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氧化还原失衡通过破坏细胞膜完整性阻碍水稻的光合作用,并在淹水条件下诱导程序性细胞死亡。

Redox imbalance impedes photosynthetic activity in rice by disrupting cellular membrane integrity and induces programmed cell death under submergence.

机构信息

Department of Biotechnology, Assam University, Silchar, Assam, India.

Department of Life Science, Central University of South Bihar, Gaya, Bihar, India.

出版信息

Physiol Plant. 2021 Jul;172(3):1764-1778. doi: 10.1111/ppl.13387. Epub 2021 Mar 25.

Abstract

Climate change negatively impacts the global hydrological resources leading to detrimental flood events. Submergence impedes the cellular membrane integrity, consequently affecting the membrane fluidity. Different abiotic stresses influence membrane lipid composition. Therefore, the remodeling of membrane lipids plays a major role in stress adaptation. Submergence-induced membrane lipid peroxidation is well established in plants. However, dynamic changes in lipid composition for regulating submergence tolerance in rice remain so far unexplored. The present study explored the effect of submergence on the lipidomic profile of the Sub1 near-isogenic lines (NILs) of rice, viz. Swarna, and Swarna Sub1 with contrasting submergence tolerance. The study also examined the association of lipidomic alteration with the membrane integrity and submergence tolerance. Submergence caused increased accumulation of reactive oxygen species (ROS), which was significantly higher in Swarna than Swarna Sub1. The lipid profile was also considerably altered under submergence. Following submergence, Swarna exhibited a significant decrease in phospholipid content accompanied by increased lipid peroxidation and electrolyte leakage. Furthermore, the disintegration of the thylakoid membrane resulted in a significant decrease in the chlorophyll content and photosynthesis rate under submergence. Submergence-induced hypoxic condition also promoted starch depletion to fulfill the energy requirement. In contrast, submergence acclimation in Swarna Sub1 was associated with the shift to anaerobic respiration mediated by increased alcohol dehydrogenase (ADH) activity. Effective ROS detoxification in Swarna Sub1 facilitated by increased antioxidant enzyme activities contributed to the submergence tolerance by maintaining membrane integrity and photosynthetic activity. The present study established the direct association of lipid remodeling with membrane integrity, cell viability, and photosynthesis and also devised a crop model to reveal the molecular background of submergence tolerance in plants.

摘要

气候变化对全球水文资源产生负面影响,导致灾难性的洪水事件。淹没会阻碍细胞膜的完整性,从而影响膜的流动性。不同的非生物胁迫会影响膜脂的组成。因此,膜脂的重塑在应激适应中起着重要作用。植物中已经证实了淹没诱导的膜脂过氧化作用。然而,在水稻中,调节耐淹没性的脂质组成的动态变化迄今为止仍未被探索。本研究探讨了淹没对水稻 Sub1 近等基因系(NILs)Swarn 和 Swarna Sub1 的脂质组学谱的影响,这两个系具有不同的耐淹没性。该研究还检查了脂质组学变化与膜完整性和耐淹没性的关联。淹没导致活性氧(ROS)的积累增加,在 Swarna 中比在 Swarna Sub1 中显著更高。脂质谱在淹没下也发生了相当大的改变。淹没后,Swarn 表现出磷脂含量的显著下降,伴随着脂质过氧化和电解质渗漏的增加。此外,类囊体膜的解体导致叶绿素含量和光合作用率在淹没下显著下降。淹没引起的缺氧条件也促进了淀粉的消耗,以满足能量需求。相比之下,Swarn Sub1 中的淹没适应与通过增加醇脱氢酶(ADH)活性介导的无氧呼吸有关。Swarn Sub1 中有效清除 ROS 的能力通过增加抗氧化酶活性来维持膜的完整性和光合作用活性,从而有助于耐淹没性。本研究确立了脂质重塑与膜完整性、细胞活力和光合作用之间的直接关联,并设计了一种作物模型来揭示植物耐淹没性的分子背景。

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