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砷-硅联合处理水稻(Oryza sativa L.)种子通过调节 Lsi-1、Lsi-2、Lsi-6 和养分转运蛋白基因影响矿质养分吸收和生化反应。

Arsenic-silicon priming of rice (Oryza sativa L.) seeds influence mineral nutrient uptake and biochemical responses through modulation of Lsi-1, Lsi-2, Lsi-6 and nutrient transporter genes.

机构信息

Ecotoxicogenomics lab, Department of Biotechnology, Jamia Millia Islamia, New Delhi, 25, India.

出版信息

Sci Rep. 2018 Jul 9;8(1):10301. doi: 10.1038/s41598-018-28712-3.

Abstract

Silicon (Si) has attracted substantial attention because of its beneficial effect on plants during abiotic stress, including stress due to arsenic (As). We here report that priming rice seeds with As and Si together, helped the plant to sustain As stress for longer period. We examined Si induced tolerance against As in rice seedlings at short (7 d) and long (15 d) exposure periods under As and Si treatments since their germinating stage. Results showed that the expression of As transporter genes OsLsi1, OsLsi2 and OsLsi6 was more in As + Si treatment as compared to control and Si treatment, but lower than As alone treatments. The gene expression was maximum in shoot and root at 15 d over 7 d under both As and As + Si treatment, which ultimately leads to decreased accumulation of As in the presence of Si. Morphological characters, antioxidant capacity, oxidative stress marker (MDA), stress modulators (cysteine, proline), and enzymes related with ascorbate-glutathione cycle significantly altered during As + Si treatment at both exposure periods. Further, macro and micronutrient contents also improved with Si, and differentially regulated 12 key genes (NR, NiR, AMT, NR, GS, GOGAT, PT, PHT1, PHT2, APase, KAT1 and HAK10) related with NPK transport and utilization. Results highlight that Si priming of seeds along with As influences growth positively of As-stressed rice.

摘要

硅(Si)因其在非生物胁迫下对植物的有益作用而受到广泛关注,包括砷(As)胁迫。我们在这里报告,在砷和硅共同处理的情况下,对水稻种子进行预处理有助于植物更长时间地承受砷胁迫。我们在砷和硅处理下,从发芽阶段开始,检查了短时间(7 天)和长时间(15 天)暴露期间硅对水稻幼苗的砷诱导耐性。结果表明,与对照和硅处理相比,砷+硅处理中砷转运基因 OsLsi1、OsLsi2 和 OsLsi6 的表达更高,但低于单独砷处理。在砷和砷+硅处理下,15 天的基因表达均高于 7 天,最终导致硅存在时砷的积累减少。在砷+硅处理下,形态特征、抗氧化能力、氧化应激标志物(MDA)、应激调节剂(半胱氨酸、脯氨酸)和与抗坏血酸-谷胱甘肽循环相关的酶在两个暴露期均发生显著变化。此外,硅还改善了大量和微量营养素的含量,并差异化调控了 12 个关键基因(NR、NiR、AMT、NR、GS、GOGAT、PT、PHT1、PHT2、APase、KAT1 和 HAK10),这些基因与 NPK 的运输和利用有关。结果表明,种子的硅预处理与砷共同影响砷胁迫下水稻的生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b9dd/6037781/11bd73f69bcf/41598_2018_28712_Fig1_HTML.jpg

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