Akihito Mamiya

ORCID: 0000-0001-6492-7903
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About
Contact & Profiles
Research Areas
  • Plant Molecular Biology Research
  • Plant nutrient uptake and metabolism
  • Photosynthetic Processes and Mechanisms
  • Plant Reproductive Biology
  • Light effects on plants
  • Plant tissue culture and regeneration
  • Plant Pathogens and Fungal Diseases
  • Plant Diversity and Evolution

Kobe University
2021-2024

The University of Tokyo
2020-2021

Peptide-receptor signaling is an important system for intercellular communication, regulating many developmental processes. A single process can be controlled by several distinct peptides. However, since peptide-receptor modules are usually studied separately, their mechanistic interactions remain largely unexplored. Two phylogenetically unrelated modules, GLV6/GLV10-RGI and TOLS2/PIP2-RLK7, independently described as inhibitors of lateral root initiation, show striking similarities between...

10.1111/nph.17919 article EN cc-by-nc-nd New Phytologist 2021-12-16

Although mechanisms that activate organogenesis in plants are well established, much less is known about the subsequent fine-tuning of cell proliferation, which crucial for creating properly structured and sized organs. Here we show, through analysis temperature-dependent fasciation (TDF) mutants Arabidopsis, root redifferentiation defective 1 ( rrd1 ), rrd2 , initiation 4 rid4 mitochondrial RNA processing required limiting division during early lateral (LR) organogenesis. These formed...

10.7554/elife.61611 article EN cc-by eLife 2021-01-14

abstract Shoot regeneration involves reprogramming of somatic cells and de novo organization shoot apical meristems (SAMs). In the best-studied model system using Arabidopsis, is mediated by auxin-responsive pluripotent callus formation from pericycle or pericycle-like tissues according to lateral root development pathway. contrast, can be induced directly fully differentiated epidermal stem explants Torenia fournieri (Torenia), without intervening mass in culture with cytokinin; yet, its...

10.1093/pcp/pcab101 article EN cc-by-nc Plant and Cell Physiology 2021-07-05

Abstract Although mechanisms that activate organogenesis in plants are well established, much less is known about the subsequent fine-tuning of cell proliferation, which crucial for creating properly structured and sized organs. Here we show, through analysis temperature-dependent fasciation (TDF) mutants Arabidopsis, root redifferentiation defective 1 ( rrd1 ), rrd2 , initiation 4 rid4 mitochondrial RNA processing required limiting division during early lateral (LR) organogenesis. These...

10.1101/2020.06.09.141382 preprint EN bioRxiv (Cold Spring Harbor Laboratory) 2020-06-12
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