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苹果属配子体自交不亲和体系特异性识别的推断。

Inferences on specificity recognition at the Malus×domestica gametophytic self-incompatibility system.

机构信息

Instituto de Biologia Molecular e Celular (IBMC), Universidade do Porto, Rua Alfredo Allen 208, 4200-135, Porto, Portugal.

Instituto de Investigação e Inovação em Saúde, Universidade do Porto, Rua Alfredo Allen 208, 4200-135, Porto, Portugal.

出版信息

Sci Rep. 2018 Jan 29;8(1):1717. doi: 10.1038/s41598-018-19820-1.

Abstract

In Malus × domestica (Rosaceae) the product of each SFBB gene (the pollen component of the gametophytic self-incompatibility (GSI) system) of a S-haplotype (the combination of pistil and pollen genes that are linked) interacts with a sub-set of non-self S-RNases (the pistil component), but not with the self S-RNase. To understand how the Malus GSI system works, we identified 24 SFBB genes expressed in anthers, and determined their gene sequence in nine M. domestica cultivars. Expression of these SFBBs was not detected in the petal, sepal, filament, receptacle, style, stigma, ovary or young leaf. For all SFBBs (except SFBB15), identical sequences were obtained only in cultivars having the same S-RNase. Linkage with a particular S-RNase was further established using the progeny of three crosses. Such data is needed to understand how other genes not involved in GSI are affected by the S-locus region. To classify SFBBs specificity, the amino acids under positive selection obtained when performing intra-haplotypic analyses were used. Using this information and the previously identified S-RNase positively selected amino acid sites, inferences are made on the S-RNase amino acid properties (hydrophobicity, aromatic, aliphatic, polarity, and size), at these positions, that are critical features for GSI specificity determination.

摘要

在苹果属(蔷薇科)中,每个 SFBB 基因(配子体自交不亲和(GSI)系统的花粉成分)的产物与 S 单倍型(与连锁的雌蕊和花粉基因组合)的产物相互作用,但不与自身 S-RNase 相互作用。为了了解苹果属 GSI 系统的工作原理,我们鉴定了 24 个在花药中表达的 SFBB 基因,并确定了其在 9 个栽培苹果品种中的基因序列。这些 SFBB 在花瓣、萼片、花丝、花托、花柱、柱头、子房或幼叶中没有表达。对于所有 SFBB(除了 SFBB15),只有在具有相同 S-RNase 的品种中才能获得相同的序列。通过三个杂交后代的研究进一步确定了与特定 S-RNase 的连锁关系。需要这些数据来了解不参与 GSI 的其他基因是如何受到 S 基因座区域影响的。为了对 SFBB 特异性进行分类,在进行单倍型内分析时获得的受正选择影响的氨基酸被用来进行分析。利用这些信息和之前鉴定的受正选择影响的 S-RNase 氨基酸位点,可以推断出这些位置上 S-RNase 氨基酸的特性(疏水性、芳香性、脂肪族、极性和大小),这些特性是决定 GSI 特异性的关键特征。

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