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甘蓝型油菜磷高效产量性状 QTL 及其与功能基因的关联分析

QTL for yield traits and their association with functional genes in response to phosphorus deficiency in Brassica napus.

机构信息

National Key Laboratory of Crop Genetic Improvement and National Centre of Plant Gene Research, Huazhong Agricultural University, Wuhan, China.

出版信息

PLoS One. 2013;8(1):e54559. doi: 10.1371/journal.pone.0054559. Epub 2013 Jan 28.

Abstract

BACKGROUND

Oilseed rape (Brassica napus L.) is one of the most important oil crops. A primary limitation to the cultivation of this crop is the lack of available phosphorus (P) in soils. To elucidate the genetic control of P deficiency tolerance in Brassica napus, quantitative trait locus (QTL) for seed yield and yield related-traits in response to P deficiency were identified using a double haploid mapping population (TN DH) derived from a cross between a P-efficient cultivar, Ningyou 7 and a P-inefficient cultivar, Tapidor.

RESULTS

Three field trials were conducted to determine seed yield (SY), plant height (PH), number of primary branches (BN), height to the first primary branch (FBH), relative first primary branch height (RBH), pod number per plant (PN), seed number per pod (SN) and seed weight of 1,000 seeds (SW) in 188 lines of TN DH population exposed to low P (LP) and optimal P (OP) conditions. P deficiency decreased PH, BN, SN, PN and SY, and increased FBH and RBH with no effect on SW. Three reproducible LP-specific QTL regions were identified on chromosomes A2, A3 and A5 that controlled SN, PN and SW respectively. In addition, six reproducible constitutive regions were also mapped with two each for SY-LP on A2, and FBH-LP on C6 and one each for PH-LP and SW-LP on A3. About 30 markers derived from 19 orthologous genes involved in Arabidopsis P homeostasis were mapped on 24 QTL regions by comparative mapping between Arabidopsis and Brassica napus. Among these genes, GPT1, MGD2 and SIZ1 were associated with two major loci regulating SY-LP and other yield-related traits on A2 between 77.1 and 95.0 cM.

CONCLUSION

The stable QTLs detected under LP conditions and their candidate genes may provide useful information for marker-assisted selection in breeding high-yield B. napus varieties with improved P efficiency.

摘要

背景

油菜(甘蓝型油菜)是最重要的油料作物之一。这种作物种植的一个主要限制因素是土壤中缺乏有效磷(P)。为了阐明甘蓝型油菜对 P 缺乏的耐受性的遗传控制,利用来自高效品种宁油 7 与低效品种 Tapidor 杂交的双单倍体作图群体(TN DH),鉴定了对 P 缺乏响应的种子产量和产量相关性状的数量性状位点(QTL)。

结果

在 188 个 TN DH 群体的线中进行了三个田间试验,以确定在低 P(LP)和最佳 P(OP)条件下的种子产量(SY)、株高(PH)、一级分枝数(BN)、到第一级分枝的高度(FBH)、相对第一级分枝高度(RBH)、每株荚数(PN)、每荚种子数(SN)和千粒重(SW)。P 缺乏降低了 PH、BN、SN、PN 和 SY,增加了 FBH 和 RBH,对 SW 没有影响。在染色体 A2、A3 和 A5 上鉴定出三个可重复的 LP 特异性 QTL 区域,分别控制 SN、PN 和 SW。此外,还映射了六个可重复的组成性区域,每个区域在 A2 上各有一个用于 SY-LP,在 C6 上各有一个用于 FBH-LP,在 A3 上各有一个用于 PH-LP 和 SW-LP。通过拟南芥和甘蓝型油菜之间的比较作图,在 24 个 QTL 区域上定位了来自参与拟南芥 P 稳态的 19 个同源基因的约 30 个标记。在这些基因中,GPT1、MGD2 和 SIZ1 与调节 A2 上 SY-LP 和其他产量相关性状的两个主要位点相关,位于 77.1 至 95.0 cM 之间。

结论

在 LP 条件下检测到的稳定 QTL 及其候选基因可能为高 P 效率的油菜高产品种的标记辅助选择提供有用信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e586/3557265/e86856bcb409/pone.0054559.g001.jpg

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