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A gene is a part of DNA which constitutes of certain defined sequence of nucleotides that code for a specific amino acid. They are the hereditary blocks of DNA and are transmitted from one generation to the other in a particular species.

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A gene is a molecular unit of heredity, responsible for encoding the instructions for building and maintaining an organism's cells and passing on traits to offspring. Genes are made up of DNA and determine specific characteristics or functions within an organism.

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A gene is the basic unit of heredity in a living organism. All living things depend on genes. Genes hold the information to build and maintain their cells and pass genetic traits to offspring. In general terms, a gene is a segment of nucleic acid that, taken as a whole, specifies a trait. The colloquial usage of the term gene often refers to the scientific concept of an allele. The notion of a gene has evolved with the science of genetics, which began when Gregor Mendel noticed that biological variations are inherited from parent organisms as specific, discrete traits. The biological entity responsible for defining traits was termed a gene, but the biological basis for inheritance remained unknown until DNA was identified as the genetic material in the 1940s. All organisms have many genes corresponding to many different biological traits, some of which are immediately visible, such as eye color or number of limbs, and some of which are not, such as blood type or increased risk for specific diseases, or the thousands of basic biochemical processes that comprise life. In cells, a gene is a portion of DNA that contains both "coding" sequences that determine what the gene does, and "non-coding" sequences that determine when the gene is active (expressed). When a gene is active, the coding and non-coding sequences are copied in a process called transcription, producing an RNA copy of the gene's information. This piece of RNA can then direct the synthesis of proteins via the genetic code. In other cases, the RNA is used directly, for example as part of the ribosome. The molecules resulting from gene expression, whether RNA or protein, are known as gene products, and are responsible for the development and functioning of all living things. In more technical terms, a gene is a locatable region of genomic sequence, corresponding to a unit of inheritance, and is associated with regulatory regions, transcribed regions and/or other functional sequence regions.[1][2] The physical development and phenotype of organisms can be thought of as a product of genes interacting with each other and with the environment.[3] A concise definition of a gene, taking into account complex patterns of regulation and transcription, genic conservation and non-coding RNA genes, has been proposed by Gerstein et al:[4] "A gene is a union of genomic sequences encoding a coherent set of potentially overlapping functional products".

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Q: What is the definition of gene?
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What is the tandem definition in biology and how does it relate to the concept of gene expression?

In biology, the tandem definition refers to genes that are located close together on a chromosome and are often expressed together. This proximity can influence the regulation of gene expression, as genes in tandem may be co-regulated or have similar functions. This relationship can impact how these genes are transcribed and translated into proteins, ultimately affecting the overall gene expression profile of an organism.


What is the definition of constitutive gene expression and how does it differ from other types of gene regulation?

Constitutive gene expression refers to genes that are constantly active and produce proteins at a steady rate in a cell. This type of gene expression is not influenced by external factors or signals. In contrast, other types of gene regulation involve genes that are turned on or off in response to specific signals or conditions in the cell's environment.


A can be defined as a basic unit of hereditary information that influences a particular trait or group of traits.?

Yes, that definition accurately describes a gene. Genes are sequences of DNA that code for specific proteins or functional RNA molecules, determining specific traits or characteristics in an organism.


What is the modern definition of evolution based on population genetics?

Modern evolution, as understood through population genetics, is the change in allele frequencies within a population over generations. It involves mechanisms such as natural selection, genetic drift, gene flow, and mutation that drive these changes. Evolutionary biologists use mathematical models and molecular data to study how genetic variations accumulate and spread in populations over time.


How has a gene been redefined?

A gene has been redefined as a unit of heredity that carries information from one generation to the next and is responsible for a specific trait or function in an organism. This definition has evolved with advances in genetics to encompass not only protein-coding sequences but also regulatory elements and non-coding RNA molecules that play a role in gene expression and function.