Characterization of transcriptomic response in ovules derived from inter-subgeneric hybridization in Prunus (Rosaceae) species.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2021-09-01 Epub Date: 2021-06-24 DOI:10.1007/s00497-021-00423-2
Takuya Morimoto, Yuto Kitamura, Koji Numaguchi, Akihiro Itai
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引用次数: 1

Abstract

Key message: Characterization of hybrid seed failure in Prunus provides insight into conserved or lineage-specific hybrid incompatibility mechanisms in plant species. Postzygotic hybrid incompatibility resulting from a cross between different species involves complex mechanisms occurring at various developmental stages. Embryo arrest, followed by seed abortion, is the first stage of such incompatibility reactions and inhibits hybrid seed development. In Prunus, a rosaceous woody species, some interspecific crosses result in fruit drop during the early stage of fruit development, in which inferior seed development may be accounted for the observed hybrid incompatibility. In this study, we investigated ovule development and the transcriptomes of developing ovules in inter-subgeneric crosses of Prunus. We conducted a cross of Prunus mume (subgenus Prunus), pollinated by P. persica (subgenus Amygdalus), and found that ovule and seed coat degeneration occurs before fruit drop. Transcriptome analysis identified differentially expressed genes enriched in several GO pathways, including organelle development, stimulus response, and signaling. Among these pathways, the organelle-related genes were actively regulated during ovule development, as they showed higher expression in the early stage of interspecific crosses and declined in the later stage, suggesting that the differential regulation of organelle function may induce the degeneration of hybrid ovules. Additionally, genes related to ovule and seed coat development, such as genes encoding AGL-like and auxin response, were differentially regulated in Prunus interspecific crosses. Our results provide histological and molecular information on hybrid seed abortion in Prunus that could be utilized to develop new hybrid crops. Additionally, we compared and discussed transcriptome responses to hybrid seed failure in Prunus and other plant species, which provides insight into conserved or lineage-specific hybrid incompatibility mechanisms in some plant species.

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李(蔷薇科)亚属杂交胚珠转录组反应的研究。
关键信息:李树杂交种子失败的特征为了解植物物种中保守的或谱系特异性的杂交不亲和机制提供了见解。不同物种间杂交产生的合子后杂交不亲和涉及发生在不同发育阶段的复杂机制。胚胎停滞,随后是种子流产,是这种不亲和反应的第一个阶段,抑制了杂交种子的发育。李树是一种蔷薇属木本植物,在果实发育早期,由于种间杂交导致果实掉落,这可能是由于种子发育不佳造成的。在本研究中,我们研究了李属亚属间杂交的胚珠发育和胚珠发育的转录组。我们对杨梅亚属(Prunus mume)进行了杂交,发现桃核(P. persica)在落子前就发生了胚珠和种皮的退化。转录组分析发现了几种氧化石墨烯通路中富集的差异表达基因,包括细胞器发育、刺激反应和信号传导。在这些途径中,细胞器相关基因在胚珠发育过程中受到积极调控,在种间杂交早期表达较高,在后期表达下降,说明细胞器功能的差异调控可能导致杂交胚珠的退化。此外,与胚珠和种皮发育相关的基因,如编码AGL-like和生长素反应的基因,在李树种间杂交中也有差异调控。本研究结果为李树杂种种子败育的组织学和分子生物学研究提供了依据,可用于培育新的杂交作物。此外,我们比较并讨论了李树和其他植物物种对杂交种子失败的转录组反应,这为一些植物物种保守或谱系特异性杂交不亲和机制提供了见解。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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