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OsLdh7,一个水稻乳酸脱氢酶,通过 NAD/NADH 调节赋予水稻镉胁迫下的抗逆能力。

OsLdh7, a rice lactate dehydrogenase, confers stress resilience in rice under cadmium stress through NAD/NADH regulation.

机构信息

Plant Stress Biology Group, International Centre for Genetic Engineering and Biotechnology, New Delhi, 110067, India.

Stress Physiology and Molecular Biology Laboratory, School of Life Sciences, Jawaharlal Nehru University, New Delhi, 110067, India.

出版信息

Plant Physiol Biochem. 2024 Oct;215:109009. doi: 10.1016/j.plaphy.2024.109009. Epub 2024 Aug 3.

DOI:10.1016/j.plaphy.2024.109009
PMID:39154420
Abstract

Lactate dehydrogenase (Ldh, EC 1.1.1.27), an oxidoreductase enzyme catalyses the interconversion of pyruvate to L-lactate and vice-versa with concomitant oxidation and reduction of NADH and NAD. The enzyme functions as a ROS sensor and mitigates stress response by maintaining NAD/NADH homeostasis. In this study, we delineated the role of the Ldh enzyme in imparting cadmium stress tolerance in rice. Previously, we identified a putatively active Ldh in rice (OsLdh7) through insilico modelling. Biochemical characterization of the OsLdh7 enzyme revealed it to be optimally active at pH 6.6 in the forward direction and pH 9 in the reverse direction. Overexpression of OsLdh7 in rice cv. IR64, increased tolerance of the transgenic lines to cadmium stress compared to the wild type (WT) at both seedling and reproductive stages. The transgenic lines showed increased enzyme activity in the reverse direction under cadmium stress, attributed to elevated cytosolic pH resulting from increased calcium concentration. This increased NADH content is highly essential for functioning of the ROS scavenging enzymes, RbohD and MPK6. qPCR analysis revealed that the overexpression lines had increased transcript abundance of these genes indicating an effective ROS scavenging mechanism. Additionally, the overexpression lines showed an efficient cadmium sequestration mechanism compared to the WT by increasing the transcript levels of the vacuolar transporters of cadmium as well as total phytochelatin content. Thus, our findings indicated OsLdh7 imparts cadmium stress tolerance in rice through a two-pronged approach by mitigating ROS and sequestering cadmium ions, highlighting its potential for crop improvement programs.

摘要

乳酸脱氢酶(Ldh,EC 1.1.1.27)是一种氧化还原酶,可催化丙酮酸向 L-乳酸的转化,反之亦然,同时伴随着 NADH 和 NAD 的氧化和还原。该酶作为 ROS 传感器发挥作用,并通过维持 NAD/NADH 平衡来减轻应激反应。在这项研究中,我们阐述了 Ldh 酶在赋予水稻耐镉胁迫中的作用。之前,我们通过计算机建模鉴定了水稻中一种假定的活性 Ldh(OsLdh7)。OsLdh7 酶的生化特性表明,它在正向方向上在 pH6.6 时最佳活性,在反向方向上在 pH9 时最佳活性。在水稻 cv.IR64 中过表达 OsLdh7 ,与野生型(WT)相比,在幼苗和生殖阶段,转基因系对镉胁迫的耐受性增加。在镉胁迫下,转基因系在反向方向上的酶活性增加,这归因于钙浓度增加导致的胞质 pH 升高。这种增加的 NADH 含量对于 ROS 清除酶 RbohD 和 MPK6 的功能非常重要。qPCR 分析显示,过表达系这些基因的转录丰度增加,表明存在有效的 ROS 清除机制。此外,与 WT 相比,过表达系通过增加镉的液泡转运体和总植物螯合肽的转录水平,表现出更有效的镉螯合机制。因此,我们的研究结果表明,OsLdh7 通过减轻 ROS 和螯合镉离子的双重作用赋予水稻耐镉胁迫能力,这突出了其在作物改良计划中的潜力。

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