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Influence of NR gene inhibition on cell senescence and growth and development

机译:NR基因抑制对细胞衰老及生长发育的影响

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To understand function of NR gene roundly and get new breeding material, the NR gene was down-regulated by antisense inhibition and the reaction of physiological and growth and development were roundly researched in nr mutants of tomato. The result shows that the wild-type fruits (wt) have higher level of expression of NR gene than nr1, nr2, nr3, nr4. Ethylene synthesis of all mutants was much lower than of wt in all fruit ripening stage. The transpiration rate, stomatal conductance and cell membrane permeability were higher and respiration rate was lower in nr1, nr2 than in wt plants and intercellular CO2 concentration was higher in nr1 than in wt with T1 leaves. The number of branches was less and the length of internode and diameter of stem was more in nr lines than in wt. The color changes were substantially delayed in mutant fruits. The mutant fruit in nr1, nr2 reached the breaker stage of development at approximately 7 weeks, 7–9 days delayed compared with wt. The fruit of nr1, nr2 reached the hypermature stage of development at approximately 12.5 weeks, 37–38 days delayed compared with wt. The rot percent and weight loss percent of fruits was lower and the stem pull force was stronger in nr1 than in wt in room store. The result could be relative to interplay of receptors and functionally redundant of ethylene receptors.
机译:为了全面了解NR基因的功能并获得新的育种材料,通过反义抑制来下调NR基因,并在番茄的nr突变体中全面研究了生理和生长发育的反应。结果表明,野生型果实(wt)的NR基因表达水平高于nr1,nr2,nr3,nr4。在所有果实成熟阶段,所有突变体的乙烯合成量均远低于wt的合成量。 nr1,nr2的蒸腾速率,气孔导度和细胞膜通透性高于wt植物,而nr1的胞间CO2浓度高于wt的T1叶片。与野生型相比,nr系中的分支数更少,节间长度和茎的直径更大。突变果实的颜色变化明显延迟。与野生型相比,nr1,nr2中的突变果实大约在7周达到了突破的发展阶段,延迟了7-9天。与野生型相比,nr1,nr2的果实在大约12.5周时延迟了37-38天到达发育的过早阶段。在水果中,nr1的果实的腐烂率和失重率较低,茎的拉力要强于wt。结果可能与受体的相互作用和乙烯受体的功能冗余有关。

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