World's Best Scientists 2026 revealed!

D-Index & Metrics

Biology and Biochemistry

D-Index
52
Citations
11504
World Ranking
16573
National Ranking
1186

Overview

Shin-ya Miyagishima is affiliated with the National Institute of Genetics in Japan. Their research primarily falls within the field of Biochemistry, Genetics and Molecular Biology, with a focus on several subfields including Molecular Biology, Renewable Energy, Sustainability and the Environment, Ecology, Oceanography, and Plant Science.

Their work encompasses multiple main topics related to algal biology and photosynthesis. These topics include:

  • Algal biology and biofuel production
  • Photosynthetic Processes and Mechanisms
  • Protist diversity and phylogeny
  • Microbial Community Ecology and Physiology
  • Marine and coastal plant biology
  • Marine and coastal ecosystems
  • Genomics and Phylogenetic Studies

Miyagishima's research has appeared in various academic venues, with frequent publications in:

  • bioRxiv (Cold Spring Harbor Laboratory)
  • PLANT PHYSIOLOGY
  • Plant and Cell Physiology
  • Proceedings of the National Academy of Sciences
  • Scientific Reports

Some of their recent papers include:

  • The Unicellular Red Alga Cyanidioschyzon merolae-The Simplest Model of a Photosynthetic Eukaryote, 2021, Plant and Cell Physiology
  • Life cycle and functional genomics of the unicellular red alga Galdieria for elucidating algal and plant evolution and industrial use, 2022, Proceedings of the National Academy of Sciences

Among frequent coauthors in Miyagishima's work are Takayuki Fujiwara, Shunsuke Hirooka, Ryo Onuma, Shota Yamashita, and Fumi Yagisawa. Collaboration with these researchers has spanned many publications, indicating ongoing partnerships within the field of algal and molecular biology research.

Best Publications

  • Genome Sequence of the Pea Aphid Acyrthosiphon pisum

    Stephen Richards;Richard A. Gibbs;Nicole M. Gerardo;Nancy Moran

  • Genome sequence of the ultrasmall unicellular red alga Cyanidioschyzon merolae 10D

    Motomichi Matsuzaki;Osami Misumi;Tadasu Shin-I;Shinichiro Maruyama

  • Pollen Tube Attraction by the Synergid Cell

    Tetsuya Higashiyama;Shizu Yabe;Narie Sasaki;Yoshiki Nishimura

  • Defensive Bacteriome Symbiont with a Drastically Reduced Genome

    Atsushi Nakabachi;Reiko Ueoka;Reiko Ueoka;Kenshiro Oshima;Roberta Teta

  • Complete sequence and analysis of the plastid genome of the unicellular red alga Cyanidioschyzon merolae.

    Niji Ohta;Motomichi Matsuzaki;Osami Misumi;Shin-ya Miyagishima

  • A Plant-Specific Dynamin-Related Protein Forms a Ring at the Chloroplast Division Site

    Shin-ya Miyagishima;Keiji Nishida;Toshiyuki Mori;Motomichi Matsuzaki

  • Identification of cyanobacterial cell division genes by comparative and mutational analyses

    Shin Ya Miyagishima;Peter P. Wolk;Katherine W. Osteryoung

  • Chloroplast Biogenesis: Control of Plastid Development, Protein Import, Division and Inheritance

    Wataru Sakamoto;Shin-ya Miyagishima;Paul Jarvis

  • Bacterial genes in the aphid genome: absence of functional gene transfer from Buchnera to its host.

    Naruo Nikoh;John P. McCutcheon;Toshiaki Kudo;Shin Ya Miyagishima

  • The PLASTID DIVISION1 and 2 components of the chloroplast division machinery determine the rate of chloroplast division in land plant cell differentiation.

    Kumiko Okazaki;Yukihiro Kabeya;Kenji Suzuki;Toshiyuki Mori

  • PDV1 and PDV2 Mediate Recruitment of the Dynamin-Related Protein ARC5 to the Plastid Division Site

    Shin Ya Miyagishima;John E. Froehlich;Katherine W. Osteryoung

  • Dynamic recruitment of dynamin for final mitochondrial severance in a primitive red alga.

    Keiji Nishida;Manabu Takahara;Shin-ya Miyagishima;Haruko Kuroiwa

  • Plastid Division Is Driven by a Complex Mechanism That Involves Differential Transition of the Bacterial and Eukaryotic Division Rings

    Shin-ya Miyagishima;Manabu Takahara;Toshiyuki Mori;Haruko Kuroiwa

  • Auxin and Cytokinin Have Opposite Effects on Amyloplast Development and the Expression of Starch Synthesis Genes in Cultured Bright Yellow-2 Tobacco Cells

    Yutaka Miyazawa;Atsushi Sakai;Shin Ya Miyagishima;Hiroyoshi Takano

  • Chloroplast Division

    Jonathan M. Glynn;Shin-ya Miyagishima;David W. Yoder;Katherine W. Osteryoung

  • Gamete attachment requires GEX2 for successful fertilization in Arabidopsis.

    Toshiyuki Mori;Tomoko Igawa;Gen Tamiya;Shin Ya Miyagishima

  • PARC6, a novel chloroplast division factor, influences FtsZ assembly and is required for recruitment of PDV1 during chloroplast division in Arabidopsis.

    Jonathan M. Glynn;Yue Yang;Stanislav Vitha;Aaron J. Schmitz

  • Male Fertility of Malaria Parasites Is Determined by GCS1, a Plant-Type Reproduction Factor

    Makoto Hirai;Meiji Arai;Toshiyuki Mori;Shin-ya Miyagishima

  • Aphid gene of bacterial origin encodes a protein transported to an obligate endosymbiont

    Atsushi Nakabachi;Kinji Ishida;Yuichi Hongoh;Moriya Ohkuma

  • Plastid chaperonin proteins Cpn60α and Cpn60β are required for plastid division in Arabidopsis thaliana

    Kenji Suzuki;Hiromitsu Nakanishi;Joyce Bower;David W. Yoder

Frequent Co-Authors

Tsuneyoshi Kuroiwa
Tsuneyoshi Kuroiwa Japan Women's University
Haruko Kuroiwa
Haruko Kuroiwa Japan Women's University
Hisayoshi Nozaki
Hisayoshi Nozaki University of Tokyo
Kan Tanaka
Kan Tanaka Tokyo Institute of Technology
Shuji Shigenobu
Shuji Shigenobu National Institute for Basic Biology
Katherine W. Osteryoung
Katherine W. Osteryoung Michigan State University
Shigeyuki Kawano
Shigeyuki Kawano University of Tokyo
Takema Fukatsu
Takema Fukatsu National Institute of Advanced Industrial Science and Technology
Tetsuya Higashiyama
Tetsuya Higashiyama University of Tokyo
Moriya Ohkuma
Moriya Ohkuma National Presto Industries

If you think any of the details on this page are incorrect, let us know.

Report an issue

We appreciate your kind effort to assist us to improve this page, it would be helpful providing us with as much detail as possible in the text box below:

Related Online Degrees & Career Pathways

As the field of biology and biochemistry continues to evolve, many students are considering related online degrees to gain a competitive edge in healthcare, research, and industry roles. Several flexible online programs now offer accelerated pathways and affordable tuition, making advanced degrees more accessible than ever before.

For those interested in mental health and patient care, psychiatric np programs can be completed online and provide opportunities to specialize in psychiatric and mental health nursing. Alternatively, if nutrition and dietetics align more closely with your passion, consider exploring accelerated dietitian programs for a faster entry into the field of nutrition science.

For students interested in leadership, a cheap online mba healthcare administration offers advanced skill development for those seeking roles as healthcare managers and administrators—even without interrupting your current job.

Career advancement in medical coding and billing is also possible with online certifications. Deciding between ccs vs cpc certification can open up specialized job opportunities and increase your earning potential.

Best Scientists Citing Shin-ya Miyagishima

Trending Scientists