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Digital imaging approaches for phenotyping whole plant nitrogen and phosphorus response in Brachypodium distachyon 被引量:1

Digital imaging approaches for phenotyping whole plant nitrogen and phosphorus response in Brachypodium distachyon
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摘要 This work evaluates the phenotypic response of the model grass (Brachypodium distacbyon (L.) P. Beauv.) to nitrogen and phosphorus nutrition using a combination of imaging techniques and destructive harvest of shoots and roots. Reference line Bd21-3 was grown in pots using 11 phosphorus and 11 nitrogen concentrations to establish a dose-response curve. Shoot biovolume and biomass, root length and biomass, and tissue phosphorus and nitrogen concentrations increased with nutrient concentration. Shoot biovolume, estimated by imaging, was highly correlated with dry weight (R2 〉 0.92) and both biovolume and growth rate responded strongly to nutrient availability. Higher nutrient supply increased nodal root length more than other root types. Photochemical efficiency was strongly reduced by low phosphorus concentrations as early as 1 week after germination, suggesting that this measurement may be suitable for high throughput screening of phosphorus response. In contrast, nitrogen concentration had little effect on photochemical efficiency. Changes in biovolume over time were used to compare growth rates of four accessions in response tonitrogen and phosphorus supply. We demonstrate that a time series image-based approach coupled with mathematical modeling provides higher resolution of genotypic response to nutrient supply than traditional destructive techniques and shows promise for high throughput screening and determina- tion of genomic regions associated with superior nutrient use efficiency. This work evaluates the phenotypic response of the model grass (Brachypodium distacbyon (L.) P. Beauv.) to nitrogen and phosphorus nutrition using a combination of imaging techniques and destructive harvest of shoots and roots. Reference line Bd21-3 was grown in pots using 11 phosphorus and 11 nitrogen concentrations to establish a dose-response curve. Shoot biovolume and biomass, root length and biomass, and tissue phosphorus and nitrogen concentrations increased with nutrient concentration. Shoot biovolume, estimated by imaging, was highly correlated with dry weight (R2 〉 0.92) and both biovolume and growth rate responded strongly to nutrient availability. Higher nutrient supply increased nodal root length more than other root types. Photochemical efficiency was strongly reduced by low phosphorus concentrations as early as 1 week after germination, suggesting that this measurement may be suitable for high throughput screening of phosphorus response. In contrast, nitrogen concentration had little effect on photochemical efficiency. Changes in biovolume over time were used to compare growth rates of four accessions in response tonitrogen and phosphorus supply. We demonstrate that a time series image-based approach coupled with mathematical modeling provides higher resolution of genotypic response to nutrient supply than traditional destructive techniques and shows promise for high throughput screening and determina- tion of genomic regions associated with superior nutrient use efficiency.
出处 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2014年第8期781-796,共16页 植物学报(英文版)
基金 supported by the Office of Science (BER), U.S. Department of Energy through Interagency Agreement DE-SC0001526 the Australian Grain Research and Development Corporation (GRDC)
关键词 Nutrients uptake PHENOMICS photosynthesis root shootCitation: Poire R Chochois V Sirault XRR Vogel JP Watt M Furbank RT(2o14) Digital imaging approaches for phenotyping whole plantnitrogen and phosphorus response in Brachypodium distachyon. Nutrients uptake phenomics photosynthesis root shootCitation: Poire R, Chochois V, Sirault XRR, Vogel JP, Watt M, Furbank RT(2o14) Digital imaging approaches for phenotyping whole plantnitrogen and phosphorus response in Brachypodium distachyon.
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  • 1Ainsworth EA, Long SP (2005) What have we learned from 15 years of free-air CO2 enrichment (FACE)? A meta-analytic review of the responses of photosynthesis, canopy properties and plant production to rising CO2. New Phytol. 165, 351-372. 被引量:1
  • 2Barraclough PB, Howarth JR, Jones J, Lopez-Bellido R, Parmar S, Shepherd CE, Hawkesford MJ (2010) Nitrogen efficiency of wheat: Genotypic and environmental variation and prospects for improvement. Eur. J. Agron. 33, 1-11. 被引量:1
  • 3Batten GD (1998) Plant analysis using near infrared reflectance spec- troscopy: The potential and limitation. Aust. J. Exp. Agric. 38, 697- 706. 被引量:1
  • 4Blake-Kalff MMA, Hawkesford M J, Zhao F J, McGrath SP (2000) Diagnosing sulphur deficiency in field-grown oilseed rape (Brassicanapus L) and wheat (Triticum aestivum L.). Plant Soil 225, 95- 107. 被引量:1
  • 5Carmo-Silva AE, Keys A J, Andralojc P J, Powers S J, Arrabaca MC, Parry MAJ (2010) Rubisco activities: Properties and regulation in three different C4 grasses under drought. J. Exp. Bot. 61, 2355- 2366. 被引量:1
  • 6Christou P, Ford TL, Kofron M (1991) Production of transgenic rice (Oryza sativa L.) plants from agronomically important indica and japonica varieties via electric discharge particle-acceleration of exogenous DNA into immature zygotic embryos. Nat. Biotechno/. 9, 957-962. 被引量:1
  • 7Cordell D, Drangert J-O, White S (2009) The story of phosphorus: Global food security and food for thought. G/oba/Environ. Change 19, 292-305. 被引量:1
  • 8Dohleman FG, Heaton EA, Leakey DB, Long SP (2009) Does greater leaf-level photosynthesis explain the larger solar energy conversion efficiency of Miscanthus relative to switchgrass. P/ant Ce//Environ. 31, 1525-1537. 被引量:1
  • 9Dohleman FG, Long SP (2009) More productive than maize in the Midwest: How does Miscanthus do it? Plant Physiol. 150, 2104- 2115. 被引量:1
  • 10Doughty CE, Asner GP, Martin RE (2011) Predicting tropical plant physiology from leaf and canopy spectroscopy. Oeco/ogia 165, 289-299. 被引量:1

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