|Table of Contents|

Mapping QTLs for Growth Period Related Traits in Soybean(PDF)

《大豆科学》[ISSN:1000-9841/CN:23-1227/S]

Issue:
2012年01期
Page:
1-8
Research Field:
Publishing date:

Info

Title:
Mapping QTLs for Growth Period Related Traits in Soybean
Author(s):
KAN Gui-zhenHU Zhen-binTONG Zhen-fengZHANG DanHAO De-rongYIN Zhi-tongYU De-yue
Soybean Research Institute,Nanjing Agricultural University,National Center for Soybean Improvement,National Key Laboratory for Crop Genetics and Germplasm Enhancement,Nanjing 210095,Jiangsu,China
Keywords:
Growth period related traitsQTL mappingEpistatic QTL
PACS:
S565.1
DOI:
10.3969/j.issn.1000-9841.2012.01.002
Abstract:
One F2 population(316 plants)derived from a cross between Jiangpu wild soybean-5 and cultivar soybean line Nannong 06-17 was used to construct a genetic linkage map by JoinMap 3.0.In total,210 markers(207 molecular markers and 3 morphological markers)were mapped.The constructed linkage map covered 2 205.85 cM and consisted of 24 linkage groups(LGs),with an average distance between markers of 11.09 cM.Four growth period related traits including whole growth period(WGP),vegetative period(VP),reproductive period(RP)and growth period structure trait(RV)of 2007 F2,2008 F2∶3 and 2009 F2∶4?were mapped by mixed-model-based composite interval mapping(MCIM).We detected 15 additive-dominant QTLs and 9 pairs of epistatic QTLs.QTL clusters(QTLs of different traits in the same marker)and QTLs interaction networks(the interaction among QTLs)were found.Three major QTLs were qVP-H-1,qWGP-H-1and qRV-H-1.Additive effect of qVP-H-1,qWGP-H-1 and qRV-H-1 accounted for 21.31%,13.14% and 9.37% genetic variation respectively.These results will provide a basis for molecular marker-assisted selection,elite genes-discovering and soybean genetic basis-broadening.

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Last Update: 2014-08-14