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调控因子 14h(GF14h)对低温种子萌发的影响及其在育种中的应用。

Impact of rice GENERAL REGULATORY FACTOR14h (GF14h) on low-temperature seed germination and its application to breeding.

机构信息

Iwate Biotechnology Research Center, Kitakami, Iwate, Japan.

Crop Evolution Laboratory, Kyoto University, Muko, Kyoto, Japan.

出版信息

PLoS Genet. 2024 Aug 7;20(8):e1011369. doi: 10.1371/journal.pgen.1011369. eCollection 2024 Aug.

Abstract

Direct seeding is employed to circumvent the labor-intensive process of rice (Oryza sativa) transplantation, but this approach requires varieties with vigorous low-temperature germination (LTG) when sown in cold climates. To investigate the genetic basis of LTG, we identified the quantitative trait locus (QTL) qLTG11 from rice variety Arroz da Terra, which shows rapid seed germination at lower temperatures, using QTL-seq. We delineated the candidate region to a 52-kb interval containing GENERAL REGULATORY FACTOR14h (GF14h) gene, which is expressed during seed germination. The Arroz da Terra GF14h allele encodes functional GF14h, whereas Japanese rice variety Hitomebore harbors a 4-bp deletion in the coding region. Knocking out functional GF14h in a near-isogenic line (NIL) carrying the Arroz da Terra allele decreased LTG, whereas overexpressing functional GF14h in Hitomebore increased LTG, indicating that GF14h is the causal gene behind qLTG11. Analysis of numerous Japanese rice accessions revealed that the functional GF14h allele was lost from popular varieties during modern breeding. We generated a NIL in the Hitomebore background carrying a 172-kb genomic fragment from Arroz da Terra including GF14h. The NIL showed superior LTG compared to Hitomebore, with otherwise comparable agronomic traits. The functional GF14h allele from Arroz da Terra represents a valuable resource for direct seeding in cold regions.

摘要

直接播种被用于规避水稻(Oryza sativa)移栽这一劳动密集型过程,但这种方法需要在寒冷气候下播种时具有旺盛低温发芽(LTG)的品种。为了研究 LTG 的遗传基础,我们使用 QTL-seq 从 Arroz da Terra 品种中鉴定了数量性状位点(QTL)qLTG11,该品种在较低温度下表现出快速种子发芽。我们将候选区域划定为包含 GENERAL REGULATORY FACTOR14h(GF14h)基因的 52-kb 区间,该基因在种子发芽期间表达。Arroz da Terra 的 GF14h 等位基因编码功能 GF14h,而日本水稻品种 Hitomebore 在编码区有 4-bp 缺失。在携带 Arroz da Terra 等位基因的近等基因系(NIL)中敲除功能 GF14h 会降低 LTG,而在 Hitomebore 中过表达功能 GF14h 会增加 LTG,表明 GF14h 是 qLTG11 的候选基因。对许多日本水稻品种的分析表明,在现代育种过程中,功能 GF14h 等位基因从流行品种中丢失。我们在 Hitomebore 背景中生成了一个携带来自 Arroz da Terra 的包括 GF14h 在内的 172-kb 基因组片段的 NIL。与 Hitomebore 相比,NIL 表现出更好的 LTG,而其他农艺性状相当。来自 Arroz da Terra 的功能 GF14h 等位基因代表了在寒冷地区直接播种的宝贵资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ac5/11343456/a20b8f56fd49/pgen.1011369.g001.jpg

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