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Organotins are widespread contaminants especially of water environments. Their chemically versatile structure makes organotin compounds able to bind to a variety of biomolecules thus widely affecting biological functions. Trisubstituted molecules, namely tributyltin (TBT) and triphenyltin (TPhT), have been widely employed in antifouling paints and are also exploited as plastic stabilizers that unfortunately cause harmful biological effects. Persistent bioaccumulation has resulted in organotins becoming a significant environmental threat. Chapter by chapter, the biological and biochemical effec.
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The biological membranes of cellular organization enfold an important group of membrane proteins called the ATPases, which are not only versatile in maintaining chemical gradient and electrical potential across the membrane but also bring metabolites necessary for cell metabolism and drive out toxins, waste products and solutes that otherwise can curb cell functions. ATPases are distributed virtually in all live forms starting from unicellular to multicellular and also in viruses. There are different types of ATPases, which differ in function and structure and in the type of ions they transport. The three main types of the ion pump ATPase family are: (i) P-type ATPases that transport differe...
Strigolactones, Alkamides and Karrikins in Plants: Recent Updates and Future Prospects provides comprehensive knowledge on the various aspects of plant growth, physiology, and communication associated with the three potential biomolecules. Strigolactones have gained much importance in the last decade as potential plant growth regulators. Likewise, alkamides are also known for their plant growth regulatory and pharmacological properties. The evolutionary significance of karrikins as a potential signaling molecule in different plant groups has been fascinating to plant physiologists and ecologists. This book enables the reader to gain insights into the myriad role of these biomolecules in plan...
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