<p>(A) The gross panicle morphology of each line at 40 days after heading. Diagrams for (B) 1000-grain weight, (C) primary branch number, (D) grain number per panicle, (E) relative fertility, (F) grain weight per panicle, and (G) grain yield per hectare are also shown. Data are means ± SD (n> = 3). Tukey’s test was conducted for panels (B) to (G).</p
a<p>PR = perfect rice; MWR = milky white rice (ring-shaped chalky kernels); OR = other rice appearan...
<p>(A) and (B). Grain phenotypes of <i>hgw</i> and the WT control. (C). Grain width of 20 seeds of <...
Several morphological characteristics were studied in four tall and eighteen semi-dwarf varieties of...
The diagonal panel shows histograms of each trait. Lower and upper triangle panels show the scatter ...
<p>(A) Panicle shape comparison between R1128 and Nipponbare. The P1 and P2 represent Nipponbare and...
Boxplots showing the variation in plant maturity (A, B, C, D, and E), plant height (F, G, H, I, and ...
<p>(A) Gross morphology of plants at 30 days after heading. Bar = 10 cm. (B) Diagram for plant heigh...
The importance of studying the ultimate components of the panicle when engaging on the problem of yi...
Two winter wheat (Triticum aestivum L.) populations, i.e. 180 genetic resources and 210 elite variet...
One of the goals of this paper was to determine correlation between grain yield, like the most impor...
Rice yield depends on the number of panicles per area unit, number of grain in a panicle and kernel ...
Background: Panicle architectural traits in rice (branching, rachis length, spikelet number) are est...
One of the goals of this paper was to determine correlation between grain yield, like the most impor...
Two winter wheat (Triticum aestivum L.) populations, i.e. 180 genetic resources and 210 elite variet...
Abstract Background The improvement of rice yield is a crucial global issue, but evaluating yield re...
a<p>PR = perfect rice; MWR = milky white rice (ring-shaped chalky kernels); OR = other rice appearan...
<p>(A) and (B). Grain phenotypes of <i>hgw</i> and the WT control. (C). Grain width of 20 seeds of <...
Several morphological characteristics were studied in four tall and eighteen semi-dwarf varieties of...
The diagonal panel shows histograms of each trait. Lower and upper triangle panels show the scatter ...
<p>(A) Panicle shape comparison between R1128 and Nipponbare. The P1 and P2 represent Nipponbare and...
Boxplots showing the variation in plant maturity (A, B, C, D, and E), plant height (F, G, H, I, and ...
<p>(A) Gross morphology of plants at 30 days after heading. Bar = 10 cm. (B) Diagram for plant heigh...
The importance of studying the ultimate components of the panicle when engaging on the problem of yi...
Two winter wheat (Triticum aestivum L.) populations, i.e. 180 genetic resources and 210 elite variet...
One of the goals of this paper was to determine correlation between grain yield, like the most impor...
Rice yield depends on the number of panicles per area unit, number of grain in a panicle and kernel ...
Background: Panicle architectural traits in rice (branching, rachis length, spikelet number) are est...
One of the goals of this paper was to determine correlation between grain yield, like the most impor...
Two winter wheat (Triticum aestivum L.) populations, i.e. 180 genetic resources and 210 elite variet...
Abstract Background The improvement of rice yield is a crucial global issue, but evaluating yield re...
a<p>PR = perfect rice; MWR = milky white rice (ring-shaped chalky kernels); OR = other rice appearan...
<p>(A) and (B). Grain phenotypes of <i>hgw</i> and the WT control. (C). Grain width of 20 seeds of <...
Several morphological characteristics were studied in four tall and eighteen semi-dwarf varieties of...