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Recent Advances in Understanding the Molecular Mechanisms Regulating the Root System Response to Phosphate Deficiency in Arabidopsis

机译:了解调节拟南芥对磷缺乏的根系反应的分子机制的最新进展

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摘要

Phosphorus (P) is an essential macronutrient for plant growth and development. Inorganic phosphate (Pi) is the major form of P taken up from the soil by plant roots. It is well established that under Pi deficiency condition, plant roots undergo striking morphological changes; mainly a reduction in primary root length while increase in lateral root length as well as root hair length and density. This typical phenotypic change reflects complex interactions with other nutrients such as iron, and involves the activity of a large spectrum of plant hormones. Although, several key proteins involved in the regulation of root growth under Pi-deficiency have been identified in Arabidopsis, how plants adapt roots system architecture in response to Pi availability remains an open question. In the current post-genomic era, state of the art technologies like high-throughput phenotyping and sequencing platforms,“omics” methods, together with the widespread use of system biology and genome-wide association studies will help to elucidate the genetic architectures of root growth on different Pi regimes. It is clear that the large-scale characterization of molecular systems will improve our understanding of nutrient stress phenotype and biology. Herein, we summarize the recent advances and future directions towards a better understanding of Arabidopsis root developmental programs functional under Pi deficiency. Such a progress is necessary to devise strategies to improve the Pi use efficiency in plants that is an important issue for agriculture.
机译:磷(P)是植物生长发育必不可少的大量营养素。无机磷酸盐(Pi)是植物根系从土壤中吸收磷的主要形式。众所周知,在缺磷条件下,植物根系会发生明显的形态变化。主要是减少主根长度,而增加侧根长度以及根毛长度和密度。这种典型的表型变化反映了与其他营养物质(如铁)的复杂相互作用,并涉及多种植物激素的活性。尽管已经在拟南芥中鉴定了几种在Pi缺乏下调节根系生长的关键蛋白质,但是植物如何响应Pi的利用而适应根系结构仍然是一个悬而未决的问题。在当前的后基因组时代,诸如高通量表型和测序平台,“组学”方法之类的最新技术以及系统生物学和全基因组关联研究的广泛应用将有助于阐明根的遗传结构。在不同的Pi制度下增长。显然,分子系统的大规模表征将改善我们对养分胁迫表型和生物学的理解。在这里,我们总结了近来的进展和未来的方向,以便更好地了解在Pi缺乏条件下起作用的拟南芥根发育程序。这样的进步对于设计提高植物中Pi的利用效率的策略是必要的,这是农业的重要课题。

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