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Identification and expression analysis of miRNAs and elucidation of their role in salt tolerance in rice varieties susceptible and tolerant to salinity

机译:miRNA的鉴定及表达分析及其在水稻品种耐受性和耐受性盐度中的作用

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Soil salinization is a serious problem for cultivation of rice, as among cereals rice is the most salt sensitive crop, and more than 40% of the total agricultural land amounting to approximately 80 million ha the world over is salt affected. Salinity affects a plant in a varieties of ways, including ion toxicity, osmotic stress and oxidative damage. Since miRNAs occupy the top place in biochemical events determining a trait, understanding their role in salt tolerance is highly desirable, which may allow introduction of the trait in the rice cultivars of choice through biotechnological interventions. High throughput sequencing of sRNAs in the root and shoot tissues of the seedlings of the control and NaCl treated Pokkali, a salt-tolerant rice variety, identified 75 conserved miRNAs and mapped 200 sRNAs to the rice genome as novel miRNAs. Expression of nine novel miRNAs and two conserved miRNAs were confirmed by Northern blotting. Several of both conserved and novel miRNAs that expressed differentially in root and/or shoot tissues targeted transcription factors like AP2/EREBP domain protein, ARF, NAC, MYB, NF-YA, HD-Zip III, TCP and SBP reported to be involved in salt tolerance or in abiotic stress tolerance in general. Most of the novel miRNAs expressed in the salt tolerant wild rice Oryza coarctata , suggesting conservation of miRNAs in taxonomically related species. One of the novel miRNAs, osa-miR12477, also targeted L-ascorbate oxidase ( LAO ), indicating build-up of oxidative stress in the plant upon salt treatment, which was confirmed by DAB staining. Thus, salt tolerance might involve miRNA-mediated regulation of 1) cellular abundance of the hormone signaling components like EREBP and ARF, 2) synthesis of abiotic stress related transcription factors, and 3) antioxidative component like LAO for mitigation of oxidative damage. The study clearly indicated importance of osa-miR12477 regulated expression of LAO in salt tolerance in the plant.
机译:土壤盐渍化是米饭培养的严重问题,因为谷物米是最多的盐敏感作物,占农业总土地的40%以上,世界上的约8000万小时是盐受影响的盐。盐度在各种方式中影响植物,包括离子毒性,渗透压和氧化损伤。由于miRNA占据生化事件中的最高位置,因此理解它们在耐盐性中的作用是非常需要的,这可能允许通过生物技术干预介绍选择的水稻品种中的特征。 SRNA在对照的幼苗的根和芽组织中SRNA的高通量测序和NaCl处理的脱氨基,耐盐性水稻品种,鉴定了75个保守的miRNA,并将200SRNA映射到水稻基因组中作为新的miRNA。 Ninthern印迹证实了九种新型miRNA和两个保守miRNA的表达。鉴于AP2 / EREBP结构域蛋白,ARF,NAC,MYB,NF-YA,HD-ZIP III,TCP和SBP,鉴于AP2 / OREBP域蛋白,ARF,NAC,MYB,NF-YA,TCP和SBP,鉴于差异和/或射击组织靶向转录因子中的几种耐盐耐受性或非生物胁迫耐受性。大多数新型miRNA在盐耐盐野生稻田中表达,暗示在分类有关的物种中的miRNA。其中一种新型miRNA,OSA-MiR12477,也靶向L抗坏血酸氧化酶(LAO),表明盐处理后植物中的氧化应激的积聚,该氧化剂通过DAB染色证实。因此,耐盐性可能涉及miRNA介导的调节1)eREBP和ARF等激素信号传导组分的细胞丰度,2)非生物应激相关转录因子的合成,以及3)如老挝的抗氧化成分,用于减轻氧化损伤。该研究明确表明OSA-MiR12477在植物中耐盐耐盐性的调节表达的重要性。

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