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Rice tillering dwarf mutant dwarf3 has increased leaf longevity during darkness-induced senescence or hydrogen peroxide-induced cell death

机译:水稻分er矮化突变体dwarf3在黑暗诱导的衰老或过氧化氢诱导的细胞死亡过程中提高了叶片寿命

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References(25) Cited-By(37) Senescence or cell death in plant leaves is known to be inducible by darkness or H2O2. When the Arabidopsis gene MAX2/ORE9 is disrupted, leaf senescence or cell death in response to the above stimuli is delayed. Because the rice (Oryza sativa L.) gene DWARF3 (D3) is orthologous to MAX2/ORE9, we wished to know whether disruption of D3 also results in increased longevity in leaves. We found that darkness-induced senescence or H2O2-induced cell death in the third leaf [as measured by chlorophyll degradation, membrane ion leakage and expression of senescence-associated genes (SAGs)] in a d3 rice mutant was delayed by 1–3 d compared to that in its reference line Shiokari. Moreover, the mRNA levels of D3, HTD1 and D10, which are orthologs of Arabidopsis MAX2/ORE9, MAX3 and MAX4, respectively, increased during cell death. These results suggest that D3 protein in rice, like MAX2/ORE9 in Arabidopsis, is involved in leaf senescence or cell death.
机译:参考文献(25)被引证依据(37)植物叶片中的衰老或细胞死亡是由黑暗或过氧化氢诱导的。当拟南芥基因MAX2 / ORE9被破坏时,响应于上述刺激的叶片衰老或细胞死亡被延迟。由于水稻(Oryza sativa L.)基因DWARF3(D3)与MAX2 / ORE9是直系同源的,因此我们希望知道D3的破坏是否还会增加叶片的寿命。我们发现在d3水稻突变体中,第三叶中黑暗诱导的衰老或H2O2诱导的细胞死亡[通过叶绿素降解,膜离子泄漏和衰老相关基因(SAG)的表达来衡量]延迟了1-3 d与其参考线Shiokari相比。而且,分别是拟南芥MAX2 / ORE9,MAX3和MAX4的直系同源物的D3,HTD1和D10的mRNA水平在细胞死亡期间增加。这些结果表明,水稻中的D3蛋白(如拟南芥中的MAX2 / ORE9)与叶片衰老或细胞死亡有关。

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