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10
Allelic interactions heritably alter the activity of a metastable maize pl allele.等位基因相互作用可遗传地改变一个不稳定的玉米pl等位基因的活性。
Genetics. 1995 Oct;141(2):709-19. doi: 10.1093/genetics/141.2.709.

玉米转录调控位点的表观遗传等位基因状态表现出超显性基因作用。

Epigenetic allelic states of a maize transcriptional regulatory locus exhibit overdominant gene action.

作者信息

Hollick J B, Chandler V L

机构信息

Institute of Molecular Biology, University of Oregon, Eugene, Oregon 97403-1229, USA.

出版信息

Genetics. 1998 Oct;150(2):891-7. doi: 10.1093/genetics/150.2.891.

DOI:10.1093/genetics/150.2.891
PMID:9755217
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1460365/
Abstract

Using alleles of the maize purple plant locus (pl), which encodes a transcriptional regulator of anthocyanin pigment synthesis, we describe a case of single-locus heterosis, or overdominance, where the heterozygote displays a phenotype that is greater than either homozygote. The Pl-Rhoades (Pl-Rh) allele is subject to epigenetic changes in gene expression, resulting in quantitatively distinct expression states. Allelic states with low-expression levels, designated Pl'-mahogany (Pl'-mah), are dominant to the high-expression state of Pl-Rh. Pl'-mah states retain low-expression levels in subsequent generations when homozygous or heterozygous with Pl-Rh. However, Pl'-mah alleles frequently exhibit higher expression levels when heterozygous with other pl alleles; illustrating an overdominant allelic relationship. Higher expression levels are also observed when Pl'-mah is hemizygous. These results suggest that persistent allelic interactions between Pl'-mah and Pl-Rh are required to maintain the low-expression state and that other pl alleles are missing sequences required for this interaction. The Pl-Rh state can be sexually transmitted from Pl'-mah/pl heterozygotes, but not from Pl'-mah hemizygotes, suggesting that fixation of the high-expression state may involve synapsis. The existence of such allele-dependent regulatory mechanisms implicates a novel importance of allele polymorphisms in the genesis and maintenance of genetic variation.

摘要

利用玉米紫色植株基因座(pl)的等位基因,该基因座编码花青素色素合成的转录调节因子,我们描述了一个单基因座杂种优势或超显性的案例,其中杂合子表现出比任何一个纯合子都更强的表型。Pl-Rhoades(Pl-Rh)等位基因在基因表达上会发生表观遗传变化,导致表达状态在数量上有所不同。低表达水平的等位基因状态,称为Pl'-桃花心木(Pl'-mah),对Pl-Rh的高表达状态呈显性。当与Pl-Rh纯合或杂合时,Pl'-mah状态在后代中保持低表达水平。然而,当Pl'-mah与其他pl等位基因杂合时,其等位基因经常表现出更高的表达水平;这说明了一种超显性的等位基因关系。当Pl'-mah半合子时也观察到更高的表达水平。这些结果表明,Pl'-mah和Pl-Rh之间持续的等位基因相互作用是维持低表达状态所必需的,并且其他pl等位基因缺少这种相互作用所需的序列。Pl-Rh状态可以从Pl'-mah/pl杂合子通过有性方式传递,但不能从Pl'-mah半合子传递,这表明高表达状态的固定可能涉及联会。这种等位基因依赖性调节机制的存在暗示了等位基因多态性在遗传变异的产生和维持中的新重要性。