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首页> 外文期刊>Plant physiology >The Arabidopsis Class III Peroxidase AtPRX71 Negatively Regulates Growth under Physiological Conditions and in Response to Cell Wall Damage
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The Arabidopsis Class III Peroxidase AtPRX71 Negatively Regulates Growth under Physiological Conditions and in Response to Cell Wall Damage

机译:拟南芥三类过氧化物酶AtPRX71负调节生理条件下和对细胞壁损伤的响应的增长。

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The structure of the cell wall has a major impact on plant growth and development, and alteration of cell wall structural components is often detrimental to biomass production. However, the molecular mechanisms responsible for these negative effects are largely unknown. Arabidopsis (Arabidopsis thaliana) plants with altered pectin composition because of either the expression of the Aspergillus niger polygalacturonase II (AnPGII; 35S: AnPGII plants) or a mutation in the QUASIMODO2 (QUA2) gene that encodes a putative pectin methyltransferase (qua2-1 plants), display severe growth defects. Here, we show that expression of Arabidopsis PEROXIDASE71 (AtPRX71), encoding a class III peroxidase, strongly increases in 35S: AnPGII and qua2-1 plants as well as in response to treatments with the cellulose synthase inhibitor isoxaben, which also impairs cell wall integrity. Analysis of atprx71 loss-of-function mutants and plants overexpressing AtPRX71 indicates that this gene negatively influences Arabidopsis growth at different stages of development, likely limiting cell expansion. The atprx71-1 mutation partially suppresses the dwarf phenotype of qua2-1, suggesting that AtPRX71 contributes to the growth defects observed in plants undergoing cell wall damage. Furthermore, AtPRX71 seems to promote the production of reactive oxygen species in qua2-1 plants as well as plants treated with isoxaben. We propose that AtPRX71 contributes to strengthen cell walls, therefore restricting cell expansion, during normal growth and in response to cell wall damage.
机译:细胞壁的结构对植物的生长和发育具有重大影响,并且细胞壁结构成分的改变通常不利于生物质的产生。但是,造成这些负面影响的分子机制在很大程度上是未知的。由于表达了黑曲霉多半乳糖醛酸酶II(AnPGII; 35S:AnPGII植物)的表达或编码假定果胶甲基转移酶的QUASIMODO2(QUA2)基因的突变而导致果胶组成发生改变的拟南芥(Arabidopsis thaliana)植物),显示出严重的生长缺陷。在这里,我们显示了编码III类过氧化物酶的拟南芥PEROXIDASE71(AtPRX71)的表达在35S:AnPGII和qua2-1植物中强烈增加,并且响应于纤维素合酶抑制剂异恶草素的处理,这也损害了细胞壁的完整性。对atprx71功能丧失突变体和过表达AtPRX71的植物的分析表明,该基因在发育的不同阶段会对拟南芥的生长产生负面影响,可能限制了细胞的扩增。 atprx71-1突变部分抑制了qua2-1的矮表型,表明AtPRX71导致了在遭受细胞壁损伤的植物中观察到的生长缺陷。此外,AtPRX71似乎能促进qua2-1植物以及用异恶草素处理过的植物中活性氧的产生。我们建议AtPRX71有助于加强细胞壁,因此在正常生长过程中以及对细胞壁损伤的反应中限制了细胞的扩增。

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