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全基因组关联研究(GWAS)揭示决定马铃薯淀粉产量和颗粒形态的基因位点。

Genetic loci determining potato starch yield and granule morphology revealed by genome-wide association study (GWAS).

作者信息

Khlestkin Vadim K, Erst Tatyana V, Rozanova Irina V, Efimov Vadim M, Khlestkina Elena K

机构信息

The Federal Research Center Institute of Cytology and Genetics SB RAS, Novosibirsk, Russia.

Russian Research Institute of Farm Animal Genetics and Breeding-Branch of the L.K. Ernst Federal Science Center of Animal Husbandry, Saint-Petersburg, Russia.

出版信息

PeerJ. 2020 Nov 10;8:e10286. doi: 10.7717/peerj.10286. eCollection 2020.

Abstract

BACKGROUND

It is well-documented that (bio)chemical reaction capacity of raw potato starch depends on crystallinity, morphology and other chemical and physical properties of starch granules, and these properties are closely related to gene functions. Preparative yield, amylose/amylopectin content, and phosphorylation of potato tuber starch are starch-related traits studied at the genetic level. In this paper, we perform a genome-wide association study using a 22K SNP potato array to identify for the first time genomic regions associated with starch granule morphology and to increase number of known genome loci associated with potato starch yield.

METHODS

A set of 90 potato ( L.) varieties from the ICG "GenAgro" collection (Novosibirsk, Russia) was harvested, 90 samples of raw tuber starch were obtained, and DNA samples were isolated from the skin of the tubers. Morphology of potato tuber starch granules was evaluated by optical microscopy and subsequent computer image analysis. A set of 15,214 scorable SNPs was used for the genome-wide analysis. In total, 53 SNPs were found to be significantly associated with potato starch morphology traits (aspect ratio, roundness, circularity, and the first bicomponent) and starch yield-related traits.

RESULTS

A total of 53 novel SNPs was identified on potato chromosomes 1, 2, 4, 5, 6, 7, 9, 11 and 12; these SNPs are associated with tuber starch preparative yield and granule morphology. Eight SNPs are situated close to each other on the chromosome 1 and 19 SNPs-on the chromosome 2, forming two DNA regions-potential QTLs, regulating aspect ratio and roundness of the starch granules. Thirty-seven of 53 SNPs are located in protein-coding regions. There are indications that granule shape may depend on starch phosphorylation processes. The gene, which is known to regulate starch phosphorylation-dephosphorylation, participates in the regulation of a number of morphological traits, rather than one specific trait. Some significant SNPs are associated with membrane and plastid proteins, as well as DNA transcription and binding regulators. Other SNPs are related to low-molecular-weight metabolite synthesis, and may be associated with flavonoid biosynthesis and circadian rhythm-related metabolic processes. The preparative yield of tuber starch is a polygenic trait that is associated with a number of SNPs from various regions and chromosomes in the potato genome.

摘要

背景

有充分文献记载,生马铃薯淀粉的(生物)化学反应能力取决于淀粉颗粒的结晶度、形态以及其他化学和物理性质,而这些性质与基因功能密切相关。马铃薯块茎淀粉的制备产量、直链淀粉/支链淀粉含量以及磷酸化是在遗传水平上研究的与淀粉相关的性状。在本文中,我们使用22K SNP马铃薯芯片进行全基因组关联研究,首次鉴定与淀粉颗粒形态相关的基因组区域,并增加与马铃薯淀粉产量相关的已知基因组位点数量。

方法

从ICG“GenAgro”种质库(俄罗斯新西伯利亚)收获了一组90个马铃薯(L.)品种,获得了90份生块茎淀粉样品,并从块茎表皮分离出DNA样品。通过光学显微镜和后续计算机图像分析评估马铃薯块茎淀粉颗粒的形态。一组15214个可评分的SNP用于全基因组分析。总共发现53个SNP与马铃薯淀粉形态性状(长宽比、圆度、圆形度和第一二元组分)以及淀粉产量相关性状显著相关。

结果

在马铃薯1、2、4、5、6、7、9、11和12号染色体上共鉴定出53个新的SNP;这些SNP与块茎淀粉制备产量和颗粒形态相关。8个SNP在1号染色体上彼此靠近,19个SNP在2号染色体上,形成两个DNA区域——潜在的QTL,调节淀粉颗粒的长宽比和圆度。53个SNP中的37个位于蛋白质编码区域。有迹象表明颗粒形状可能取决于淀粉磷酸化过程。已知调节淀粉磷酸化-去磷酸化的基因参与多种形态性状的调节,而不是一种特定性状。一些显著的SNP与膜和质体蛋白以及DNA转录和结合调节因子相关。其他SNP与低分子量代谢物合成相关,可能与类黄酮生物合成和昼夜节律相关的代谢过程有关。块茎淀粉的制备产量是一个多基因性状,与马铃薯基因组中来自不同区域和染色体的多个SNP相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c14f/7664467/d8253cecd2ef/peerj-08-10286-g001.jpg

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