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Characterisation of the effects of a major QTL of the partial resistance to Rice yellow mottle virus using a near-isogenic-line approach

机译:使用近等基因线方法表征对水稻黄斑驳病毒的部分抗性的主要QTL的作用

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Two quantitative trait loci (QTL(12) and QTL(7)) acting in epistatis and associated with Rice yellow mottle virus (RYMV) infection were introgressed from the traditional Oryza sativa japonica cultivar Azucena into the improved indica cultivar IR64. The response to RYMV infection was followed over time in this nearly isogenic line (NIL). In leaves, the virus coat protein content was detected by ELISA and RNA by RT-PCR. In tissues, the coat protein was localised by immuno-fluorescence labelling and RNA by in situ hybridisation. We found (i) that Azucena combined a tolerance-characterised by mild symptoms despite generalised distribution and large accumulation of the virus-and a partial resistance, (ii)that partial resistance under the control of QTL(12) and QTL(7), dissociated in the NIL from tolerance and any other morphological or physiological Azucena traits, was expressed similarly in a japonica and in an indica genetic background, (iii) that partial resistance was transient and consisted in a 1-week delay in virus accumulation and symptom expression; passed this delay, partial resistance brokedown, and (iv) a similar delay in virus detection was observed at tissue levels, in the vascular bundle-sheath layers. Impaired virus movement caused by the absence or mutation of a QTL(12)-encoded plant factor necessary for virus transport through vascular bundle sheaths is proposed to explain this partial resistance
机译:将两个定量性状基因座(QTL(12)和QTL(7))作用于上皮并与水稻黄斑驳病毒(RYMV)感染相关,从传统的水稻栽培品种Azucena渗入改良的in型IR64。随着时间的流逝,在这个近等基因系(NIL)中追踪对RYMV感染的反应。在叶片中,通过ELISA检测病毒外壳蛋白含量,通过RT-PCR检测RNA。在组织中,外壳蛋白通过免疫荧光标记定位,RNA通过原位杂交定位。我们发现(i)尽管存在病毒的普遍分布和大量积累,但Azucena结合了以轻度症状为特征的耐受性,以及部分耐药性;(ii)在QTL(12)和QTL(7)的控制下,部分耐药性在NIL中与耐受性以及任何其他形态或生理上的Azucena性状分离的蛋白在粳稻和in稻遗传背景中的表达相似,(iii)部分耐药是短暂的,包括病毒积累和症状表达延迟1周;通过该延迟,部分抗性被破坏,并且(iv)在组织水平的血管束鞘层中观察到相似的病毒检测延迟。拟议中的这种不完整的抵抗力是由缺乏或突变的QTL(12)编码的植物因子引起的病毒运动受损,该因子对于通过血管束鞘运输病毒是必需的

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