首页> 外文期刊>Journal of Experimental Botany >The syncytium-specific expression of the Orysa;KRP3 CDK inhibitor: implication of its involvement in the cell cycle control in the rice (Oryza sativa L.) syncytial endosperm.
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The syncytium-specific expression of the Orysa;KRP3 CDK inhibitor: implication of its involvement in the cell cycle control in the rice (Oryza sativa L.) syncytial endosperm.

机译:Orysa; KRP3 CDK抑制剂的合胞体特异性表达:涉及水稻(Oryza sativa L.)合胞体胚乳的细胞周期控制。

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摘要

During rice (Oryza sativa L.) seed development, the primary endosperm nucleus undergoes a series of divisions without cytokinesis, producing a multinucleate cell, known as a syncytium. After several rounds of rapid nuclear proliferation, the syncytium ceases to undergo mitosis; thereafter, the syncytium is partitioned into individual cells by a specific type of cytokinesis called cellularization. The transition between syncytium and cellularization is important in determining the final seed size and is a model for studying the cell cycle and cytokinesis. The involvement of cyclin-dependent kinase (CDK) inhibitors (CKIs) in cell cycle control was investigated here during the transition between syncytium and cellularization. It was found that one of the rice CKIs, Orysa;KRP3, is strongly expressed in the caryopsis at 2 d after flowering (DAF), and its expression is significantly reduced at 3 DAF. The other CKI transcripts did not show such a shift at 2 DAF. In situ hybridization analysis revealed that Orysa;KRP3 is expressed in multinucleate syncytial endosperm at 2 DAF, but not in cellularized endosperm at 3 DAF. Two-hybrid assays showed that Orysa;KRP3 binds Orysa;CDKA;1, Orysa;CDKA;2, Orysa;CycA1;1, and Orysa;CycD2;2. By contrast, Orysa;CDKB2;1 and Orysa;CycB2;2 do not show binding to Orysa;KRP3. Orysa;KRP3 was able to rescue yeast premature cell division due to the dominant positive expression of mutant rice CDKA;1 indicating that Orysa;KRP3 inhibited rice CDK. These data suggest that Orysa;KRP3 is involved in cell cycle control of syncytial endosperm.
机译:在水稻(Oryza sativa L.)种子发育过程中,胚乳的原核经历了一系列分裂,而没有胞质分裂,产生了多核细胞,称为合胞体。经过数轮快速的核扩散后,合胞体不再发生有丝分裂。此后,合胞体通过一种称为胞化作用的特定类型的胞质分裂作用被分成单个细胞。合胞体和细胞化之间的过渡对于确定最终的种子大小很重要,并且是研究细胞周期和胞质分裂的模型。在合胞体和细胞化之间的过渡期间,在这里研究了细胞周期蛋白依赖性激酶(CDK)抑制剂(CKI)参与细胞周期控制。已发现水稻CKI之一,Orysa; KRP3,在开花后2 d(DAF)强烈表达于颖果中,在3 DAF时其表达显着降低。其他CKI成绩单在2 DAF时没有显示出这种变化。原位杂交分析表明,Orysa; KRP3在2 DAF时在多核合胞胚乳中表达,而在3 DAF时未在细胞化的胚乳中表达。两杂交试验显示,Orysa; KRP3结合Orysa; CDKA; 1,Orysa; CDKA; 2,Orysa; CycA1; 1和Orysa; CycD2; 2。相比之下,Orysa; CDKB2; 1和Orysa; CycB2; 2没有显示与Orysa; KRP3的结合。 Orysa; KRP3能够挽救酵母过早的细胞分裂,这是因为突变水稻CDKA; 1的显性阳性表达表明Orysa; KRP3抑制了水稻CDK。这些数据表明,Orysa; KRP3参与合胞胚乳的细胞周期控制。

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