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Gene identification and transcriptome analysis of low cadmium accumulation rice mutant ( lcd1 ) in response to cadmium stress using MutMap and RNA-seq

机译:使用Mutmap和RNA-SEQ响应镉胁迫的低镉积聚水稻突变体(LCD1)的基因鉴定及转录组分析

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Cadmium (Cd) is a widespread toxic heavy metal pollutant in agricultural soil, and Cd accumulation in rice grains is a major intake source of Cd for Asian populations that adversely affect human health. However, the molecular mechanism underlying Cd uptake, translocation and accumulation has not been fully understood in rice plants. In this study, a mutant displaying extremely low Cd accumulation (lcd1) in rice plant and grain was generated by EMS mutagenesis from indica rice cultivar 9311 seeds. The candidate SNPs associated with low Cd accumulation phenotype in the lcd1 mutant were identified by MutMap and the transcriptome changes between lcd1 and WT under Cd exposure were analyzed by RNA-seq. The lcd1 mutant had lower Cd uptake and accumulation in rice root and shoot, as well as less growth inhibition compared with WT in the presence of 5?μM Cd. Genetic analysis showed that lcd1 was a single locus recessive mutation. The SNP responsible for low Cd accumulation in the lcd1 mutant located at position 8,887,787 on chromosome 7, corresponding to the seventh exon of OsNRAMP5. This SNP led to a Pro236Leu amino acid substitution in the highly conserved region of OsNRAMP5 in the lcd1 mutant. A total of 1208 genes were differentially expressed between lcd1 and WT roots under Cd exposure, and DEGs were enriched in transmembrane transport process GO term. Increased OsHMA3 expression probably adds to the effect of OsNRAMP5 mutation to account for the significant decreases in Cd accumulation in rice plant and grain of the lcd1 mutant. An extremely low Cd mutant lcd1 was isolated and identified using MutMap and RNA-seq. A Pro236Leu amino acid substitution in the highly conserved region of OsNRAMP5 is likely responsible for low Cd accumulation in the lcd1 mutant. This work provides more insight into the mechanism of Cd uptake and accumulation in rice, and will be helpful for developing low Cd accumulation rice by marker-assisted breeding.
机译:镉(CD)是农业土壤中广泛的有毒重金属污染物,稻粒中的CD积累是亚洲群体的主要摄入来源,对人类健康产生不良影响。然而,在水稻植物中尚未完全理解CD吸收,易位和积累的分子机制。在本研究中,通过籼稻品种9311种子的EMS诱变产生稻草和谷物中显示极低的CD积聚(LCD1)的突变体。通过mutmap鉴定了与LCD1突变体中低CD累积表型相关的候选SNP,并通过RNA-SEQ分析CD暴露下LCD1和WT之间的转录组变化。 LCD1突变体具有较低的CD吸收和稻米和射击积聚,以及在5Ω·℃的存在下与WT相比的生长抑制较少。遗传分析表明,LCD1是单个基因座隐性突变。 LCD1突变体中负责低CD累积的SNP,位于染色体7上的位置8,887,787,对应于Osnramp5的第七外显子。该SNP导致LCD1突变体中高度保守区域的Pro236Leu氨基酸取代。在LCD1和WT根之间,在CD暴露下,总共1208个基因差异表达,并且在跨膜运输过程中富集了DEG。增加的oshma3表达可能增加了osnramp5突变的效果,以考虑水稻植物和LCD1突变体的谷粒CD积累的显着降低。分离出极低的Cd突变体LCD1并使用mutmap和RNA-SEQ鉴定。在奥纳拉姆5的高度保守区域中的Pro236Leu氨基酸取代可能对LCD1突变体中的低CD积累负责。这项工作提供了更多地洞察水稻CD吸收和积聚机制,并通过标记辅助育种,有助于开发低CD积分水稻。

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