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Temperature sensitivity of DNA double-strand break repair underpins heat-induced meiotic failure in mouse spermatogenesis

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Temperature sensitivity of DNA double-strand break repair underpins  heat-induced meiotic failure in mouse spermatogenesis

In vivo CRISPR screening directly targeting testicular cells

Temperature sensitivity of DNA double-strand break repair underpins  heat-induced meiotic failure in mouse spermatogenesis

The DSBR model based on studies in S. cerevisiae.

Temperature sensitivity of DNA double-strand break repair underpins  heat-induced meiotic failure in mouse spermatogenesis

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Temperature sensitivity of DNA double-strand break repair underpins  heat-induced meiotic failure in mouse spermatogenesis

Blog - NYRA

Temperature sensitivity of DNA double-strand break repair underpins  heat-induced meiotic failure in mouse spermatogenesis

Trpv4-mediated apoptosis of Leydig cells induced by high temperature regulates sperm development and motility in zebrafish

Temperature sensitivity of DNA double-strand break repair underpins  heat-induced meiotic failure in mouse spermatogenesis

Temperature sensitivity of DNA double-strand break repair

Temperature sensitivity of DNA double-strand break repair underpins  heat-induced meiotic failure in mouse spermatogenesis

Elevated Temperatures Cause Transposon-Associated DNA Damage in C

Temperature sensitivity of DNA double-strand break repair underpins  heat-induced meiotic failure in mouse spermatogenesis

Testis organ culture system capable of evaluating testicular

Temperature sensitivity of DNA double-strand break repair underpins  heat-induced meiotic failure in mouse spermatogenesis

National Institute for Basic Biology / NIBB Departments

Temperature sensitivity of DNA double-strand break repair underpins  heat-induced meiotic failure in mouse spermatogenesis

Surgery-induced cryptorchidism induces apoptosis and autophagy of

Temperature sensitivity of DNA double-strand break repair underpins  heat-induced meiotic failure in mouse spermatogenesis

Generation of Tex19.1 2 / 2 knockout mice. (A) Schematic view of the

Temperature sensitivity of DNA double-strand break repair underpins  heat-induced meiotic failure in mouse spermatogenesis

Asynapsis in Tex19.1-/-Spermatocytes is not Directly Caused by Impaired

Temperature sensitivity of DNA double-strand break repair underpins  heat-induced meiotic failure in mouse spermatogenesis

DSB repair and pairing of X-Y chromosomes occur later than those of

Temperature sensitivity of DNA double-strand break repair underpins  heat-induced meiotic failure in mouse spermatogenesis

Elevated Temperatures Cause Transposon-Associated DNA Damage in C