Biology Reference
In-Depth Information
Maruthachalam K, Atallah ZK, Vallad GE, Klosterman SJ,
Hayes RJ, Davis RM, Subbarao KV (2010) Molecular
variation among isolates of Verticillium dahliae and poly-
merase chain reaction-based differentiation of races. Phy-
topathology 100:1222-1230.
Matheron ME, McCreight JD, Tickes BR, Porchas M (2005)
Effect of planting date, cultivar, and stage of plant devel-
opment on incidence of Fusarium wilt of lettuce in desert
production fields. Plant Dis 89:565-570.
Matuo T, Motohashi S (1967) On Fusarium oxysporum f. sp.
lactucae n. f. causing root rot of lettuce. Trans Mycol Soc
Jpn 32:13-15.
McCreight JD, Matheron ME, Tickes BR, Platts B (2005)
Fusarium wilt race 1 on lettuce. HortScience 40:529-
531.
McHale LK (2008) Global analysis of disease resistance
genes in lettuce. Ph.D. diss., University of California,
Davis, CA, USA.
McHale LK, Truco MJ, Kozik A, Wroblewski T, Ochoa
OE, Lahre KA, Knapp SJ, Michelmore RW (2009) The
genomic architecture of disease resistance in lettuce.
Theor Appl Genet 118:565-580.
Meuwissen THE, Hayes BJ, Goddard ME (2001) Prediction
of total genetic value using genome-wide dense marker
maps. Genetics 157:1819-1829.
Meyers BC, Chin DB, Shen KA, Sivaramakrishnan S,
Lavelle DO, Zhang Z, Michelmore RW (1998a) The
major resistance gene cluster in lettuce is highly dupli-
cated and spans several megabases. Plant Cell 10:1817-
1832.
Meyers BC, Shen KA, Rohani P, Gaut BS, Michelmore RW
(1998b) Receptor-like genes in the major resistance locus
of lettuce are subject to divergent selection. Plant Cell
10:1833-1846.
Michelmore RW (2010) Genetic variation in lettuce. Califor-
nia leafy greens research program, calgreens.org/control/
uploads/Michelmore_Variation_report_2009-2010_
final_(2)1.pdf
Michelmore RW, Meyers BC (1998) Clusters of resistance
genes in plants evolve by divergent selection and a birth-
and-death process. Genome Res 8:1113-1130.
Michelmore RW, Truco MJ, Ochoa OE (2010) Breeding leaf
lettuce. California leafy greens research program, cal-
greens.org/control/uploads/Michelmore_Leaf_Lettuce_
Report_2009-2010_final1.pdf
Michelmore RW, Truco MJ, Ochoa OE (2011) Breeding
crisphead and leafy lettuce. California leafy greens
research program, calgreens.org/control/uploads/
Michelmore_Breeding_Crisphead_and_Leafy_Lettuce.
pdf
Milbrath DG (1923) Downy mildew of lettuce in California.
JAgricRes 23:689-696.
Montesclaros L, Nicol N, Ubalijoro E, Leclerc-Potvin C,
Ganivet L, Laliberte JF, Fortin MG (1997) Response to
potyvirus infection and genetic mapping of resistance
loci to potyvirus infection in Lactuca . Theor Appl Genet
94:941-946.
Moreau L, Charcosset A, Hospital F, Gallais A (1998)
Marker-assisted selection efficiency in populations of
finite size. Genetics 148:1353-1365.
Moreno-Vazquez S, Ochoa OE, Faber N, Chao S, Jacobs
JME, Maisonneuve B, Kesseli RV, Michelmore RW
(2003) SNP-based codominant markers for a reces-
sive gene conferring resistance to corky root rot ( Rhi-
zomonas
suberifaciens )
in
lettuce
( Lactuca
sativa ).
Genome 46:1059-1069.
Mou B (2008) Lettuce. In: Prohens J, Nuez F (eds) Vegetables
I. Springer, New York, NY, USA, pp 75-116.
Mou B, Bull C (2004) Screening lettuce germplasm for new
sources of resistance to corky root. J Am Soc Hort Sci
129:712-716.
Nicaise V, German-Retana S, Sanjuan R, Dubrana MP,
Mazier M, Maisonneuve B, Candresse T, Caranta C, Le
Gall O (2003) The eukaryotic translation initiation factor
4E controls lettuce susceptibility to the potyvirus Lettuce
mosaic virus . Plant Physiol 132:1272-1282.
Niew ohner J, Salamini F, Gebhardt C (1995) Development of
PCR assays diagnostic for RFLP marker alleles closely
linked to alleles Gro1 and H1 , conferring resistance to the
root cyst-nematode Globodera rostochiensis in potato.
Mol Breed 1:65-78.
Norwood JM, Crute IR, Johnson AG, Gordon PL (1983) A
demonstration of the inheritance of field resistance to let-
tuce downy mildew ( Bremia lactucae Regel.) in progeny
derived
from
cv.
Grand
Rapids.
Euphytica
32:161-
170.
Norwood JM, Crute IR, Lebeda A (1981) The location and
characteristics of novel sources of resistance to Bremia
Lactucae Regel (downy mildew) in wild Lactuca L.
species. Euphytica 30:659-668.
Novak JB, Novakova J, Lanzova J (1981) Demonstration of
tomato bushy stunt virus in lettuce. Ochr Rostl 17:241-
245.
Obermeier C, Sears JL, Liu HY, Schlueter KO, Ryder EJ,
Duffus JE, Koike ST, Wisler GC (2001) Characterization
of distinct tombusviruses that cause diseases of lettuce
and tomato in the western United States. Phytopathology
91:797-806.
Ochoa O, Delp B, Michelmore RW (1987) Resistance in Lac-
tuca spp. to Microdochium panattoniana (lettuce anthrac-
nose). Euphytica 36:609-614.
Paran I, Kesseli R, Michelmore R (1991) Identification of
restriction fragment length polymophism and random
amplified polymorphic DNA markers linked to downy
mildew resistance genes in lettuce, using near-isogenic
lines. Genome 34:1021-1027.
Paran I, Michelmore RW (1993) Development of reliable
PCR-based markers linked to downy mildew resistance
genes in lettuce. Theor Appl Genet 85:985-993.
Paulus AO (1997) Powdery mildew. In: Davis RM, Subbarao
KV, Raid RN, Kurtz EA (eds) Compendium of lettuce
diseases. APS Press, St. Paul, MN, USA, pp 23-23.
Pegg GF, Brady BL (2002) Verticillium wilts. CABI Pub-
lishing, New York.
Search WWH ::




Custom Search