Zhou Zhongyi, de Almeida Engler Janice, Rouan Dominique, Michiels Frank, Van Montagu Marc, Van Der Straeten Dominique
Department of Plant Systems Biology, Flanders Interuniversity Institute for Biotechnology, Ghent University, K.L. Ledeganckstraat 35, B-9000 Ghent, Belgium.
Plant Physiol. 2002 May;129(1):72-84. doi: 10.1104/pp.001206.
At least two 1-aminocyclopropane-1-carboxylic acid synthase genes (ACS) are implicated in the submergence response of rice (Oryza sativa). Previously, the OS-ACS5 gene has been shown to be induced during short- as well as long-term complete submergence of seedlings and to be controlled by a balance of gibberellin and abscisic acid in both lowland and deepwater rice. This study demonstrates that OS-ACS5 mRNA is localized in specific tissues and cells both during normal development and in response to complete submergence. The temporal and spatial regulation of OS-ACS5 expression is presented by in situ hybridization and histochemical analysis of beta-glucuronidase (GUS) activity in transgenic rice carrying an OS-ACS5-gus fusion. Whole-mount in situ hybridization revealed that in air-grown rice seedlings, OS-ACS5 was expressed at a low level in the shoot apex, meristems, leaf, and adventitious root primordia, and in vascular tissues of nonelongated stems and leaf sheaths. In response to complete submergence, the expression in vascular bundles of young stems and leaf sheaths was strongly induced. The results of histochemical GUS assays were consistent with those found by whole-mount in situ hybridization. Our findings suggest that OS-ACS5 plays a role in vegetative growth of rice under normal conditions and is also recruited for enhanced growth upon complete submergence. The possible implication of OS-ACS5 in root-shoot communication during submergence stress and its putative role in aerenchyma formation upon low-oxygen stress are discussed.
至少有两个1-氨基环丙烷-1-羧酸合酶基因(ACS)与水稻(Oryza sativa)的淹水反应有关。此前研究表明,OS-ACS5基因在幼苗短期和长期完全淹水过程中均被诱导,且在低地水稻和深水水稻中受赤霉素和脱落酸平衡的调控。本研究表明,OS-ACS5 mRNA在正常发育过程以及对完全淹水的响应中均定位于特定组织和细胞。通过对携带OS-ACS5-gus融合基因的转基因水稻进行原位杂交和β-葡萄糖醛酸酶(GUS)活性的组织化学分析,展示了OS-ACS5表达的时空调控。整体原位杂交显示,在气生水稻幼苗中,OS-ACS5在茎尖、分生组织、叶片和不定根原基中低水平表达,在未伸长的茎和叶鞘的维管组织中也有表达。对完全淹水的响应中,幼茎和叶鞘维管束中的表达被强烈诱导。组织化学GUS检测结果与整体原位杂交结果一致。我们的研究结果表明,OS-ACS5在正常条件下对水稻的营养生长起作用,在完全淹水时也被募集用于增强生长。讨论了OS-ACS5在淹水胁迫期间根-茎通讯中的可能作用及其在低氧胁迫下通气组织形成中的假定作用。