<p>A. Phenotypes of wild type (WT) and <i>ygl7</i> at seedling, booting, and heading stages. B. Leaf-color comparison between WT and <i>ygl7</i>. C. Leaf pigment contents of WT and <i>ygl7</i> at booting and heading stages. D. Phenotypes of <i>ygl7</i>-NIL and its parents, NPB (acceptor) and <i>ygl7</i> (donor). E. Comparison of leaf pigments contents of <i>ygl7</i>-NIL with its parents, NPB and <i>ygl7</i> at booting and heading stages. Values are the mean ± SD of three replicates.</p
<p>(A) Comparisons of gross morphology and epicuticular wax accumulation and morphology in mutant (u...
<p>(A) <i>PeCRY1</i> transcript levels in WT, <i>cry1</i> mutant, and transgenic lines. m-1, m-2, an...
<p>(A, B) The rosette leaves of wild type and OEMPT3 plants at 20 DAP. (C) The cauline leaves of wil...
<p>(a, b), Phenotypic observation of 2-week old mutant plant <i>ygl-1</i> and wild type plant Lx7226...
<p>A. Leaf phenotypes in the complementation test. B. The PCR detection of HPT in some transgenic li...
<p>(A-D) Pigment contents in the leaves of NIP, <i>hdy1</i> and transgenic lines. Each sample had 3 ...
<p>(A-D) Pigment contents in the leaves of NIP and <i>hdy1</i>. Each sample had 3 replicates and 80%...
A) Pictures of stem phenotypes at 46 dps in (left-to-right): mm control plants (B-I like, dark purpl...
Leaf-color is an effective marker to identify the hybridization of rice. Leaf-color related genes fu...
<p>Pigment contents including: <b>(A)</b> Chl a content, <b>(B)</b> Chl b content, <b>(C)</b> Car co...
<p>(A) <i>PeUVR8</i> transcript levels in 4-day-old seedlings of WT, <i>uvr8-1</i> mutant, and trans...
Leaf-color is an effective marker to identify the hybridization of rice. Leaf-color related genes fu...
(A) Schematic view of the Chl biosynthetic pathway. Urogen III (in red) at the beginning of the path...
<p>(<i>A</i>) Phenotypes of Five-week-old seedlings of WT and <i>mhz4</i>. (<i>B</i>) Plant phenotyp...
<p>Leaf phenotypes include anthocyanin pigmentation (B), chlorotic spots (C), lesion mimic (D), burn...
<p>(A) Comparisons of gross morphology and epicuticular wax accumulation and morphology in mutant (u...
<p>(A) <i>PeCRY1</i> transcript levels in WT, <i>cry1</i> mutant, and transgenic lines. m-1, m-2, an...
<p>(A, B) The rosette leaves of wild type and OEMPT3 plants at 20 DAP. (C) The cauline leaves of wil...
<p>(a, b), Phenotypic observation of 2-week old mutant plant <i>ygl-1</i> and wild type plant Lx7226...
<p>A. Leaf phenotypes in the complementation test. B. The PCR detection of HPT in some transgenic li...
<p>(A-D) Pigment contents in the leaves of NIP, <i>hdy1</i> and transgenic lines. Each sample had 3 ...
<p>(A-D) Pigment contents in the leaves of NIP and <i>hdy1</i>. Each sample had 3 replicates and 80%...
A) Pictures of stem phenotypes at 46 dps in (left-to-right): mm control plants (B-I like, dark purpl...
Leaf-color is an effective marker to identify the hybridization of rice. Leaf-color related genes fu...
<p>Pigment contents including: <b>(A)</b> Chl a content, <b>(B)</b> Chl b content, <b>(C)</b> Car co...
<p>(A) <i>PeUVR8</i> transcript levels in 4-day-old seedlings of WT, <i>uvr8-1</i> mutant, and trans...
Leaf-color is an effective marker to identify the hybridization of rice. Leaf-color related genes fu...
(A) Schematic view of the Chl biosynthetic pathway. Urogen III (in red) at the beginning of the path...
<p>(<i>A</i>) Phenotypes of Five-week-old seedlings of WT and <i>mhz4</i>. (<i>B</i>) Plant phenotyp...
<p>Leaf phenotypes include anthocyanin pigmentation (B), chlorotic spots (C), lesion mimic (D), burn...
<p>(A) Comparisons of gross morphology and epicuticular wax accumulation and morphology in mutant (u...
<p>(A) <i>PeCRY1</i> transcript levels in WT, <i>cry1</i> mutant, and transgenic lines. m-1, m-2, an...
<p>(A, B) The rosette leaves of wild type and OEMPT3 plants at 20 DAP. (C) The cauline leaves of wil...