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Comprehensive Evaluation and Analysis of the Mechanism of Cold Tolerance Based on the Transcriptome of Weedy Rice Seedlings

机译:基于杂草稻幼苗转录组的耐寒耐寒机理综合评价与分析

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In this study, the cold-tolerance capacity of 133 varieties of weedy rice was evaluated based on the comprehensive evaluation index D, with Kongyu 131 used as a cold-tolerant control. A total of 39.8% of the 133 varieties were considered ‘strong’, indicating that weedy rice populations indeed have relatively strong cold-tolerance capacity as a whole, and the robust cold-tolerant varieties WR29 and WR157 were identified. Regression analysis showed that the metrics including the nitrogen recovery index, superoxide dismutase (SOD) content and malondialdehyde (MDA) content correlated significantly ( P ??0.05) with cold tolerance and could be used as indicators of cold tolerance. On the basis of a transcriptome analysis of WR157, a robust cold-tolerant variety identified in this study, a total of 4645 putative DEGs were identified in treated groups compared to the control groups, with 2123 upregulated DEGs and 2522 downregulated DEGs. All upregulated DEGs were enriched on 1388 terms, all downregulated DEGs were enriched on 1566 terms; 911 of the 2123 upregulated DEGs fell into 98 KEGG categories and 1103 of the 2522 downregulated DEGs were in 115 categories. Further analysis showed that GO:0019740 and GO:0006808 are involved in nitrogen utilization; GO:0009269 and GO:0009414 are related to the stress response; and GO:0016491 and GO:0016614 are related to oxidoreductase activity. Background Weedy rice ( Oryza ) is a related pest species of cultivated rice ( Oryza sativa L.) that has strong abiotic stress resistance; however, the comprehensive mechanism governing its cold tolerance is poorly understood. Conclusion Our comprehensive evaluation based on five morphological indices and nine physiological indicators revealed outstanding levels of cold-tolerance capacity among weedy rice varieties from different regions and revealed some terms related to cold tolerance via transcriptome analysis. Our results underscored the reliable evaluation methods for additional cold tolerance studies and revealed several genes related to cold tolerance, which will help researchers breed cultivated rice varieties to increase their cold-tolerance capacity. These traits have the ability to increase seedling survival rate and growth, as well as future yields.
机译:在这项研究中,基于综合评估指标D评估了133种杂草米的冷耐耐热能力,用作耐冷耐冷控制。总共39.8%的133个品种被认为是“强烈”,表明杂草稻种群确实具有整体具有相对强烈的冷耐寒能力,并且鉴定了鲁棒耐寒品种WR29和WR157。回归分析表明,包括氮恢复指数,超氧化物歧化酶(SOD)含量和丙二醛(MDA)含量的度量显着相关(p≤≤0.05),可用作耐冷耐耐寒性指标。基于WR157的转录组分析,本研究中鉴定了一种稳健的耐冷耐热品种,与对照组相比,在处理基团中鉴定了4645个推定的诱导的诱导的DEG,2123个上调的次数和2522个下调的次数。所有上调的可富集在1388次富集,所有下调的可在1566次富集;在2123上调的DEG中的911中落入了98 kegg类别,2522个下调的Degs中的1103个分类为115个类别。进一步的分析表明,GO:0019740,GO:0006808涉及氮利用; GO:0009269和GO:0009414与压力响应有关;然后GO:0016491和GO:0016614与氧化还原酶活性有关。背景杂草米(Oryza)是一种相关的植物栽培水稻(Oryza Sativa L.)的相关害虫抗性抗性;然而,控制其耐寒耐性的综合机制很差。结论我们基于五个形态指数和九个生理指标的综合评价揭示了不同地区的杂草稻品种的良好耐寒能力水平,并揭示了通过转录组分析的一些与耐寒耐药相关的术语。我们的结果强调了额外的耐寒性研究的可靠评价方法,并揭示了几种与抗耐寒性有关的基因,这将有助于研究人员培养种植水稻品种以提高其冷耐寒能力。这些特征具有提高幼苗生存率和增长以及未来产量的能力。

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