| Literature DB >> 20550711 |
Dongfang Wang1, Changqing Zhang, David J Hearn, Il-Ho Kang, Jayson A Punwani, Megan I Skaggs, Gary N Drews, Karen S Schumaker, Ramin Yadegari.
Abstract
BACKGROUND: In flowering plants, the female gametophyte is typically a seven-celled structure with four cell types: the egg cell, the central cell, the synergid cells, and the antipodal cells. These cells perform essential functions required for double fertilization and early seed development. Differentiation of these distinct cell types likely involves coordinated changes in gene expression regulated by transcription factors. Therefore, understanding female gametophyte cell differentiation and function will require dissection of the gene regulatory networks operating in each of the cell types. These efforts have been hampered because few transcription factor genes expressed in the female gametophyte have been identified. To identify such genes, we undertook a large-scale differential expression screen followed by promoter-fusion analysis to detect transcription-factor genes transcribed in the Arabidopsis female gametophyte.Entities:
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Year: 2010 PMID: 20550711 PMCID: PMC3236301 DOI: 10.1186/1471-2229-10-110
Source DB: PubMed Journal: BMC Plant Biol ISSN: 1471-2229 Impact factor: 4.215
Summary of qRT-PCR and promoter-fusion analyses to identify transcription-factor genes expressed in the female gametophyte.
| Primary qRT screen | Secondary qRT screen | ||||||
|---|---|---|---|---|---|---|---|
| AGI1 | Gene family2 | Gene name3 | Average ΔΔCT | Average ΔΔCT | Ovule | Seed | |
| AT5G27880 | C2H2 | 6.20 | 6.63 | 0.001 | C | EN | |
| AT1G60280 | NAC | NAC23 | 4.40 | 4.29 | 0.003 | S,(E) | ne |
| AT5G54070 | HSF | HSFA9 | 4.46 | 4.25 | 0.002 | ||
| AT5G11050 | MYB | MYB64 | 6.24 | 4.18 | 0.001 | C,(E),(S) | EN |
| AT2G40220 | AP2-EREBP | ABI4 | 3.77 | 3.93 | 0.042 | E | EM |
| AT2G24840 | MADS | AGL61 | 7.73 | 3.90 | 0.002 | ||
| AT5G41090 | NAC | NAC95 | 4.88 | 3.81 | 0.002 | A | ne |
| AT1G55600 | WRKY | MINI3/WRKY10 | 1.89 | 3.75 | 0.006 | ne | EN4 |
| AT1G66390 | MYB | MYB90 | 1.77 | 3.68 | 0.071 | ||
| AT5G61890 | AP2-EREBP | 1.84 | 3.07 | 0.014 | |||
| AT1G21970 | CCAAT-HAP3 | LEC1 | 4.26 | 3.03 | 0.063 | ||
| AT5G01860 | C2H2 | 3.60 | 2.88 | 0.002 | A,C,(E),(S) | (EN) | |
| AT4G00540 | MYB | MYB3R2 | 1.81 | 2.88 | 0.019 | ||
| AT1G01530 | MADS | AGL28 | 3.40 | 2.84 | 0.013 | ||
| AT5G56200 | C2H2 | 5.18 | 2.62 | 0.014 | A | EN4 | |
| AT1G35520 | ARF | ARF15 | 1.59 | 2.55 | 0.012 | A | ne |
| AT1G67030 | C2H2 | ZFP6 | 3.73 | 2.43 | 0.029 | A | ne |
| AT5G45980 | Homeobox | WOX8 | 4.51 | 2.30 | 0.006 | E | EM |
| AT1G56650 | MYB | MYB75 | 1.89 | 2.26 | 0.081 | ||
| AT5G58850 | MYB | MYB119 | 7.77 | 2.23 | 0.017 | ||
| AT4G38070 | bHLH | 2.13 | 2.22 | 0.020 | |||
| AT1G75250 | MYB-related | RL6 | 3.02 | 1.71 | 0.011 | C,E,S | EN |
| AT2G33710 | AP2-EREBP | 1.85 | 1.61 | 0.002 | E,(S) | EM,EN | |
| AT1G49770 | bHLH | ZOU/RGE1/bHLH95 | 2.09 | 1.61 | 0.063 | C,(S) | EN |
| AT3G01030 | C2H2 | 3.81 | 1.43 | 0.010 | S,(C) | ne | |
| AT1G04370 | AP2-EREBP | ERF14 | 3.24 | 1.11 | 0.096 | ||
| AT2G22750 | bHLH | 2.46 | 0.80 | nd | (A)5 | ne | |
| AT5G01380 | Trihelix | 1.57 | 0.06 | nd | A | ne | |
| AT5G50490 | CCAAT-HAP5 | 2.11 | -0.27 | nd | C | EN | |
The genes are ranked in descending order based on the average ΔΔCT value in the secondary qRT-PCR screen. Average ΔΔCT values and P values (Student's t-test) were calculated as described in Methods. GFP activity in female gametophytes was analyzed at one day after emasculation (corresponding to the mature stage of female gametophyte development, FG7 [63]) and in early-developing seeds at flower stage 16 (corresponding to endosperm stages V to VI and embryo stages from elongated zygote to two-cell embryo-proper [68,69]). A, antipodal cells; C, central cell; E, egg cell; EM, embryo; EN, endosperm; ne, no consistent expression; nd, not determined; S, synergid cells; (), weak expression.
1 Arabidopsis Genome Initiative number.
2 Based on the classification of Arabidopsis transcription-factor genes provided by AGRIS http://arabidopsis.med.ohio-state.edu/AtTFDB and DATF http://datf.cbi.pku.edu.cn.
3 Based on gene annotation provided by TAIR http://www.arabidopsis.org.
4 GFP activity was more intense in the micropylar endosperm compared to the chalazal and peripheral endosperm.
5 GFP activity was not detected at FG7 but was detected at FG5.
Figure 1Expression patterns of transcription-factor . (A) pAT2G22750:cGFP expression in the antipodal cells. (B) pAT1G49770:cGFP (ZOU/RGE1) expression in the central cell and the synergid cells. (C) pAT5G11050:cGFP (MYB64) expression in the central cell, the egg cell, and the synergid cells. (D) pAT1G75250:cGFP (RL6) expression in the central cell, the egg cell, and the synergid cells. Each panel contains an epifluorescence image (top) and an overlay (bottom) of the epifluorescence and a bright-field image of the same ovule. Images in (A) were taken at the developmental stage FG5, the rest of the images were taken at stages FG6 to FG7 [63]. ac, antipodal cells; cc, central cell; ec, egg cell; sc, synergid cell. Scale bars: 50 μm.
Figure 2Comparison of cGFP, n1GFP, and n2GFP gene-reporter activities in the mature female gametophyte. Expression of AT5G27880 (A-C) and AT5G01860 (D-F) promoter constructs fused to the cGFP (A, D), n1GFP (B, E), and n2GFP (C, F) reporters. Each panel contains an epifluorescence image (top) and an overlay (bottom) of the epifluorescence and a bright-field image of the same ovule. acn, antipodal cell nuclei; cc, central cell; ccn, central cell nucleus; ec, egg cell; ecn, egg cell nucleus; sc, synergid cell; scn, synergid cell nucleus. Scale bars: 50 μm.
Figure 3Expression patterns of transcription-factor . (A) pAT5G50490:n1GFP expression in the central cell. (B) pAT5G45980:n1GFP (WOX8) expression in the egg cell. (C) pAT5G56200:n1GFP expression in the antipodal cells. (D) pAT1G60280:n1GFP (NAC23) expression primarily in the synergid cells with weaker activity in the egg cell. (E) pAT2G33710:n1GFP expression primarily in the egg cell with weaker activity in the synergid cell. (F) pAT3G01030:n2GFP expression primarily in the synergid cells with weaker activity in the central cell and the sporophytic cells of the integument and funiculus. Each panel contains an epifluorescence image (top) and an overlay (bottom) of the epifluorescence and a bright-field image of the same ovule. acn, antipodal cell nuclei; ccn, central cell nucleus; ecn, egg cell nucleus; scn, synergid cell nuclei. Scale bars: 50 μm.
Figure 4Expression of . Expression at developmental stage FG1 (A), FG2 (B), FG4 (C), FG5 (D), and FG6 (E) of the developing female gametophyte [63]. Each panel contains an epifluorescence image (top) and an overlay (bottom) of the epifluorescence and a bright-field image of the same ovule. acn, antipodal cell nuclei; ccn, central cell nucleus; ecn, egg cell nucleus; fgn, female gametophyte nuclei; pn, polar nuclei; scn, synergid cell nucleus. Scale bars: 50 μm.
Figure 5Expression patterns of transcription-factor .(A) pAT1G49770:cGFP (ZOU/RGE1) activity in endosperm nuclear cytoplasmic domains (NCDs) [104]. (B) pAT5G50490:n1GFP activity in endosperm nuclei. (C) pAT5G56200:n1GFP activity primarily in micropylar endosperm nuclei. (D) pAT5G45980:n1GFP (WOX8) expression in pro-embryo nuclei. (E) pAT2G33710:n1GFP activity in both endosperm and pro-embryo nuclei. Each panel contains an epifluorescence image (top) and an overlay (bottom) of the epifluorescence and a bright-field image of the same seed. The micropylar region of the seed is oriented towards the left side of the panel. Arrows point to endosperm NCDs, and arrowheads point to endosperm nuclei. Boxed areas indicate the micropylar location of the embryos. Scale bars: 50 μm.