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砷应激相关 F -box(ASRF)基因调控拟南芥砷应激耐受。

Arsenic Stress-Related F-Box (ASRF) gene regulates arsenic stress tolerance in Arabidopsis thaliana.

机构信息

Gus R. Douglass Institute and Department of Biology, West Virginia State University, Institute, WV 25112-1000, USA.

Gus R. Douglass Institute and Department of Biology, West Virginia State University, Institute, WV 25112-1000, USA; Department of Genetic Engineering, SRM Institute of Science and Technology, Chennai 603203, TN, India.

出版信息

J Hazard Mater. 2021 Apr 5;407:124831. doi: 10.1016/j.jhazmat.2020.124831. Epub 2020 Dec 16.

Abstract

Arsenic (As), a non-biodegradable contaminant, is extremely toxic to plants and animals in its inorganic form. As negatively affects plant growth and development, primarily by inducing oxidative stress through redox imbalance. Here we characterized the Arabidopsis F-box protein gene AT2G16220 (Arsenic Stress-Related F-box (ASRF)) that we identified in the genome-wide association study. The asrf mutant seedlings showed high sensitivity to arsenate (As) stress. As significantly affected asrf seedling growth when germinated on or exposed to As-supplemented growth regimes. As stress significantly induced production of reactive oxygen species and proline accumulation in asrf, so the asrf maintained high proline content, possibly for cellular protection and redox homeostasis. Heterozygous seedlings (Col-0 x asrf, F1 progeny) were relatively less affected by As stress than asrf mutant but showed slightly reduced growth compared with the Col-0 wild type, which suggests that the homozygous ASRF locus is important for As stress resistance. Transcriptome analysis involving the mutant and wild type revealed altered phosphate homeostasis in asrf seedlings, which implies that ASRF is required for maintaining phosphate and cellular- homeostasis under excess As. Our findings confirm the roles of ASRF in As stress tolerance in plants, for a novel way to mitigate arsenic stress.

摘要

砷(As)是一种不可生物降解的污染物,以无机形式对动植物具有极强的毒性。As 会对植物的生长和发育产生负面影响,主要是通过氧化还原失衡诱导氧化应激。在这里,我们对拟南芥 F-box 蛋白基因 AT2G16220(砷应激相关 F-box(ASRF))进行了特征描述,该基因是我们在全基因组关联研究中鉴定的。asrf 突变体幼苗对砷酸盐(As)胁迫表现出高度敏感。当在含有 As 的生长条件下萌发或暴露时,As 显著影响 asrf 幼苗的生长。As 胁迫显著诱导 asrf 中活性氧的产生和脯氨酸的积累,因此 asrf 保持高脯氨酸含量,可能是为了细胞保护和氧化还原平衡。杂合子幼苗(Col-0 x asrf,F1 后代)受 As 胁迫的影响比 asrf 突变体相对较小,但与 Col-0 野生型相比,生长略有减少,这表明纯合 ASRF 基因座对 As 胁迫抗性很重要。涉及突变体和野生型的转录组分析表明,asrf 幼苗中磷酸盐稳态发生改变,这意味着 ASRF 在维持过量 As 下的磷酸盐和细胞稳态方面是必需的。我们的研究结果证实了 ASRF 在植物砷胁迫耐受中的作用,为减轻砷胁迫提供了一种新方法。

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