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共线性细胞壁数量性状基因座作为通用育种工具:目标植物物种中生物质质量基因座的种内等位基因变异性和可预测性

Syntenic Cell Wall QTLs as Versatile Breeding Tools: Intraspecific Allelic Variability and Predictability of Biomass Quality Loci in Target Plant Species.

作者信息

Pancaldi Francesco, van Loo Eibertus N, Senio Sylwia, Al Hassan Mohamad, van der Cruijsen Kasper, Paulo Maria-João, Dolstra Oene, Schranz M Eric, Trindade Luisa M

机构信息

Plant Breeding, Wageningen University & Research, Droevendaalsesteeg 1, 6708 PB Wageningen, The Netherlands.

Biometris, Wageningen University & Research, Droevendaalsesteeg 1, 6708 PB Wageningen, The Netherlands.

出版信息

Plants (Basel). 2023 Feb 9;12(4):779. doi: 10.3390/plants12040779.

Abstract

Syntenic cell wall QTLs (SQTLs) can identify genetic determinants of biomass traits in understudied species based on results from model crops. However, their effective use in plant breeding requires SQTLs to display intraspecific allelic variability and to predict causative loci in other populations/species than the ones used for SQTLs identification. In this study, genome assemblies from different accessions of Arabidopsis, rapeseed, tomato, rice, Brachypodium and maize were used to evaluate the intraspecific variability of SQTLs. In parallel, a genome-wide association study (GWAS) on cell wall quality traits was performed in miscanthus to verify the colocalization between GWAS loci and miscanthus SQTLs. Finally, an analogous approach was applied on a set of switchgrass cell wall QTLs retrieved from the literature. These analyses revealed large SQTLs intraspecific genetic variability, ranging from presence-absence gene variation to SNPs/INDELs and changes in coded proteins. Cell wall genes displaying gene dosage regulation, such as PAL and CAD, displayed presence-absence variation in Brachypodium and rapeseed, while protein INDELs were detected for the Brachypodium homologs of the rice brittle culm-like 8 locus, which may likely impact cell wall quality. Furthermore, SQTLs significantly colocalized with the miscanthus and switchgrass QTLs, with relevant cell wall genes being retained in colocalizing regions. Overall, SQTLs are useful tools to screen germplasm for relevant genes and alleles to improve biomass quality and can increase the efficiency of plant breeding in understudied biomass crops.

摘要

共线细胞壁数量性状基因座(SQTLs)可以根据模式作物的研究结果,鉴定未充分研究物种中生物量性状的遗传决定因素。然而,它们在植物育种中的有效应用要求SQTLs表现出种内等位基因变异性,并能预测除用于鉴定SQTLs的群体/物种之外的其他群体/物种中的致病基因座。在本研究中,使用了来自拟南芥、油菜、番茄、水稻、短柄草和玉米不同种质的基因组组装数据,来评估SQTLs的种内变异性。同时,在芒草中进行了细胞壁质量性状的全基因组关联研究(GWAS),以验证GWAS基因座与芒草SQTLs之间的共定位。最后,对从文献中检索到的一组柳枝稷细胞壁数量性状基因座应用了类似的方法。这些分析揭示了SQTLs种内存在较大的遗传变异性,范围从基因的有无变异到单核苷酸多态性/插入缺失(SNPs/INDELs)以及编码蛋白质的变化。显示基因剂量调控的细胞壁基因,如苯丙氨酸解氨酶(PAL)和肉桂醇脱氢酶(CAD),在短柄草和油菜中表现出基因的有无变异,而在水稻脆秆样8基因座的短柄草同源基因中检测到蛋白质插入缺失,这可能会影响细胞壁质量。此外,SQTLs与芒草和柳枝稷的数量性状基因座显著共定位,相关的细胞壁基因保留在共定位区域。总体而言,SQTLs是筛选种质中相关基因和等位基因以提高生物量质量的有用工具,并且可以提高未充分研究的生物质作物的植物育种效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c959/9961111/de3d5ec1be0d/plants-12-00779-g001.jpg

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