Mutation in SUMO E3 ligase, SIZ1, disrupts the mature female gametophyte in Arabidopsis.

Female gametophyte is the multicellular haploid structure that can produce embryo and endosperm after fertilization, which has become an attractive model system for investigating molecular mechanisms in nuclei migration, cell specification, cell-to-cell communication and many other processes. Previo...

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Main Authors: Yu Ling, Chunyu Zhang, Tong Chen, Huaiqing Hao, Peng Liu, Ray A Bressan, Paul M Hasegawa, Jing Bo Jin, Jinxing Lin
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3253799?pdf=render
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spelling doaj-4f9f1653188b4c3786fd5a1deabe29102020-11-25T01:31:39ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0171e2947010.1371/journal.pone.0029470Mutation in SUMO E3 ligase, SIZ1, disrupts the mature female gametophyte in Arabidopsis.Yu LingChunyu ZhangTong ChenHuaiqing HaoPeng LiuRay A BressanPaul M HasegawaJing Bo JinJinxing LinFemale gametophyte is the multicellular haploid structure that can produce embryo and endosperm after fertilization, which has become an attractive model system for investigating molecular mechanisms in nuclei migration, cell specification, cell-to-cell communication and many other processes. Previous reports found that the small ubiquitin-like modifier (SUMO) E3 ligase, SIZ1, participated in many processes depending on particular target substrates and suppression of salicylic acid (SA) accumulation. Here, we report that SIZ1 mediates the reproductive process. SIZ1 showed enhanced expression in female organs, but was not detected in the anther or pollen. A defect in the siz1-2 maternal source resulted in reduced seed-set regardless of high SA concentration within the plant. Moreover, aniline blue staining and scanning electron microscopy revealed that funicular and micropylar pollen tube guidance was arrested in siz1-2 plants. Some of the embryo sacs of ovules in siz1-2 were also disrupted quickly after stage FG7. There was no significant affects of the siz1-2 mutation on expression of genes involved in female gametophyte development- or pollen tube guidance in ovaries. Together, our results suggest that SIZ1 sustains the stability and normal function of the mature female gametophyte which is necessary for pollen tube guidance.http://europepmc.org/articles/PMC3253799?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Yu Ling
Chunyu Zhang
Tong Chen
Huaiqing Hao
Peng Liu
Ray A Bressan
Paul M Hasegawa
Jing Bo Jin
Jinxing Lin
spellingShingle Yu Ling
Chunyu Zhang
Tong Chen
Huaiqing Hao
Peng Liu
Ray A Bressan
Paul M Hasegawa
Jing Bo Jin
Jinxing Lin
Mutation in SUMO E3 ligase, SIZ1, disrupts the mature female gametophyte in Arabidopsis.
PLoS ONE
author_facet Yu Ling
Chunyu Zhang
Tong Chen
Huaiqing Hao
Peng Liu
Ray A Bressan
Paul M Hasegawa
Jing Bo Jin
Jinxing Lin
author_sort Yu Ling
title Mutation in SUMO E3 ligase, SIZ1, disrupts the mature female gametophyte in Arabidopsis.
title_short Mutation in SUMO E3 ligase, SIZ1, disrupts the mature female gametophyte in Arabidopsis.
title_full Mutation in SUMO E3 ligase, SIZ1, disrupts the mature female gametophyte in Arabidopsis.
title_fullStr Mutation in SUMO E3 ligase, SIZ1, disrupts the mature female gametophyte in Arabidopsis.
title_full_unstemmed Mutation in SUMO E3 ligase, SIZ1, disrupts the mature female gametophyte in Arabidopsis.
title_sort mutation in sumo e3 ligase, siz1, disrupts the mature female gametophyte in arabidopsis.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description Female gametophyte is the multicellular haploid structure that can produce embryo and endosperm after fertilization, which has become an attractive model system for investigating molecular mechanisms in nuclei migration, cell specification, cell-to-cell communication and many other processes. Previous reports found that the small ubiquitin-like modifier (SUMO) E3 ligase, SIZ1, participated in many processes depending on particular target substrates and suppression of salicylic acid (SA) accumulation. Here, we report that SIZ1 mediates the reproductive process. SIZ1 showed enhanced expression in female organs, but was not detected in the anther or pollen. A defect in the siz1-2 maternal source resulted in reduced seed-set regardless of high SA concentration within the plant. Moreover, aniline blue staining and scanning electron microscopy revealed that funicular and micropylar pollen tube guidance was arrested in siz1-2 plants. Some of the embryo sacs of ovules in siz1-2 were also disrupted quickly after stage FG7. There was no significant affects of the siz1-2 mutation on expression of genes involved in female gametophyte development- or pollen tube guidance in ovaries. Together, our results suggest that SIZ1 sustains the stability and normal function of the mature female gametophyte which is necessary for pollen tube guidance.
url http://europepmc.org/articles/PMC3253799?pdf=render
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