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Cell-wall Invertases from Rice are Differentially Expressed in Caryopsis during the Grain Filling Stage 被引量:5

Cell-wall Invertases from Rice are Differentially Expressed in Caryopsis during the Grain Filling Stage
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摘要 Cell-wall invertase plays an important role in sucrose partitioning between source and sink organs in higher plants. To investigate the role of cell-wall invertases for seed development in rice (Oryza sativa L.), cDNAs of three putative cell- wall invertase genes OsCIN1, OsCIN2 and OsCIN3 were isolated. Semi-quantitative reverse transcription-polymerase chain reaction analysis revealed different expression patterns of the three genes in various rice tissues/organs. In developing caryopses, they exhibited similar temporal expression patterns, expressed highly at the early and middle grain filling stages and gradually declined to low levels afterward. However, the spatial expression patterns of them were very different, with OsCIN1 primarily expressed in the caryopsis coat, OsCIN2 in embryo and endosperm, and OsCIN3 in embryo. Further RNA in situ hybridization analysis revealed that a strong signal of OsCIN2 mRNA was detected in the vascular parenchyma surrounding the xylem of the chalazal vein and the aleurone layer, whereas OsCIN3 transcript was strongly detected in the vascular parenchyma surrounding the phloem of the chalazal vein, cross-cells, the aleurone layer and the nuceUar tissue. These data indicate that the three cell-wall invertase genes play complementary/synergetic roles in assimilate unloading during the grain filling stage. In addition, the cell type-specific expression patterns of OsCIN3 in source leaf blades and anthers were also investigated, and its corresponding physiological roles were discussed. Cell-wall invertase plays an important role in sucrose partitioning between source and sink organs in higher plants. To investigate the role of cell-wall invertases for seed development in rice (Oryza sativa L.), cDNAs of three putative cell- wall invertase genes OsCIN1, OsCIN2 and OsCIN3 were isolated. Semi-quantitative reverse transcription-polymerase chain reaction analysis revealed different expression patterns of the three genes in various rice tissues/organs. In developing caryopses, they exhibited similar temporal expression patterns, expressed highly at the early and middle grain filling stages and gradually declined to low levels afterward. However, the spatial expression patterns of them were very different, with OsCIN1 primarily expressed in the caryopsis coat, OsCIN2 in embryo and endosperm, and OsCIN3 in embryo. Further RNA in situ hybridization analysis revealed that a strong signal of OsCIN2 mRNA was detected in the vascular parenchyma surrounding the xylem of the chalazal vein and the aleurone layer, whereas OsCIN3 transcript was strongly detected in the vascular parenchyma surrounding the phloem of the chalazal vein, cross-cells, the aleurone layer and the nuceUar tissue. These data indicate that the three cell-wall invertase genes play complementary/synergetic roles in assimilate unloading during the grain filling stage. In addition, the cell type-specific expression patterns of OsCIN3 in source leaf blades and anthers were also investigated, and its corresponding physiological roles were discussed.
出处 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2008年第4期466-474,共9页 植物学报(英文版)
基金 the State Key Basic Research and Development Plan ofChina (2004CB720406) the Innovation Foundation of the Chinese Academyof Sciences (KSCX2-SW-306 and KSCX1-SW-03) the Program for Strategic Scientific Alliances between China and the Netherlands (KNAW-PSA, 04-PSA-BD-04 for P.B.F.O., KNAW-CEP and 04CDP022 for Y.X.)
关键词 cell-wall invertase gene expression Oryza sativa RNA in situ hybridization seed development. cell-wall invertase gene expression Oryza sativa RNA in situ hybridization seed development.
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  • 1Cheng WH, Taliercio EW, Chourey PS (1996). The miniature1 seed locus of maize encodes a cell wall invertase required for normal development of endosperm and maternal cells in the pedicel. Plant Cell 8. 971-983.
  • 2Cho JI, Lee SK, Ko S, Kim HK, Jun SH, Lee YH et al. (2005). Molecular cloning and expression analysis of the cell-wall invertase gene family in rice (Oryza sativa L.). Plant Cell Rep. 24, 225-236.
  • 3Chomczynski P, Sacchi NA (1987). Single-step method of RNA isolation by acid guanidinium thiocyanate-phenol-chloroform extraction. Anal. Biochem. 162, 156-159.
  • 4Copenald L (1990). Enzyme of sucrose metabolism. Meth. Plant Biochem. 3, 73-85.
  • 5Ebenezer GAI, Amirthalingam M, Ponsamuel J, Dayanandan P (1990). Role of palea and lemma in the development of rice ceryopsis. J. Indian Bot. Soc. 69, 245-250.
  • 6Goetz M, Godt DE, Guivarc'h A, Kahmann U, Chriqui D, Roitsch T (2001). Induction of male sterility in plants by metabolic engineering of the carbohydrate supply. Proc. Natl. Acad. Sci. USA 98, 6522- 6527.
  • 7Hirose T, Takano M, Terao T (2002). Cell wall invertase in developing rice ceryopsis: molecular cloning of OsCIN1 and analysis of its expression in relation to its role in grain filling. Plant Cell Physiol. 43. 452-459.
  • 8Ishimaru T, Hirose T, Matsuda T, Goto A, Takahashi K, Sasaki H et al. (2005). Expression patterns of genes encoding carbohydratemetabolizing enzymes and their relation to grain filling in rice (Oryza sativa L.): comparison of caryopses located at different positions in a panicle. Plant Cell Physiol. 46, 620-628.
  • 9Ji X, Van den Ende W, Van Laere A, Cheng S, Bennett J (2005). Structure, evolution, and expression of the two invertase gene families of rice. J. Mol. Evol. 60, 615-634.
  • 10Kim JY, Mahe A, Guy S, Brangeon J, Roche O, Chourey PS et al. (2000). Characterization of two members of the maize gene family, Incw3 and Incw4, encoding cell-wall invertases. Gene 245, 89-102.

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