A) Image of a non-transgenic (NTG) Gaspé Flint line used for transformation. B) UBIpro:ZmCCT10 transgenic plant with a long ear shank (green arrow). C) BSVpro:ZmCCT10 transgenic plants at 119 days after planting and a Gaspé Flint parental line (red arrow). D) BSVpro:ZmCCT10 transgenic plants at 171 days after planting and a Gaspé Flint parental line (red arrow). Vegetative structures replace tassels in transgenic plants. E) A closeup view of extensive brace roots on a BSVpro:ZmCCT10 transgenic plant at the 15–20 internode region. F) A typical Gaspé Flint plant with brace roots only at the base of the plant.</p
<p>Transgenic plants had more tassel branches (A), larger ears (B) and kernels (C) than the wild typ...
<p>(A) Gross morphology of the vector-control/Nipponbare; <i>sd37</i> over-expressing transgenic lin...
A) GIGZ1A/1B, a circadian clock gene. B) CONZ1, a circadian clock gene. C) GL15, the regulator of tr...
A to E) Apices of non-transgenic plants. F to J) Apices of UBIpro:ZmCCT10 plants. K to N) Apices of ...
A) Internode length by node position, B) leaf length by leaf position, C) leaf width by leaf positio...
Panel images are arranged in the following horizontal order—Row 1: Total view of apex of plant, Row ...
A) DLF1 and B) ZmSOC1, floral transition genes. C) ZCN2, maize homolog of Arabidopsis TFL1, a repres...
<p>Young transgenic root growing out of the inoculation side (A, picture was taken using a blue-gree...
<p>A. Time course of establishment of transgenic T<sub>0</sub> plants from cotyledonary node explant...
A: Non-transgenic plant, B-D: Transgenic plants that are morphologically similar to non-transgenic p...
<p>Top. Plants of the non-transformed VF36 line. Bottom. Plants of the transgenic VF36 line containi...
<p>(A) Image showing a wildtype Col-0 plant on the left, a transgenic plant overexpressing the At1g7...
<p>Transgenic IET16310 plants challenged with <i>M. oryzae</i> stain RML21 (a) and 6-Sikkim (b). Det...
<p>The relative root growth of WT and transgenic tobacco plants under Cd (A) and Zn (B) treatments. ...
<p>A) Leaf cross-sections observed under microscope. For histological studies, the top third leaf of...
<p>Transgenic plants had more tassel branches (A), larger ears (B) and kernels (C) than the wild typ...
<p>(A) Gross morphology of the vector-control/Nipponbare; <i>sd37</i> over-expressing transgenic lin...
A) GIGZ1A/1B, a circadian clock gene. B) CONZ1, a circadian clock gene. C) GL15, the regulator of tr...
A to E) Apices of non-transgenic plants. F to J) Apices of UBIpro:ZmCCT10 plants. K to N) Apices of ...
A) Internode length by node position, B) leaf length by leaf position, C) leaf width by leaf positio...
Panel images are arranged in the following horizontal order—Row 1: Total view of apex of plant, Row ...
A) DLF1 and B) ZmSOC1, floral transition genes. C) ZCN2, maize homolog of Arabidopsis TFL1, a repres...
<p>Young transgenic root growing out of the inoculation side (A, picture was taken using a blue-gree...
<p>A. Time course of establishment of transgenic T<sub>0</sub> plants from cotyledonary node explant...
A: Non-transgenic plant, B-D: Transgenic plants that are morphologically similar to non-transgenic p...
<p>Top. Plants of the non-transformed VF36 line. Bottom. Plants of the transgenic VF36 line containi...
<p>(A) Image showing a wildtype Col-0 plant on the left, a transgenic plant overexpressing the At1g7...
<p>Transgenic IET16310 plants challenged with <i>M. oryzae</i> stain RML21 (a) and 6-Sikkim (b). Det...
<p>The relative root growth of WT and transgenic tobacco plants under Cd (A) and Zn (B) treatments. ...
<p>A) Leaf cross-sections observed under microscope. For histological studies, the top third leaf of...
<p>Transgenic plants had more tassel branches (A), larger ears (B) and kernels (C) than the wild typ...
<p>(A) Gross morphology of the vector-control/Nipponbare; <i>sd37</i> over-expressing transgenic lin...
A) GIGZ1A/1B, a circadian clock gene. B) CONZ1, a circadian clock gene. C) GL15, the regulator of tr...