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And the Oskar goes to: Germ-soma differentiation in insects (Ep 54)

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When? This feed was archived on November 28, 2024 14:50 (11M ago). Last successful fetch was on September 26, 2024 03:41 (1y ago)

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What now? You might be able to find a more up-to-date version using the search function. This series will no longer be checked for updates. If you believe this to be in error, please check if the publisher's feed link below is valid and contact support to request the feed be restored or if you have any other concerns about this.

Manage episode 280338273 series 1941323
BigBiology에서 제공하는 콘텐츠입니다. 에피소드, 그래픽, 팟캐스트 설명을 포함한 모든 팟캐스트 콘텐츠는 BigBiology 또는 해당 팟캐스트 플랫폼 파트너가 직접 업로드하고 제공합니다. 누군가가 귀하의 허락 없이 귀하의 저작물을 사용하고 있다고 생각되는 경우 여기에 설명된 절차를 따르실 수 있습니다 https://ko.player.fm/legal.

What is a germ cell and why do animals separate germ and soma (body) cells at all? What molecules determine whether cells become germ or soma, and are some such mechanisms products of horizontal gene transfer?


On this episode of Big Biology, we talk with Cassandra Extavour, an evolutionary developmental biologist at Harvard who studies the how's and why's of germ cell differentiation in insects. Recently, Cassandra's lab has been working on oskar, a novel and highly conserved gene that is indispensable for giving insect cells the ability to become sperm or eggs. She and others have found that Oskar effectively acts like a magnet in developing insect cells, keeping together molecules critical to transformation of undifferentiated cells into functional germ cells. Bizarrely, this really important gene is thought to have evolved partly through horizontal gene transfer between insects and particular bacteria. Since then, oskar has also come to have many other functions, including for nerve cell development, even though much of its history was in species without nervous systems. Cassandra thinks that genes like these with complex histories and pleiotropic effects might be very common in living systems, much more than longstanding one gene-one phenotype thinking would lead us to expect.


Photo: Hannah Davis


This is a public episode. If you would like to discuss this with other subscribers or get access to bonus episodes, visit bigbiology.substack.com
  continue reading

161 에피소드

Artwork
icon공유
 

저장한 시리즈 ("피드 비활성화" status)

When? This feed was archived on November 28, 2024 14:50 (11M ago). Last successful fetch was on September 26, 2024 03:41 (1y ago)

Why? 피드 비활성화 status. 잠시 서버에 문제가 발생해 팟캐스트를 불러오지 못합니다.

What now? You might be able to find a more up-to-date version using the search function. This series will no longer be checked for updates. If you believe this to be in error, please check if the publisher's feed link below is valid and contact support to request the feed be restored or if you have any other concerns about this.

Manage episode 280338273 series 1941323
BigBiology에서 제공하는 콘텐츠입니다. 에피소드, 그래픽, 팟캐스트 설명을 포함한 모든 팟캐스트 콘텐츠는 BigBiology 또는 해당 팟캐스트 플랫폼 파트너가 직접 업로드하고 제공합니다. 누군가가 귀하의 허락 없이 귀하의 저작물을 사용하고 있다고 생각되는 경우 여기에 설명된 절차를 따르실 수 있습니다 https://ko.player.fm/legal.

What is a germ cell and why do animals separate germ and soma (body) cells at all? What molecules determine whether cells become germ or soma, and are some such mechanisms products of horizontal gene transfer?


On this episode of Big Biology, we talk with Cassandra Extavour, an evolutionary developmental biologist at Harvard who studies the how's and why's of germ cell differentiation in insects. Recently, Cassandra's lab has been working on oskar, a novel and highly conserved gene that is indispensable for giving insect cells the ability to become sperm or eggs. She and others have found that Oskar effectively acts like a magnet in developing insect cells, keeping together molecules critical to transformation of undifferentiated cells into functional germ cells. Bizarrely, this really important gene is thought to have evolved partly through horizontal gene transfer between insects and particular bacteria. Since then, oskar has also come to have many other functions, including for nerve cell development, even though much of its history was in species without nervous systems. Cassandra thinks that genes like these with complex histories and pleiotropic effects might be very common in living systems, much more than longstanding one gene-one phenotype thinking would lead us to expect.


Photo: Hannah Davis


This is a public episode. If you would like to discuss this with other subscribers or get access to bonus episodes, visit bigbiology.substack.com
  continue reading

161 에피소드

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