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Plant adaptation to low phosphorus availability:Core signaling,crosstalks,and applied implications

摘要Phosphorus (P) is an essential nutrient for plant growth and reproduction.Plants preferentially absorb P as orthophosphate (Pi),an ion that displays low solubility and that is readily fixed in the soil,making P limita-tion a condition common to many soils and Pi fertilization an inefficient practice.To cope with Pi limitation,plants have evolved a series of developmental and physiological responses,collectively known as the Pi starvation rescue system (PSR),aimed to improve Pi acquisition and use efficiency (PUE) and protect from Pi-starvation-induced stress.Intensive research has been carried out during the last 20 years to un-ravel the mechanisms underlying the control of the PSR in plants.Here we review the results of this research effort that have led to the identification and characterization of several core Pi starvation signaling components,including sensors,transcription factors,microRNAs (miRNAs) and miRNA inhibitors,kinases,phosphatases,and components of the proteostasis machinery.We also refer to recent results revealing the existence of intricate signaling interplays between Pi and other nutrients and antagonists,N,Fe,Zn,and As,that have changed the initial single-nutrient-centric view to a more integrated view of nutrient homeostasis.Finally,we discuss advances toward improving PUE and future research priorities.

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作者 Javier Paz-Ares [1] Maria Isabel Puga [1] Monica Rojas-Triana [1] Iris Martinez-Hevia [1] Sergio Diaz [1] Cesar Poza-Carrión [1] Miguel Mi(n)ambres [2] Antonio Leyva [1] 学术成果认领
作者单位 Department of Plant Molecular Genetics,Centro Nacional de Biotecnología (CNB-CSIC),Darwin 3,Campus Universidad Autónoma,28049 Madrid,Spain [1] Department of Plant Molecular Genetics,Centro Nacional de Biotecnología (CNB-CSIC),Darwin 3,Campus Universidad Autónoma,28049 Madrid,Spain;Institute of Plant Biochemistry,Institute of Synthetic Biology and CEPLAS,University of Düsseldorf,40225 Düsseldorf,Germany [2]
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发布时间 2022-03-11(万方平台首次上网日期,不代表论文的发表时间)
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分子植物(英文版)

分子植物(英文版)

2022年15卷1期

104-124页

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