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红白花斑种皮高油酸花生种质材料的创制
引用本文:闫丛丛,侯名语,崔顺立,刘立峰,Luciano Josephy Harry Kazembe,杨鑫雷,孟庆荣,李文平,刘富强,穆国俊. 红白花斑种皮高油酸花生种质材料的创制[J]. 植物遗传资源学报, 2017, 18(3): 587-594. DOI: 10.13430/j.cnki.jpgr.2017.03.024
作者姓名:闫丛丛  侯名语  崔顺立  刘立峰  Luciano Josephy Harry Kazembe  杨鑫雷  孟庆荣  李文平  刘富强  穆国俊
作者单位:1. 河北农业大学/河北省作物种质资源实验室/教育部华北作物种质资源重点实验室,保定,071001;2. 保定市农业科学院,保定,071001
基金项目:国家现代农业产业技术体系建设专项(CARS-14));河北省科技支撑计划(16226301D);河北省高等院校科学技术研究重点项目(ZH2011209);河北省山区优势特色杂粮开技术研究与示范(3020208);河北农业大学作物学科梯队建设基金(TD2016C301)
摘    要:本研究利用粉色种皮高油酸花生G63与紫白花斑种皮普通油酸花生VG-01配置杂交组合。利用等位基因特异性扩增(AS-PCR,allele-specific PCR)鉴定出16个F_1真杂种。在F_2中筛选到_ol1_ol_2单株,并对64个F_2:3家系间的种皮色泽分离进行χ~2检测。结果表明,纯色花生∶花斑花生在0.05水平上符合9∶7,花生种皮花斑性状由2对互补基因控制,当2对基因同时处于显性时,种皮表现为纯色;当2对基因至少有1对为隐性纯合时,种皮表现为花斑。利用AS-PCR技术对334株花斑种皮F_3单株进行基因型鉴定,筛选到29株ol_1ol_1ol_2ol_2基因型的单株。利用气相色谱测定结果表明,F4种子油酸GC值介于70.77%~82.87%,油酸/亚油酸介于8.15~26.30。F4群体植株主茎高12.4~87.3 cm,平均57.2 cm,较对照冀花2号增高34.97%;第1对侧枝长91.6~196.3 cm,平均134.1 cm,较对照冀花2号增长34.28%。F5新种质的单株果重、单株果数、单株仁重、单株仁数分别为(27.16±9.51)g、(22.11±10.26)个、(20.10±7.17)g和(31.94±15.16)个。新种质9-7、14-2、14-3、17-3和17-7均为红白花斑种皮,在单株果重方面较对照冀花2号增加230.02%、165.80%、210.66%、200.65%和160.26%,在单株果数方面增加280.00%、340.00%、450.00%、210.00%和150.00%,其油酸GC值分别为80.54%、81.75%、80.63%、81.3%和81.56%。该批种质材料不仅油酸含量高,而且具有医疗保健价值,对丰富我国高油酸花生遗传多样性具有重要的现实意义。

关 键 词:花生  高油酸  花斑种皮  AS-PCR  气相色谱
收稿时间:2016-11-22
修稿时间:2017-03-10

Creation of High Oleic Acid Peanut Germplasm Materials with Red and White Variegated Seed Coat
YAN Cong-cong,HOU Ming-yu,CUI Shun-li,LIU Li-feng,Luciano Josephy Harry Kazembe,YANG Xin-lei,MENG Qing-rong,LI Wen-ping,LIU Fu-qiang,MU Guo-jun. Creation of High Oleic Acid Peanut Germplasm Materials with Red and White Variegated Seed Coat[J]. Journal of Plant Genetic Resources, 2017, 18(3): 587-594. DOI: 10.13430/j.cnki.jpgr.2017.03.024
Authors:YAN Cong-cong  HOU Ming-yu  CUI Shun-li  LIU Li-feng  Luciano Josephy Harry Kazembe  YANG Xin-lei  MENG Qing-rong  LI Wen-ping  LIU Fu-qiang  MU Guo-jun
Affiliation:Agricultural University of Hebei
Abstract:The hybridization composition,which parents was high oleic acid line G63 with pink seed coat and normal oleic acid line VG-01 with purple and white variegated seed coat,was used in this study.16 true F1 hybrids were identified by allele-specific PCR(AS-PCR) methods.The genotype _oll_ol2individuals were screened in F2 population and the seed coat color segregation in 64 F2∶3 family lines was checked by Chi-square test.The results showed that the solid-color peanut∶ variegated color peanut was 9∶7 at O.05 level.The variegated seed coat was controlled by two pairs of complementary genes.When the two pairs of genes were dominant,the seed coat showed solid color.At least one pair of genes for recessive homologous,the seed coat showed variegated color.The genotypes of 334 F3 plants with variegated seed coat were identified by AS-PCR,and 29 plants of ol1ol1ol2ol2 genotypes were selected.The results of gas chromatography showed that GC value of F4seed ranged from 70.77% to 82.87%,and oleic acid/linoleic(O/ L) ranged from 8.15 to 26.30.The main stem of F4 population was 12.4-87.3 cm,with an average of 57.2 cm,which was 34.97% higher than that of the control Jihua 2.The first pair of lateral branches was 91.6-196.3 cm,with an average of 134.1 cm,which was 34.28% higher than that of the control.Pod weight per plant,pod number per plant,kernel weight per plant and kernel number per plant were (27.16 ± 9.51)g,(22.11 ± 10.26),(20.10 ±7.17)g and (31.94 ± 15.16),respectively.The new germplasm lines(9-7,14-2,14-3,17-3 and 17-7)were all red and white variegated seed coat.Compared with the control,pod weight per plant was increased 230.02%,165.80%,210.66%,200.65% and 160.26%,respectively and pod number per plant was increased 280.00%,340.00%,450.00%,210.00% and 150.00%,respectively.The oleic acid GC value was 80.54%,81.75%,80.63%,81.30% and 81.56%,respectively.The new germplasm materials not only have high oleic acid content,but also have great health care value,which have great practical significance to enrich the genetic diversity of high oleic peanut in China.
Keywords:peanut   high oleic   variegated seed coat   AS-PCR   gas chromatography
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