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Details for: PI 706251,
Glycine max
(L.) Merr., 'USDA-N6007HOLL'
Summary
Passport
Taxonomy
Other
Pedigree
IPR
Observation
Summary Data
Taxonomy:
Glycine max
(L.) Merr.
Cultivar:
'USDA-N6007HOLL'
Origin:
Developed – North Carolina, United States
Maintained:
National Laboratory for Genetic Resources Preservation
Received by NPGS:
05 Nov 2024
Form Received:
Seed
Availability
This accession is not available. Contact site for status.
National Laboratory for Genetic Resources Preservation
There are no images for this accession.
Core Passport Data
Taxonomy:
Glycine max
(L.) Merr.
Cultivar:
'USDA-N6007HOLL'
Origin:
Developed – North Carolina, United States
Maintained:
National Laboratory for Genetic Resources Preservation
Received by NPGS:
05 Nov 2024
Form Received:
Seed
Source History
Developed
North Carolina, United States
Developer(s):
Taliercio, Earl, USDA-ARS
Accession Names and Identifiers
'USDA-N6007HOLL'
Type: Cultivar name
Narrative
USDA-N6007HOLL is an F4-derived line from backcross to USDA released cultivar NC-Roy (Burton, Carter Jr, & Bowman, 2005). TN10-5002LL is a LL breeding line developed at Univ. of Tennessee from a cross of ‘Williams 82’ x (‘Pana’ X CX1512-44). CX1512-44 is a LL line generated by treating ‘Century’ with ethyl methanesulfonate (Bilyeu et al., 2011; Bilyeu, Palavalli, Sleper, & Beuselinck, 2005; Wilcox & Cavins, 1985). TN10-5002LL with homozygous mutant alleles at two loci for LL was backcrossed into NC-Roy. BC3F1 heterozygous for FAD3A_snp810 and FAD3C_snp383 were identified in each BC generation using a marker assisted selection protocol summarized by Shi et al. (2014). After three generations of backcrossing, BC3F2 progeny homozygous for the two LL alleles was identified using marker assisted selection. The high oleic PI 603452 (FAD2-1A mutant) was crossed with mid-oleic PI 283327 (FAD2-1B mutant) and high oleic F2 progeny homozygous for the FAD2-1A_543 and FAD2-1B_410 SNPs were identified using marker assisted selection, following the protocol described in Shi et al. (2015). An individual homozygous for the two high oleic loci was backcrossed to NC-Roy three times using marker assisted selection. BC3F1 heterozygous for FAD2-1A_543 and FAD2-1B_410 were identified in each BC generation using marker assisted selection described in Shi et al (2015). BC3F2 progeny homozygous for both high oleic alleles were identified using marker assisted selection. A convergent cross was made between the BC3 high oleic plants homozygous for FAD2-1A_543 and FAD2-1B_410 and the BC3 low “lin” plants homozygous for FAD3A_snp810 and FAD3C_snp383. Convergent crosses that were homozygous for all the markers were identified by marker assay.
Glycine max
(L.) Merr.
Genus:
Glycine
Subgenus:
Soja
Family:
Fabaceae
(alt. Leguminosae)
Subfamily:
Faboideae
Tribe:
Phaseoleae
Subtribe:
Glycininae
Nomen number:
17711
Place of publication:
Interpr. Herb. amboin. 274. 1917
Protologue link:
https://biodiversitylibrary.org/page/44102092
Verified:
03/19/1987
by ARS Systematic Botanists.
Other conspecific taxa
Autonyms (not in current use), synonyms and invalid designations
Basionym
Phaseolus max
L.
Autonym(s)
Glycine max
(L.) Merr. subsp.
max
Homotypic Synonym(s)
Soja max
(L.) Piper
Heterotypic Synonym(s)
Dolichos soja
L.
Glycine gracilis
Skvortsov
Glycine hispida
(Moench) Maxim.
Glycine hispida
(Moench) Maxim. var.
brunnea
Skvortsov
Glycine hispida
(Moench) Maxim. var.
hispida
Glycine hispida
(Moench) Maxim. var.
lutea
Skvortsov
Glycine soja
(L.) Merr.
Soja hispida
Moench
Common names
Language
Name
Alternate name
note
seq
Citation
English
edamame
1
Carson, L. C. et al.
2011. Cultivar evaluation and lipid and protein contents of Virginia-grown edamame. HortTechnol. 21:181-185.
English
soya
1
Wiersema, J. H. & B. León.
1999.
World economic plants: a standard reference
CRC Press, Boca Raton, FL.
English
soya-bean
1
Botanical Society of the British Isles.
BSBI taxon database (on-line resource).
English
soybean
1
Wiersema, J. H. & B. León.
1999.
World economic plants: a standard reference
CRC Press, Boca Raton, FL.
French
soja
2
Rehm, S.
1994. Multilingual dictionary of agronomic plants
German
Sojabohne
2
Rehm, S.
1994. Multilingual dictionary of agronomic plants
Italian
soia
2
International Seed Testing Association.
1982. A Multilingual Glossary of Common Plant-Names 1. Field crops, grasses and vegetables, ed. 2.
Japanese Rōmaji
daizu
2
Ohwi, J.
1965. Flora of Japan (Engl. ed.).
Portuguese
soja
2
Rehm, S.
1994. Multilingual dictionary of agronomic plants
Spanish
frijol de soya
2
Rehm, S.
1994. Multilingual dictionary of agronomic plants
Spanish
haba soya
2
Rehm, S.
1994. Multilingual dictionary of agronomic plants
Spanish
soja
2
Rehm, S.
1994. Multilingual dictionary of agronomic plants
Swedish
sojaböna
2
Aldén, B., S. Ryman, & M. Hjertson.
2012.
Svensk Kulturväxtdatabas, SKUD (Swedish Cultivated and Utility Plants Database; online resource)
Transcribed Chinese
da dou
2
Wu Zheng-yi & P. H. Raven et al., eds.
1994-.
Flora of China (English edition).
Transcribed Korean
kong
2
Mun-Chan, B. et al.
1986. A checklist of the Korean cultivated plants. Kulturpflanze 34:101-102.
Name
References
Annotations
Other Links
Storage Information Form
Actions
Non Genetically-Engineered Organism:
Per Deposit Form. 06 Nov 2024.
Pathogens
Vouchers
Citations
Pedigree
Description:
[NC Roy X TN10-5002LL (FAD3A_snp810 and FAD3C_snp383 ) ] X [PI 603452 (FAD2-1A mutant) X PI 283327 (FAD2-1B mutant) ].
Intellectual Property Rights
Journal of Plant Registration
. GP-530, SOYBEAN.
Material Transfer Agreement