Biology Reference
In-Depth Information
Lopes MA, Magnavaca R, Bahia Filho AFC, Gama EEG.
1987. Avalia¸ ao de popula¸ oes de milho e seus cruza-
mentos para tolerancia a toxidez de alumınio em solu¸ ao
nutritiva. Pesquisa Agropecu aria Brasileira , 22:257-
263.
Magalhaes JV. 2002. Molecular genetic and physiologi-
cal investigations of aluminum tolerance in sorghum
. Sorghum bicolor L. Moench. PhD dissertation, Cornell
University.
Magalhaes JV, Garvin DF, Wang Y, Sorrells ME, Klein PE,
Schaffert RE, Li L, Kochian LV. 2004. Comparative map-
ping of a major aluminum tolerance gene in sorghum and
other species in the Poaceae. Genetics 167:1905-1914.
Magalhaes JV, Liu J, Guimaraes CT, Lana UGP, Alves
VMC, Wang YH, Schaffert RE, Hoekenga OA, Pineros
MA, Shaff JE, Klein PE, Carneiro NP, Coelho CM, Trick
HN, Kochian LV. 2007. A gene in the multidrug and toxic
compound extrusion .MATE. family confers aluminum
tolerance in sorghum. Nature Genetics 39:1156-1161.
Magalhaes JV. 2010. How a microbial drug transporter
became essential for crop cultivation on acid soils: Alu-
minium tolerance conferred by the multidrug and toxic
compound extrusion .MATE. family. Annals of Botany
106:199-203.
Magnavaca R. 1982. Genetic variability and the inheritance
of aluminum tolerance in maize .Zea mays L . . .
Melo JO, Lana UGP, Pineros M, Alves VMC, Guimaraes CT,
Liu J, Zheng Y, Zhong S, Fei Z, Maron LG, Schaffert RE,
Kochian LV, Magalhaes JV. 2012. Incomplete transfer of
accessory loci influencing SbMATE expression underlies
genetic background effects for aluminum tolerance in
sorghum. The Plant Journal , online.
Meyer S, Mumm P, Imes D, Endler A, Weder B, Al-Rasheid
KAS, Geiger D, Marten I, Martinoia E, Hedrich R. 2010.
AtALMT12 represents an R-type anion channel required
for stomatal movement in Arabidopsis guard cells. The
Plant Journal 63:1054-1062.
Meyer S, Scholz-Starke J, De Angeli A, Kovermann P, Burla
B, Gambale F, Martinoia E. 2011. Malate transport by
the vacuolar AtALMT6 channel in guard cells is sub-
ject to multiple regulation. The Plant Journal 67:247-
257.
Minella E, Sorrells ME. 1992. Aluminum tolerance in barley:
Genetic relationships among genotypes of diverse origin.
Crop Science 32:593-598.
Miranda LT De, Furlani PR, Miranda LEC De, Sawazaki E.
Genetics of environmental resistance and super genes:
Latente
aluminum
tolerance.
1984.
Maize
Genetics
Cooperation News Letter 58:46-48.
Moon D, Ottoboni LM, Souza AP, Sibov S, Gas-
par M, Arruda P. 1997. Somaclonal-variation-induced
aluminum-sensitive mutant from an aluminum-inbred
maize tolerant line. Plant Cell Reports 16:686-691.
Morita M, Shitan N, Sawada K, Van Montagu MCE, Inze
D, Rischer H, Goossens A, Oksman-Caldentey KM,
Moriyama Y, Yazaki K. 2009. Vacuolar transport of nico-
tine is mediated by a multidrug and toxic compound
extrusion .MATE. transporter in Nicotiana tabacum. Pro-
ceedings of the National Academy of Sciences 106:2447-
2452.
Moriyama Y, Hiasa M, Matsumoto T, Omote H. 2008. Mul-
tidrug and toxic compound extrusion MATE.-type pro-
teins as anchor transporters for the excretion of metabolic
waste products and xenobiotics. Xenobiotica 38:1107-
1118.
Nass LL, Paterniani E. 2000. Pre-breeding: A link between
genetic resources and maize breeding. Scientia Agricola
57.3:581-587.
Ninamango-Cardenas F, Guimaraes CT, Martins PR, Paren-
toni SN, Carneiro NP, Lopes MA, Moro JR, Paiva E.
Mapping QTLs for aluminum tolerance in maize. 2003.
Euphytica 130:223-232.
Naspolini Filho W, Bahia Filho AFC, Vianna RT, Gama
EEG, Vasconcellos CA, Magnavaca R. 1981. Compor-
tamento de linhagens e hıbridos simples de milho ( Zea
mays L.) em solo sob vegeta¸ ao de cerrado. Ciencia e
Cultura 33(5):722-727.
Omote H, Hiasa M, Matsumoto T, Otsuka M, Moriyama Y.
2006. The MATE proteins as fundamental transporters
of metabolic and xenobiotic organic cations. Trends in
Pharmacological Sciences 27:587-593.
Otani M, Shitan N, Sakai K, Martinoia E, Sato F, Yazaki
K. 2005. Characterization of vacuolar transport of the
PhD
dissertation, University of Nebraska - Lincoln.
Magnavaca R, Gardner C, Clark. 1987. Evaluation of inbred
maize lines for aluminum tolerance in nutrient solution.
In: Gabelman HLB, ed., Genetic Aspects of Plant Mineral
Nutrition . Dordrecht: Martinus Nijhoff, pp 255-265.
Magnavaca R, Bahia Filho AFC. 1995. Sele¸ ao de milho
para tolerancia ao alumınio. In: Simp osio Internacional
sobre Estresse Ambiental. Anais: O milho em perspec-
tiva . Mexico, CIMMYT, pp 369-394.
Mariano ED, Keltjens WG. 2003. Evaluating the role of root
citrate exudation as a mechanism of aluminium resistance
in maize genotypes. Plant and Soil 256: 469-479.
Marinova K, Pourcel L, Weder B, Schwarz M, Barron D,
Routaboul JM, Debeaujon I, Klein M. 2007. The Ara-
bidopsis MATE Transporter TT12 Acts as a Vacuolar
Flavonoid/H
-Antiporter Active in Proanthocyanidin-
Accumulating Cells of the Seed Coat. The Plant Cell
19:2023-2038.
Maron LG, Kirst M, Mao C, Milner MJ, Menossi M, Kochian
LV. 2008. Transcriptional profiling of aluminum toxicity
and tolerance responses in maize roots. New Phytologist
179:116-128.
Maron L, Pineros MA, Guimaraes C, Magalhaes J, Pleiman
J, Mao C, Shaff J, Belicuas SNJ, Kochian L. 2010.
Two functionally distinct members of the MATE .mul-
tidrug and toxic compound extrusion. family of trans-
porters potentially underlie two major Al tolerance QTL
in maize. The Plant Journal 61:728-740.
Mattiello L, Kirst M, Silva FR, Jorge RA, Menossi M. 2010.
Transcriptional profile of maize roots under acid soil
growth. BMC Plant Biology 10:196.
+
Search WWH ::




Custom Search