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qAC2,一个与 Wx 互作并控制水稻(Oryza sativa L.)低直链淀粉含量的新 QTL。

qAC2, a novel QTL that interacts with Wx and controls the low amylose content in rice (Oryza sativa L.).

机构信息

Rice Breeding Research Team, NARO Institute of Crop Science, 2-1-18, Kannondai, Tsukuba, Ibaraki, 305-8518, Japan.

出版信息

Theor Appl Genet. 2015 Apr;128(4):563-73. doi: 10.1007/s00122-014-2432-6. Epub 2015 Mar 12.

Abstract

This manuscript reports the fine mapping of a novel QTL, qAC2 controlling the low amylose in rice. The action mechanism of the qAC2 is also investigated by the analysis of genetic interactions to Wx (a), Wx (b), du1, du2 and du3. Amylose content of the rice (Oryza sativa L.) endosperm greatly affects starch properties and eating quality of cooked rice. Seeds of japonica rice cultivar Kuiku162 have low amylose content (AC) and good eating quality. Our analysis revealed a novel QTL, designated as qAC2 that contributed to the low AC of Kuiku162. qAC2 was fine mapped within a 74.9-kb region between two insertion and deletion markers, KID3001 and KID5101, on the long arm of chromosome 2. Seven genes are predicted in this region, but none of them is known to be related to the regulation of AC. The AC of a near-isogenic line (NIL110) carrying qAC2 (Kuiku), the Kuiku162 allele of qAC2, in the genetic background of japonica cultivar Itadaki was lower by 1.1% points than that of Itadaki. The chain length distributions of amylopectin were similar in NIL110 and Itadaki; therefore, the low AC of NIL110 was caused by a decrease in the actual AC, but not by a difference in the amylopectin structure. The interaction analyses revealed that qAC2 (Kuiku) has epistatic interaction with Wx (a). The qAC2 (Kuiku) has epistatic interactions with two loci, du1 and du2, on Wx (b), whereas the genetic effect of qAC2 (Kuiku) has additive to that of du3 on Wx (b). Thus, similar to du1 and du2, qAC2 may have a function related to Wx (b) mRNA splicing.

摘要

本研究报告了一个新的控制水稻低直链淀粉含量的 QTL(qAC2)的精细定位。通过分析与 Wx(a)、Wx(b)、du1、du2 和 du3 的遗传相互作用,研究了 qAC2 的作用机制。水稻(Oryza sativa L.)胚乳中的直链淀粉含量对淀粉性质和米饭食用品质有很大影响。粳稻品种 Kuiku162 的种子直链淀粉含量(AC)低,食用品质好。我们的分析揭示了一个新的 QTL,命名为 qAC2,它导致 Kuiku162 的低 AC。qAC2 被精细定位在 2 号染色体长臂上两个插入/缺失标记 KID3001 和 KID5101 之间的 74.9-kb 区域内。该区域预测有 7 个基因,但没有一个已知与 AC 调节有关。在携带 qAC2(Kuiku)的近等基因系(NIL110)中,该基因在粳稻品种 Itadaki 的遗传背景下,AC 比 Itadaki 低 1.1%,这是由实际 AC 的降低引起的,而不是由直链淀粉结构的差异引起的。NIL110 和 Itadaki 的支链淀粉链长分布相似;因此,NIL110 的低 AC 是由实际 AC 的降低引起的,而不是由支链淀粉结构的差异引起的。互作分析表明,qAC2(Kuiku)与 Wx(a)存在上位性互作。qAC2(Kuiku)与 Wx(b)上的两个位点 du1 和 du2 存在上位性互作,而 qAC2(Kuiku)的遗传效应与 Wx(b)上的 du3 具有累加效应。因此,与 du1 和 du2 相似,qAC2 可能具有与 Wx(b)mRNA 剪接相关的功能。

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