Biology Reference
In-Depth Information
3. Perera L, Perera ACNS, Bandaranayake CK, Harries HC. Coconut oil crops. Vollman J.
Rajcan I, editors. Handbook of Plant Breeding, 4. Berlin: Springer Science Business
Media, LLC; 2009, p. 369-396, 10.1007/978-0-387-77594-4_12.
4. Arunachalam, V. and Rajesh, M.K. (2008). Breeding of coconut palm. CAB Rev.:
Perspect. Agric., Vet. Sci., Nutr. Nat. Resour . 3 , 1-12.
5. Harries HC, Baudouin L, Cardena R. Floating, boating and introgression: molecular tech-
niques and the ancestry of coconut palm populations on Pacific Islands. Ethnobotany
Res. Appl . 2004; 2 :37-53.
6. Rohde W, Salamani F, Ashburner R, Randles JW. An EcoRI repetitive sequence family of
the coconut palm (Cocos nucifera L.) shows sequence homology to copia-like elements.
J. Genet. Breed . 1992; 46 :391-394.
7. Knutzon DS, Lardizabal KD, Nelsen JS, Bleibaum J, Davies HM, Metz JC. Cloning
of a Coconut Endosperm cDNA Encoding a 1 -Acyl-sn-Clycerol-3-Phosphate
Acyltransferase
that
Accepts
Medium-Chain-Length
Substrates.
Plant
Physiol .
1995; 109 :999-1006.
8. Ashburner GR, Thompson WK, Halloran GM. RAPD analysis of South Pacific coconut
palm populations. Crop Sci . 1997; 37 :992-997.
9. Paul R, George J, Rajesh MK, Jerard BA, Niral V. Genetic diversity in yellow dwarf pop-
ulations of coconut assessed using RAPD markers. Indian J. Hort . 2008; 65 :60-64.
10. Upadhyay A, Jayadev K, Manimekalai R, Parthasarathy VA. Genetic relation-
ship and diversity in Indian coconut accessions based on RAPD markers. Sci.Hort .
2004; 99 :353-362.
11. Manimekalai1 R, Nagarajan P. Interrelationships among coconut (Cocos nucifera L.)
accessions using RAPD technique. Genet Resour. Crop Evol . 2006; 53 :1137-1144.
12. Perera L, Russell JR, Provan J, McNicol JW, Powell W. Evaluating genetic relationships
between indigenous coconut (Cocos nucifera L.) accessions from Sri Lanka by means of
AFLP profiling. Theor. Appl. Genet . 1998; 96 :545-550.
13. Teulat B, Aldam C, Trehin R, Lebrun P, Barker JH, Arnold GM, et al. An analysis of
genetic diversity in coconut (Cocos nucifera L.) populations from across the geographic
range using sequence-tagged microsatellites (SSRs) and AFLPs. Theor. Appl. Genet .
2000; 100 :764-771.
14. Lebrun P, N'Cho YP, Seguin M, Grivet L, Baudouin L. Genetic diversity in coconut
(Cocos nucifera L.) revealed by restriction fragment length polymorphism (RFLP) mark-
ers. Euphytica . 1998; 101 :103-108.
15. Rohde W, Kullaya A, Rodriguez MJB, Ritter E. Genetic analysis of Cocos nucifera L. by
PCR amplification of spacer sequences separating a subset of copia-like EcoRI repetitive
elements. J. Genet. Breed . 1995; 49 :179-186.
16. Manimekalai R, Nagarajan P. Assessing genetic relationships among coconut (Cocos
nucifera L.) accessions using inter simple sequence repeat markers. Sci. Hort .
2006; 108 :49-54, 10.1016/j.scienta.2006.01.006.
17. Perera L, Russell JR, Provan J, Powell W. Identification and characterization of micro-
satellite loci in coconut ( Cocos nucifera L.) and the analysis of coconut populations in
Sri Lanka. Mol. Ecol . 1999; 8 :344-346.
18. Perera L, Russell JR, Provan J, Powell W. Use of microsatellite DNA markers to inves-
tigate the level of genetic diversity and population genetic structure of coconut (Cocos
nucifera L). Genome . 2000; 43 :15-21.
19. Perera L, Russell JR, Provan J, Powell W. Studying the genetic relationships among
coconut varieties/populations using microsatellite markers. Euphytica . 2003; 132 :
121-128.
Search WWH ::




Custom Search