943
Views
30
CrossRef citations to date
0
Altmetric
Original Articles

Effect of seed phosphorus and soil phosphorus applications on early growth of rice (Oryza sativa L.) cv. IR66

, &
Pages 499-509 | Received 25 Dec 1995, Accepted 26 Jul 1996, Published online: 01 Feb 2012

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Victor Oghogho Ebuele, Anna Santoro & Vera Thoss. (2017) Characterization of Plant Seeds by Phosphorus-31 Nuclear Magnetic Resonance Spectroscopy. Analytical Letters 50:6, pages 999-1012.
Read now
Imran Muhammad, Maria Kolla, Römheld Volker & Neumann Günter. (2015) Impact of Nutrient Seed Priming on Germination, Seedling Development, Nutritional Status and Grain Yield of Maize. Journal of Plant Nutrition 38:12, pages 1803-1821.
Read now
RichardW. Bell. (2000) Temporary nutrient deficiency ‐ a difficult case for diagnosis and prognosis by plant analysis. Communications in Soil Science and Plant Analysis 31:11-14, pages 1847-1861.
Read now

Articles from other publishers (27)

Wei Wang, Xiaodan Sun, Fengrong Zheng, Zhaohui Zhang, Zongling Wang, Lingyun Qu & Xuguang Hong. (2023) Salt–Alkali-Resistant Phosphate-Solubilizing Bacterium: Kushneria sp. YCWA18 Improves Soil Available Phosphorus and Promotes the Growth of Suaeda salsa. Journal of Plant Growth Regulation.
Crossref
Aung Zaw Oo, Hidetoshi Asai, Khin Thuzar Win, Junichiro Marui & Hiroki Saito. (2023) Seed phytic acid concentration affects rice seedling vigor irrespective of soil phosphorus bioavailability. Physiologia Plantarum 175:3.
Crossref
Jesmin Akter, Azharul Islam, Khandoker Qudrata Kibria, Sharif Hasan Limon, Marija Romić & Atikul Islam. (2022) Effects of chicken feather hydrochar on soil amelioration and plant growth in an alkaline soil. Arabian Journal of Geosciences 16:1.
Crossref
Witold Grzebisz, Jean Diatta, Przemysław Barłóg, Maria Biber, Jarosław Potarzycki, Remigiusz Łukowiak, Katarzyna Przygocka-Cyna & Witold Szczepaniak. (2022) Soil Fertility Clock—Crop Rotation as a Paradigm in Nitrogen Fertilizer Productivity Control. Plants 11:21, pages 2841.
Crossref
Poli Yugandhar, Nallamothu Veronica, D. Subrahmanyam, P. Brajendra, S. Nagalakshmi, Akanksha Srivastava, S. R. Voleti, N. Sarla, R. M. Sundaram, Amitha Mithra Sevanthi, A. K. Singh & Satendra K. Mangrauthia. (2022) Revealing the effect of seed phosphorus concentration on seedling vigour and growth of rice using mutagenesis approach. Scientific Reports 12:1.
Crossref
Annamalai Anandan, Chidambaranathan Parameswaran, Anumalla Mahender, Amaresh Kumar Nayak, Sampthamprajan Vellaikumar, Cayalvizhi Balasubramaniasai & Jauhar Ali. (2021) Trait variations and expression profiling of OsPHT1 gene family at the early growth-stages under phosphorus-limited conditions. Scientific Reports 11:1.
Crossref
Xiao Wang, Jiayin Pang, Zhihui Wen, Gautier Gadot, Axel de Borda, Kadambot H. M. Siddique & Hans Lambers. (2021) Lower seed P content does not affect early growth in chickpea, provided starter P fertiliser is supplied. Plant and Soil 463:1-2, pages 113-124.
Crossref
Patrick E. Hayes, Francis J. Nge, Michael D. Cramer, Patrick M. Finnegan, Peili Fu, Stephen D. Hopper, Rafael S. Oliveira, Benjamin L. Turner, Graham Zemunik, Hongtao Zhong & Hans Lambers. (2021) Traits related to efficient acquisition and use of phosphorus promote diversification in Proteaceae in phosphorus‐impoverished landscapes. Plant and Soil 462:1-2, pages 67-88.
Crossref
David Manuel Díaz-Pontones, José Isaac Corona-Carrillo, Carlos Herrera-Miranda & Sandra González. (2021) Excess Zinc Alters Cell Wall Class III Peroxidase Activity and Flavonoid Content in the Maize Scutellum. Plants 10:2, pages 197.
Crossref
Terry J. Rose & Carolyn A. Raymond. (2020) Seed Phosphorus Effects on Rice Seedling Vigour in Soils Differing in Phosphorus Status. Agronomy 10:12, pages 1919.
Crossref
Chanakan Prom-u-thai & Benjavan Rerkasem. (2020) Rice quality improvement. A review. Agronomy for Sustainable Development 40:4.
Crossref
Sampad R. Patra & Malay K. Bhowmick. 2020. New Frontiers in Stress Management for Durable Agriculture. New Frontiers in Stress Management for Durable Agriculture 645 660 .
Jian Jin, Roger Armstrong & Caixian Tang. (2019) Impact of elevated CO2 on grain nutrient concentration varies with crops and soils – A long-term FACE study. Science of The Total Environment 651, pages 2641-2647.
Crossref
Elke Vandamme, Pieter Pypers, Erik Smolders & Roel Merckx. (2015) Seed weight affects shoot and root growth among and within soybean genotypes beyond the seedling stage: implications for low P tolerance screening. Plant and Soil 401:1-2, pages 65-78.
Crossref
Elke Vandamme, Matthias Wissuwa, Terry Rose, Kokou Ahouanton & Kazuki Saito. (2016) Strategic phosphorus (P) application to the nursery bed increases seedling growth and yield of transplanted rice at low P supply. Field Crops Research 186, pages 10-17.
Crossref
Kerstin Panten, Frauke Godlinski, Susanne Schroetter & Maximilian Hofmeier. 2016. Phosphorus in Agriculture: 100 % Zero. Phosphorus in Agriculture: 100 % Zero 155 178 .
K. Bhanuprakash & H. S. Yogeesha. 2016. Abiotic Stress Physiology of Horticultural Crops. Abiotic Stress Physiology of Horticultural Crops 103 117 .
ANNY RUTH PAME, CHRISTINE KREYE, DAVID JOHNSON, SIGRID HEUER & MATHIAS BECKER. (2015) EFFECTS OF GENOTYPE, SEED P CONCENTRATION AND SEED PRIMING ON SEEDLING VIGOR OF RICE. Experimental Agriculture 51:3, pages 370-381.
Crossref
Yusuke Tagashira, Tomoe Shimizu, Masanobu Miyamoto, Sho Nishida & Kaoru Yoshida. (2015) Overexpression of a Gene Involved in Phytic Acid Biosynthesis Substantially Increases Phytic Acid and Total Phosphorus in Rice Seeds. Plants 4:2, pages 196-208.
Crossref
Muhamamad Nadeem, Alain Mollier, Alain Vives, Loic Prud´Homme, Sylvie Niollet & Sylvain Pellerin. (2014) Short Communication. Effect of phosphorus nutrition and grain position within maize cob on grain phosphorus accumulation. Spanish Journal of Agricultural Research 12:2, pages 486.
Crossref
Whitney D. Robinson, Ira Carson, Sheng Ying, Kaya Ellis & William C. Plaxton. (2012) Eliminating the purple acid phosphatase At PAP 26 in Arabidopsis thaliana delays leaf senescence and impairs phosphorus remobilization . New Phytologist 196:4, pages 1024-1029.
Crossref
Terry J. Rose, Juan Pariasca‐Tanaka, Michael T. Rose, Asako Mori & Matthias Wissuwa. (2012) Seeds of doubt: Re‐assessing the impact of grain P concentrations on seedling vigor. Journal of Plant Nutrition and Soil Science 175:6, pages 799-804.
Crossref
Philip J. White & Erik J. Veneklaas. (2012) Nature and nurture: the importance of seed phosphorus content. Plant and Soil 357:1-2, pages 1-8.
Crossref
Evandro Luiz Schoninger, Luciano Colpo Gatiboni & Paulo Roberto Ernani. (2012) Rhizosphere pH and phosphorus forms in an Oxisol cultivated with soybean, brachiaria grass, millet and sorghum. Scientia Agricola 69:4, pages 259-264.
Crossref
Terry J. Rose, Juan Pariasca-Tanaka, Michael T. Rose, Yoshimichi Fukuta & Matthias Wissuwa. (2010) Genotypic variation in grain phosphorus concentration, and opportunities to improve P-use efficiency in rice. Field Crops Research 119:1, pages 154-160.
Crossref
Nobuhito Sekiya & Katsuya Yano. (2009) Seed P-enrichment as an effective P supply to wheat. Plant and Soil 327:1-2, pages 347-354.
Crossref
Sovuthy Pheav, R. W. Bell, G. J. D. Kirk & P. F. White. (2005) Phosphorus cycling in rainfed lowland rice ecosystems on sandy soils. Plant and Soil 269:1-2, pages 89-98.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.