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Volumn 199, Issue 1, 2013, Pages 188-202

Combined phosphate and nitrogen limitation generates a nutrient stress transcriptome favorable for arbuscular mycorrhizal symbiosis in Medicago truncatula

Author keywords

Arbuscular mycorrhiza (AM); Medicago truncatula; Methylerythritol phosphate; NADPH oxidase; Nitrogen (N); Nutrient stress; Phosphate; Strigolactones

Indexed keywords

2 C METHYLERYTHRITOL 4 PHOSPHATE; 2-C-METHYLERYTHRITOL 4-PHOSPHATE; DRUG DERIVATIVE; ERYTHRITOL; NITROGEN; PHOSPHATE; PHOSPHATE TRANSPORTER; PHOSPHORUS; SUGAR PHOSPHATE; TERPENE; TRANSCRIPTOME; VEGETABLE PROTEIN;

EID: 84878363786     PISSN: 0028646X     EISSN: 14698137     Source Type: Journal    
DOI: 10.1111/nph.12234     Document Type: Article
Times cited : (141)

References (71)
  • 1
    • 43049183306 scopus 로고    scopus 로고
    • Plant DELLAs restrain growth and promote survival of adversity by reducing the levels of reactive oxygen species
    • Achard P, Renou JP, Berthome R, Harberd NP, Genschik P. 2008. Plant DELLAs restrain growth and promote survival of adversity by reducing the levels of reactive oxygen species. Current Biology 18: 656-660.
    • (2008) Current Biology , vol.18 , pp. 656-660
    • Achard, P.1    Renou, J.P.2    Berthome, R.3    Harberd, N.P.4    Genschik, P.5
  • 2
    • 20444471142 scopus 로고    scopus 로고
    • Plant sesquiterpenes induce hyphal branching in arbuscular mycorrhizal fungi
    • Akiyama K, Matsuzaki K, Hayashi H. 2005. Plant sesquiterpenes induce hyphal branching in arbuscular mycorrhizal fungi. Nature 435: 824-827.
    • (2005) Nature , vol.435 , pp. 824-827
    • Akiyama, K.1    Matsuzaki, K.2    Hayashi, H.3
  • 3
    • 58449123331 scopus 로고    scopus 로고
    • Sulfur transfer through an arbuscular mycorrhiza
    • Allen JW, Shachar-Hill Y. 2009. Sulfur transfer through an arbuscular mycorrhiza. Plant Physiology 149: 549-560.
    • (2009) Plant Physiology , vol.149 , pp. 549-560
    • Allen, J.W.1    Shachar-Hill, Y.2
  • 6
    • 40349087429 scopus 로고    scopus 로고
    • Uptake and metabolism of nitrate in mycorrhizal plants as affected by water availability and N concentration in soil
    • Azcon R, Rodriguez R, Amora-Lazcano E, Ambrasano E. 2008. Uptake and metabolism of nitrate in mycorrhizal plants as affected by water availability and N concentration in soil. European Journal of Soil Science 59: 131-138.
    • (2008) European Journal of Soil Science , vol.59 , pp. 131-138
    • Azcon, R.1    Rodriguez, R.2    Amora-Lazcano, E.3    Ambrasano, E.4
  • 7
    • 79251532058 scopus 로고    scopus 로고
    • The regulation of arbuscular mycorrhizal symbiosis by phosphate in pea involves early and systemic signalling events
    • Balzergue C, Puech-Pages V, Becard G, Rochange SF. 2011. The regulation of arbuscular mycorrhizal symbiosis by phosphate in pea involves early and systemic signalling events. Journal of Experimental Botany 62: 1049-1060.
    • (2011) Journal of Experimental Botany , vol.62 , pp. 1049-1060
    • Balzergue, C.1    Puech-Pages, V.2    Becard, G.3    Rochange, S.F.4
  • 9
    • 19344372544 scopus 로고    scopus 로고
    • Nitrogen supply affects arbuscular mycorrhizal colonization of Artemisia vulgaris in a phosphate-polluted field site
    • Blanke V, Renker C, Wagner M, Fullner K, Held M, Kuhn AJ, Buscot F. 2005. Nitrogen supply affects arbuscular mycorrhizal colonization of Artemisia vulgaris in a phosphate-polluted field site. New Phytologist 166: 981-992.
    • (2005) New Phytologist , vol.166 , pp. 981-992
    • Blanke, V.1    Renker, C.2    Wagner, M.3    Fullner, K.4    Held, M.5    Kuhn, A.J.6    Buscot, F.7
  • 12
    • 14244269520 scopus 로고    scopus 로고
    • Phosphate uptake, transport and transfer by the arbuscular mycorrhizal fungus Glomus intraradices is stimulated by increased carbohydrate availability
    • Bücking H, Shachar-Hill Y. 2005. Phosphate uptake, transport and transfer by the arbuscular mycorrhizal fungus Glomus intraradices is stimulated by increased carbohydrate availability. New Phytologist 165: 899-912.
    • (2005) New Phytologist , vol.165 , pp. 899-912
    • Bücking, H.1    Shachar-Hill, Y.2
  • 13
    • 84861615306 scopus 로고    scopus 로고
    • Transcriptional response of Medicago truncatula sulphate transporters to arbuscular mycorrhizal symbiosis with and without sulphur stress
    • Casieri L, Gallardo K, Wipf D. 2012. Transcriptional response of Medicago truncatula sulphate transporters to arbuscular mycorrhizal symbiosis with and without sulphur stress. Planta 235: 1431-1447.
    • (2012) Planta , vol.235 , pp. 1431-1447
    • Casieri, L.1    Gallardo, K.2    Wipf, D.3
  • 14
    • 0034046875 scopus 로고    scopus 로고
    • Mineral acquisition by arbuscular mycorrhizal plants
    • Clark RB, Zeto SK. 2000. Mineral acquisition by arbuscular mycorrhizal plants. Journal of Plant Nutrition 23: 867-902.
    • (2000) Journal of Plant Nutrition , vol.23 , pp. 867-902
    • Clark, R.B.1    Zeto, S.K.2
  • 17
    • 84875760380 scopus 로고    scopus 로고
    • Strigolactones and the regulation of pea symbioses in response to nitrate and phosphate deficiency
    • Foo E, Yoneyama K, Hugill C, Quittenden L, Reid J. 2013. Strigolactones and the regulation of pea symbioses in response to nitrate and phosphate deficiency. Molecular Plant 6: 76-87.
    • (2013) Molecular Plant , vol.6 , pp. 76-87
    • Foo, E.1    Yoneyama, K.2    Hugill, C.3    Quittenden, L.4    Reid, J.5
  • 18
    • 34548355158 scopus 로고    scopus 로고
    • Simultaneous in situ detection of alkaline phosphatase activity and polyphosphate in arbuscules within arbuscular mycorrhizal roots
    • Funamoto R, Saito K, Oyaizu H, Saito M, Aono T. 2007. Simultaneous in situ detection of alkaline phosphatase activity and polyphosphate in arbuscules within arbuscular mycorrhizal roots. Functional Plant Biology 34: 803-810.
    • (2007) Functional Plant Biology , vol.34 , pp. 803-810
    • Funamoto, R.1    Saito, K.2    Oyaizu, H.3    Saito, M.4    Aono, T.5
  • 20
    • 84856249733 scopus 로고    scopus 로고
    • Arbuscule-containing and non-colonized cortical cells of mycorrhizal roots undergo extensive and specific reprogramming during arbuscular mycorrhizal development
    • Gaude N, Bortfeld S, Duensing N, Lohse M, Krajinski F. 2012. Arbuscule-containing and non-colonized cortical cells of mycorrhizal roots undergo extensive and specific reprogramming during arbuscular mycorrhizal development. Plant Journal 69: 510-528.
    • (2012) Plant Journal , vol.69 , pp. 510-528
    • Gaude, N.1    Bortfeld, S.2    Duensing, N.3    Lohse, M.4    Krajinski, F.5
  • 21
    • 0041530047 scopus 로고    scopus 로고
    • Resampling-based multiple testing for microarray data analysis
    • Ge Y, Dudoit S, Speed T. 2003. Resampling-based multiple testing for microarray data analysis. Test 12: 1-44.
    • (2003) Test , vol.12 , pp. 1-44
    • Ge, Y.1    Dudoit, S.2    Speed, T.3
  • 25
    • 63349098693 scopus 로고    scopus 로고
    • Overlapping expression patterns and differential transcript levels of phosphate transporter genes in arbuscular mycorrhizal, Pi-fertilised and phytohormone-treated Medicago truncatula roots
    • Grunwald U, Guo W, Fischer K, Isayenkov S, Ludwig-Muller J, Hause B, Yan X, Kuster H, Franken P. 2009. Overlapping expression patterns and differential transcript levels of phosphate transporter genes in arbuscular mycorrhizal, Pi-fertilised and phytohormone-treated Medicago truncatula roots. Planta 229: 1023-1034.
    • (2009) Planta , vol.229 , pp. 1023-1034
    • Grunwald, U.1    Guo, W.2    Fischer, K.3    Isayenkov, S.4    Ludwig-Muller, J.5    Hause, B.6    Yan, X.7    Kuster, H.8    Franken, P.9
  • 26
    • 82755166961 scopus 로고    scopus 로고
    • A Versatile monosaccharide transporter that operates in the arbuscular mycorrhizal fungus Glomus sp is crucial for the symbiotic relationship with plants
    • Helber N, Wippel K, Sauer N, Schaarschmidt S, Hause B, Requena N. 2011. A Versatile monosaccharide transporter that operates in the arbuscular mycorrhizal fungus Glomus sp is crucial for the symbiotic relationship with plants. The Plant Cell 23: 3812-3823.
    • (2011) The Plant Cell , vol.23 , pp. 3812-3823
    • Helber, N.1    Wippel, K.2    Sauer, N.3    Schaarschmidt, S.4    Hause, B.5    Requena, N.6
  • 29
    • 0035921960 scopus 로고    scopus 로고
    • An arbuscular mycorrhizal fungus accelerates decomposition and acquires nitrogen directly from organic material
    • Hodge A, Campbell CD, Fitter AH. 2001. An arbuscular mycorrhizal fungus accelerates decomposition and acquires nitrogen directly from organic material. Nature 413: 297-299.
    • (2001) Nature , vol.413 , pp. 297-299
    • Hodge, A.1    Campbell, C.D.2    Fitter, A.H.3
  • 30
    • 82755171786 scopus 로고    scopus 로고
    • Laser-microdissection unravels cell-type specific transcription in arbuscular mycorrhizal roots, including CAAT-box TF gene expression correlating with fungal contact and spread
    • Hogekamp C, Arndt D, Pereira P, Becker JD, Hohnjec N, Kuster H. 2011. Laser-microdissection unravels cell-type specific transcription in arbuscular mycorrhizal roots, including CAAT-box TF gene expression correlating with fungal contact and spread. Plant Physiology 157: 2023-2043.
    • (2011) Plant Physiology , vol.157 , pp. 2023-2043
    • Hogekamp, C.1    Arndt, D.2    Pereira, P.3    Becker, J.D.4    Hohnjec, N.5    Kuster, H.6
  • 31
    • 25444435787 scopus 로고    scopus 로고
    • Use of mixture models in a microarray based screening procedure for detecting differentially represented yeast mutants
    • Article 1.
    • Irizarry R, Ooi S, Wu Z, Boeke J. 2003. Use of mixture models in a microarray based screening procedure for detecting differentially represented yeast mutants. Statistical Applications in Genetics and Molecular Biology 2: Article 1.
    • (2003) Statistical Applications in Genetics and Molecular Biology , vol.2
    • Irizarry, R.1    Ooi, S.2    Wu, Z.3    Boeke, J.4
  • 35
    • 37249083962 scopus 로고    scopus 로고
    • Phosphate starvation root architecture and anthocyanin accumulation responses are modulated by the gibberellin-DELLA signaling pathway in Arabidopsis
    • Jiang C, Gao X, Liao L, Harberd NP, Fu X. 2007. Phosphate starvation root architecture and anthocyanin accumulation responses are modulated by the gibberellin-DELLA signaling pathway in Arabidopsis. Plant Physiology 145: 1460-1470.
    • (2007) Plant Physiology , vol.145 , pp. 1460-1470
    • Jiang, C.1    Gao, X.2    Liao, L.3    Harberd, N.P.4    Fu, X.5
  • 36
  • 37
    • 0028005059 scopus 로고
    • Hyphal N transport by a vesicular-arbsucular mycorrhizal fungus associated with cucumber grown at three nitrogen levels
    • Johansen A, Jakobsen I, Jensen ES. 1994. Hyphal N transport by a vesicular-arbsucular mycorrhizal fungus associated with cucumber grown at three nitrogen levels. Plant and Soil 160: 1-9.
    • (1994) Plant and Soil , vol.160 , pp. 1-9
    • Johansen, A.1    Jakobsen, I.2    Jensen, E.S.3
  • 38
    • 79953731376 scopus 로고    scopus 로고
    • Genetic regulation by NLA and microRNA827 for maintaining nitrate-dependent phosphate homeostasis in Arabidopsis
    • Kant S, Peng M, Rothstein SJ. 2011. Genetic regulation by NLA and microRNA827 for maintaining nitrate-dependent phosphate homeostasis in Arabidopsis. PLoS Genetics 7: e1002021.
    • (2011) PLoS Genetics , vol.7
    • Kant, S.1    Peng, M.2    Rothstein, S.J.3
  • 40
    • 84860549704 scopus 로고    scopus 로고
    • Silencing of the Rac1 GTPase MtROP9 in Medicago truncatula stimulates early mycorrhizal and oomycete root colonizations but negatively affects rhizobial infection
    • Kiirika LM, Bergmann HF, Schikowsky C, Wimmer D, Korte J, Schmitz U, Niehaus K, Colditz F. 2012. Silencing of the Rac1 GTPase MtROP9 in Medicago truncatula stimulates early mycorrhizal and oomycete root colonizations but negatively affects rhizobial infection. Plant Physiology 159: 501-516.
    • (2012) Plant Physiology , vol.159 , pp. 501-516
    • Kiirika, L.M.1    Bergmann, H.F.2    Schikowsky, C.3    Wimmer, D.4    Korte, J.5    Schmitz, U.6    Niehaus, K.7    Colditz, F.8
  • 41
    • 79960710804 scopus 로고    scopus 로고
    • A secreted fungal effector of Glomus intraradices promotes symbiotic biotrophy
    • Kloppholz S, Kuhn H, Requena N. 2011. A secreted fungal effector of Glomus intraradices promotes symbiotic biotrophy. Current Biology 21: 1204-1209.
    • (2011) Current Biology , vol.21 , pp. 1204-1209
    • Kloppholz, S.1    Kuhn, H.2    Requena, N.3
  • 43
    • 71049135747 scopus 로고    scopus 로고
    • An expression database for roots of the model legume Medicago truncatula under salt stress
    • Li D, Su Z, Dong J, Wang T. 2009. An expression database for roots of the model legume Medicago truncatula under salt stress. BMC Genomics 10: 517.
    • (2009) BMC Genomics , vol.10 , pp. 517
    • Li, D.1    Su, Z.2    Dong, J.3    Wang, T.4
  • 44
    • 33845530157 scopus 로고    scopus 로고
    • A transient decrease in reactive oxygen species in roots leads to root hair deformation in the legume-rhizobia symbiosis
    • Lohar DP, Haridas S, Gantt JS, VandenBosch KA. 2007. A transient decrease in reactive oxygen species in roots leads to root hair deformation in the legume-rhizobia symbiosis. New Phytologist 173: 39-49.
    • (2007) New Phytologist , vol.173 , pp. 39-49
    • Lohar, D.P.1    Haridas, S.2    Gantt, J.S.3    VandenBosch, K.A.4
  • 48
    • 43049142587 scopus 로고    scopus 로고
    • DELLAs control plant immune responses by modulating the balance of jasmonic acid and salicylic acid signaling
    • Navarro L, Bari R, Achard P, Lison P, Nemri A, Harberd NP, Jones JD. 2008. DELLAs control plant immune responses by modulating the balance of jasmonic acid and salicylic acid signaling. Current Biology 18: 650-655.
    • (2008) Current Biology , vol.18 , pp. 650-655
    • Navarro, L.1    Bari, R.2    Achard, P.3    Lison, P.4    Nemri, A.5    Harberd, N.P.6    Jones, J.D.7
  • 49
    • 33645865559 scopus 로고    scopus 로고
    • The influence of external nitrogen on carbon allocation to Glomus intraradices in monoxenic arbuscular mycorrhiza
    • Olsson PA, Burleigh SH, van Aarle IM. 2005. The influence of external nitrogen on carbon allocation to Glomus intraradices in monoxenic arbuscular mycorrhiza. New Phytologist 168: 677-686.
    • (2005) New Phytologist , vol.168 , pp. 677-686
    • Olsson, P.A.1    Burleigh, S.H.2    van Aarle, I.M.3
  • 50
    • 84866377865 scopus 로고    scopus 로고
    • Plant genes related to gibberellin biosynthesis and signaling are differentially regulated during the early stages of AM fungal interactions
    • Ortu G, Balestrini R, Pereira PA, Becker JD, Kuster H, Bonfante P. 2012. Plant genes related to gibberellin biosynthesis and signaling are differentially regulated during the early stages of AM fungal interactions. Molecular Plant 5: 951-954.
    • (2012) Molecular Plant , vol.5 , pp. 951-954
    • Ortu, G.1    Balestrini, R.2    Pereira, P.A.3    Becker, J.D.4    Kuster, H.5    Bonfante, P.6
  • 51
    • 85046982453 scopus 로고    scopus 로고
    • ROS production during symbiotic infection suppresses pathogenesis-related gene expression
    • Peleg-Grossman S, Melamed-Book N, Levine A. 2012. ROS production during symbiotic infection suppresses pathogenesis-related gene expression. Plant Signaling & Behavior 7: 409-415.
    • (2012) Plant Signaling & Behavior , vol.7 , pp. 409-415
    • Peleg-Grossman, S.1    Melamed-Book, N.2    Levine, A.3
  • 52
    • 84878215218 scopus 로고    scopus 로고
    • Hydrogen peroxide and nitric oxide: key regulators of the legume-Rhizobium and mycorrhizal symbioses
    • doi:10.1089/ars.2012.5136.
    • Puppo A, Pauly N, Boscari A, Mandon K, Brouquisse R. 2012. Hydrogen peroxide and nitric oxide: key regulators of the legume-Rhizobium and mycorrhizal symbioses. Antioxidants & Redox Signaling. doi:10.1089/ars.2012.5136.
    • (2012) Antioxidants & Redox Signaling
    • Puppo, A.1    Pauly, N.2    Boscari, A.3    Mandon, K.4    Brouquisse, R.5
  • 54
    • 84868316790 scopus 로고    scopus 로고
    • Maize source leaf adaptation to nitrogen deficiency effects not only N and C metabolism but also control of P homeostasis
    • Schluter U, Mascher M, Colmsee C, Scholz U, Brautigam A, Fahnenstich H, Sonnewald U. 2012. Maize source leaf adaptation to nitrogen deficiency effects not only N and C metabolism but also control of P homeostasis. Plant Physiology 60: 1384-1406.
    • (2012) Plant Physiology , vol.60 , pp. 1384-1406
    • Schluter, U.1    Mascher, M.2    Colmsee, C.3    Scholz, U.4    Brautigam, A.5    Fahnenstich, H.6    Sonnewald, U.7
  • 55
    • 24044477266 scopus 로고    scopus 로고
    • Reactive oxygen species and root hairs in Arabidopsis root response to nitrogen, phosphorus and potassium deficiency
    • Shin R, Berg RH, Schachtman DP. 2005. Reactive oxygen species and root hairs in Arabidopsis root response to nitrogen, phosphorus and potassium deficiency. Plant Cell Physiology 46: 1350-1357.
    • (2005) Plant Cell Physiology , vol.46 , pp. 1350-1357
    • Shin, R.1    Berg, R.H.2    Schachtman, D.P.3
  • 57
    • 84871298508 scopus 로고    scopus 로고
    • The arbuscular mycorrhizal symbiosis influences sulfur starvation responses of Medicago truncatula
    • Sieh D, Watanabe M, Devers EA, Brueckner F, Hoefgen R, Krajinski F. 2013. The arbuscular mycorrhizal symbiosis influences sulfur starvation responses of Medicago truncatula. New Phytologist 197: 606-616.
    • (2013) New Phytologist , vol.197 , pp. 606-616
    • Sieh, D.1    Watanabe, M.2    Devers, E.A.3    Brueckner, F.4    Hoefgen, R.5    Krajinski, F.6
  • 58
    • 79955614493 scopus 로고    scopus 로고
    • Roles of arbuscular mycorrhizas in plant nutrition and growth: new paradigms from cellular to ecosystem scales
    • Smith SE, Smith FA. 2011. Roles of arbuscular mycorrhizas in plant nutrition and growth: new paradigms from cellular to ecosystem scales. Annual Review of Plant Biology 62: 227-250.
    • (2011) Annual Review of Plant Biology , vol.62 , pp. 227-250
    • Smith, S.E.1    Smith, F.A.2
  • 60
    • 33745443572 scopus 로고    scopus 로고
    • Reactive oxygen species play a role in regulating a fungus-perennial ryegrass mutualistic interaction
    • Tanaka A, Christensen MJ, Takemoto D, Park P, Scott B. 2006. Reactive oxygen species play a role in regulating a fungus-perennial ryegrass mutualistic interaction. The Plant Cell 18: 1052-1066.
    • (2006) The Plant Cell , vol.18 , pp. 1052-1066
    • Tanaka, A.1    Christensen, M.J.2    Takemoto, D.3    Park, P.4    Scott, B.5
  • 61
    • 33745806179 scopus 로고    scopus 로고
    • Nitrogen delivery to maize via mycorrhizal hyphae depends on the form of N supplied
    • Tanaka Y, Yano K. 2005. Nitrogen delivery to maize via mycorrhizal hyphae depends on the form of N supplied. Plant, Cell & Environment 28: 1247-1254.
    • (2005) Plant, Cell & Environment , vol.28 , pp. 1247-1254
    • Tanaka, Y.1    Yano, K.2
  • 63
    • 77954338505 scopus 로고    scopus 로고
    • Regulation of the nitrogen transfer pathway in the arbuscular mycorrhizal symbiosis: gene characterization and the coordination of expression with nitrogen flux
    • Tian C, Kasiborski B, Koul R, Lammers PJ, Bucking H, Shachar-Hill Y. 2010. Regulation of the nitrogen transfer pathway in the arbuscular mycorrhizal symbiosis: gene characterization and the coordination of expression with nitrogen flux. Plant Physiology 153: 1175-1187.
    • (2010) Plant Physiology , vol.153 , pp. 1175-1187
    • Tian, C.1    Kasiborski, B.2    Koul, R.3    Lammers, P.J.4    Bucking, H.5    Shachar-Hill, Y.6
  • 64
    • 0000983122 scopus 로고
    • Mesure du taux de mycorhization VA d'un système radiculaire. Recherche de méthodes d'estimation ayant une signification fonctionnelle
    • Gianinazzi-Pearson V, Gianinazzi S, eds. Paris, France: INRA Press
    • Trouvelot A, Kough JL, Gianinazzi-Pearson V. 1986. Mesure du taux de mycorhization VA d'un système radiculaire. Recherche de méthodes d'estimation ayant une signification fonctionnelle. In: Gianinazzi-Pearson V, Gianinazzi S, eds. Physiological and genetical aspects of mycorrhizae. Paris, France: INRA Press, 217-221.
    • (1986) Physiological and genetical aspects of mycorrhizae , pp. 217-221
    • Trouvelot, A.1    Kough, J.L.2    Gianinazzi-Pearson, V.3
  • 65
    • 58249114899 scopus 로고    scopus 로고
    • Global gene expression profiling during Medicago truncatula-Phymatotrichopsis omnivora interaction reveals a role for jasmonic acid, ethylene, and the flavonoid pathway in disease development
    • Uppalapati SR, Marek SM, Lee HK, Nakashima J, Tang Y, Sledge MK, Dixon RA, Mysore KS. 2009. Global gene expression profiling during Medicago truncatula-Phymatotrichopsis omnivora interaction reveals a role for jasmonic acid, ethylene, and the flavonoid pathway in disease development. Molecular Plant-Microbe Interactions 22: 7-17.
    • (2009) Molecular Plant-Microbe Interactions , vol.22 , pp. 7-17
    • Uppalapati, S.R.1    Marek, S.M.2    Lee, H.K.3    Nakashima, J.4    Tang, Y.5    Sledge, M.K.6    Dixon, R.A.7    Mysore, K.S.8
  • 69
    • 81755176108 scopus 로고    scopus 로고
    • Genome-wide identification of microRNAs in response to low nitrate availability in maize leaves and roots
    • Xu Z, Zhong S, Li X, Li W, Rothstein SJ, Zhang S, Bi Y, Xie C. 2011. Genome-wide identification of microRNAs in response to low nitrate availability in maize leaves and roots. PLoS ONE 6: e28009.
    • (2011) PLoS ONE , vol.6
    • Xu, Z.1    Zhong, S.2    Li, X.3    Li, W.4    Rothstein, S.J.5    Zhang, S.6    Bi, Y.7    Xie, C.8
  • 70
    • 84861631166 scopus 로고    scopus 로고
    • How do nitrogen and phosphorus deficiencies affect strigolactone production and exudation?
    • Yoneyama K, Xie X, Kim HI, Kisugi T, Nomura T, Sekimoto H, Yokota T. 2012. How do nitrogen and phosphorus deficiencies affect strigolactone production and exudation? Planta 235: 1197-1207.
    • (2012) Planta , vol.235 , pp. 1197-1207
    • Yoneyama, K.1    Xie, X.2    Kim, H.I.3    Kisugi, T.4    Nomura, T.5    Sekimoto, H.6    Yokota, T.7


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