dependence. These are classified into five intertwined themes: (1) agricultural regime, (2) process application, (3) economic analysis, (4) politics governance, (5) promotional failure alternatives. It is found not just technological issue sphere natural sciences, but more human-made issue, with deep-seated reasons. Addressing contemporary trap entails full acknowledgement comprehension complex factors. Furthermore, this identifies two major explanatory approaches underlying extant literature: structuralist approach stresses macro-level structures such as institutions, policies paradigms, an individualist focuses decision-making farmers at micro level. recognizes limitations calls for transcending duality. study advocates policy framework emphasizes alignment coordination multi-dimensions, multi-actors multi-scales. For future research, collaborations between scientists, integrated interdisciplinary should be strengthened.

Language: Английский

Citations

52

Emerging Technologies for Degradation of Dichlorvos: A Review DOI Open Access
Yuming Zhang, Wenping Zhang, Jiayi Li

et al.

International Journal of Environmental Research and Public Health, Journal Year: 2021, Volume and Issue: 18(11), P. 5789 - 5789

Published: May 28, 2021

Dichlorvos (O,O-dimethyl O-(2,2-dichlorovinyl)phosphate, DDVP) is a widely acknowledged broad-spectrum organophosphorus insecticide and acaracide. This pesticide has been used for more than four decades still in strong demand many developing countries. Extensive application of DDVP agriculture caused severe hazardous impacts on living systems. The International Agency Research Cancer the World Health Organization considered among list 2B carcinogens, which means certain extent cancer risk. Hence, removing from environment attracted worldwide attention. Many studies have tested removal using different kinds physicochemical methods including gas phase surface discharge plasma, physical adsorption, hydrodynamic cavitation, nanoparticles. Compared to methods, microbial degradation regarded as an environmentally friendly approach solve several environmental issues by pesticides. Till now, DDVP-degrading microbes isolated reported, but not limited Cunninghamella, Fusarium, Talaromyces, Aspergillus, Penicillium, Ochrobium, Pseudomonas, Bacillus, Trichoderma. Moreover, possible pathways transformation metabolites fully explored. In addition, there are few enzymes corresponding genes microorganisms. However, further research relevant molecular biology genetics needed explore bioremediation DDVP. review summarizes latest development provides reasonable scientific advice contaminated environments.

Language: Английский

Citations

42