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野生番茄杂种中有效倍性驱动的全基因组胚乳表达偏极性和种子败育的差异。

Differences in Effective Ploidy Drive Genome-Wide Endosperm Expression Polarization and Seed Failure in Wild Tomato Hybrids.

机构信息

Plant Ecological Genetics, Institute of Integrative Biology and Zurich-Basel Plant Science Center, ETH Zurich, 8092 Zurich, Switzerland.

Plant Ecological Genetics, Institute of Integrative Biology and Zurich-Basel Plant Science Center, ETH Zurich, 8092 Zurich, Switzerland

出版信息

Genetics. 2019 May;212(1):141-152. doi: 10.1534/genetics.119.302056. Epub 2019 Mar 22.

Abstract

Parental imbalances in the endosperm leading to impaired development and eventual hybrid seed failure are common causes of postzygotic isolation in flowering plants. Endosperm sensitivity to parental dosage is reflected by canonical phenotypes of "parental excess" in reciprocal interploid crosses. Moreover, parental-excess traits are also evident in many homoploid interspecific crosses, potentially reflecting among-lineage variation in "effective ploidy" driven by endosperm properties. However, the genetic basis of effective ploidy is unknown and genome-wide expression perturbations in parental-excess endosperms from homoploid crosses have yet to be reported. The tomato clade ( section ), encompassing closely related diploids with partial-to-complete hybrid seed failure, provides outstanding opportunities to study these issues. Here, we compared replicated endosperm transcriptomes from six crosses within and among three wild tomato lineages. Strikingly, strongly inviable hybrid crosses displayed conspicuous, asymmetric expression perturbations that mirror previously characterized parental-excess phenotypes. , the species inferred to have evolved higher effective ploidy than the other two, drove expression landscape polarization between maternal and paternal roles. This global expression divergence was mirrored in functionally important gene families such as MADS-box transcription factors and E3 ubiquitin ligases, and revealed differences in cell cycle tuning that match phenotypic differences in developing endosperm and mature seed size between reciprocal crosses. Our work starts to uncover the complex interactions between expression divergence, parental conflict, and hybrid seed failure that likely contributed to plant diversity.

摘要

胚乳中的双亲不平衡导致发育受损,最终导致杂种种子失败,是开花植物合子后隔离的常见原因。胚乳对双亲剂量的敏感性反映在正反倍性杂交中的典型“双亲过剩”表型上。此外,许多同倍体种间杂交中也存在双亲过剩的特征,这可能反映了由胚乳特性驱动的“有效倍性”在线系间的变化。然而,有效倍性的遗传基础尚不清楚,同倍体杂交中胚乳过量的全基因组表达扰动尚未报道。番茄分支(section),包括部分到完全杂种种子失败的近缘二倍体,为研究这些问题提供了极好的机会。在这里,我们比较了来自三个野生番茄谱系内和谱系间六个杂交的重复胚乳转录组。引人注目的是,在强烈的不育杂种杂交中,显示出明显的、不对称的表达扰动,与以前描述的双亲过剩表型相吻合。推测进化出较高有效倍性的物种,导致母本和父本角色之间的表达景观极化。这种全局表达分歧在功能重要的基因家族中得到了反映,如 MADS 盒转录因子和 E3 泛素连接酶,并且揭示了细胞周期调节的差异,与正反倍性杂交中胚乳发育和成熟种子大小的表型差异相匹配。我们的工作开始揭示表达分歧、双亲冲突和杂种种子失败之间的复杂相互作用,这些相互作用可能为植物多样性做出了贡献。

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