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利用越南地方稻种群体进行全基因组关联研究揭示了控制穗部形态性状的新 QTL。

A genome-wide association study using a Vietnamese landrace panel of rice (Oryza sativa) reveals new QTLs controlling panicle morphological traits.

机构信息

LMI RICE, University of Montpellier, IRD, CIRAD, USTH, National Key Laboratory for Plant Cell Biotechnology, Agronomical Genetics Institute, Hanoi, Vietnam.

Present address: Plant Genetics Laboratory, National Institute of Genetics, Mishima, Japan.

出版信息

BMC Plant Biol. 2018 Nov 14;18(1):282. doi: 10.1186/s12870-018-1504-1.

Abstract

CONTEXT

Yield improvement is an important issue for rice breeding. Panicle architecture is one of the key components of rice yield and exhibits a large diversity. To identify the morphological and genetic determinants of panicle architecture, we performed a detailed phenotypic analysis and a genome-wide association study (GWAS) using an original panel of Vietnamese landraces.

RESULTS

Using a newly developed image analysis tool, morphological traits of the panicles were scored over two years: rachis length; primary, secondary and tertiary branch number; average length of primary and secondary branches; average length of internode on rachis and primary branch. We observed a high contribution of spikelet number and secondary branch number per panicle to the overall phenotypic diversity in the dataset. Twenty-nine stable QTLs associated with seven traits were detected through GWAS over the two years. Some of these QTLs were associated with genes already implicated in panicle development. Importantly, the present study revealed the existence of new QTLs associated with the spikelet number, secondary branch number and primary branch number traits.

CONCLUSIONS

Our phenotypic analysis of panicle architecture variation suggests that with the panel of samples used, morphological diversity depends largely on the balance between indeterminate vs. determinate axillary meristem fate on primary branches, supporting the notion of differences in axillary meristem fate between rachis and primary branches. Our genome-wide association study led to the identification of numerous genomic sites covering all the traits studied and will be of interest for breeding programs aimed at improving yield. The new QTLs detected in this study provide a basis for the identification of new genes controlling panicle development and yield in rice.

摘要

背景

产量提高是水稻育种的一个重要问题。穗型结构是水稻产量的关键组成部分之一,表现出很大的多样性。为了鉴定穗型结构的形态和遗传决定因素,我们使用一个原始的越南地方品种群体进行了详细的表型分析和全基因组关联研究(GWAS)。

结果

利用新开发的图像分析工具,我们在两年内对穗的形态特征进行了评分:穗轴长度;一次枝梗、二次枝梗和三次枝梗的数量;一次枝梗和二次枝梗的平均长度;穗轴和一次枝梗上的节间平均长度。我们观察到在数据集的整体表型多样性中,小穗数和每穗二次枝梗数的贡献很高。通过两年的 GWAS,检测到与七个性状相关的 29 个稳定的 QTL。其中一些 QTL 与已被证明与穗发育有关的基因有关。重要的是,本研究揭示了与小穗数、二次枝梗数和一次枝梗数性状相关的新 QTL 的存在。

结论

我们对穗型结构变异的表型分析表明,在所使用的样本群体中,形态多样性在很大程度上取决于一次枝梗上不定芽分生组织和定芽分生组织命运之间的平衡,这支持了穗轴和一次枝梗之间腋芽分生组织命运差异的观点。我们的全基因组关联研究导致了鉴定出覆盖所有研究性状的众多基因组位点,这将对旨在提高产量的育种计划感兴趣。本研究中检测到的新 QTL 为鉴定控制水稻穗发育和产量的新基因提供了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/073a/6234598/cbbf5c354ffa/12870_2018_1504_Fig1_HTML.jpg

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