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      <title>GLOSARIO DE GENETICA by </title>
      <link>https://padlet.com/janethgarcia/ma85fbgoydwq</link>
      <description>Janethgarcia@hotmail.com</description>
      <language>en-us</language>
      <pubDate>2016-08-03 21:30:14 UTC</pubDate>
      <lastBuildDate>2025-10-26 02:29:49 UTC</lastBuildDate>
      <webMaster>hello@padlet.com</webMaster>
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      <item>
         <title>TEORIA</title>
         <author>janethgarcia</author>
         <link>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117487388</link>
         <description><![CDATA[<div> En general las teorías sirven para confeccionar <a href="https://es.wikipedia.org/wiki/Modelo_cient%C3%ADfico">modelos científicos</a> que <a href="https://es.wikipedia.org/wiki/Interpretaci%C3%B3n">interpreten</a> un conjunto amplio de <a href="https://es.wikipedia.org/wiki/Observador">observaciones</a>, en función de los <a href="https://es.wikipedia.org/wiki/Axioma">axiomas</a> o principios, supuestos y <a href="https://es.wikipedia.org/wiki/Postulado">postulados</a>, de la teoría. </div>]]></description>
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         <pubDate>2016-08-03 21:48:51 UTC</pubDate>
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         <title>GENETICA</title>
         <author>janethgarcia</author>
         <link>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117487532</link>
         <description><![CDATA[<div> es el área de estudio de la <a href="https://es.wikipedia.org/wiki/Biolog%C3%ADa">biología</a> que busca comprender y explicar cómo se transmite la herencia biológica de generación en generación. </div>]]></description>
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         <pubDate>2016-08-03 21:52:01 UTC</pubDate>
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         <title>GENES</title>
         <author>janethgarcia</author>
         <link>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117487616</link>
         <description><![CDATA[<div> Un gen es un segmento corto de ADN. Los genes le dicen al cuerpo cómo producir <a href="https://medlineplus.gov/spanish/ency/article/002467.htm">proteínas</a> específicas. Hay aproximadamente 20,000 genes en cada célula del cuerpo humano. Juntos forman constituyen el material hereditario para el cuerpo humano y la forma como funciona. </div>]]></description>
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         <pubDate>2016-08-03 21:54:09 UTC</pubDate>
         <guid>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117487616</guid>
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      <item>
         <title>CROMOSOMAS</title>
         <author>janethgarcia</author>
         <link>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117487763</link>
         <description><![CDATA[<div> En las divisiones celulares (<a href="https://es.wikipedia.org/wiki/Mitosis">mitosis</a> y <a href="https://es.wikipedia.org/wiki/Meiosis">meiosis</a>) presenta su forma más conocida, cuerpos bien delineados en forma de X, debido al grado de compactación y duplicación. </div>]]></description>
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         <pubDate>2016-08-03 21:58:08 UTC</pubDate>
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         <title>CROMATINA</title>
         <author>janethgarcia</author>
         <link>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117487862</link>
         <description><![CDATA[<div> La <strong>cromatina</strong> es la forma en la que se presenta el <a href="https://es.wikipedia.org/wiki/%C3%81cido_desoxirribonucleico">ADN</a> en el <a href="https://es.wikipedia.org/wiki/N%C3%BAcleo_celular">núcleo celular</a>. Es la sustancia de base de los <a href="https://es.wikipedia.org/wiki/Cromosoma">cromosomas</a> <a href="https://es.wikipedia.org/wiki/Eucari%C3%B3tico">eucarióticos</a>, que corresponde a la asociación de ADN, <a href="https://es.wikipedia.org/wiki/ARN">ARN</a></div>]]></description>
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         <pubDate>2016-08-03 22:00:30 UTC</pubDate>
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         <title>CROMATIDA</title>
         <author>janethgarcia</author>
         <link>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117487999</link>
         <description><![CDATA[<div> Las cromátidas son visibles desde la <a href="https://es.wikipedia.org/wiki/Profase">profase</a> de la mitosis y representan a los pre-cromosomas hijos. </div>]]></description>
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         <pubDate>2016-08-03 22:03:35 UTC</pubDate>
         <guid>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117487999</guid>
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      <item>
         <title>CENTROMERO</title>
         <author>janethgarcia</author>
         <link>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117488088</link>
         <description><![CDATA[<div> En <a href="https://es.wikipedia.org/wiki/Gen%C3%A9tica">Genética</a>, el <strong>centrómero</strong> es la constricción primaria que, utilizando tinciones tradicionales, aparece menos teñida que el resto del <a href="https://es.wikipedia.org/wiki/Cromosoma">cromosoma</a>. </div>]]></description>
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         <pubDate>2016-08-03 22:06:06 UTC</pubDate>
         <guid>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117488088</guid>
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      <item>
         <title>ESPECIE</title>
         <author>janethgarcia</author>
         <link>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117488199</link>
         <description><![CDATA[<div> Una especie se define a menudo como el conjunto de organismos o <a href="https://es.wikipedia.org/wiki/Poblaci%C3%B3n_%28biolog%C3%ADa%29">poblaciones</a> naturales capaces de entrecruzarse y de producir descendencia fértil, pero no pueden hacerlo (o al menos no lo hacen habitualmente) con los miembros de poblaciones pertenecientes a otras especies. </div>]]></description>
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         <pubDate>2016-08-03 22:08:40 UTC</pubDate>
         <guid>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117488199</guid>
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      <item>
         <title>CROMOSOMAS HOMOLOGOS</title>
         <author>janethgarcia</author>
         <link>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117488342</link>
         <description><![CDATA[<div> Los <strong>Cromosomas homólogos</strong> son un par de <a href="https://es.wikipedia.org/wiki/Cromosoma">cromosomas</a> -uno de la madre y uno del padre- que se aparean dentro de una célula durante la <a href="https://es.wikipedia.org/wiki/Meiosis">meiosis</a>, la cual ocurre en la <a href="https://es.wikipedia.org/wiki/Reproducci%C3%B3n_sexual">reproducción sexual</a>. </div>]]></description>
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         <pubDate>2016-08-03 22:11:22 UTC</pubDate>
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      <item>
         <title>CELULA SOMATICA</title>
         <author>janethgarcia</author>
         <link>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117488424</link>
         <description><![CDATA[<div> Las <strong>células somáticas</strong> son aquellas que conforman el crecimiento de los <a href="https://es.wikipedia.org/wiki/Tejido_%28biolog%C3%ADa%29">tejidos</a> y <a href="https://es.wikipedia.org/wiki/%C3%93rgano_%28biolog%C3%ADa%29">órganos</a> de un <a href="https://es.wikipedia.org/wiki/Ser_vivo">ser vivo</a> <a href="https://es.wikipedia.org/wiki/Pluricelular">pluricelular</a>, las cuales proceden de <a href="https://es.wikipedia.org/wiki/C%C3%A9lula_madre">células madre</a> originadas durante el <a href="https://es.wikipedia.org/wiki/Desarrollo_embrionario">desarrollo embrionario</a> y que sufren un proceso de <a href="https://es.wikipedia.org/wiki/Proliferaci%C3%B3n_celular">proliferación celular</a> y <a href="https://es.wikipedia.org/wiki/Apoptosis">apoptosis</a>. Son las que constituyen la mayoría de las células del cuerpo de un organismo pluricelular. </div>]]></description>
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         <pubDate>2016-08-03 22:12:49 UTC</pubDate>
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      <item>
         <title>CELULA SEXUAL</title>
         <author>janethgarcia</author>
         <link>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117488595</link>
         <description><![CDATA[<div> Las células sexuales son los óvulos y espermatozoides. Estas se forman en las glándulas sexuales y se unen durante el proceso de la fecundación para llevar a cabo la reproducción en el ser humano. </div>]]></description>
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         <pubDate>2016-08-03 22:15:25 UTC</pubDate>
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         <title>CELULA DIPLOIDE</title>
         <author>janethgarcia</author>
         <link>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117488752</link>
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" height="151" width="333"><figcaption class="caption"></figcaption></figure><strong>Diploide</strong> es una <a href="http://definicion.de/celula/"><strong>célula</strong></a>, un <strong>organismo</strong> o un <a href="http://definicion.de/tejido/"><strong>tejido</strong></a> que cuenta con <strong>dos juegos de cromosomas</strong>. Los <strong>cromosomas</strong>, por su parte, son corpúsculos con aspecto de bastón en los cuales se distribuye la <strong>cromatina</strong> perteneciente al núcleo celular en el proceso de la <strong>meiosis</strong> y la <a href="http://definicion.de/mitosis/"><strong>mitosis</strong></a>.</div><div><br><br></div>]]></description>
         <enclosure url="" />
         <pubDate>2016-08-03 22:18:23 UTC</pubDate>
         <guid>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117488752</guid>
      </item>
      <item>
         <title>CELULA HAPLOIDE</title>
         <author>janethgarcia</author>
         <link>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117488892</link>
         <description><![CDATA[<div>&nbsp;Las <a href="https://es.wikipedia.org/wiki/Gameto">células reproductoras</a>, como los <a href="https://es.wikipedia.org/wiki/%C3%93vulo">óvulos</a> y los <a href="https://es.wikipedia.org/wiki/Espermatozoide">espermatozoides</a> de los <a href="https://es.wikipedia.org/wiki/Mam%C3%ADfero">mamíferos</a>, la etapa asexual de <a href="https://es.wikipedia.org/wiki/Hongo">hongos</a>, briófitos y algunas algas contienen un solo juego de cromosomas, mientras que el resto de las células de un organismo superior suelen tener dos juegos de ellos. Cuando los <a href="https://es.wikipedia.org/wiki/Gameto">gametos</a> se unen durante la <a href="https://es.wikipedia.org/wiki/Fecundaci%C3%B3n">fecundación</a> el <a href="https://es.wikipedia.org/wiki/Cigoto">huevo</a> fecundado contiene un número normal de cromosomas &nbsp;<figure data-trix-content-type="image" data-trix-attachment="{&quot;contentType&quot;:&quot;image&quot;,&quot;height&quot;:298,&quot;url&quot;:&quot;http://www.colegioglenndoman.edu.co/IMAGENES%20AULA%202014/biologia-37.jpg&quot;,&quot;width&quot;:247}" class="attachment attachment-preview"><img src="http://www.colegioglenndoman.edu.co/IMAGENES%20AULA%202014/biologia-37.jpg" height="298" width="247"><figcaption class="caption"></figcaption></figure></div>]]></description>
         <enclosure url="" />
         <pubDate>2016-08-03 22:21:09 UTC</pubDate>
         <guid>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117488892</guid>
      </item>
      <item>
         <title>FECUNDACION</title>
         <author>janethgarcia</author>
         <link>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117489336</link>
         <description><![CDATA[<div> La <strong>fecundación</strong>, también llamada <strong>singamia</strong>, es el proceso por el cual dos <a href="https://es.wikipedia.org/wiki/Gameto">gametos</a> (<a href="https://es.wikipedia.org/wiki/Espermatozoide">masculino</a> y <a href="https://es.wikipedia.org/wiki/Ovulo">femenino</a>) se fusionan durante la <a href="https://es.wikipedia.org/wiki/Reproducci%C3%B3n_sexual">reproducción sexual</a> para crear un nuevo individuo con un <a href="https://es.wikipedia.org/wiki/Genoma">genoma</a> derivado de ambos progenitores.  </div>]]></description>
         <enclosure url="https://padletuploads.blob.core.windows.net/aws/123460605/3e6cf5d51434259e48f08da5b337ea90338d06ab/928f831745ff227e46fff8fda1ba9401.jpg" />
         <pubDate>2016-08-03 22:31:36 UTC</pubDate>
         <guid>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117489336</guid>
      </item>
      <item>
         <title>HERENCIA</title>
         <author>janethgarcia</author>
         <link>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117489429</link>
         <description><![CDATA[<div>&nbsp;La <strong>herencia genética</strong> es el proceso por el cual las características de los individuos se transmiten a su descendencia, ya sean características fisiológicas, morfológicas o bioquímicas de los <a href="https://es.wikipedia.org/wiki/Seres_vivos">seres vivos</a> bajo diferentes <a href="https://es.wikipedia.org/wiki/Medio_ambiente">medios ambientales</a> &nbsp;<figure data-trix-content-type="image" data-trix-attachment="{&quot;contentType&quot;:&quot;image&quot;,&quot;height&quot;:381,&quot;url&quot;:&quot;http://4.bp.blogspot.com/-HE0m08441E8/UIbGuirnRqI/AAAAAAAAAAo/6BrTc-szAKM/s1600/blog.jpg&quot;,&quot;width&quot;:559}" class="attachment attachment-preview"><img src="http://4.bp.blogspot.com/-HE0m08441E8/UIbGuirnRqI/AAAAAAAAAAo/6BrTc-szAKM/s1600/blog.jpg" height="381" width="559"><figcaption class="caption"></figcaption></figure></div>]]></description>
         <enclosure url="" />
         <pubDate>2016-08-03 22:33:52 UTC</pubDate>
         <guid>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117489429</guid>
      </item>
      <item>
         <title>acido desoxirribonucleico ADN</title>
         <author>janethgarcia</author>
         <link>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117489853</link>
         <description><![CDATA[<div> El <strong>ácido desoxirribonucleico</strong>, abreviado como <strong>ADN</strong>, es un <a href="https://es.wikipedia.org/wiki/%C3%81cido_nucleico">ácido nucleico</a> que contiene las instrucciones <a href="https://es.wikipedia.org/wiki/Gen%C3%A9tica">genéticas</a> usadas en el <a href="https://es.wikipedia.org/wiki/Biolog%C3%ADa_del_desarrollo">desarrollo</a> y funcionamiento de todos los <a href="https://es.wikipedia.org/wiki/Ser_vivo">organismos</a> vivos conocidos y algunos <a href="https://es.wikipedia.org/wiki/Virus">virus</a>, y es responsable de su transmisión <a href="https://es.wikipedia.org/wiki/Herencia_gen%C3%A9tica">hereditaria</a>. </div>]]></description>
         <enclosure url="https://padletuploads.blob.core.windows.net/aws/123460605/2ff682f19beb633253100318604d0c97390aa448/3c3e59307f8f41d0198af17f287d5aba.png" />
         <pubDate>2016-08-03 22:43:10 UTC</pubDate>
         <guid>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117489853</guid>
      </item>
      <item>
         <title>ARN</title>
         <author>janethgarcia</author>
         <link>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117490183</link>
         <description><![CDATA[<div> El <strong>ácido desoxirribonucleico</strong>, abreviado como <strong>ADN</strong>, es un <a href="https://es.wikipedia.org/wiki/%C3%81cido_nucleico">ácido nucleico</a> que contiene las instrucciones <a href="https://es.wikipedia.org/wiki/Gen%C3%A9tica">genéticas</a> usadas en el <a href="https://es.wikipedia.org/wiki/Biolog%C3%ADa_del_desarrollo">desarrollo</a> y funcionamiento de todos los <a href="https://es.wikipedia.org/wiki/Ser_vivo">organismos</a> vivos conocidos y algunos <a href="https://es.wikipedia.org/wiki/Virus">virus</a>, y es responsable de su transmisión <a href="https://es.wikipedia.org/wiki/Herencia_gen%C3%A9tica">hereditaria</a>. </div>]]></description>
         <enclosure url="https://padletuploads.blob.core.windows.net/aws/123460605/52a2e0a7d3961c249e232c27d1ab4a41498a1740/a59a367deedbefb50612df45aeb34701.jpg" />
         <pubDate>2016-08-03 22:48:27 UTC</pubDate>
         <guid>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117490183</guid>
      </item>
      <item>
         <title>MEIOSIS</title>
         <author>janethgarcia</author>
         <link>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117490385</link>
         <description><![CDATA[<div> es una de las formas de la reproducción celular, este proceso se realiza en las glándulas sexuales para la producción de gametos. </div>]]></description>
         <enclosure url="https://padletuploads.blob.core.windows.net/aws/123460605/65b020d1188abda1d0266c3942351763792038cf/d5dd29771d5ac08f8ea7e319b1d1157f.jpg" />
         <pubDate>2016-08-03 22:52:44 UTC</pubDate>
         <guid>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117490385</guid>
      </item>
      <item>
         <title>LOCUS</title>
         <author>janethgarcia</author>
         <link>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117490456</link>
         <description><![CDATA[<div>&nbsp;es una posición fija en un <a href="https://es.wikipedia.org/wiki/Cromosoma">cromosoma</a>, como la posición de un <a href="https://es.wikipedia.org/wiki/Gen">gen</a> o de un marcador (<a href="https://es.wikipedia.org/wiki/Marcador_gen%C3%A9tico">marcador genético</a>). En <a href="https://es.wikipedia.org/wiki/Biolog%C3%ADa">biología</a>, y, por extensión, en <a href="https://es.wikipedia.org/wiki/Computaci%C3%B3n_evolutiva">computación evolutiva</a>, se le usa para identificar posiciones de interés sobre determinadas secuencias.<figure data-trix-content-type="image" data-trix-attachment="{&quot;contentType&quot;:&quot;image&quot;,&quot;height&quot;:215,&quot;url&quot;:&quot;https://upload.wikimedia.org/wikipedia/commons/thumb/5/54/Chromosome.png/150px-Chromosome.png&quot;,&quot;width&quot;:150}" class="attachment attachment-preview"><img src="https://upload.wikimedia.org/wikipedia/commons/thumb/5/54/Chromosome.png/150px-Chromosome.png" height="215" width="150"><figcaption class="caption"></figcaption></figure>&nbsp; &nbsp;</div>]]></description>
         <enclosure url="" />
         <pubDate>2016-08-03 22:54:39 UTC</pubDate>
         <guid>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117490456</guid>
      </item>
      <item>
         <title>ALELOS</title>
         <author>janethgarcia</author>
         <link>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117490555</link>
         <description><![CDATA[<div>&nbsp;Un <strong>alelo</strong> o <strong>aleloide</strong> es cada una de las formas alternativas que puede tener un mismo <a href="https://es.wikipedia.org/wiki/Gen">gen</a> que se diferencian en su secuencia y que se puede manifestar en modificaciones concretas de la función de ese gen (producen variaciones en características heredadas como, por ejemplo, el <a href="https://es.wikipedia.org/wiki/Color_de_ojos">color de ojos</a> o el <a href="https://es.wikipedia.org/wiki/Grupo_sangu%C3%ADneo">grupo sanguíneo</a> &nbsp;<figure data-trix-content-type="image" 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" height="232" width="217"><figcaption class="caption"></figcaption></figure></div>]]></description>
         <enclosure url="" />
         <pubDate>2016-08-03 22:56:38 UTC</pubDate>
         <guid>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117490555</guid>
      </item>
      <item>
         <title>HOMOCIGOTO</title>
         <author>janethgarcia</author>
         <link>https://padlet.com/janethgarcia/ma85fbgoydwq/wish/117490603</link>
         <description><![CDATA[<div>&nbsp;Un organismo es <strong>homocigótico</strong> respecto a un <a href="https://es.wikipedia.org/wiki/Gen">gen</a> cuando los dos <a href="https://es.wikipedia.org/wiki/Alelo">alelos</a> codifican la misma información para un carácter, por ejemplo color de la flor en la arvejilla. &nbsp;<figure data-trix-content-type="image" data-trix-attachment="{&quot;contentType&quot;:&quot;image&quot;,&quot;height&quot;:120,&quot;url&quot;:&quot;data:image/png;base64,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         <enclosure url="" />
         <pubDate>2016-08-03 22:58:05 UTC</pubDate>
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