Ryusuke Niwa

@ryuniwa.bsky.social

Professor, Physiological Dynamics, TARA, Univ. of Tsukuba, Japan / Drosophila / Parasitoid wasps / X: TsukubaNiwaLab / 丹羽隆介

Our "Dr. Léopold Week” this year has come to an end! We deeply thank Pierre @leopoldlab.bsky.social for visiting us again. We also thank Prof. Chih-Chiang Chan and his team from National Taiwan University for visiting us as part of our collaboration! We had a wonderful party yesterday.

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Excited to share our paper, led by Naoki Okamoto in our group, just out in Nature! Neuroendocrine control of calcium mobilization in the fruit fly www.nature.com/articles/s41... We “re”-discovered the calcium storage site in “boneless” Drosophila and revealed how calcium mobilization is regulated.

Neuroendocrine control of calcium mobilization in the fruit fly - Nature

The peptide hormone Capa is responsible for regulating extracellular fluid Ca2+ levels in the fruit fly Drosophila melanogaster.

nature.com

A new paper from our group: Stress-induced organismal death is genetically regulated by the mTOR–Zeste–Phae1 axis | PNAS pnas.org/doi/10.1073/... At least in Drosophila, organismal death caused by excessive stress is not possible without the involvement of a genetic pathway.

Stress-induced organismal death is genetically regulated by the mTOR–Zeste–Phae1 axis | PNAS

All organisms are exposed to various stressors, which can sometimes lead to organismal death, depending on their intensity. While stress-induced or...

pnas.org

Dear All, I believe that this thread will become one of my most important contributions to the fly field (I hope I will make other contributions)! Here, I introduce the Soy Milk Machine Fly Food Method, a.k.a., DeepCook!#Drosophila#NewPI

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I am thrilled that our paper, which is packed with our 10 years of data on the venom proteins of the parasitoid wasp Asobara japonica, has just been published! Parasitoid wasp venoms degrade Drosophila imaginal discs for successful parasitism | Science Advances www.science.org/doi/10.1126/...

Parasitoid wasp venoms degrade Drosophila imaginal discs for successful parasitism

Two parasitoid wasp venom proteins induce imaginal disc degradation of its host fly Drosophila larva, ensuring parasitism success.

science.org

<Seminar announcement> Jan 16 (Thu) 2025, 13:15 – 14:30 @ The seminar room, Bldg. A of TARA, Univ. Tsukuba "Arms race between infectious retrotransposons and the piRNA pathway in animals (感染性レトロトランスポゾンとpiRNA経路の進化的関連性について)" by Dr. Rippei Hayashi (AIU)(林立平博士) See the poster below.

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