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The Analysis of SKP1 Gene Expression in Physiological Male Sterility Induced by Chemical Hybridizing Agent SQ-1 in Wheat (Triticum aestivum L.)

机译:化学杂交剂SQ-1诱导小麦生理雄性不育SKP1基因表达的分析

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摘要

Physiological male sterility induced by the chemical hybridizing agent (CHA) overcomes problems of maintenance of sterile lines and restorers. However, the mechanism of sterility is unclear. The process of tapetum of CHA-treated ‘Xi’nong 2611’ at uninucleate, binucleate and trinucleate were compared with control to determine if tapetum varying differently during developmental stages. Tapetal degradation in CHA-treated ‘Xi’nong 2611’ began at late uninucleate stage, somewhat earlier than control plants. Cytological observations indicated that the gradual degradation of the tapetum in CHA-treated ‘Xi’nong 2611’ was initiated and terminated earlier than in the control. These findings implied that CHA-induced male sterility was related to abnormally early tapetal degradation. In order to indicate the role of the SKP1 gene in fertility/sterility in wheat, its expression was assessed in anthers at uninucleate, binucleate and trinucleate stages. SKP1 expression was reduced in the later developmental stages, and there was an obvious decrease from the uninucleate to trinucleate stages. Higher expression of the SKP1 gene occurred in ‘Xi’nong 2611’ compared to CHA-treated ‘Xi’nong 2611’. This implied that SKP1 gene expression was inhibited during the fertility transformation process and was related to transformation from fertility to sterility. Moreover, the results from this study suggest that SKP1 plays an essential role of conducting fertility in physiological male sterility.
机译:化学杂交剂(CHA)诱导的生理雄性不育克服了维持无菌系和恢复系的问题。但是,不育的机理尚不清楚。将CHA处理的“西农2611”的绒毛在单核,双核和三核的绒毛形成过程与对照进行比较,以确定绒毛在发育阶段是否有不同的变化。 CHA处理的“西农2611”的绒毛降解开始于单核后期,比对照植物早。细胞学观察表明,在CHA处理的“西农2611”中,绒毡层的逐渐降解比对照早开始和终止。这些发现暗示CHA引起的男性不育与异常的早期绒毛退化有关。为了表明SKP1基因在小麦的育性/不育中的作用,在单核,双核和三核的花药中评估了其表达。 SKP1表达在后期发育阶段降低,并且从单核阶段到三核阶段都有明显的下降。与CHA处理的“西农2611”相比,“西农2611”中SKP1基因的表达更高。这暗示着SKP1基因表达在生育力转化过程中受到抑制,并且与从生育力到不育的转化有关。此外,这项研究的结果表明,SKP1在生理上雄性不育中起着促进生育的重要作用。

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