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Figure 2 Fe translocation in vascular cells of rice roots.
The expression level of plastidial AGPL3 is synergistically regulated by both sucrose and abscisic acid (ABA) in cultured cells of rice (Akihiro et al. 2005).
Two siRNA fragments (siRNA-a and -b), which were designed against different specific areas of coding region of the same target green fluorescent protein (GFP) gene, were used to silence GFP expression in cultured gfp transgenic cells of rice (Oryza sativa L.; OS), cotton (Gossypium hirsutum L.; GH), Fraser fir [Abies fraseri (Pursh) Poir; AF], and Virginia pine (Pinus virginiana Mill.; PV).
This hypothesis is supported by the fact that bundle sheath cells of rice leaf blades can synthesize starch from excess photoassimilate and can also probably degrade it, because hyperaccumulation of starch granules can be found in bundle sheath cells of lse1 leaves lacking a starch-degrading enzyme (Figure 2B,F).
In 500 mM NaCl, the cultured cells showed an enhanced growth compared with cultured cells of rice.
The deep sequence data from isolated epidermal cells of rice seedlings further showed that 54.0% of cis-NATs were expressed simultaneously in a population of homogenous cells.
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Therefore, pollen, as the male reproductive cell of rice, is closely associated with yield; and in-depth understanding of the mechanism of pollen development is extremely important for the improvement of rice yield.
QHB is also specifically expressed in three to four cells of the rice RAM [47], and OsSCR overlaps with QHB expression in these four cells, as it does in A. thaliana, suggesting that these cells define the QC.
Prussian blue staining reaction clearly revealed the presence of iron in the endosperm cells of transgenic rice grains, and immunolocalization revealed the presence of the expression gene in the endosperm of the transgenic material.
Dang and Copeland (2004) found the endosperm cells of waxy rice varieties were more elongated than those from the non-waxy varieties and within the waxy varieties, medium grained waxy varieties had longer cells compared to long grained waxy varieties.
The expression of AtHKT1 1 in the cortical cells of the rice roots led to an increase in the vacuolar [Na+] of those cells.
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