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MiR398 and plant stress responses 总被引:2,自引:0,他引:2
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MicroRNAs and their diverse functions in plants 总被引:1,自引:0,他引:1
Sun G 《Plant molecular biology》2012,80(1):17-36
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植物逆境miRNA研究进展 总被引:3,自引:0,他引:3
包括生物和非生物在内的多种逆境胁迫是植物正常生长和作物产量提高的重要限制性因素。植物在长期的进化过程中, 通过诱导表达某些抵御或防卫途径的关键基因来实现对胁迫的响应。研究表明, 逆境胁迫不仅会诱导植物蛋白质编码基因的表达, 也会诱导一些非蛋白质编码基因的表达, 这类非蛋白质编码基因的表达产物在植物的生长、发育和应对逆境胁迫等过程中起到重要的调控作用。miRNA(小分子RNA)就是这类非蛋白质编码基因产物中的重要类群, 研究发现, 多种逆境均会诱导miRNA的产生, 其作用是通过引导目的基因mRNA的降解和阻止翻译过程来调控靶基因, 最终通过形态或生理上的变化达到对逆境的适应。文章主要对植物逆境胁迫下miRNA的研究, 特别是逆境胁迫诱导miRNA的产生、靶基因调控以及miRNA在植物适应逆境胁迫过程中的作用进行了综述, 同时, 文章还对在逆境胁迫下植物miRNA的研究方法进行了初步的探讨。 相似文献
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MicroRNAs and new biotechnological tools for its modulation and improving stress tolerance in plants
Marcos Fernando Basso Paulo Cavalcanti Gomes Ferreira Adilson Kenji Kobayashi Frank G. Harmon Alexandre Lima Nepomuceno Hugo Bruno Correa Molinari Maria Fatima Grossi‐de‐Sa 《Plant biotechnology journal》2019,17(8):1482-1500
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植物体内调控miRNA合成与功能的机制研究进展 总被引:2,自引:0,他引:2
microRNA(miRNA)能够在转录后水平通过剪切或抑制翻译对靶mRNA进行调节,并且广泛参与植物的生长发育、生物胁迫和非生物胁迫等过程,因此引起了众多研究者的关注。随着对miRNA研究的深入,人们发现miRNA从转录到转录后成熟再到行使功能的过程中,会受到很多因子的调控。这些因子可以是蛋白质、核酸序列、基因、甚至miRNA本身,由于这些因子的参与,使得miRNA调节的生物学过程更具复杂性和灵活性。本文从转录、加工、活性调节和反馈调控等层次综述了近年来调控植物miRNA合成与功能方面取得的进展,以期为miRNA调控机制的研究提供理论基础和新思路。 相似文献
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MicroRNAs (miRNAs) are a specialized class of small silencing RNAs that regulate gene expression in eukaryotes. In plants,
miRNAs negatively regulate target mRNAs containing a highly complementary sequence by either mRNA cleavage or translational
repression. As a model plant to study fleshy fruit ripening, miRNA studies in tomato have made great progress recently. MiRNAs
were predicted to be involved in nearly all biological processes in tomato, particularly development, differentiation, and
biotic and abiotic stress responses. Surprisingly, several miRNAs were verified to be involved in tomato fruit ripening and
senescence. Recent studies suggest that miRNAs are related to host-virus interactions, which raises the possibility that miRNAs
can be used as diagnostic markers for response to virus infection in tomato plants. In this review, we summarize our current
knowledge systematically and advance future directions for miRNA research in tomato. 相似文献
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Small, non-coding RNAs are a distinct class of regulatory RNAs in plants and animals that control a variety of biological processes. In plants, several classes of small RNAs with specific sizes and dedicated functions have evolved through a series of pathways. The major classes of small RNAs include microRNAs (miRNAs) and small interfering RNAs (siRNAs), which differ in their biogenesis. miRNAs control the expression of cognate target genes by binding to reverse complementary sequences, resulting in cleavage or translational inhibition of the target RNAs. siRNAs have a similar structure, function, and biogenesis as miRNAs but are derived from long double-stranded RNAs and can often direct DNA methylation at target sequences. Besides their roles in growth and development and maintenance of genome integrity, small RNAs are also important components in plant stress responses. One way in which plants respond to environmental stress is by modifying their gene expression through the activity of small RNAs. Thus, understanding how small RNAs regulate gene expression will enable researchers to explore the role of small RNAs in biotic and abiotic stress responses. This review focuses on the regulatory roles of plant small RNAs in the adaptive response to stresses. This article is part of a Special Issue entitled: Plant gene regulation in response to abiotic stress. 相似文献
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Seventy-five previously known plant microRNAs (miRNAs) were classified into 14 families according to their gene sequence identity. A total of 18,694 plant expressed sequence tags (EST) were found in the GenBank EST databases by comparing all previously known Arabidopsis miRNAs to GenBank‘s plant EST databases with BLAST algorithms. After removing the EST sequences with high numbers (more than 2) of mismatched nucleotides, a total of 812 EST contigs were identified. After predicting and scoring the RNA secondary structure of the 812 EST sequences using mFold software, 338 new potential miRNAs were identified in 60 plant species, miRNAs are widespread. Some microRNAsmay highly conserve in the plant kingdom, and they may have the same ancestor in very early evolution. There is no nucleotide substitution in most miRNAs among many plant species. Some of the new identified potential miRNAs may be induced and regulated by environmental biotic and abiotic stresses. Some may be preferentially expressed in specific tissues, and are regulated by developmental switching. These findings suggest that EST analysis is a good alternative strategy for identifying new miRNA candidates, their targets, and other genes. A large number of miRNAs exist in different plant species and play important roles in plant developmental switching and plant responses to environmental abiotic and biotic stresses as well as signal transduction. Environmental stresses and developmental switching may be the signals for synthesis and regulation of miRNAs in plants. A model for miRNA induction and expression, and gene regulation by miRNA is hypothesized. 相似文献
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miR398在植物逆境胁迫应答中的作用 总被引:5,自引:0,他引:5
MicroRNA (miRNA)是一类新型的调控基因表达的小分子RNA, 它作为基因表达的负调控因子, 在转录后水平调节靶基因的表达。miRNA参与调控植物的生长发育, 并在多种非生物与生物胁迫响应中发挥重要作用。miR398是第一个被报道的受氧化胁迫负调控的miRNA。它通过负调控其靶基因Cu/Zn过氧化物歧化酶(Cu/Zn-superoxide dismutase, CSD)的表达, 在多种逆境胁迫响应中扮演重要角色, 如调节铜代谢平衡, 应答重金属、蔗糖、臭氧等非生物胁迫, 以及参与应答生物胁迫等。文章综述了miR398在多种逆境胁迫响应中重要的调节作用及miR398自身的转录调控。 相似文献
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