首页> 外文期刊>Journal of Plant Growth Regulation >The Genetic Reprogramming of Polyamine Homeostasis During the Functional Assembly, Maturation, and Senescence-Specific Decline of the Photosynthetic Apparatus in Hordeum vulgare
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The Genetic Reprogramming of Polyamine Homeostasis During the Functional Assembly, Maturation, and Senescence-Specific Decline of the Photosynthetic Apparatus in Hordeum vulgare

机译:大麦中光合装置功能装配,成熟和衰老特异性下降过程中多胺稳态的遗传重编程。

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摘要

Polyamines (PAs) are ubiquitous aliphatic amines important and, in many cases, essential for plant growth, abiotic stress response, and tolerance. Here we provide evidence for genetic reprogramming of PA homeostasis that occurs during the de-etiolation, maturation, and senescence of the primary leaf in Hordeum vulgare (barley). We analyzed expression levels of key genes in the anabolic and catabolic branches of PA metabolism throughout the life cycle of etioplasts, at all steps of the functional assembly of the photosynthetic apparatus, and during leaf senescence. The changes in the total PAs titer of the leaf were followed throughout the different developmental stages. Furthermore, we align all three stages of the photosynthetic performance (rapid light-dependent de-etiolation, phase of optimal efficiency, and senescence-induced deterioration) with the changes in PA homeostasis. Finally, we focus on two phases during aging (early and late senescence) and we present their bioenergetic (for example, PSII maximal efficiency, ATPase conductivity) and genetic profiles, with emphasis on sensitive parameters that describe this process for the photosynthetic apparatus and PA metabolism, respectively. In conclusion, the fine tuning of PA homeostasis is regulated by the simultaneous genetic reprogramming of the anabolic and catabolic branches of PA metabolism and adjusts all the developmental changes from de-etiolation to maturation and senescence.
机译:多胺(PAs)是普遍存在的脂肪族胺,在许多情况下对于植物生长,非生物胁迫响应和耐受性至关重要。在这里,我们为大麦(Hordeum vulgare)(大麦)初生叶片的去黄化,成熟和衰老过程中发生的PA稳态遗传重编程提供了证据。我们分析了在整个原生质体的生命周期,光合装置功能组装的所有步骤以及叶片衰老过程中,PA代谢的合成代谢和分解代谢分支中关键基因的表达水平。在整个不同的发育阶段都跟踪叶片总PAs效价的变化。此外,我们将光合作用的所有三个阶段(快速的光依赖性去黄化,最佳效率阶段和衰老引起的退化)与PA动态平衡的变化进行了匹配。最后,我们关注衰老过程中的两个阶段(衰老的早期和晚期),并介绍它们的生物能(例如,PSII最大效率,ATPase电导率)和遗传特征,重点是描述光合作用和PA光合作用过程的敏感参数。新陈代谢分别。总之,PA稳态的微调是通过PA代谢的同化和分解代谢分支的同时遗传重编程来调节的,并调节了从脱琼脂化到成熟和衰老的所有发育变化。

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