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Identification and characterization of drought responsive miRNAs in a drought tolerant upland rice cultivar KMJ 1-12-3

机译:干旱耐旱性旱稻水稻品种KMJ 1-12-3中干旱响应米兰菌的鉴定与表征

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Shortfall of rain that creates drought like situation in non-irrigated agriculture system often limits rice production, necessitating introduction of drought tolerance trait into the cultivar of interest. The mechanism governing drought tolerance is, however, largely unknown, particularly the involvement of miRNAs, the master regulators of biochemical events. In this regard, response study on a drought tolerant rice variety KMJ 1-12-3 to 20% PEG (osmolality- 315 mOsm/kg) as drought stress revealed significant changes in abundance of several conserved miRNAs targeting transcription factors like homeodomain-leucine zipper, MARS box family protein, C2H2 zinc finger protein and Myb, well known for their importance in drought tolerance in plants. The response study also revealed significant PEG-induced decrease in abundance of the miRNAs targeting cyclin A, cyclin-dependent kinase, guanine nucleotide exchange factor, GTPase-activating protein, 1-aminocyclopmpane-1-arboxylic acid oxidase and indole-3-acetic beta-glucosyl transferase indicating miRNA-regulated role of the cell cycle regulators, G-protein signalling and the plant hormones ethylene and IAA in drought tolerance in plants. The study confirmed the existence of four novel miRNAs, including osa-miR12470, osa-miR12471, osa-miR12472 and osa-miR12473, and the targets of three of them could be successfully validated. The PEG-induced decrease in abundance of the novel miRNAs osa-miR12470 and osa-miR12473 targeting RNA dependent RNA polymerase and equilibrative nucleoside transporter, respectively suggested an overall increase in both degradation and synthesis of nucleic acids in plants challenged with drought stress. The drought-responsive miRNAs identified in the study may be proved useful in introducing the trait in the rice cultivars of choice by manipulation of their cellular abundance.
机译:在非灌溉农业系统中造成干旱的雨水的缺点往往限制水稻生产,需要引入耐旱性耐受耐受性。然而,治疗耐旱的机制在很大程度上是未知的,特别是miRNA的参与,生化事件的大师监管机构。在这方面,随着干旱胁迫的抗旱水稻品种KMJ 1-12-3至20%PEG(Osmolality-315 MOSM / kg)的反应研究揭示了几种保守的miRNA靶向转录因子等几个植物亮氨酸拉链的显着变化,火星盒家庭蛋白质,C2H2锌手指蛋白和MYB,众所周知,在植物中的耐旱性中,众所周知。响应研究还揭示了靶向细胞周期蛋白A,细胞周期蛋白依赖性激酶,鸟嘌呤核苷酸交换因子,GTP酶 - 活化蛋白,1-氨基环戊烷-1-吲哚-3-乙酸酯和吲哚-3-乙糖蛋白和吲哚-3-乙酸酯和吲哚-3-乙酸酯和吲哚-3-乙糖β -Glucosyl转移酶表明细胞周期调节剂,G-蛋白信号传导和植物激素乙烯和IAA在植物中的植物激素乙烯和IAA的作用。该研究证实存在四种新的miRNA,包括OSA-MiR12470,OSA-MiR12471,OSA-MiR12472和OSA-MIR12473,以及其中三个的目标可以成功验证。靶向RNA依赖性RNA聚合酶和平衡核苷转运蛋白靶向RNA依赖性RNA聚合酶和平衡核苷转运蛋白的PEG诱导的降低分别表明植物中核酸的劣化和合成核酸的总体增加。可以证明在该研究中鉴定的干旱响应的miRNA可用于通过操纵其细胞丰度来引入选择的水稻品种的特征。

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