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Molecular Mechanisms of Phosphorus Metabolism and Transport during Leaf Senescence

机译:叶片衰老过程中磷代谢与转运的分子机理

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摘要

Leaf senescence, being the final developmental stage of the leaf, signifies the transition from a mature, photosynthetically active organ to the attenuation of said function and eventual death of the leaf. During senescence, essential nutrients sequestered in the leaf, such as phosphorus (P), are mobilized and transported to sink tissues, particularly expanding leaves and developing seeds. Phosphorus recycling is crucial, as it helps to ensure that previously acquired P is not lost to the environment, particularly under the naturally occurring condition where most unfertilized soils contain low levels of soluble orthophosphate (Pi), the only form of P that roots can directly assimilate from the soil. Piecing together the molecular mechanisms that underpin the highly variable efficiencies of P remobilization from senescing leaves by different plant species may be critical for devising effective strategies for improving overall crop P-use efficiency. Maximizing Pi remobilization from senescing leaves using selective breeding and/or biotechnological strategies will help to generate P-efficient crops that would minimize the use of unsustainable and polluting Pi-containing fertilizers in agriculture. This review focuses on the molecular mechanisms whereby P is remobilized from senescing leaves and transported to sink tissues, which encompasses the action of hormones, transcription factors, Pi-scavenging enzymes, and Pi transporters.
机译:叶片衰老是叶片的最后发育阶段,标志着从成熟的,具有光合活性的器官过渡到所述功能减弱并最终导致叶片死亡。在衰老过程中,诸如磷(P)等螯合在叶片中的基本营养素被动员并运输到下沉的组织中,尤其是扩张叶片和发育中的种子。磷的回收至关重要,因为磷有助于确保先前获得的磷不会丢失到环境中,特别是在自然发生的情况下,大多数未施肥的土壤都含有低水平的可溶性正磷酸盐(Pi),这是根系可以直接生根的唯一P形式。从土壤中吸收。将不同植物物种从衰老叶片上磷吸收的高度可变效率的分子机制整合在一起,对于设计提高整体作物磷利用效率的有效策略可能至关重要。使用选择性育种和/或生物技术策略,从衰老叶片中最大程度地脱除磷,将有助于生产磷效率高的作物,从而将农业中不可持续且污染性高的含磷肥料的使用降至最低。这篇综述着重介绍了从衰老的叶片中重新吸收磷并将其转运到沉陷组织的分子机制,其中包括激素,转录因子,Pi清除酶和Pi转运蛋白的作用。

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