Table of Contents Table of Contents
Previous Page  167 / 202 Next Page
Information
Show Menu
Previous Page 167 / 202 Next Page
Page Background

165

27.

Asins M.J., Carbonell E.A.

Detection of linkage between restriction

fragment length polymorphism markers and quantitative traits.

Theor.

Appl. Genet

. 1988. 76: 623-626.

28.

Austerlitz F., Smouse P.E.

Two-generation analysis of pollen flow

across a landscape. II. Relation between

Φ

ft

pollen dispersal and

interfemale distance.

Genetics

. 2001. 157. 851-857.

29.

Bar-Hen A., Charcosset A.

Relationship between molecular and mor-

phological distances in a maize inbred lines collection: Application for

breeders’ right protection. In:

Biometrics in Plant Breeding: Application

of Molecular Markers. Proc. 9

th

Meeting of the Eucarpia Section Bio-

metrics in Plant Breeding. Van Oijen J.W., Jansen J. (eds.)

. 1994.

pp.57-66.

30.

Bark O.H., Heavey M.J.

Similarities and relationships among popula-

tions of the bulb onion estimated by RFLPs.

Theor. Appl. Genet

. 1995.

90: 407-414.

31.

Beavis W.D., Grant D., Albertsen M., Fincher R.

Quantitative trait

loci for plant height in for maize populations and their associations with

qualitative genetic loci.

Theor. Appl. Genet

. 1991. 83: 141-145.

32.

Beavis W.D., Keim P.

Identification of quantitative trait loci that are af-

fected by environment. In:

Genotype by Environment Interaction. Kang

M.S., Gauch H.G. (eds.)

. CRC Press Inc. 1996. pp.123-149.

33.

Bernacchi D., Beck-Bunn T., Emmatty D., Eshed Y., Inai S.,

Lorez J., Petiard V., Sayama H., Uhlig J., Zamir D., Tanksley S.D.

Advanced backcrossQTL analysis in tomato. I. Evaluation of near-

isogenic lines carrying single-donor introgressions for desirable wild

QTL-alleles

derived

from

Lycopersicon

hirsutum

and

L.pimpinellifolium

.

Theor. Appl. Genet

. 1998. 97: 170-180.

34.

Bernacchi D., Beck-Bunn T., Eshed Y., Lorez J., Petiard V.,

Uhlig J., Zamir D., Tanksley S.D.

Advanced backcross QTL analysis

in tomato. II. Identification of QTLs for traits of agronomic importance

from

Lycopersicon hirsutum

.

Theor. Appl. Genet

. 1998. 97: 381-397.

35.

Bernardo R.

Estimation of coefficient of coancestry using molecular

markers in maize.

Theor. Appl. Genet

. 1993. 85: 1055-1062.

36.

Bernardo R.

Prediction of maize single cross performance using RFLPs

and information from related hybrids.

Crop Sci

. 1994. 34: 20-25.

37.

Bernardo R., Kahler A.I.

North American study on essential derivation

in maize: inbreds developed without and with selection from F

2

popula-

tions.

Theor. Appl. Genet

. 2001. 102: 986-992.

38.

Bernatzky R., Tanksley S.D.

Toward a saturated linkage map in toma-

to based on isozymes and random cDNA sequences.

Genetics

. 1986.

112: 887-898.

39.

Bezant J., Laurie D., Pratchett N., Chojecki J., Kearsey M.

Marker

regression mapping of QTL controlling flowering time and plant height

Электронная Научная СельскоХозяйственная Библиотека