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春小麦根毛长度和密度与产量相关性状及根毛长度相关基因表达模式的关联分析

Association of Root Hair Length and Density with Yield-Related Traits and Expression Patterns of Underpinning Root Hair Length in Spring Wheat.

作者信息

Maqbool Saman, Saeed Fatima, Raza Ali, Rasheed Awais, He Zhonghu

机构信息

Department of Plant Sciences, Quaid-i-Azam University, Islamabad 45320, Pakistan.

Institute of Crop Sciences, Chinese Academy of Agricultural Sciences (CAAS) & CIMMYT-China Office, 12 Zhongguancun South Street, Beijing 100081, China.

出版信息

Plants (Basel). 2022 Aug 29;11(17):2235. doi: 10.3390/plants11172235.

Abstract

Root hairs play an important role in absorbing water and nutrients in crop plants. Here we optimized high-throughput root hair length (RHL) and root hair density (RHD) phenotyping in wheat using a portable Dinolite™ microscope. A collection of 24 century wide spring wheat cultivars released between 1911 and 2016 were phenotyped for RHL and RHD. The results revealed significant variations for both traits with five and six-fold variation for RHL and RHD, respectively. RHL ranged from 1.01 mm to 1.77 mm with an average of 1.39 mm, and RHD ranged from 17.08 mm to 20.8 mm with an average of 19.6 mm. Agronomic and physiological traits collected from five different environments and their best linear unbiased predictions (BLUPs) were correlated with RHL and RHD, and results revealed that relative-water contents (RWC), biomass and grain per spike (GpS) were positively correlated with RHL in both water-limited and well-watered conditions. While RHD was negatively correlated with grain yield (GY) in four environments and their BLUPs. Both RHL and RHD had positive correlation indicating the possibility of simultaneous selection of both phenotypes during wheat breeding. The expression pattern of gene involved in regulation of root hair length was determined in all 24 wheat cultivars based on RNA-seq data, which indicated the differentially higher expression of the A- and D- homeologues of the gene in roots, while B-homeologue was consistently expressed in both leaf and roots. The results were validated by qRT-PCR and the expression of was consistently high in rainfed cultivars such as Chakwal-50, Rawal-87, and Margallah-99. Overall, the new phenotyping method for RHL and RHD along with correlations with morphological and physiological traits in spring wheat cultivars improved our understanding for selection of these phenotypes in wheat breeding.

摘要

根毛在作物吸收水分和养分方面发挥着重要作用。在此,我们使用便携式Dinolite™显微镜优化了小麦高通量根毛长度(RHL)和根毛密度(RHD)表型分析方法。对1911年至2016年间发布的24个世纪广泛种植的春小麦品种进行了RHL和RHD表型分析。结果显示,这两个性状存在显著差异,RHL和RHD的变异分别为五倍和六倍。RHL范围为1.01毫米至1.77毫米,平均为1.39毫米,RHD范围为17.08毫米至20.8毫米,平均为19.6毫米。从五个不同环境收集的农艺和生理性状及其最佳线性无偏预测值(BLUPs)与RHL和RHD相关,结果表明,在水分受限和水分充足条件下,相对含水量(RWC)、生物量和每穗粒数(GpS)与RHL均呈正相关。而在四个环境及其BLUPs中,RHD与籽粒产量(GY)呈负相关。RHL和RHD均呈正相关,表明在小麦育种过程中同时选择这两种表型是可能的。基于RNA测序数据,在所有24个小麦品种中确定了参与根毛长度调控的基因的表达模式,这表明该基因的A和D同源基因在根中差异表达较高,而B同源基因在叶和根中均持续表达。通过qRT-PCR验证了结果,并且在雨养品种如Chakwal-50、Rawal-87和Margallah-99中,该基因的表达一直很高。总体而言,RHL和RHD的新表型分析方法以及与春小麦品种形态和生理性状的相关性,提高了我们对小麦育种中这些表型选择的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c60d/9460385/386854f3a8c3/plants-11-02235-g001.jpg

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