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Comparative Transcriptional Profiling and Preliminary Study on Heterosis Mechanism of Super-Hybrid Rice

机译:超级杂交水稻比较转录谱分析和杂种优势机理初步研究

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摘要

Heterosis is a biological phenomenon whereby the offspring from two parents show improved and superior performance than either inbred parental lines. Hybrid rice is one of the most successful apotheoses in crops utilizing heterosis. Transcriptional profiling of F1 super-hybrid rice Liangyou-2186 and its parents by serial analysis of gene expression (SAGE) revealed 1183 differentially expressed genes (DGs), among which DGs were found significantly enriched in pathways such as photosynthesis and carbon-fixation, and most of the key genes involved in the carbon-fixation pathway exhibited up-regulated expression in F1 hybrid rice. Moreover, increased catabolic activity of corresponding enzymes and photosynthetic efficiency were also detected, which combined to indicate that carbon fixation is enhanced in F1 hybrid, and might probably be associated with the yield vigor and heterosis in super-hybrid rice. By correlating DGs with yield-related quantitative trait loci (QTL), a potential relationship between differential gene expression and phenotypic changes was also found. In addition, a regulatory network involving circadian-rhythms and light signaling pathways was also found, as previously reported in Arabidopsis, which suggest that such a network might also be related with heterosis in hybrid rice. Altogether, the present study provides another view for understanding the molecular mechanism underlying heterosis in rice.
机译:杂种优势是一种生物学现象,来自两个亲本的后代表现出比任何一个自交亲本系都更高的性能。杂交水稻是利用杂种优势的农作物最成功的神仙之一。通过基因表达序列分析(SAGE)对F1超级杂交稻两优2186及其亲本的转录谱分析显示1183个差异表达基因(DGs),其中DGs显着富集于光合作用和碳固定等途径,并且参与碳固定途径的大多数关键基因在F1杂交稻中均表达上调。此外,还检测到相应酶的分解代谢活性和光合作用效率提高,这表明F1杂种的固碳能力增强,可能与超级杂交稻的产量活力和杂种优势有关。通过将DGs与产量相关的数量性状基因座(QTL)相关联,还发现了差异基因表达与表型变化之间的潜在关系。此外,还发现了一个涉及昼夜节律和光信号通路的调控网络,如先前在拟南芥中报道的那样,这表明这种网络也可能与杂交水稻的杂种优势有关。总之,本研究为理解水稻杂种优势的分子机制提供了另一种观点。

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