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PMID: 23925853 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Nitrogen and phosphorus fertilization negatively affects strigolactone production and exudation in sorghum.

Planta ·Vol. 238 ·No. 5 ·2013-11-00 ·Pages 885-94

Yoneyama K, Xie X, Kisugi T, Nomura T, Yoneyama K

Abstract

Strigolactones (SLs) are essential host recognition signals for both root parasitic plants and arbuscular mycorrhizal fungi, and SLs or their metabolites function as a novel class of plant hormones regulating shoot and root architecture. Our previous study indicated that nitrogen (N) deficiency as well as phosphorus (P) deficiency in sorghum enhanced root content and exudation of 5-deoxystrigol, one of the major SLs produced by sorghum. In the present study, we examined how N and P fertilization affects SL production and exudation in sorghum plants subjected to short- (5 days) or long-term (10 days) N or P deficiency and demonstrated their common and distinct features. The root contents and exudation of SLs in the N- or P-deficient sorghum plants grown for 6, 12 or 24 h with or without N or P fertilization were quantified by LC-MS/MS. In general, without fertilization, root contents and exudation of SLs stayed at similar levels at 6 and 12 h and then significantly increased at 24 h. The production of SLs responded more quickly to P fertilization than the secretion of SLs, while regulation of SL secretion began earlier after N fertilization. It is suggested that sorghum plants regulate SL production and exudation when they are subjected to nutrient deficiencies depending on the type of nutrient and degree of deficiency.

MeSH Terms
Fertilizers Heterocyclic Compounds, 3-Ring/chemistry,metabolism Lactones/chemistry,metabolism Nitrogen/deficiency,pharmacology Phosphorus/pharmacology Plant Roots/drug effects,metabolism Plant Shoots/drug effects,metabolism Sorghum/drug effects,growth & development,metabolism
Chemicals
Fertilizers Heterocyclic Compounds, 3-Ring Lactones Phosphorus Nitrogen
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Yoneyama Kaori
Weed Science Center, Utsunomiya University, 350 Mine-machi, Utsunomiya, 321-8505, Japan.
Xie Xiaonan
Kisugi Takaya
Nomura Takahito
Yoneyama Koichi
References (22)
22 references, click to expand
  1. Functional biology of plant phosphate uptake at root and mycorrhiza interfaces.
    New Phytol. 2007;173(1):11-26 PMID: 17176390
  2. Strigolactone signaling is required for auxin-dependent stimulation of secondary growth in plants.
    Proc Natl Acad Sci U S A. 2011 Dec 13;108(50):20242-7 PMID: 22123958
  3. Inhibition of shoot branching by new terpenoid plant hormones.
    Nature. 2008 Sep 11;455(7210):195-200 PMID: 18690207
  4. Tomato strigolactones are derived from carotenoids and their biosynthesis is promoted by phosphate starvation.
    New Phytol. 2008;178(4):863-874 PMID: 18346111
  5. Strigolactones are regulators of root development.
    New Phytol. 2011 May;190(3):545-9 PMID: 21638793
  6. Strigolactones, host recognition signals for root parasitic plants and arbuscular mycorrhizal fungi, from Fabaceae plants.
    New Phytol. 2008 Jul;179(2):484-494 PMID: 19086293
  7. Nitrogen deficiency as well as phosphorus deficiency in sorghum promotes the production and exudation of 5-deoxystrigol, the host recognition signal for arbuscular mycorrhizal fungi and root parasites.
    Planta. 2007 Dec;227(1):125-32 PMID: 17684758
  8. How do nitrogen and phosphorus deficiencies affect strigolactone production and exudation?
    Planta. 2012 Jun;235(6):1197-207 PMID: 22183123
  9. Analysis of strigolactones, germination stimulants for striga and orobanche, by high-performance liquid chromatography/tandem mass spectrometry.
    J Agric Food Chem. 2003 Feb 26;51(5):1162-8 PMID: 12590450
  10. Interactions between circadian and hormonal signalling in plants.
    Plant Mol Biol. 2009 Mar;69(4):419-27 PMID: 18855103
  11. Strigolactone inhibition of shoot branching.
    Nature. 2008 Sep 11;455(7210):189-94 PMID: 18690209
  12. The strigolactone story.
    Annu Rev Phytopathol. 2010;48:93-117 PMID: 20687831
  13. Interactions between auxin and strigolactone in shoot branching control.
    Plant Physiol. 2009 Sep;151(1):400-12 PMID: 19641034
  14. Low phosphorus tolerance mechanisms: phosphorus recycling and photosynthate partitioning in the tropical forage grass, Brachiaria hybrid cultivar Mulato compared with rice.
    Plant Cell Physiol. 2004 Apr;45(4):460-9 PMID: 15111721
  15. Plant sesquiterpenes induce hyphal branching in arbuscular mycorrhizal fungi.
    Nature. 2005 Jun 9;435(7043):824-7 PMID: 15944706
  16. Diurnal variation of cytokinin, auxin and abscisic acid levels in tobacco leaves.
    J Exp Bot. 2005 Nov;56(421):2877-83 PMID: 16157652
  17. Phosphorus deficiency in red clover promotes exudation of orobanchol, the signal for mycorrhizal symbionts and germination stimulant for root parasites.
    Planta. 2007 Mar;225(4):1031-8 PMID: 17260144
  18. The circadian clock regulates auxin signaling and responses in Arabidopsis.
    PLoS Biol. 2007 Aug;5(8):e222 PMID: 17683202
  19. The Decreased apical dominance1/Petunia hybrida CAROTENOID CLEAVAGE DIOXYGENASE8 gene affects branch production and plays a role in leaf senescence, root growth, and flower development.
    Plant Cell. 2005 Mar;17(3):746-59 PMID: 15705953
  20. Physiological effects of the synthetic strigolactone analog GR24 on root system architecture in Arabidopsis: another belowground role for strigolactones?
    Plant Physiol. 2011 Feb;155(2):721-34 PMID: 21119044
  21. Germination of Witchweed (Striga lutea Lour.): Isolation and Properties of a Potent Stimulant.
    Science. 1966 Dec 2;154(3753):1189-90 PMID: 17780042
  22. Contribution of strigolactones to the inhibition of tiller bud outgrowth under phosphate deficiency in rice.
    Plant Cell Physiol. 2010 Jul;51(7):1118-26 PMID: 20542891
Article Info
Journal
Planta
Abbr.
Planta
ISSN
1432-2048
Published
2013-11-00
Epub
2013-00-08
Pages
885-94
Language
English
Region
Germany
NLM ID
1250576
Subset
IM
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