Biology Reference
In-Depth Information
furthermore means that MABC strategies could
be employed even in less developed regions of
the world. With molecular tools routinely applied
in breeding programs, the actual challenge is to
carefully choose relevant traits and to develop
phenotyping protocols that are a realistic reflec-
tion of the field situation.
Chiou TJ, Aung K, Lin SI, Wu CC, Chiang SF, Su CL. 2006.
Regulation of phosphate homeostasis by microRNA in
Arabidopsis . Plant Cell 18:412-421.
Collard BCY, Mackill DJ. 2008. Marker-assisted selection:
An approach for precision plant breeding in the twenty-
first century. Phil Trans R Soc B 363:557-572.
Cordell D, Drangert JO, White S. 2009. The story of phos-
phorus: Global food security and food for thought. Global
Environ Change 19:292-305.
Delhaize E, Randall PJ. 1995. Characterization of a
phosphate-accumulator mutant of Arabidopsis thaliana .
Plant Physiol 107:207-213.
Dong B, Rengel Z, Delhaize E. 1998. Uptake and transloca-
tion of phosphate by pho2 mutant and wild-type seedlings
of Arabidopsis thaliana . Planta 205:251-256.
Duan K, Yi K, Dang L, Huang H, Wu W, Wu P. 2008.
Characterization of a sub-family of Arabidopsis genes
with the SPX domain reveals their diverse functions in
plant tolerance to phosphorus starvation. Plant J 54:965-
975.
Elshire RJ, Glaubitz JC, Sun Q, Poland JA, Kawamoto
K, Buckler ES, Mitchell SE. 2011. A robust, sim-
ple genotyping-by-sequencing (GBS) approach for high
diversity species. PLoS ONE 6(5): e19379. doi:10.1371/
journal.pone.0019379.
Fageria NK, Wright RJ, Baligar VC. 1988. Rice cultivar eval-
uation for phosphorus use efficiency. Plant Soil 111:105-
109.
Franco-Zorrilla JM, Valli A, Todesco M, Mateos I, Puga MI,
Rubio-Somoza I, Leyva A, Weigel D, Garcıa JA, Paz-
Ares J. 2007. Target mimicry provides a new mechanism
for regulation of microRNA activity. Nat Genet 39:1033-
1037.
Fujii H, Chiou TJ, Lin SI, Aung K, Zhu JK. 2005. A miRNA
involved in phosphate-starvation response in Arabidop-
sis . Curr Biol 5:2038-2043.
Gamuyao R, Chin JH, Pariasca-Tanaka J, Pesaresi P, Dalid
C, Slamet-Loedin I, Tecson-Mendoza EM, Wissuwa M,
Heuer S. 2012. The protein kinase pstol1 from traditional
rice confers tolerance of phosphorus deficiency. Nature
488:535-541.
Haefele SM, Hijmans RJ. 2007. Soil quality in rice-based
rainfed lowlands of Asia: Characterization and distribu-
tion. In Aggarwal PK, Ladha JK, Singh RK, Devaku-
mar C, Hardy B, eds, Science, technology, and trade for
peace and prosperity: Proceedings of the 26 th Interna-
tional Rice Research Conference, New Delhi, India . Inter-
national Rice Research Institute, Indian Council of Agri-
cultural Research, and National Academy of Agricultural
Sciences, Los Banos, Philippines, and New Delhi, India,
pp. 297-308.
Haefele SM, Hijmans RJ. 2009. Soil quality in rainfed low-
land rice. Rice Today 8 (1):30-31.
Heuer S, Lu X, Chin JH, Tanaka JP, Kanamori H, Matsumoto
T, De Leon T, Ulat VJ, Ismail AM, Yano M, Wissuwa
M. 2009. Comparative sequence analyses of the major
References
Ai P, Sun S, Zhao J, Fan X, Xin W, Guo Q, Yu L, Shen Q,
Wu P, Miller AJ, Xu G. 2009. Two rice phosphate trans-
porters, OsPht1;2 and OsPht1;6, have different functions
and kinetic properties in uptake and translocation. Plant
J 57:798-809.
Angaji SA, Septiningsih EM, Mackill DJ, Ismail AM. 2010.
QTLs associated with tolerance to anaerobic conditions
during germination in rice ( Oryza sativa L.). Euphytica
172:159-168.
Aung K, Lin SI, Wu CC, Huang YT, Su CL, Chiou TJ.
2006. pho2 , a phosphate overaccumulator, is caused by a
nonsense mutation in a microRNA399 target gene. Plant
Physiol 141:1000-1011.
Bari R, Datt Pant B, Stitt M, Scheible WR. 2006. PHO2,
microRNA399 and PHR1 define a phosphate-signaling
pathway in plants. Plant Physiol 141:988-999.
Batjes NH. 1997. A world data set of derived soil properties
by FAO-UNESCO soil unit for global modeling. Soil Use
Manage 13:9-16.
Batjes NH. 2011. Global distribution of soil phosphorus
retention potential. Wageningen, ISRIC - World Soil
Information (with dataset), ISRIC Report 2011/06, 42
pp.
Bernier J, Kumar A, Venuprasad R, Spaner D, Verulkar S,
Mandal NP, Sinha PK, Peeraju P, Dongre PR, Mahto
RN, Atlin G. 2009a. Characterization of the effect of a
QTL for drought resistance in rice, qtl12.1 , over a range
of environments in the Philippines and eastern India.
Euphytica 166:207-217.
Bernier J, Serraj R, Kumar A, Venuprasad R, Impa S, Gowda
RPV, Oane R, Spaner D, Atlin G. 2009b. The large-effect
drought-resistance QTL qtl12.1 increases water uptake in
upland rice. Field Crops Res 110:139-146.
Bucher M. 2007. Functional biology of plant phosphate
uptake at root and mycorrhiza interfaces. New Phytol
173:11-26.
Chin JH, Gamuyao R, Dalid C, Bustamam M, Prasetiyono J,
Moeljopawiro S, Wissuwa M, Heuer S. 2011. Developing
rice with high yield under phosphorus deficiency: Pup1
sequence to application. Plant Physiol 156:1202-1216.
Chin JH, Lu X, Haefele SM, Gamuyao R, Ismail A, Wissuwa
M, Heuer S. 2010. Development and application of gene-
based markers for the major rice QTL Phosphorus uptake
1 . Theor Appl Genet 120:1073-1086.
Search WWH ::




Custom Search