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- W4308796546 abstract "Atrazine has been known to coerce various abnormalities in weeds, such as alteration of phenotypic characters in plants, hindrance in the translocation of nutrients, impair the uptake of nutrients by roots and shoots, suppress the overall plant growth, 296and even induce early senescence in many cases. The atrazine herbicide contains an NH-group, which is responsible for forming hydrogen bonds. Atrazine acts as a selective herbicide and is known to inhibit photosynthesis in susceptible plants. Atrazine has been known to induce oxidative stress by generating reactive oxygen species (ROS) like hydroxyl radical, hydrogen peroxide, singlet oxygen, and superoxide anion radical in both non-target and target plants. Atrazine is classified as an inhibitor of photosystem II (PS II) and different physiological responses. Atrazine binds to the D1 protein, which is present in the PS II and blocks the transfer of electrons in the pool of plastoquinone resulting in the production of ROS. The electron transport of PS II inhibition by this herbicide prevents the light energy conversion into the energy of electrochemical, which gives rise to the singlet oxygen and triplet chlorophyll. The assessment of biochemical and molecular responses of atrazine on plants will serve as a useful indicator of this herbicide contamination in agricultural environments. In this chapter, we discussed the impact of atrazine on modifications of enzymatic activities, along with alteration in physiological responses, cause of oxidative stress and antioxidant enzyme activities in plants." @default.
- W4308796546 created "2022-11-15" @default.
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- W4308796546 date "2022-11-11" @default.
- W4308796546 modified "2023-09-28" @default.
- W4308796546 title "Atrazine Toxicity: Modification of Enzymatic Processes and Photosynthesis in Plants" @default.
- W4308796546 doi "https://doi.org/10.1201/9781003313076-9" @default.
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