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miR397b-LAC2 模块通过协调拟南芥根系木质化和铜稳态来调节镉胁迫反应。

miR397b-LAC2 module regulates cadmium stress response by coordinating root lignification and copper homeostasis in Arabidopsis thaliana.

机构信息

CSIR-National Botanical Research Institute, Council of Scientific and Industrial Research (CSIR-NBRI), Rana Pratap Marg, Lucknow 226001, India; CSIR, Central Institute of Medicinal and Aromatic Plants (CSIR-CIMAP), P.O. CIMAP, Near Kukrail Picnic Spot, Lucknow 226 015, India.

Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, India; CSIR, Central Institute of Medicinal and Aromatic Plants (CSIR-CIMAP), P.O. CIMAP, Near Kukrail Picnic Spot, Lucknow 226 015, India.

出版信息

J Hazard Mater. 2024 Mar 5;465:133100. doi: 10.1016/j.jhazmat.2023.133100. Epub 2023 Nov 28.

Abstract

Non-essential heavy metal cadmium (Cd) is toxic to plants and animals. Cadmium affects plant photosynthesis, respiration, and causes water imbalance and may lead to plant death. Cadmium induces toxicity by interfering with the essential metal copper (Cu) homeostasis, which affects plant nutrition. Though root lignin biosynthesis is positively regulated by Cd stress, the underlying mechanisms promoting lignin accumulation and controlling Cd-induced Cu limitation responses are unclear. Here, we elucidated the role of Cu-responsive microRNA (miR397b) in Arabidopsis thaliana plants for Cd stress by targeting the LACCASE2 (LAC2) gene. This study demonstrated the fundamental mechanism of miR397b-mediated Cd stress response by enhancing the lignin content in root tissues. We developed miR397b over-expressing plants, which showed considerable Cd stress tolerance. Plants with knockdown function of LAC2 also showed significant tolerance to Cd stress. miR397b overexpressing and lac2 mutant plants showed root reduction, higher biomass and chlorophyll content, and significantly lower Reactive Oxygen Species (ROS). This study demonstrated the miR397b-mediated Cd stress response in Arabidopsis by enhancing the lignin content in root tissues. We conclude that modulation in miR397b can be potentially used for improving plants for Cd tolerance and Cu homeostasis.

摘要

非必需重金属镉(Cd)对动植物都具有毒性。镉会影响植物的光合作用和呼吸作用,导致水分失衡,并可能导致植物死亡。镉通过干扰必需金属铜(Cu)的稳态来诱导毒性,从而影响植物的营养。尽管根木质素生物合成受到 Cd 胁迫的正向调控,但促进木质素积累和控制 Cd 诱导的 Cu 限制反应的潜在机制尚不清楚。在这里,我们通过靶向 LACCASE2(LAC2)基因,阐明了 Cu 响应 microRNA(miR397b)在拟南芥植物中对 Cd 胁迫的作用。本研究通过增强根组织中的木质素含量,阐明了 miR397b 介导的 Cd 胁迫反应的基本机制。我们开发了 miR397b 过表达植物,它们表现出相当的 Cd 胁迫耐受性。LAC2 功能敲低的植物也对 Cd 胁迫表现出显著的耐受性。miR397b 过表达和 lac2 突变体植物表现出根减少、生物量和叶绿素含量增加以及活性氧(ROS)显著降低。本研究通过增强根组织中的木质素含量,阐明了 miR397b 介导的 Cd 胁迫反应。我们得出结论,miR397b 的调节可能可用于提高植物对 Cd 的耐受性和 Cu 的稳态。

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