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首页> 外文期刊>Proteomics >Analysis of nonadditive protein accumulation in young primary roots of a maize (Zea mays L.) F1-hybrid compared to its parental inbred lines
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Analysis of nonadditive protein accumulation in young primary roots of a maize (Zea mays L.) F1-hybrid compared to its parental inbred lines

机译:玉米(Zea mays L.)F1杂种与其亲本近交系相比,其非加性蛋白质积累的分析

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摘要

Heterosis describes the superior performance of heterozygous F 1-hybrids compared to their homozygous parental inbred lines. Heterosis is already manifested during early maize (Zea mays L.) primary root development. In this study, the most abundant soluble proteins have been investigated before the phenotypic manifestation of heterosis in 3.5-day-old primary roots in the flint inbred line UH002, the dent inbred line UH301 and the corresponding hybrid UH301 × UH002. In CBB-stained 2-DE gels, 150 of 304 detected proteins (49%) were accumulated in a nonadditive fashion in the hybrid compared to the average of their parental inbred lines (Student's t-test: p 0.05). Remarkably, expression of 51% (76/150) of the non-additively accumulated proteins exceeded the high parent or was below the low parent. ESI-MS/MS identified 75 of the 76 proteins that belonged to these expression classes. The most abundant functional classes among the 75 proteins that were encoded by 60 different genes were metabolism (58%) and disease and defense (19%). Nonadditive protein accumulation in primary roots of maize hybrids might be associated with heterosis manifestation. Identification of these proteins could therefore contribute to the better understanding of the molecular basis of heterosis.
机译:杂种优势描述了杂合F 1杂种与其纯合亲本近交系相比具有的优异性能。杂种优势已经在早期玉米(Zea mays L.)初级根发育过程中表现出来。在这项研究中,在火石近交系UH002,凹痕近交系UH301和相应的杂种UH301×UH002的3.5天大的初生根中,在杂种的表型表现出现之前,已经研究了最丰富的可溶性蛋白。在CBB染色的2-DE凝胶中,与其亲本近交系的平均值相比,杂种中304种检测到的蛋白中有150种(49%)以非加性方式积累(Student's t检验:p <0.05)。显着地,51%(76/150)的非累加积累蛋白的表达超过了高亲本或低于低亲本。 ESI-MS / MS鉴定了属于这些表达类别的76种蛋白质中的75种。在由60种不同基因编码的75种蛋白质中,功能最丰富的功能类别是新陈代谢(58%)和疾病与防御(19%)。玉米杂种原根中非累加蛋白的积累可能与杂种优势表现有关。这些蛋白质的鉴定因此可以有助于更好地理解杂种优势的分子基础。

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