首页> 美国卫生研究院文献>Journal of Experimental Botany >Polyphenol oxidases in Physcomitrella: functional PPO1 knockout modulates cytokinin-dependent developmentin the moss Physcomitrella patens
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Polyphenol oxidases in Physcomitrella: functional PPO1 knockout modulates cytokinin-dependent developmentin the moss Physcomitrella patens

机译:Physcomitrella中的多酚氧化酶:功能性PPO1敲除调节苔藓Physcomitrella patens中细胞分裂素依赖性的发育

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摘要

Polyphenol oxidases (PPOs) are copper-binding enzymes of the plant secondary metabolism that oxidize polyphenols to quinones. Although PPOs are nearly ubiquitous in seed plants, knowledge on their evolution and function in other plant groups is missing. This study reports on the PPO gene family in the moss Physcomitrella patens (Hedw.) B.S.G. asan example for an early divergent plant. The P. patens PPO multigene family comprises 13 paralogues. Phylogenetic analyses suggest that plant PPOs evolved with the colonization of land and that PPO duplications within the monophyletic P. patens paralogue clade occurred after the separation of the moss and seed plant lineages. PPO functionality was demonstrated for recombinant PPO6. P. patens was analysed for phenolic compounds and six substances were detected intracellularly by LC-MS analysis: 4-hydroxybenzoic acid, p-cumaric acid, protocatechuic acid, salicylic acid, caffeic acid, and an ester of caffeic acid. Targeted PPO1 knockout (d|ppo1) plants were generated and plants lacking PPO1 exhibited only ~30% of the wild-type PPO activity in the culture medium, thus suggesting extracellular localization of PPO1, which is in contrast to the mostly plastidic PPO localization in seed plants. Further, d|ppo1 lines formed significantly more gametophores with a reduced areal plant size, which could be related to an increase of endogenously produced cytokinins and indicates an impact of PPO1 on plant development. d|ppo1 plants were less tolerant towards applied 4-methylcatechol compared to the wild type, which suggests a role of extracellular PPO1 in establishing appropriate conditions by the removal of inhibitory extracellular phenolic compounds.
机译:多酚氧化酶(PPO)是植物次生代谢的铜结合酶,可将多酚氧化为醌。尽管PPO在种子植物中几乎无处不在,但是缺少有关其在其他植物群中的进化和功能的知识。这项研究报告了苔藓小立碗藓(Hedw。)B.S.G.中的PPO基因家族。作为早期发散植物的一个例子。 P.patens PPO多基因家族包含13个旁系同源物。系统发育分析表明,植物PPO随土地定殖而进化,并且在分离苔藓和种子植物谱系之后,在单株P. patens旁系进化枝内发生PPO复制。已证明重组PPO6具有PPO功能。分析了彭氏疟原虫中的酚类化合物,并通过LC-MS分析在细胞内检测到了六种物质:4-羟基苯甲酸,对枯草酸,原儿茶酸,水杨酸,咖啡酸和咖啡酸酯。产生有针对性的PPO1敲除(d | ppo1)植物,缺少PPO1的植物在培养基中仅表现出野生型PPO活性的〜30%,因此暗示了PPO1的胞外定位,这与大多数质体PPO定位相反种子植物。进一步,d | ppo1系形成了更多的配角体,面积植物的大小减小了,这可能与内源性细胞分裂素的增加有关,并表明PPO1对植物发育的影响。 d | ppo1植物与野生型植物相比,对施用的4-甲基邻苯二酚的耐受性较低,这表明细胞外PPO1在通过去除抑制性细胞外酚类化合物建立适当条件方面的作用。

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