PHOSPHATE

作品数:834被引量:2015H指数:19
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ITPK1 is an InsP_(6)/ADP phosphotransferase that controls phosphate signaling in Arabidopsis
《Molecular Plant》2024年第7期1151-1157,共7页Esther Riemer Danye Qiu Debabrata Laha Robert K.Harmel Philipp Gaugler Verena Gaugler Michael Frei Mohammad-Reza Hajirezaei Nargis Parvin Laha Lukas Krusenbaum Robin Schneider Adolfo Saiardi Dorothea Fiedler Henning J.Jessen Gabriel Schaaf Ricardo F.H.Giehi 
(Molecular Plant 14,1864-1880;November 12021)We identified a mistake made when calculating the absolute concentrations of inositol(pyro)phosphates derived from CE-ESl-MS measurements reported in the originally publish...
关键词:IPT ARABIDOPSIS absolute 
Phosphate-dependent regulation of vacuolar trafficking of OsSPX-MFSs is critical for maintaining intracellular phosphate homeostasis in rice被引量:2
《Molecular Plant》2023年第8期1304-1320,共17页Runze Guo Qi Zhang Kun Qian Yinghui Ying Wenying Liao Lening Gan Chuanzao Mao Yong Wang James Whelan Huixia Shou 
supported by the Ministry of Science and Technology of China(2021YFF1000400,2021YFF1001204);the National Natural Science Foundation of China(317723817 qw4111 Project B14027).
Vacuolar storage of inorganic phosphate(Pi)is essential for Pi homeostasis in plants.The SPX-MFS family proteins have been demonstrated to be vacuolar Pi transporters in many plant species.Transcriptional regulation o...
关键词:FIR HOMEOSTASIS inhibited 
A SPX domain vacuolar transporter links phosphate sensing to homeostasis in Arabidopsis被引量:1
《Molecular Plant》2022年第10期1590-1601,共12页Mingda Luan Fugeng Zhao Guangfang Sun Min Xu Aigen Fu Wenzhi Lan Sheng Luan 
the China Postdoctoral Science Foundation 2020M683537(to M.L);National Natural Science Foundation of China 32200216(to M.L);the National Science Foundation MCB 2041585(to S.L).
Excess phosphate(Pi)is stored into the vacuole through Pi transporters so that cytoplasmic Pi levels remain stable in plant cells.We hypothesized that the vacuolar Pi transporters may harbor a Pi-sensing mechanism so ...
关键词:VPT1 Pi signaling AUTOINHIBITION transport activity inositol phosphates 
"Je t'aime moi non plus":A love-hate relationship between iron and phosphate
《Molecular Plant》2022年第1期1-2,共2页Laurent Nussaume Thierry Desnos 
We thank S.Hani for her critical reading and C.Mercier for her graphic talents.No conflict of interest declared.The ANR projects BIOPHYT(ANR-18-CE20-023);ULTIM(ANR-21-CE12-0016)supported respectively T.D.and L.N.
Iron(Fe)and phosphate(Pi)are two essential nutrients for plant growth.Both impact plant development differently and their respective deficiency leads to multiple physiological disorders,resulting in severe reduction o...
关键词:SOIL OXIDES naturally 
ITPK1 is an InsP_(6)/ADP phosphotransferase that controls phosphate signaling in Arabidopsis.
《Molecular Plant》2021年第11期1864-1880,共17页Esther Riemer Danye Qiu Debabrata Laha Robert K.Harmel Philipp Gaugler Verena Gaugler Michael Frei Mohammad-Reza Hajirezaei Nargis Parvin Laha Lukas Krusenbaum Robin Schneider Adolfo Saiardi Dorothea Fiedler Henning J.Jessen Gabriel Schaaf Ricardo F.H.Giehl 
This work was funded by grants from the Deutsche Forschungsgemein-schaft(HE 8362/1-1,DFG Eigene Stelle,to R.F.H.G.;SCHA 1274/4-1,SCHA 1274/5-1,Research Training Group GRK 2064 and Germany's Excellence Strategy,EXC-2070-390732324,PhenoRob to G.S.;JE 572/4-1 and Germany's Excellence Strategy,ClBSS-EXC-2189-Project ID 390939984 to H.J.J;LA 4541/1-1 postdoctoral research fellowship to D.L.),grants from the Medical Research Council(MRC award MR/T028904/1 to A.S.),and a DBT-IISc Program to D.L.
In plants, phosphate (Pi) homeostasis is regulated by the interaction of PHR transcription factors with stand-alone SPX proteins, which act as sensors for inositol pyrophosphates. Here, we combined different methods t...
关键词:diphosphoinositol pentakisphosphate kinase inositol 1 3 4-trisphosphate 5/6-kinase 1 inositol phosphates inositol pyrophosphates phosphate homeostasis phosphate signaling 
A transcription factor STOP1-centered pathway coordinates ammonium and phosphate acquisition in Arabidopsis被引量:12
《Molecular Plant》2021年第9期1554-1568,共15页Wen Hao Tian Jia Yuan Ye Meng Qi Cui Jun Bo Chang Yu Liu GuiXin Li Yun Rong Wu Ji Ming Xu Nicholas P.Harberd Chuan Zao Mao Chong Wei Jin Zhong Jie Ding Shao Jian Zheng 
This work was supported by the Ministry of Science and Tech no logy of the People's Republic of China(2015CB942903,2016YFD0100700);the Ministry of Education and Bureau of Foreign Experts of China(B14027);the Fundamental Research Funds for the Central Universities.
Phosphorus(P)is an indispensable macronutrient required for plant growth and development.Natural phosphate(Pi)reserves are finite,and a better understanding of Pi utilization by crops is therefore vital for worldwide ...
关键词:Pi deficiency response AMMONIUM STOP1 organic acid exudation CIPK23 
Unloading phosphate for starch synthesis in cereal grains
《Molecular Plant》2021年第8期1232-1233,共2页Lei Xu Keke Yi 
funded by the National Natural Science Foundation of China(31772386 and 31972492).
The macronutrient phosphorus(P)is essential for plant growth and of vital importance to crop yield.It is taken up from the soil in the form of inorganic orthophosphate[PO_(4)^(3-),HPO_(4)^(2-),H_(2)PO_(4)^(-)(Pi)]by p...
关键词:SYNTHESIS ROOTS readily 
Modulation of nitrate-induced phosphate response by the MYB transcription factor RLI1/HINGE1 in the nucleus被引量:6
《Molecular Plant》2021年第3期517-529,共13页Zhihua Zhang Zhao Li Wei Wang Zhimin Jiang Liping Guo Xiaohan Wang Yangwen Qian Xiahe Huang Yongqiang Liu Xiujie Liu Yahong Liu Aifu Li Yu Yan Junpeng Xie Shouyun Cao Stanislav Kopriva Legong Li Fanjiang Kong Baohui Liu Yingchun Wang Bin Hu Chengcai Chu 
This work was supported by the National Key Research and Development Program of China(2016YFD0101801,2009CB118506);the National Natural Sciences Foundation of China(31771348,32002119);China Postdoctoral Science Foundation(2020M672569).
The coordinated utilization of nitrogen(N)and phosphorus(P)is vital for plants to maintain nutrient balance and achieve optimal growth.Previously,we revealed a mechanism by which nitrate induces genes for phosphate ut...
关键词:RICE NIPR RLI1/HINGE1 PHR2 SPXs NUCLEUS 
Two RING-Finger Ubiquitin E3 Ligases Regulate the Degradation of SPX4, An Internal Phosphate Sensor, for Phosphate Homeostasis and Signaling in Rice被引量:19
《Molecular Plant》2019年第8期1060-1074,共15页Wenyuan Ruan Meina Guo Xueqing Wang Zhenhui Guo Zhuang Xu Lei Xu Hongyu Zhao Haiji Sun Chengqi Yan Keke Yi 
funded by grants from the National Key Research and Development Program of China (2016YFD0100705-1);the National Natural Science Foundation of China (31801925,31772386,and 31601807);Ningbo Department of Science and Technology (2016C11017);KY was supported by the Innovation Program of Chinese Academy of Agricultural Sciences.
SPX-domain-containing proteins (SPXs) play an important role in inorganic phosphate (Pi) sensing,signaling,and transport in eukaryotes.In plants,SPXs are known to integrate cellular Pi status and negatively regulate t...
关键词:RICE SPX4 PHR2 UBIQUITINATION PI SIGNALING PI homeostasis PHOSPHATE regulation network 
Arbuscular Mycorrhizal Symbiosis Requires a Phosphate Transceptor in the Gigaspora margarita Fungal Symbiont被引量:7
《Molecular Plant》2016年第12期1583-1608,共26页Xianan Xie Hui Lin Xiaowei Peng Congrui Xu Zhongfeng Sun Kexin Jiang Antian Huang Xiaohui Wu Nianwu Tang Alessandra Salvioli Paola Bonfante Bin Zhao 
The majority of terrestrial vascular plants are capable of forming mutualistic associations with obligate biotrophic arbuscular mycorrhizal (AM) fungi from the phylum Glomeromycota. This mutualistic symbiosis provid...
关键词:mutualistic symbiosis Gigaspora margarita GigmPT phosphate transceptor phosphate signaling protein kinase A 
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