首页> 美国卫生研究院文献>PLoS Clinical Trials >Factors Affecting the Radiosensitivity of Hexaploid Wheat to γ-Irradiation: Radiosensitivity of Hexaploid Wheat (Triticum aestivum L.)
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Factors Affecting the Radiosensitivity of Hexaploid Wheat to γ-Irradiation: Radiosensitivity of Hexaploid Wheat (Triticum aestivum L.)

机译:影响六倍体小麦对γ射线辐射敏感性的因素:六倍体小麦(Triticum aestivum L.)的放射敏感性

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摘要

Understanding the radiosensitivity of plants, an important factor in crop mutation breeding programs, requires a thorough investigation of the factors that contribute to this trait. In this study, we used the highly radiosensitive wheat (Triticum aestivum L.) variety HY1 and J411, a γ-irradiation-insensitive control, which were screened from a natural population, to examine the factors affecting radiosensitivity, including free radical content and total antioxidant capacity, as well as the expression of TaKu70 and TaKu80 (DNA repair-related genes) as measured by real-time PCR. We also investigated the alternative splicing of this gene in the wild-type wheat ecotype by sequence analysis. Free radical contents and total antioxidant capacity significantly increased upon exposure of HY1 wheat to γ-irradiation in a dose-dependent manner. By contrast, in J411, the free radical contents exhibited a similar trend, but the total antioxidant capacity exhibited a downward trend upon increasing γ-irradiation. Additionally, we detected dose-dependent increases in TaKu70 and TaKu80 expression levels in γ-irradiated HY1, while in J411, TaKu70 expression levels increased, followed by a decline. We also detected alternative splicing of TaKu70 mRNA, namely, intron retention, in HY1 but not in J411. Our findings indicate that γ-irradiation induces oxidative stress and DNA damage in hexaploid wheat, resulting in growth retardation of seedlings, and they suggest that TaKu70 may play a causal role in radiosensitivity in HY1. Further studies are required to exploit these factors to improve radiosensitivity in other wheat varieties.
机译:了解植物的放射敏感性是作物突变育种计划中的重要因素,因此需要对造成这种性状的因素进行彻底研究。在这项研究中,我们使用了对辐射敏感的小麦(Hy1)和J411(对γ射线不敏感的对照),它们是从自然种群中筛选出来的,用于研究影响辐射敏感性的因素,包括自由基含量和总含量。实时PCR测得的抗氧化能力以及TaKu70和TaKu80(DNA修复相关基因)的表达。我们还通过序列分析研究了该基因在野生型小麦生态型中的选择性剪接。当HY1小麦受到γ射线辐射后,其自由基含量和总抗氧化能力显着增加,且呈剂量依赖性。相反,在J411中,自由基含量表现出相似的趋势,但是随着γ辐射的增加,总抗氧化剂能力呈现出下降的趋势。此外,我们检测到γ射线照射的HY1中TaKu70和TaKu80表达水平呈剂量依赖性升高,而在J411中,TaKu70表达水平升高,随后下降。我们还在HY1中检测到TaKu70 mRNA的选择性剪接,即内含子保留,但在J411中未检测到。我们的发现表明,γ射线辐射会诱导六倍体小麦的氧化应激和DNA损伤,从而导致幼苗生长迟缓,并且他们暗示TaKu70可能在HY1的放射敏感性中起因果作用。需要进一步研究以利用这些因素来提高其他小麦品种的放射敏感性。

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