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An essential comDonent for life on earth

机译:地球上生命的重要组成部分

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Life on earth is dependent on sulphur (S) and nitrogen (N). In plants, the second step in the reduction of sulphate and nitrate are mediated by the enzymes sulphite and nitrite reductases, which contain the iron (Fe)-containing siroheme as a cofactor.It is synthesized from the tetrapyrrole primogenitor uroporphyrinogen III in the plastids via three enzymatic reactions, methylation, oxidation and ferrochelatation. Without siroheme biosynthesis, there would be no life on earth. Limitations in sirohemeshould have an enormous effect on the S- and N-metabolism, plant growth, development, fitness and reproduction, bioticand abiotic stresses including growth under S, N and Fe limitations, and the response to pathogens and beneficial interaction partners.Furthermore, the vast majority of redox-reactions in plants depend on S-components, and S-containing compounds are also Involved in the detoxification of heavy metals and other chemical toxins. Disturbance of siroheme biosynthesis may cause the accumulation of light-sensitive intermediates and reactive oxygen species, which are harmful, or they can function as signaling molecules and participate in interorganellar signaling processes. This review highlights the roJe of siroheme in these scenarios.
机译:地球上的生命取决于硫(S)和氮(N)。在植物中,硫酸盐和硝酸盐还原的第二步是由亚硫酸盐和亚硝酸盐还原酶介导的,这些酶含有铁(Fe)的血红素血红素作为辅因子,它是由质体中的四吡咯原生成物尿卟啉原III通过三个酶促反应,甲基化,氧化和铁螯合。没有西罗血红素的生物合成,地球上将没有生命。 Sirohemes的局限性会对S和N代谢,植物生长,发育,适应性和繁殖,生物和非生物胁迫(包括S,N和Fe限制下的生长)以及对病原体和有益相互作用伙伴的反应产生巨大影响。植物中的绝大多数氧化还原反应都依赖于S成分,并且含S的化合物也参与重金属和其他化学毒素的解毒。西罗血红素生物合成的紊乱可能导致光敏中间体和活性氧的积累,这是有害的,或者它们可能起信号分子的作用并参与细胞间信号传导过程。这篇评论重点介绍了在这些情况下西罗血红素的作用。

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