| Literature DB >> 25870608 |
Jing Han Hong1, Huangwei Chu1, Chen Zhang1, Dipanjana Ghosh1, Ximing Gong2, Jian Xu1.
Abstract
The Lugol's staining method has been widely used to detect changes in the maintenance of stem cell fate in the columella root cap of Arabidopsis roots since the late 1990s. However, various limitations of this method demand for additional or complementary new approaches. For instance, it is unable to reveal the division rate of columella root cap stem cells. Here we report that, by labeling dividing stem cells with 5-ethynyl-2'-deoxyuridine (EdU), the number and distribution of their labeled progeny can be studied so that the division rate of stem cells can be measured quantitatively and in addition, that the progression of stem cell progeny differentiation can be assessed in combination with Lugol's staining. EdU staining takes few hours and visualization of the stain characteristics of columella root cap can be performed easily under confocal microscopes. This simple technology, when used together with Lugol's staining, provides a novel quantitative method to study the dynamics of stem cell behavior that govern homeostasis in the Arabidopsis columella root cap.Entities:
Keywords: Arabidopsis; EdU staining; Lugol’s staining; columella root cap; stem cell homeostasis
Year: 2015 PMID: 25870608 PMCID: PMC4375977 DOI: 10.3389/fpls.2015.00206
Source DB: PubMed Journal: Front Plant Sci ISSN: 1664-462X Impact factor: 5.753
FIGURE 1Lugol’s staining showing accumulation patterns of starch granules in the columella root cap of 4-day-old WT and mutant genotypes. (A) WT (n = 14). (B) wox5-1 (n = 15). (C) fez-2 (n = 11). (D) 35S::miR160 (n = 15). (E) WT treated with 5 nM oryzalin for 24 h (n = 11). (F) atr (n = 12). (G) atm-1 (n = 12) and (H) wee1 (n = 12). (I) Quantification of the number of layers of unstained columella root cap cells. Error bars represent standard error of the mean. **: P < 0.01, t-test. **** represents position of the QC. CSC: layer of columella root cap stem cells; CSCD: layer of differentiating columella root cap stem cell daughters; 1st DCC: 1st layer of fully differentiated columella root cap cells; 2nd DCC: 2nd layer of fully differentiated columella root cap cells; 3rd DCC: 3rd layer of fully differentiated columella root cap cells. Scale bars: 20 μm.
FIGURE 2EdU Staining patterns in the columella root cap of 4-day-old WT and mutant genotypes. (A) WT (n = 18). (B) wox5-1 (n = 11). (C) fez-2 (n = 15). (D) 35S::miR160 (n = 10). (E) WT treated with 5 nM oryzalin (n = 16) for 24 h. (F) atr (n = 12). (G) atm-1 (n = 12) and (H) wee1 (n = 12). All WT and mutant seedlings were treated with 10 μM EdU for 24 h before imaging. (I) Quantification of the percentage of roots with EdU stain in the indicated columella root cap layer. **** represents position of the QC. C1: 1st columella root cap layer below the QC, corresponding to the layer of columella root cap stem cells (CSC); C2: 2nd columella root cap layer below the QC, corresponding to the layer of differentiating columella root cap stem cell daughters (CSCD); C3 to C5: 3rd to 5th columella root cap layers below the QC, corresponding to 1st to 3rd layers of fully differentiated columella root cap cells (1st to 3rd DCCs). C5+: extra columella root cap layer(s) in 35S::miR160. Note that cell fate in the columella root cap may be altered in the mutant genotypes. Scale bars: 20 μm.
FIGURE 3EdU and Lugol’s staining can be combined and jointly used to investigate the effects of exogenously applied auxin on stem cell homeostasis in the Lugol’s staining of WT (n = 14). (B) Lugol’s staining of WT treated with 1 nM IAA for 24 h (n = 13). (C) Quantification of the number of layers of unstained columella root cap cells. (D) EdU staining of WT treated with 10 μM EdU for 24 h (n = 18). (E) EdU staining of WT treated with 10 μM EdU and 1 nM IAA for 24 h (n = 13). (F) Quantification of the percentage of roots with EdU stain in the indicated columella root cap layer. Error bars represent standard error of the mean. **** represents position of the QC. CSC: layer of columella root cap stem cells; CSCD: layer of differentiating columella root cap stem cell daughters; 1st DCC: 1st layer of fully differentiated columella root cap cells; 2nd DCC: 2nd layer of fully differentiated columella root cap cells; 3rd DCC: 3rd layer of fully differentiated columella root cap cells. Scale bars: 20 μm.
FIGURE 4Comparison of EdU and F-ara-EdU staining patterns in the columella root cap. (A) WT treated with 10 μM EdU for 24 h (n = 18). (B) WT treated with 10 μM F-ara-EdU (n = 12) for 24 h. (C) Quantification of the percentage of roots with EdU or F-ara-EdU stain in the indicated columella root cap layer. **** represents position of the QC. CSC: layer of columella root cap stem cells; CSCD: layer of differentiating columella root cap stem cell daughters; 1st DCC: 1st layer of fully differentiated columella root cap cells; 2nd DCC: 2nd layer of fully differentiated columella root cap cells; 3rd DCC: 3rd layer of fully differentiated columella root cap cells. Scale bars: 20 μm.