Nonredundant Regulation of Rice Arbuscular Mycorrhizal Symbiosis by Two Members of the PHOSPHATE TRANSPORTER1 Gene Family

被引:268
作者
Yang, Shu-Yi [1 ]
Gronlund, Mette [2 ]
Jakobsen, Iver [2 ]
Grotemeyer, Marianne Suter [3 ]
Rentsch, Doris [3 ]
Miyao, Akio [4 ]
Hirochika, Hirohiko [4 ]
Kumar, Chellian Santhosh [5 ]
Sundaresan, Venkatesan [5 ]
Salamin, Nicolas [6 ]
Catausan, Sheryl [7 ]
Mattes, Nicolas [7 ]
Heuer, Sigrid [7 ]
Paszkowski, Uta [1 ]
机构
[1] Univ Lausanne, Dept Plant Mol Biol, CH-1015 Lausanne, Switzerland
[2] Tech Univ Denmark, Dept Chem & Biochem Engn, DK-4000 Roskilde, Denmark
[3] Univ Bern, Inst Plant Sci, CH-3013 Bern, Switzerland
[4] Natl Inst Agrobiol Sci, Agron Res Ctr, Tsukuba, Ibaraki 3058602, Japan
[5] Univ Calif Davis, Dept Plant Biol & Plant Sci, Davis, CA 95616 USA
[6] Univ Lausanne, Dept Ecol & Evolut, CH-1015 Lausanne, Switzerland
[7] Int Rice Res Inst, Plant Breeding Genet & Biotechnol Div, Manila 1301, Philippines
基金
瑞士国家科学基金会; 美国国家科学基金会;
关键词
PHOSPHATE TRANSPORTER; DIFFERENTIAL REGULATION; PHOSPHORUS; EXPRESSION; PLANTS; FUNGI; ARABIDOPSIS; ROOTS; RESPONSES; PATHWAY;
D O I
10.1105/tpc.112.104901
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Pi acquisition of crops via arbuscular mycorrhizal (AM) symbiosis is becoming increasingly important due to limited high-grade rock Pi reserves and a demand for environmentally sustainable agriculture. Here, we show that 70% of the overall Pi acquired by rice (Oryza sativa) is delivered via the symbiotic route. To better understand this pathway, we combined genetic, molecular, and physiological approaches to determine the specific functions of two symbiosis-specific members of the PHOSPHATE TRANSPORTER1 (PHT1) gene family from rice, ORYsa;PHT1;11 (PT11) and ORYsa;PHT1;13 (PT13). The PT11 lineage of proteins from mono- and dicotyledons is most closely related to homologs from the ancient moss, indicating an early evolutionary origin. By contrast, PT13 arose in the Poaceae, suggesting that grasses acquired a particular strategy for the acquisition of symbiotic Pi. Surprisingly, mutations in either PT11 or PT13 affected the development of the symbiosis, demonstrating that both genes are important for AM symbiosis. For symbiotic Pi uptake, however, only PT11 is necessary and sufficient. Consequently, our results demonstrate that mycorrhizal rice depends on the AM symbiosis to satisfy its Pi demands, which is mediated by a single functional Pi transporter, PT11.
引用
收藏
页码:4236 / 4251
页数:16
相关论文
共 50 条
[31]   Phosphate Concentration and Arbuscular Mycorrhizal Colonisation Influence the Growth, Yield and Expression of Twelve PHT1 Family Phosphate Transporters in Foxtail Millet (Setaria italica) [J].
Ceasar, S. Antony ;
Hodge, Angela ;
Baker, Alison ;
Baldwin, Stephen A. .
PLOS ONE, 2014, 9 (09)
[32]   A mitochondrial phosphate transporter,McPht gene,confers an acclimation regulation of the transgenic rice to phosphorus deficiency [J].
HAN Jiao ;
YU Guo-hong ;
WANG Li ;
LI Wei ;
HE Rui ;
WANG Bing ;
HUANG Sheng-cai ;
CHENG Xian-guo .
JournalofIntegrativeAgriculture, 2018, 17 (09) :1932-1945
[33]   Arbuscular mycorrhizal symbiosis alters the expression of PHT1 phosphate transporters in roots and nodules of P-starved soybean plants [J].
Bulgarelli, Rafaela Gageti ;
De Oliveira, Vinicius H. ;
Lopez de Andrade, Sara Adrian .
THEORETICAL AND EXPERIMENTAL PLANT PHYSIOLOGY, 2020, 32 (03) :243-253
[34]   Genome-wide characterization of the xyloglucan endotransglucosylase/hydrolase gene family in Solanum lycopersicum L. and gene expression analysis in response to arbuscular mycorrhizal symbiosis [J].
Sarmiento-Lopez, Luis G. ;
Lopez-Espinoza, Maury Yanitze ;
Juarez-Verdayes, Marco Adan ;
Lopez-Meyer, Melina .
PEERJ, 2023, 11
[35]   Genome-Wide Identification and Characterization of the PHT1 Gene Family and Its Response to Mycorrhizal Symbiosis in Salvia miltiorrhiza under Phosphate Stress [J].
Chen, Xue ;
Bai, Yanhong ;
Lin, Yanan ;
Liu, Hongyan ;
Han, Fengxia ;
Chang, Hui ;
Li, Menglin ;
Liu, Qian .
GENES, 2024, 15 (05)
[36]   Identification and expression analysis of the Hevea brasiliensis phosphate transporter 1 gene family [J].
Yong Sun ;
Le Gao ;
Dan Wang ;
Bingsun Wu ;
Zheng Tong ;
Min Wu ;
Guihua Wang ;
Wenguan Wu ;
Jiashao Wei ;
Renjun Feng ;
Peng He .
Trees, 2021, 35 :407-419
[37]   Transcriptional regulation of the Alstrom syndrome gene ALMS1 by members of the RFX family and Sp1 [J].
Purvis, Tracey L. ;
Hearn, Tom ;
Spalluto, Cosma ;
Knorz, Victoria J. ;
Hanley, Karen Piper ;
Sanchez-Elsner, Tilman ;
Hanley, Neil A. ;
Wilson, David I. .
GENE, 2010, 460 (1-2) :20-29
[38]   Comprehensive analysis of regulatory elements of the promoters of rice sulfate transporter gene family and functional characterization of OsSul1;1 promoter under different metal stress [J].
Kumar, Smita ;
Asif, Mehar Hasan ;
Chakrabarty, Debasis ;
Tripathi, Rudra Deo ;
Dubey, Rama Shanker ;
Trivedi, Prabodh Kumar .
PLANT SIGNALING & BEHAVIOR, 2015, 10 (04) :1-6
[39]   Cloning and functional identification of two members of the ZIP (Zrt, Irt-like protein) gene family in rice (Oryza sativa L.) [J].
Yang, Xia ;
Huang, Ji ;
Jiang, Yan ;
Zhang, Hong-Sheng .
MOLECULAR BIOLOGY REPORTS, 2009, 36 (02) :281-287
[40]   OsbZIP72 Is Involved in Transcriptional Gene-Regulation Pathway of Abscisic Acid Signal Transduction by Activating Rice High-Affinity Potassium Transporter OsHKT1;1 [J].
WANG Baoxiang ;
LIU Yan ;
WANG Yifeng ;
Li Jingfang ;
SUN Zhiguang ;
CHI Ming ;
XING Yungao ;
XU Bo ;
YANG Bo ;
LI Jian ;
LIU Jinbo ;
CHEN Tingmu ;
FANG Zhaowei ;
LU Baiguan ;
XU Dayong ;
BELLO, Babatunde Kazeem .
RICE SCIENCE, 2021, 28 (03) :257-267