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Communication01:03

Communication

Communication between two animals occurs when one animal transmits an information signal that causes a change in the animal that receives the information. Organisms communicate with one another in a host of different ways. Signals can be auditory, chemical, visual, tactile, or a combination of these. Communication is a critical behavioral adaptation that promotes survival, growth, and reproduction.
Overview of Cell Signaling01:23

Overview of Cell Signaling

Despite the protective membrane that separates a cell from the environment, cells need the ability to detect and respond to environmental changes. Additionally, cells often need to communicate with one another. Unicellular and multicellular organisms use a variety of cell signaling mechanisms to communicate with the environment.
Cells respond to many types of information, often through receptor proteins positioned on the membrane. For example, skin cells respond to and transmit touch...
Types of Signaling Molecules01:32

Types of Signaling Molecules

In multicellular organisms, many molecules transmit signals between cells to pass information. These signals vary in complexity and include small peptides, nucleotides, steroids, fatty acid derivatives, and dissolved gases such as nitric oxide. Some signaling molecules diffuse through the plasma membrane to act locally between neighboring cells or travel long distances. Others remain attached to the cell surface, transmitting information to other cells only when they make contact. In some...
Types of Signaling Molecules01:32

Types of Signaling Molecules

In multicellular organisms, many molecules transmit signals between cells to pass information. These signals vary in complexity and include small peptides, nucleotides, steroids, fatty acid derivatives, and dissolved gases such as nitric oxide. Some signaling molecules diffuse through the plasma membrane to act locally between neighboring cells or travel long distances. Others remain attached to the cell surface, transmitting information to other cells only when they make contact. In some...
An Overview of the Endocrine System01:10

An Overview of the Endocrine System

The endocrine system, a complex network of glands, orchestrates physiological balance within the body through the production and secretion of hormones. These hormones are chemical messengers in intercellular communication, acting as conduits between the secretory cells and distant target sites. They traverse the circulatory system by being released into the extracellular fluid, and their impact is specific to cells possessing receptors for a particular hormone.
The endocrine system collaborates...
Regulation of Hormone Secretion01:19

Regulation of Hormone Secretion

Regulation of hormone secretion is a finely tuned orchestration driven by various types of stimuli, encompassing neural, humoral, and hormonal signals. Environmental cues instigate neural stimuli, where action potentials traverse nerve fibers to reach their designated targets. An illustrative scenario is the body's response to stress, wherein the sympathetic nervous system releases epinephrine from the adrenal glands, inducing the well-known 'fight or flight' reaction.
Humoral stimuli,...

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Imaging Pheromone Sensing in a Mouse Vomeronasal Acute Tissue Slice Preparation
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Published on: December 6, 2011

La comunicación feromonal en los vertebrados

Peter A Brennan1, Frank Zufall

  • 1Department of Physiology, University of Bristol, Medical School Building, University Walk, Bristol BS8 1TD, UK. p.brennan@bristol.ac.uk

Nature
|November 17, 2006
PubMed
Resumen

Una nueva investigación revela que diversas señales químicas, o feromonas, tienen un impacto significativo en el comportamiento de los vertebrados. Los principales sistemas olfativo y vomeronasal muestran funciones superpuestas en la detección de estas señales.

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Área de la Ciencia:

  • Neuroetología La neuroetología.
  • Ecología Química Ecología Química.

Sus antecedentes:

  • El comportamiento de los vertebrados está influenciado por señales químicas, lo que amplía la definición de feromonas.
  • El sistema olfativo principal y el órgano vomeronasal, una vez considerados independientes, exhiben una superposición funcional en la detección de señales químicas.

Objetivo del estudio:

  • Para explorar las funciones en expansión de las señales feromonales en el comportamiento de los vertebrados.
  • Investigar la superposición e integración de los sistemas olfativo y vomeronasal en la mediación de las respuestas conductuales.

Principales métodos:

  • Utilizando ratones genéticamente dirigidos para estudiar los sistemas quimiosensoriales.
  • Analizando los mecanismos celulares y moleculares de la quimiosensibilidad.

Principales resultados:

  • Identificación de nuevas familias de señales feromonales.
  • Demostración de una superposición significativa en la detección de señales químicas entre los principales sistemas olfativo y vomeronasal.
  • Descubrimiento de diversos sistemas quimiosensoriales y sus mecanismos en ratones.

Conclusiones:

  • Las señales químicas juegan un papel crucial y multifacético en el comportamiento de los vertebrados.
  • Los sistemas olfativo y vomeronasal están más integrados de lo que se entendía anteriormente.
  • La investigación futura se centrará en la integración de los sistemas quimiosensoriales para la regulación del comportamiento.