Table 1
(continued)
Analysis or
sorting
Objects analyzed/sorted
Purpose
Reference
Analysis
Leaf protoplasts
LPS binding
[85]
Analysis
Leaf and petal nuclei
Cytotype distributions
[86]
Both
Lateral organ founder cell
protoplasts
Gene expression during lateral organ
formation
[87]
Analysis
Leaf nuclei
Genome evolution
[88]
Analysis
Cell suspension culture nuclei Cell cycle regulation
[89]
Both
Root Protoplasts
Proteomic profiles
[90]
Analysis
Leaf and petal nuclei
Genetic variation
[91]
Both
Root protoplasts
Nitric oxide responses
[92]
Analysis
Plant nuclei
Autopolyploidy in evolution
[93]
Analysis
Root nuclei
Collet cell development
[94]
Both
Nuclei
Embryo development
[95]
Analysis
Root apex nuclei
Cell cycle regulation
[96]
Both
Shoot apical meristem
protoplasts
Gene expression
[97]
Analysis
Leaf protoplasts
ROS signaling
[98]
Both
Female meiocyte protoplasts
Gametophyte development
[99]
Analysis
Root tip nuclei
Cell cycle regulation by stress
[100]
Both
Shoot apical meristem
protoplasts
Gene expression
[101]
Analysis
Leaf nuclei
Regulation of leaf thickness
[102]
Analysis
Root tip nuclei
Cell cycle regulation by stress
[103]
Analysis
Leaf protoplasts
Apoptosis and leaf senescence
[104]
Analysis
Hypocotyl nuclei
Cell cycle control of hypocotyl elongation [105]
Analysis
Leaf nuclei
Cell cycle progression and innate
immunity
[106]
Analysis
Leaf protoplasts
Regulation of ROS production and PCD
under stress
[107]
Analysis
Leaf nuclei
Effects of cadmium on cell cycle
progression
[108]
a
The search employed the following parameters: TOPIC: (“flow cytometry” or “cell sorting”) AND TITLE: (arabidopsis) AND YEAR PUBLISHED: (2014–2019). Hits were manually curated for relevance
b
This table is restricted to work that has been published from 2014 onward. For previous reports, see Table 1 of Ref. [1]
264
David W. Galbraith and Guiling Sun
(continued)
Analysis or
sorting
Objects analyzed/sorted
Purpose
Reference
Analysis
Leaf protoplasts
LPS binding
[85]
Analysis
Leaf and petal nuclei
Cytotype distributions
[86]
Both
Lateral organ founder cell
protoplasts
Gene expression during lateral organ
formation
[87]
Analysis
Leaf nuclei
Genome evolution
[88]
Analysis
Cell suspension culture nuclei Cell cycle regulation
[89]
Both
Root Protoplasts
Proteomic profiles
[90]
Analysis
Leaf and petal nuclei
Genetic variation
[91]
Both
Root protoplasts
Nitric oxide responses
[92]
Analysis
Plant nuclei
Autopolyploidy in evolution
[93]
Analysis
Root nuclei
Collet cell development
[94]
Both
Nuclei
Embryo development
[95]
Analysis
Root apex nuclei
Cell cycle regulation
[96]
Both
Shoot apical meristem
protoplasts
Gene expression
[97]
Analysis
Leaf protoplasts
ROS signaling
[98]
Both
Female meiocyte protoplasts
Gametophyte development
[99]
Analysis
Root tip nuclei
Cell cycle regulation by stress
[100]
Both
Shoot apical meristem
protoplasts
Gene expression
[101]
Analysis
Leaf nuclei
Regulation of leaf thickness
[102]
Analysis
Root tip nuclei
Cell cycle regulation by stress
[103]
Analysis
Leaf protoplasts
Apoptosis and leaf senescence
[104]
Analysis
Hypocotyl nuclei
Cell cycle control of hypocotyl elongation [105]
Analysis
Leaf nuclei
Cell cycle progression and innate
immunity
[106]
Analysis
Leaf protoplasts
Regulation of ROS production and PCD
under stress
[107]
Analysis
Leaf nuclei
Effects of cadmium on cell cycle
progression
[108]
a
The search employed the following parameters: TOPIC: (“flow cytometry” or “cell sorting”) AND TITLE: (arabidopsis) AND YEAR PUBLISHED: (2014–2019). Hits were manually curated for relevance
b
This table is restricted to work that has been published from 2014 onward. For previous reports, see Table 1 of Ref. [1]
264
David W. Galbraith and Guiling Sun
