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利用基因标记辅助选择增强品种对籽粒镉积累的基因型效应,稳健鉴定低镉水稻品种。

Robust identification of low-Cd rice varieties by boosting the genotypic effect of grain Cd accumulation in combination with marker-assisted selection.

机构信息

Key Laboratory of Agro-Ecological Processes in Subtropical Region, Institute of Subtropical Agriculture, Chinese Academy of Sciences, Changsha 410125, China.

Agro-Environmental Protection Institute, Ministry of Agriculture and Rural Affairs, Tianjin 300191, China.

出版信息

J Hazard Mater. 2022 Feb 15;424(Pt D):127703. doi: 10.1016/j.jhazmat.2021.127703. Epub 2021 Nov 6.

DOI:10.1016/j.jhazmat.2021.127703
PMID:34799159
Abstract

Rice (Oryza sativa L.), a staple for half of the world's population, usually accumulates high levels of cadmium (Cd) in the grain when planted in the Cd-contaminated paddy fields. Genetic improvements using natural variation of grain-Cd accumulation is the most cost-effective way to mitigate the risk of excess Cd accumulation. However, as a complex trait, grain-Cd accumulation is susceptible to environmental variation, which challenges to characterize the genetic nature and subsequently the stable performance of grain-Cd accumulation. To boost the genetic effect on grain-Cd performance, we established an approach of normalization using the comparative grain-Cd value (CCd) following a contrasting field design. Identification of the genetic locus responsible for CCd variation help us develop a low-grain-Cd variety de novo, named 'Lushansimiao', which had lower grain-Cd levels in a large-scale field test and can produce Cd-safe rice following prolonged irrigations in the field with intermediate levels of Cd pollution. Combined CCd evaluating and low-Cd allelic genotyping, another six varieties were also identified as low-grain-Cd rice. Our study paves the way to efficiently quantify the genetic nature of grain-Cd accumulation in rice, and the stable low-Cd rice varieties will help to mitigate the risk of excess Cd accumulation in rice.

摘要

水稻(Oryza sativa L.)是全球一半人口的主食,当种植在镉污染的稻田中时,通常会在谷物中积累高水平的镉(Cd)。利用谷物中 Cd 积累的自然变异进行遗传改良是减轻 Cd 过度积累风险的最具成本效益的方法。然而,作为一种复杂的性状,谷物中 Cd 的积累容易受到环境变化的影响,这给描述其遗传本质及其随后的稳定性能带来了挑战。为了提高遗传对谷物中 Cd 性能的影响,我们采用了一种对比田间设计,利用比较谷物 Cd 值(CCd)进行归一化的方法。鉴定负责 CCd 变异的遗传基因座有助于我们开发一种新型低谷物 Cd 品种,名为“庐山苗”,该品种在大规模田间试验中 Cd 含量较低,且在中度 Cd 污染的田间进行长时间灌溉后也能生产出 Cd 安全的水稻。结合 CCd 评价和低 Cd 等位基因基因分型,还鉴定出另外六个品种为低谷物 Cd 水稻。我们的研究为有效量化水稻中 Cd 积累的遗传本质铺平了道路,而稳定的低 Cd 水稻品种将有助于减轻水稻中 Cd 过度积累的风险。

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