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单亲表达互补导致玉米杂种优势的表型杂种优势。

Single-parent expression complementation contributes to phenotypic heterosis in maize hybrids.

机构信息

Institute of Crop Science and Resource Conservation, Crop Functional Genomics, University of Bonn, 53113 Bonn, Germany.

Department of Statistics, Iowa State University, Ames, Iowa 50011-1210, USA.

出版信息

Plant Physiol. 2022 Jun 27;189(3):1625-1638. doi: 10.1093/plphys/kiac180.

Abstract

The dominance model of heterosis explains the superior performance of F1-hybrids via the complementation of deleterious alleles by beneficial alleles in many genes. Genes active in one parent but inactive in the second lead to single-parent expression (SPE) complementation in maize (Zea mays L.) hybrids. In this study, SPE complementation resulted in approximately 700 additionally active genes in different tissues of genetically diverse maize hybrids on average. We established that the number of SPE genes is significantly associated with mid-parent heterosis (MPH) for all surveyed phenotypic traits. In addition, we highlighted that maternally (SPE_B) and paternally (SPE_X) active SPE genes enriched in gene co-expression modules are highly correlated within each SPE type but separated between these two SPE types. While SPE_B-enriched co-expression modules are positively correlated with phenotypic traits, SPE_X-enriched modules displayed a negative correlation. Gene ontology term enrichment analyses indicated that SPE_B patterns are associated with growth and development, whereas SPE_X patterns are enriched in defense and stress response. In summary, these results link the degree of phenotypic MPH to the prevalence of gene expression complementation observed by SPE, supporting the notion that hybrids benefit from SPE complementation via its role in coordinating maize development in fluctuating environments.

摘要

杂种优势的优势模型通过在许多基因中有益等位基因对有害等位基因的互补来解释 F1 杂种的优异表现。在玉米(Zea mays L.)杂种中,在一个亲本中活跃但在另一个亲本中不活跃的基因导致单亲表达(SPE)互补。在这项研究中,SPE 互补导致不同组织中大约有 700 个额外活跃的基因,平均而言,遗传多样性的玉米杂种。我们确定,对于所有调查的表型性状,SPE 基因的数量与中亲杂种优势(MPH)显著相关。此外,我们强调,母系(SPE_B)和父系(SPE_X)活性 SPE 基因在每个 SPE 类型内的基因共表达模块中富集,但在这两种 SPE 类型之间分离。虽然 SPE_B 富集的共表达模块与表型性状呈正相关,但 SPE_X 富集的模块呈负相关。基因本体论术语富集分析表明,SPE_B 模式与生长和发育有关,而 SPE_X 模式在防御和应激反应中富集。总之,这些结果将表型 MPH 的程度与通过 SPE 观察到的基因表达互补的普遍性联系起来,支持了杂种通过 SPE 互补在波动环境中协调玉米发育从而受益的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f18d/9237695/2d1efa0b8898/kiac180f1.jpg

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