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Heterosis in root development and differential gene expression between hybrids and their parental inbreds in wheat (Triticum aestivum L.)
Authors:Zhangkui Wang  Zhongfu Ni  Hualing Wu  Xiuling Nie  Qixin Sun
Institution:(1) Department of Plant Genetics and Breeding, State Key Laboratory for Agrobiotechnology, China Agricultural University, Yuanmingyuan Xilu No. 2, Beijing, 100094, China;(2) Key Laboratory of Crop Heterosis and Utilization, Ministry of Education, China Agricultural University, Beijing, 100094, China;(3) Key Laboratory of Crop Genomics and Genetic Improvement, Ministry of Agriculture, China Agricultural University, Beijing, 100094, China;(4) Beijing Key Laboratory of Crop Genetic Improvement, China Agricultural University, Beijing, 100094, China
Abstract:In spite of commercial use of heterosis in agriculture, the molecular basis of heterosis is poorly understood. In this study, heterosis was estimated for eight root traits in 20 wheat hybrids derived from a NC Design II mating scheme. Positive mid-parent heterosis was detected in 96 of 160 hybrid–trait combinations, and positive high-parent heterosis was detected in 79 of 160 hybrid-trait combinations. Improved differential display was used to analyze alterations in gene expression between hybrids and their parents in roots at the jointing stage. More than 990 fragments were repeatedly displayed, among which 27.52% were differentially expressed between hybrids and their parents. Four differential expression patterns were observed. Thirty differentially expressed cDNA fragments and three genes with open reading frames were cloned, and their expression patterns were confirmed by reverse-northern blot and semi-quantitative RT-PCR analysis, respectively. We concluded that these differentially expressed genes, though mostly with unknown function, could play important roles for hybrids to demonstrate heterosis in root system traits.Electronic Supplementary Material Supplementary material is available to authorised users in the online version of this article at .Z. Wang and Z. Ni contributed to this article equally.
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