Literature DB >> 14634156

Behavior of vacuoles during microspore and pollen development in Arabidopsis thaliana.

Yoko Yamamoto1, Mikio Nishimura, Ikuko Hara-Nishimura, Tetsuko Noguchi.   

Abstract

Using the cryo-fixation/freeze-substitution method, we studied the ultrastructural changes and behavior of vacuoles and related organelles (rER and Golgi bodies) during microspore and pollen development, and pollen maturation of Arabidopsis thaliana. In young microspores forming exine (pollen outer cell wall), vacuoles looked like those of somatic cells. In microspores during the formation of intine (inner cell wall), a large vacuole appeared which was made by fusion of pre-existing vacuoles and probably absorption of solutions. In the young pollen grain after the first mitosis, a large vacuole was divided into small vacuoles. The manner of division was not by binary fission and centripetally, but by the invagination of tonoplasts from one side to the opposite side of a vacuole. After the second mitosis, somatic type vacuoles disappeared. In mature pollen grains just before germination, membrane-bound structures containing fine fibrillar substances (MBFs) appeared. The MBFs were considered to be storage vacuoles. In pollen grains from flowers in bloom, MBFs changed to lysosomal structures with acid phosphatases (lytic vacuole). They gradually increased in number and volume, and decomposed the cytoplasm. The autolysis of pollen grains is the first finding in this study, which may contribute to the loss of ability of pollen germination after anthesis.

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Year:  2003        PMID: 14634156     DOI: 10.1093/pcp/pcg147

Source DB:  PubMed          Journal:  Plant Cell Physiol        ISSN: 0032-0781            Impact factor:   4.927


  43 in total

1.  Geminating pollen has tubular vacuoles, displays highly dynamic vacuole biogenesis, and requires VACUOLESS1 for proper function.

Authors:  Glenn R Hicks; Enrique Rojo; Seho Hong; David G Carter; Natasha V Raikhel
Journal:  Plant Physiol       Date:  2004-02-26       Impact factor: 8.340

2.  Visualization of plastid movement in the pollen tube of Arabidopsis thaliana.

Authors:  Makoto T Fujiwara; Yasushi Yoshioka; Tomonari Hirano; Yusuke Kazama; Tomoko Abe; Kensuke Hayashi; Ryuuichi D Itoh
Journal:  Plant Signal Behav       Date:  2012-01

3.  The pollen-specific DEFH125 promoter from Antirrhinum is bound in vivo by the MADS-box proteins DEFICIENS and GLOBOSA.

Authors:  Andrea Lauri; Shuping Xing; Iris Heidmann; Heinz Saedler; Sabine Zachgo
Journal:  Planta       Date:  2005-12-22       Impact factor: 4.116

4.  Arabidopsis VAC14 Is Critical for Pollen Development through Mediating Vacuolar Organization.

Authors:  Wei-Tong Zhang; En Li; Yan-Kui Guo; Shi-Xia Yu; Zhi-Yuan Wan; Ting Ma; Sha Li; Tomoko Hirano; Masa H Sato; Yan Zhang
Journal:  Plant Physiol       Date:  2018-06-08       Impact factor: 8.340

5.  Interaction of lipid bodies with other cell organelles in the maturing pollen of Magnolia x soulangeana (Magnoliaceae).

Authors:  Augusto M Dinis; A Pereira Coutinho
Journal:  Protoplasma       Date:  2009-09-08       Impact factor: 3.356

Review 6.  Pollen vacuoles and their significance.

Authors:  Ettore Pacini; Cédric Jacquard; Christophe Clément
Journal:  Planta       Date:  2011-06-26       Impact factor: 4.116

Review 7.  Mechanisms for independent cytoplasmic inheritance of mitochondria and plastids in angiosperms.

Authors:  Noriko Nagata
Journal:  J Plant Res       Date:  2010-03       Impact factor: 2.629

8.  Calcium controls the formation of vacuoles from mitochondria to regulate microspore development in wheat.

Authors:  Dong Xiao Li; Hai Yan Hu; Gan Li; Zhen Gang Ru; Hui Qiao Tian
Journal:  Plant Reprod       Date:  2017-09-12       Impact factor: 3.767

9.  AtbZIP34 is required for Arabidopsis pollen wall patterning and the control of several metabolic pathways in developing pollen.

Authors:  Antónia Gibalová; David Renák; Katarzyna Matczuk; Nikoleta Dupl'áková; David Cháb; David Twell; David Honys
Journal:  Plant Mol Biol       Date:  2009-05-18       Impact factor: 4.076

10.  Optimization of conditions for germination of cold-stored Arabidopsis thaliana pollen.

Authors:  Firas Bou Daher; Youssef Chebli; Anja Geitmann
Journal:  Plant Cell Rep       Date:  2008-12-03       Impact factor: 4.570

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