Zhao Peng, Ding Dong, Zhang Fangfang, Zhao Xiaofeng, Xue Yadong, Li Weihua, Fu Zhiyuan, Li Haochuan, Tang Jihua
Collaborative Innovation Center of Henan Grain Crops; College of Agronomy, Key Laboratory of Physiological Ecology and Genetic Improvement of Food Crops in Henan Province, Henan Agricultural University, Zhengzhou, 450002, China.
Funct Integr Genomics. 2015 May;15(3):261-70. doi: 10.1007/s10142-014-0411-2. Epub 2014 Nov 14.
Heterosis has been used widely in the breeding of maize and other crops and plays an important role in increasing yield, improving quality, and enhancing stress resistance, but its molecular mechanism is far from clear. To determine whether microRNA (miRNA)-dependent gene regulation is responsible for heterosis of elongating internodes below the ear and ear height in maize, a deep-sequencing strategy was applied to the elite hybrid Xundan20, which is currently cultivated widely in China, and its two parents. RNA was extracted from the eighth internode because it shows clear internode length heterosis. A total of 99 conserved maize miRNAs were detected in both the hybrid and parental lines. Most of these miRNAs were expressed nonadditively in the hybrid compared with its parental lines. These results indicated that miRNAs might participate in heterosis during internode expansion in maize and exert an influence on ear and plant height via the repression of their target genes. In total, eight novel miRNAs belonging to four miRNA families were predicted in the expanding internode. Global repression of miRNAs in the hybrid, which might result in enhanced gene expression, might be one reason why the hybrid shows longer internodes and taller seedlings compared with its parental lines.
杂种优势已在玉米和其他作物育种中广泛应用,在提高产量、改善品质和增强抗逆性方面发挥着重要作用,但其分子机制尚不清楚。为了确定依赖于 microRNA(miRNA)的基因调控是否与玉米穗下节间伸长和穗位高的杂种优势有关,对目前在中国广泛种植的优良杂交种浚单 20 及其两个亲本采用了深度测序策略。由于第八节间表现出明显的节间长度杂种优势,因此从该节间提取 RNA。在杂交种和亲本系中总共检测到 99 个保守的玉米 miRNA。与亲本系相比,这些 miRNA 中的大多数在杂交种中呈非加性表达。这些结果表明,miRNA 可能参与玉米节间伸长过程中的杂种优势,并通过抑制其靶基因对穗位和株高产生影响。在伸长的节间中总共预测到属于四个 miRNA 家族的八个新 miRNA。杂交种中 miRNA 的整体抑制可能导致基因表达增强,这可能是杂交种与亲本系相比节间更长、幼苗更高的原因之一。