<p>Young transgenic root growing out of the inoculation side (A, picture was taken using a blue-green LED flashlight), scheme showing the harvested root material (B), discrimination of transgenic and non-transgenic roots (C) and example of a transgenic root (D) before the harvest (pictures were taken with a fluorescence stereomicroscope).</p
A: Non-transgenic plant, B-D: Transgenic plants that are morphologically similar to non-transgenic p...
(A) Wild type tobacco; (B) Pre-culture tobaccos; (C) Selective culture transgenic tobaccos; (D) subc...
<p>(A) Varied expression patterns of DR5::GUS (a-i) in primary root tips of 8-day-old T<sub>1</sub> ...
<p>A. Time course of establishment of transgenic T<sub>0</sub> plants from cotyledonary node explant...
A) Image of a non-transgenic (NTG) Gaspé Flint line used for transformation. B) UBIpro:ZmCCT10 trans...
Root architecture traits are a target for pre-breeders. Incorporation of root architecture traits in...
<p>(A) Fluorescence levels in WT and transgenic plants before and after treatment with PEG as shown ...
<p>Tissues are analyzed by bright field microscopy (A, C, E, G, I, K) and fluorescent microscopy usi...
<p>A). Photograph showing root growth of transgenic plants after cold stress (192h). B). Graphical r...
Background: Fluorescent marker genes have modernized many areas of molecular biology, specifically i...
<p>At the 40th (A), 60th (B), 80th (C) day of growth in low phosphate soil. The roots of maize plant...
<p>The development of transgenic glyphosate-tolerant crops has revolutionized weed control in crops ...
<p>The relative root growth of WT and transgenic tobacco plants under Cd (A) and Zn (B) treatments. ...
Confocal laser scanning microscopy images showing GFP (green) and PI (red) fluorescence in the root ...
<p>The development of transgenic glyphosate-tolerant crops has revolutionized weed control in crops ...
A: Non-transgenic plant, B-D: Transgenic plants that are morphologically similar to non-transgenic p...
(A) Wild type tobacco; (B) Pre-culture tobaccos; (C) Selective culture transgenic tobaccos; (D) subc...
<p>(A) Varied expression patterns of DR5::GUS (a-i) in primary root tips of 8-day-old T<sub>1</sub> ...
<p>A. Time course of establishment of transgenic T<sub>0</sub> plants from cotyledonary node explant...
A) Image of a non-transgenic (NTG) Gaspé Flint line used for transformation. B) UBIpro:ZmCCT10 trans...
Root architecture traits are a target for pre-breeders. Incorporation of root architecture traits in...
<p>(A) Fluorescence levels in WT and transgenic plants before and after treatment with PEG as shown ...
<p>Tissues are analyzed by bright field microscopy (A, C, E, G, I, K) and fluorescent microscopy usi...
<p>A). Photograph showing root growth of transgenic plants after cold stress (192h). B). Graphical r...
Background: Fluorescent marker genes have modernized many areas of molecular biology, specifically i...
<p>At the 40th (A), 60th (B), 80th (C) day of growth in low phosphate soil. The roots of maize plant...
<p>The development of transgenic glyphosate-tolerant crops has revolutionized weed control in crops ...
<p>The relative root growth of WT and transgenic tobacco plants under Cd (A) and Zn (B) treatments. ...
Confocal laser scanning microscopy images showing GFP (green) and PI (red) fluorescence in the root ...
<p>The development of transgenic glyphosate-tolerant crops has revolutionized weed control in crops ...
A: Non-transgenic plant, B-D: Transgenic plants that are morphologically similar to non-transgenic p...
(A) Wild type tobacco; (B) Pre-culture tobaccos; (C) Selective culture transgenic tobaccos; (D) subc...
<p>(A) Varied expression patterns of DR5::GUS (a-i) in primary root tips of 8-day-old T<sub>1</sub> ...