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番茄正反交中,果实品质和 DNA 甲基化受亲本组序的影响。

Fruit quality and DNA methylation are affected by parental order in reciprocal crosses of tomato.

机构信息

Instituto de Investigaciones en Ciencias Agrarias de Rosario (IICAR-CONICET-UNR), Campo Experimental Villarino, S2125ZAA, Zavalla, Santa Fe, Argentina.

CIGEOBIO, (CONICET-UNSJ), Complejo Universitario "Islas Malvinas", FCEFN, Universidad de San Juan, Av. Ignacio de la Roza 590, J5402DCS, Rivadavia, San Juan, Argentina.

出版信息

Plant Cell Rep. 2021 Jan;40(1):171-186. doi: 10.1007/s00299-020-02624-x. Epub 2020 Oct 20.

DOI:10.1007/s00299-020-02624-x
PMID:33079280
Abstract

Reciprocal effects were found for tomato fruit quality and DNA methylation. The epigenetic identity of reciprocal hybrids indicates that DNA methylation might be one of the mechanisms involved in POEs. Crosses between different genotypes and even between different species are commonly used in plant breeding programs. Reciprocal hybrids are obtained by changing the cross direction (or the sexual role) of parental genotypes in a cross. Phenotypic differences between these hybrids constitute reciprocal effects (REs). The aim of this study was to evaluate phenotypic differences in tomato fruit traits and DNA methylation profiles in three inter- and intraspecific reciprocal crosses. REs were detected for 13 of the 16 fruit traits analyzed. The number of traits with REs was the lowest in the interspecific cross, whereas the highest was found in the cross between recombinant inbred lines (RILs) derived from the same interspecific cross. An extension of gene action analysis was proposed to incorporate parent-of-origin effects (POEs). Maternal and paternal dominance were found in four fruit traits. REs and paternal inheritance were found for epiloci located at coding and non-coding regions. The epigenetic identity displayed by the reciprocal hybrids accounts for the phenotypic differences among them, indicating that DNA methylation might be one of the mechanisms involved in POEs.

摘要

番茄果实品质和 DNA 甲基化存在相互影响。正反交杂种的表观遗传一致性表明,DNA 甲基化可能是 POEs 相关机制之一。不同基因型之间甚至不同物种之间的杂交在植物育种计划中很常见。通过改变杂交中亲本基因型的杂交方向(或性别角色)获得正反交杂种。这些杂种之间的表型差异构成了正反交效应(REs)。本研究旨在评估三个种间和种内正反交番茄果实性状和 DNA 甲基化图谱的表型差异。在所分析的 16 个果实性状中,有 13 个表现出 REs。在种间杂交中,具有 REs 的性状数量最少,而在同一种间杂交衍生的重组自交系(RILs)之间的杂交中,具有 REs 的性状数量最多。提出了一种扩展的基因作用分析方法,以纳入母本和父本效应(POEs)。在四个果实性状中发现了母体和父体优势。在编码区和非编码区的基因座上发现了 REs 和父系遗传。正反交杂种的表观遗传一致性解释了它们之间的表型差异,表明 DNA 甲基化可能是 POEs 相关机制之一。

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本文引用的文献

1
Regulation of Parent-of-Origin Allelic Expression in the Endosperm.胚乳中母源等位基因表达的调控。
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2
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PLoS One. 2018 Sep 5;13(9):e0202279. doi: 10.1371/journal.pone.0202279. eCollection 2018.
3
Subtle Perturbations of the Maize Methylome Reveal Genes and Transposons Silenced by Chromomethylase or RNA-Directed DNA Methylation Pathways.
海洋洄游后圈养养殖对大西洋鲑鱼甲基化组的影响:性别特异性和代际稳定性
Mol Ecol Resour. 2023 Feb 9. doi: 10.1111/1755-0998.13766.
4
Inheritance of Secondary Metabolites and Gene Expression Related to Tomato Fruit Quality.次生代谢物及其与番茄果实品质相关的基因表达的遗传。
Int J Mol Sci. 2022 May 31;23(11):6163. doi: 10.3390/ijms23116163.
5
Multi-Omics Landscape of DNA Methylation Regulates Browning in "Fuji" Apple.DNA甲基化的多组学格局调控“富士”苹果的褐变
Front Nutr. 2022 Feb 7;8:800489. doi: 10.3389/fnut.2021.800489. eCollection 2021.
玉米甲基化组的细微扰动揭示了被染色体甲基化酶或RNA指导的DNA甲基化途径沉默的基因和转座子。
G3 (Bethesda). 2018 May 31;8(6):1921-1932. doi: 10.1534/g3.118.200284.
4
Partitioning Phenotypic Variance Due to Parent-of-Origin Effects Using Genomic Relatedness Matrices.使用基因组亲缘关系矩阵划分源于亲本效应的表型变异
Behav Genet. 2018 Jan;48(1):67-79. doi: 10.1007/s10519-017-9880-0. Epub 2017 Nov 2.
5
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6
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7
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9
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