Department of Bioscience, Fukui Prefectural University; Eiheiji-cho, Yoshida-gun, Fukui, Japan.
Plant Signal Behav. 2010 Jul;5(7):845-7. doi: 10.4161/psb.5.7.11824.
Previous studies on the activity of the rice Gα promoter using a β-Glucuronidase (GUS) reporter construct indicated that Gα expression was highest in developing organs and changed in a developmental stage-dependent manner. In this paper, GUS activity derived from the rice Gα promoter was analyzed in seeds and developing leaves. In seeds, GUS activity was detected in the aleurone layer, embryo, endosperm and scutellar epithelium. In developing leaves, the activity was detected in the mesophyll tissues, phloem and xylem of the leaf sheath and in the mesophyll tissue of the leaf blade. The activity in the aleurone layer and scutellar epithelium suggests that the Gα subunit may be involved in gibberellin signaling. The activity in the mesophyll tissues of the leaf blade suggests that the Gα subunit may be related to the intensity of disease resistance. The pattern of the activity in the developing leaf also indicates that the expression of Gα follows a developmental profile at the tissue level.
先前使用β-葡萄糖醛酸酶(GUS)报告基因构建体研究水稻 Gα 启动子的活性表明,Gα 的表达在发育器官中最高,并随发育阶段而变化。本文分析了来自水稻 Gα 启动子的 GUS 活性在种子和发育叶片中的表达。在种子中,GUS 活性在糊粉层、胚、胚乳和盾片上皮细胞中检测到。在发育叶片中,活性在叶鞘的叶肉组织、韧皮部和木质部以及叶片的叶肉组织中检测到。糊粉层和盾片上皮细胞中的活性表明 Gα 亚基可能参与赤霉素信号转导。叶片中叶肉组织的活性表明 Gα 亚基可能与抗病性的强度有关。发育叶片中活性的模式也表明,Gα 的表达在组织水平上遵循发育特征。