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一般性多基因杂种优势的统一理论:能量效率、蛋白质代谢及其对分子育种的意义。

A unifying theory for general multigenic heterosis: energy efficiency, protein metabolism, and implications for molecular breeding.

机构信息

iPlant Collaborative, BIO5 Institute, University of Arizona, Tucson, AZ 85721, USA.

出版信息

New Phytol. 2011 Mar;189(4):923-937. doi: 10.1111/j.1469-8137.2010.03574.x. Epub 2010 Dec 17.

Abstract

Hybrids between genetically diverse varieties display enhanced growth, and increased total biomass, stress resistance and grain yield. Gene expression and metabolic studies in maize, rice and other species suggest that protein metabolism plays a role in the growth differences between hybrids and inbreds. Single trait heterosis can be explained by the existing theories of dominance, overdominance and epistasis. General multigenic heterosis is observed in a wide variety of different species and is likely to share a common underlying biological mechanism. This review presents a model to explain differences in growth and yield caused by general multigenic heterosis. The model describes multigenic heterosis in terms of energy-use efficiency and faster cell cycle progression where hybrids have more efficient growth than inbreds because of differences in protein metabolism. The proposed model is consistent with the observed variation of gene expression in different pairs of inbred lines and hybrid offspring as well as growth differences in polyploids and aneuploids. It also suggests an approach to enhance yield gains in both hybrid and inbred crops via the creation of an appropriate computational analysis pipeline coupled to an efficient molecular breeding program.

摘要

杂种(genetically diverse varieties)之间表现出增强的生长、增加的总生物量、抗逆性和谷物产量。在玉米、水稻和其他物种中的基因表达和代谢研究表明,蛋白质代谢在杂种和自交系之间的生长差异中起作用。单个性状杂种优势可以用现有优势、超显性和上位性理论来解释。一般多基因杂种优势在广泛的不同物种中都有观察到,并且可能具有共同的潜在生物学机制。这篇综述提出了一个模型来解释由一般多基因杂种优势引起的生长和产量差异。该模型根据能量利用效率和更快的细胞周期进程来描述多基因杂种优势,其中杂种比自交系具有更高的生长效率,因为蛋白质代谢存在差异。所提出的模型与不同自交系和杂种后代中观察到的基因表达变化以及多倍体和非整倍体的生长差异一致。它还提出了一种通过创建适当的计算分析管道与有效的分子育种计划相结合来提高杂种和自交作物产量的方法。

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