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Analysis of gemini pollen 3 mutant suggests a broad function of AUGMIN in microtubule organization during sexual reproduction in Arabidopsis

  • Sung Aeong Oh
  • , Jien Jeon
  • , Hyo Jin Park
  • , Paul Eivind Grini
  • , David Twell
  • , Soon Ki Park
  • Kyungpook National University
  • University of Oslo
  • University of Leicester

Research output: Contribution to journalArticlepeer-review

23 Scopus citations

Abstract

In flowering plants, male gametes arise via meiosis of diploid pollen mother cells followed by two rounds of mitotic division. Haploid microspores undergo polar nuclear migration and asymmetric division at pollen mitosis I to segregate the male germline, followed by division of the germ cell to generate a pair of sperm cells. We previously reported two gemini pollen (gem) mutants that produced twin-celled pollen arising from polarity and cytokinesis defects at pollen mitosis I in Arabidopsis. Here, we report an independent mutant, gem3, with a similar division phenotype and severe genetic transmission defects through pollen. Cytological analyses revealed that gem3 disrupts cell division during male meiosis, at pollen mitosis I and during female gametophyte development. We show that gem3 is a hypomorphic allele (aug6-1) of AUGMIN subunit 6, encoding a conserved component in the augmin complex, which mediates microtubule (MT)-dependent MT nucleation in acentrosomal cells. We show that MT arrays are disturbed in gem3/aug6-1 during male meiosis and pollen mitosis I using fluorescent MT-markers. Our results demonstrate a broad role for the augmin complex in MT organization during sexual reproduction, and highlight gem3/aug6-1 mutants as a valuable tool for the investigation of augmin-dependent MT nucleation and dynamics in plant cells.

Original languageEnglish
Pages (from-to)188-201
Number of pages14
JournalPlant Journal
Volume87
Issue number2
DOIs
StatePublished - 1 Jul 2016

Keywords

  • Arabidopsis thaliana
  • augmin complex
  • gemini pollen 3
  • microtubule organization
  • sexual reproduction

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