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鉴定水稻中一种新型编码脱镁叶绿酸 a 氧合酶的等位基因。

Characterization of a novel allele encoding pheophorbide a oxygenase in rice.

机构信息

State Key Laboratory of Rice Biology, China National Rice Research Institute , Hangzhou, China.

出版信息

Plant Signal Behav. 2021 Mar 4;16(3):1864606. doi: 10.1080/15592324.2020.1864606. Epub 2020 Dec 28.

Abstract

We identified a () mutant from an indica cultivar Zhongjian100 mutant bank. The red-brown lesions appeared firstly on young seedling leaves, then gradually merged and the leaves completely withered at the late tillering stage. displayed apparent cell death at/around the lesions, accumulation of superoxide anion (O) and disturbed ROS scavenging system, impaired photosynthetic capacity with significantly reduced chlorophyll content. The lesion formation was controlled by a single recessive nuclear gene and induced by natural light as well as mechanical wounding. A single base mutation (A1726T) at the 6th exon of resulted in I576F substitution in the encoding protein, pheophorbide a oxygenase (PAO). Functional complementation could rescue the mutant phenotype and knockout lines exhibited the similar phenotype to . The activity of PAO decreased significantly while the content of PAO substrate, pheophorbide a, increased apparently in . The expression of chlorophyll synthesis/degradation-related genes and the contents of metabolic intermediates were largely changed. Furthermore, the level of chlorophyllide a, the product of chlorophyllase, increased significantly, indicating chlorophyllase might play a role in chlorophyll degradation in rice. Our results suggested that the I576F substitution disrupted PAO function, leading to O accumulation and chlorophyll degradation breakdown in rice.

摘要

我们从籼稻品种 Zhongjian100 突变体库中鉴定到一个 () 突变体。突变体的幼苗叶片首先出现红棕色病斑,然后逐渐融合,分蘖后期叶片完全枯萎。在病斑处/周围, 表现出明显的细胞死亡、超氧阴离子(O)的积累和 ROS 清除系统紊乱、光合能力受损,叶绿素含量显著降低。病斑的形成受单个隐性核基因控制,自然光和机械损伤均可诱导病斑的形成。 第 6 外显子的单个碱基突变(A1726T)导致编码蛋白(脱镁叶绿酸 a 加氧酶,PAO)中 I576F 取代。功能互补可挽救突变体表型,敲除系表现出与 类似的表型。PAO 活性显著降低,而 PAO 底物脱镁叶绿酸 a 的含量明显增加。叶绿素合成/降解相关基因的表达和代谢中间产物的含量发生了很大变化。此外,叶绿素酶的产物叶绿醇 a 的水平显著增加,表明叶绿素酶可能在水稻叶绿素降解中发挥作用。我们的研究结果表明,I576F 取代破坏了 PAO 的功能,导致水稻中 O 的积累和叶绿素的降解破坏。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4549/7889113/0ab21f579560/KPSB_A_1864606_F0001_OC.jpg

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