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Epigenetic Regulation01:37

Epigenetic Regulation

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Epigenetic changes alter the physical structure of the DNA without changing the genetic sequence and often regulate whether genes are turned on or off. This regulation ensures that each cell produces only proteins necessary for its function. For example, proteins that promote bone growth are not produced in muscle cells. Epigenetic mechanisms play an essential role in healthy development. Conversely, precisely regulated epigenetic mechanisms are disrupted in diseases like cancer.
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Diploid organisms inherit genetic material through chromosomes from both parents. Copies of the same gene are known as alleles. In most cases, both alleles are simultaneously expressed and allow various cellular processes to function optimally. If one of the alleles is missing or mutated, the expression of the other allele can compensate; however, this is not true for all genes.
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Human Genetics01:28

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Human genetics provides a profound framework for understanding the interplay between genetic predispositions and human psychology. At the heart of this discipline lies the study of how genes influence physical traits, behaviors, and susceptibility to diseases. Each person carries a unique genetic code that subtly or significantly shapes their psychological and behavioral landscape.
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Gene expression is a dynamic process that is significantly influenced by environmental factors. This interaction underlies the complex nature of biological development and the phenotypic differences observed among individuals, even among those with identical genetic makeups. Factors such as radiation, temperature, behavior, nutrition, and stress play pivotal roles in determining how genes are expressed. The concept of the reaction range is central to understanding this interaction. It posits...
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Correction: Basit et al. Brassinosteroid Supplementation Alleviates Chromium Toxicity in Soybean (<i>Glycine max</i> L.) via Reducing Its Translocation. <i>Plants</i> 2022, <i>11</i>, 2292.

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Correction: Patil et al. Investigation of <i>Cannabis sativa</i> Phytochemicals as Anti-Alzheimer's Agents: An In Silico Study. <i>Plants</i> 2023, <i>12</i>, 510.

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Correction: C. S. et al. Diallel Analysis of Chilli Pepper (<i>Capsicum annuum</i> L.) Genotypes for Morphological and Fruit Biochemical Traits. <i>Plants</i> 2020, <i>9</i>, 1.

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Correction: Akhter et al. Silicon-Induced Mitigation of NaCl Stress in Barley (<i>Hordeum vulgare</i> L.), Associated with Enhanced Enzymatic and Non-Enzymatic Antioxidant Activities. <i>Plants</i> 2022<i>, 11</i>, 2379.

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Correction: Rai et al. Investigating NAC Transcription Factor Role in Redox Homeostasis in <i>Solanum lycopersicum</i> L.: Bioinformatics, Physiological and Expression Analysis Under Drought Stress. <i>Plants</i> 2022<i>, 11</i>, 2930.

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Correction: Devi et al. Bio-Fabrication of <i>Euryale ferox</i> (Makhana) Leaf Silver Nanoparticles and Their Antibacterial, Antioxidant and Cytotoxic Potential. <i>Plants</i> 2022, <i>11</i>, 2766.

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Epigenetics and childhood obesity

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PubMed
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