Difference between revisions of "Os02g0559800"
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===Expression=== | ===Expression=== | ||
EL5 was mainly expressed in the basal region, and barely detected in the elongated shoot and root (Figure 3a). Signals of EL5 expression in rice seedlings were merely visible by in situ RNA hybridization, even though the Northern blot hybridization gave strong signals, as shown in Figure 3a. Thus, we analyzed the shoot base treated with JA and obtained signals in the cortex of the crown root primordia (Figure 3b), where cell death occurs in rice plants expressing mutated EL5. | EL5 was mainly expressed in the basal region, and barely detected in the elongated shoot and root (Figure 3a). Signals of EL5 expression in rice seedlings were merely visible by in situ RNA hybridization, even though the Northern blot hybridization gave strong signals, as shown in Figure 3a. Thus, we analyzed the shoot base treated with JA and obtained signals in the cortex of the crown root primordia (Figure 3b), where cell death occurs in rice plants expressing mutated EL5. | ||
| − | [[File:6-f3a.png |left |thumb |10000px |'''''']] | + | [[File:6-f3a.png |left |thumb |10000px |''''''Figure 3.a'''''']] |
| − | [[File:6-f3c.png | | + | [[File:6-f3c.png |center |thumb |10000px |''''''Figure 3. Tissue specificity and hormonal activation of EL5 expression.(a) Rice seedlings were treated with the indicated hormones, and total RNA from each sample was analyzed by Northern blotting. rRNAs from each sample stained with ethidium bromide are displayed at the bottom. Con,control plants treated with water or 10 mM MES buffer (pH 6.0); ABA, abscisic acid; BAP, 6-benzylaminopurine; GA3, gibberellin; JA, jasmonic acid; Et,ethephon; SA, salicylic acid; IAA, indole-3-acetic acid; BL, brassinolide.(b) In situ RNA hybridization of EL5. Cross sections were prepared from the shoot base of a 9-day-old rice plant treated with JA and hybridized with sense (left) or antisense (right) probe. Scale bars = 100 lm.'''''']] |
===Evolution=== | ===Evolution=== | ||
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==References== | ==References== | ||
| − | + | Aloni, R., Aloni, E., Langhans, M. and Ullrich, C.I. (2006) Role of cytokinin and auxin in shaping root architecture: regulating vascular differentiation, lateral root initiation, root apical dominance and root gravitropism. Ann. Bot. (Lond) 97, 883–893. | |
==Structured Information== | ==Structured Information== | ||
[[Category:Genes]][[Category:Oryza Sativa Japonica Group]][[Category:Japonica Chromosome 2]] | [[Category:Genes]][[Category:Oryza Sativa Japonica Group]][[Category:Japonica Chromosome 2]] | ||
Latest revision as of 05:41, 29 July 2016
Rice EL5 is an ATL family gene characterized by a transmembrane domain at the N-terminal and a RING-H2 finger domain (RFD), which exhibits ubiquitin ligase (E3) activity.
Contents
Annotated Information
Function
Rice EL5 is an ATL family gene characterized by a transmembrane domain at the N-terminal and a RING-H2 finger domain (RFD), which exhibits ubiquitin ligase (E3) activity. Overexpression of mutated EL5 gene arrests root growth in an E3-activity-dependent manner.Transgenic callus overexpressing mutated EL5 gene is morphologically auxin-irresponsive and similar to control callus treated with excess cytokinin.
Expression
EL5 was mainly expressed in the basal region, and barely detected in the elongated shoot and root (Figure 3a). Signals of EL5 expression in rice seedlings were merely visible by in situ RNA hybridization, even though the Northern blot hybridization gave strong signals, as shown in Figure 3a. Thus, we analyzed the shoot base treated with JA and obtained signals in the cortex of the crown root primordia (Figure 3b), where cell death occurs in rice plants expressing mutated EL5.
Evolution
Please input evolution information here.
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Labs working on this gene
- Division of Plant Sciences, National Institute of Agrobiological Sciences, Kannondai, 2-1-2, Tsukuba, Ibaraki 305-8602, Japan
References
Aloni, R., Aloni, E., Langhans, M. and Ullrich, C.I. (2006) Role of cytokinin and auxin in shaping root architecture: regulating vascular differentiation, lateral root initiation, root apical dominance and root gravitropism. Ann. Bot. (Lond) 97, 883–893.
