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Tytuł pozycji:

The BME3 (Blue Micropylar End 3) GATA zinc finger transcription factor is a positive regulator of Arabidopsis seed germination.

Tytuł:
The BME3 (Blue Micropylar End 3) GATA zinc finger transcription factor is a positive regulator of Arabidopsis seed germination.
Autorzy:
Liu PP; Department of Horticulture, Oregon State University, Corvallis, OR 97331, USA.
Koizuka N
Martin RC
Nonogaki H
Źródło:
The Plant journal : for cell and molecular biology [Plant J] 2005 Dec; Vol. 44 (6), pp. 960-71.
Typ publikacji:
Journal Article; Research Support, U.S. Gov't, Non-P.H.S.
Język:
English
Imprint Name(s):
Original Publication: Oxford : Blackwell Scientific Publishers and BIOS Scientific Publishers in association with the Society for Experimental Biology, c1991-
MeSH Terms:
Gene Expression Regulation, Plant*
Arabidopsis/*embryology
Arabidopsis/*genetics
Arabidopsis Proteins/*physiology
GATA Transcription Factors/*physiology
Germination/*genetics
Seeds/*genetics
Transcription Factors/*physiology
Amino Acid Sequence ; Arabidopsis/anatomy & histology ; Arabidopsis Proteins/genetics ; Cold Temperature ; Genes, Reporter ; Molecular Sequence Data ; Mutagenesis, Insertional ; Phenotype ; Seeds/anatomy & histology ; Seeds/embryology ; Sequence Alignment ; Sequence Homology, Amino Acid ; Transcription Factors/genetics
Substance Nomenclature:
0 (Arabidopsis Proteins)
0 (BME2 protein, Arabidopsis)
0 (GATA Transcription Factors)
0 (Transcription Factors)
Entry Date(s):
Date Created: 20051220 Date Completed: 20060223 Latest Revision: 20081121
Update Code:
20240104
DOI:
10.1111/j.1365-313X.2005.02588.x
PMID:
16359389
Czasopismo naukowe
In many plant species, seed dormancy is broken by cold stratification, a pre-chilling treatment of fully imbibed seeds. Although the ecological importance of seed response to cold temperature is well appreciated, the mechanisms underlying the physiological changes during cold stratification is unknown. Here we show that the GATA zinc finger protein expressed in Arabidopsis seeds during cold stratification plays a critical role in germination. Characterization of an enhancer-trap population identified multiple lines that exhibited beta-glucuronidase (GUS) expression in the micropylar end of the seed (named Blue Micropylar End, BME lines). One of these lines, BME3, had a T-DNA insertion site in the 5' upstream region of a GATA-type zinc finger transcription factor gene (termed BME3-ZF). The BME3-ZF mRNA accumulated in seeds during cold stratification. Characterization of the BME3-ZF promoter indicated that this gene was activated specifically in the embryonic axis, which was still enclosed by the endosperm. The zinc finger gene knockout plants produced seeds exhibiting deeper dormancy, which showed reduced response to cold stratification. The ungerminated knockout seeds exhibited testa rupture, but failed to penetrate the endosperm layer. Application of gibberellic acid (GA3) rescued impaired germination of knockout seeds without cold stratification, indicating that the normal GA signal transduction pathway is present in the knockout mutants. Expression of GA20-oxidase and GA3-oxidase genes was greatly reduced in the knockout seeds, suggesting the potential involvement of the zinc finger protein in GA biosynthesis. These results suggest that the GATA zinc finger protein is a positive regulator of seed germination.

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