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Synergistic Exposure of Rice Seeds to Different Doses of γ-Ray and Salinity Stress Resulted in Increased Antioxidant Enzyme Activities and Gene-Specific Modulation of TC-NER Pathway

机译:水稻种子协同暴露于不同剂量的γ射线和盐分胁迫下导致抗氧化酶活性增加和TC-NER途径的基因特异性调节

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摘要

Recent reports have underlined the potential of gamma (γ)-rays as tools for seed priming, a process used in seed industry to increase seed vigor and to enhance plant tolerance to biotic/abiotic stresses. However, the impact of γ-rays on key aspects of plant metabolism still needs to be carefully evaluated. In the present study, rice seeds were challenged with different doses of γ-rays and grown in absence/presence of NaCl to assess the impact of these treatments on the early stages of plant life. Enhanced germination efficiency associated with increase in radicle and hypocotyl length was observed, while at later stages no increase in plant tolerance to salinity stress was evident. APX, CAT, and GR were enhanced at transcriptional level and in terms of enzyme activity, indicating the activation of antioxidant defence. The profiles of DNA damage accumulation were obtained using SCGE and the implication of TC-NER pathway in DNA damage sensing and repair mechanisms is discussed. OsXPB2, OsXPD, OsTFIIS, and OsTFIIS-like genes showed differential modulation in seedlings and plantlets in response to γ-irradiation and salinity stress. Altogether, the synergistic exposure to γ-rays and NaCl resulted in enhanced oxidative stress and proper activation of antioxidant mechanisms, thus being compatible with plant survival.
机译:最近的报道强调了伽马射线作为种子引发工具的潜力,该过程用于种子工业中以增加种子活力并增强植物对生物/非生物胁迫的耐受性。然而,γ射线对植物代谢关键方面的影响仍然需要仔细评估。在本研究中,用不同剂量的γ射线挑战水稻种子,并在不存在或存在NaCl的情况下使其生长,以评估这些处理对植物生命早期的影响。观察到与胚根和下胚轴长度增加相关的发芽效率提高,而在后期阶段,植物对盐分胁迫的耐受性没有增加。 APX,CAT和GR在转录水平和酶活性方面均得到增强,表明抗氧化剂防御的激活。利用SCGE获得了DNA损伤积累的概况,并讨论了TC-NER途径在DNA损伤传感和修复机制中的意义。 OsXPB2,OsXPD,OsTFIIS和类似OsTFIIS的基因在幼苗和小植物中显示出对γ辐射和盐分胁迫的差异调节作用。总而言之,协同暴露于γ射线和NaCl导致氧化应激增强和抗氧化剂机制的适当激活,因此与植物的存活率兼容。

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