Scientia Agricultura Sinica ›› 2006, Vol. 39 ›› Issue (8): 1689-1696 .doi: 10.3864/j.issn.0578-1752.at-2005-5538

• RESEARCH NOTES • Previous Articles     Next Articles

Analysis of Heterotic Patterns of Maize Hybrids Used in

,,,,,   

  1. 河南农业大学,郑州国家玉米改良分中心
  • Received:2005-05-30 Revised:2005-07-22 Online:2006-08-10 Published:2006-08-10

Abstract: 【Objcetive】The purpose of this study is to analyze the heterotic pattern of maize hybrids used in Henan Province. 【Method】Simple sequence repeat (SSR) was used to study genetic diversity of the parents of some maize hybrids approved in China′s Henan Province and some other inbred lines. A total of 143 SSR primer pairs were tested, from which 95 primer pairs that evenly distributed on maize genome were selected for genotyping the inbred lines. Cluster analysis of the inbred lines was performed by using UPGMA method. The heterotic patterns of hybrids approved in Henan Province as well as introduced ones were also analyzed based on the planting areas of the hybrids in Henan Province from 1981 to 2003. 【Result】 The results showed that: (1) most of the inbred lines used for making hybrids approved in Henan could be divided into six groups, i.e. Reid, Tem-tropic, SiPT, LvDHG, Lancaster and Synthetic, based on Nei-Li's genetic distances, which agreed with the result from pedigree analysis; (2) there were 12 heterotic patterns employed for making of hybrids widely used in Henan for maize cultivation, among which Reid × SiPT and Lan × LvDHG were prominent patterns. The hybrids from the two patterns occupied 47 % of total cultivation in Henan Province, among which 26.47% was for Reid × SiPT and 20.62% for Lan × LvDHG. Other patterns like Reid × LvDHG was 9.41% and Tem-tropic × others (including Synthetic and Reid) 9.07%. The later is a new pattern with an increasing utilization and is worthwhile to be exploited. 【Conclusion】Of the 12 heterotic patterns, Reid × SiPT and Lan × LvDHG were mainly used ,which occupied about a half of the total planting areas in Henan in the past 23 years.

Key words: Maize (Zea mays L.), Inbred line, Molecular marker, Heterotic group, Heterotic pattern

[1] LÜ Tao, SUN GuoQing, GUO DongCai, CHEN QuanJia, CAI YongSheng, FAN BiaoXing, QU YanYing, ZHENG Kai. Development and Effectiveness Evaluation of InDel Molecular Markers Closely Linked to Fiber Strength QTL in Gossypium barbadense [J]. Scientia Agricultura Sinica, 2025, 58(9): 1684-1701.
[2] WU ShuYu, HENG YanFang, YU TaiFei, WANG ShiJia, YU SiJia, LI Yuan, HU Zheng, ZHANG Hui, SUN XianJun, LI Liang, JIANG QiYan. Identification of Salt Tolerance in Maize Natural Populations at the Seedling Stage and Analysis of Salt Tolerance-Associated Genes [J]. Scientia Agricultura Sinica, 2025, 58(20): 4085-4099.
[3] JIA YuJing, LI ChaoNan, PAN ZhiXiong, YANG DeLong, MAO XinGuo, JING RuiLian. Cloning and Genetic Effect Analysis of TaTIFY11c-4A in Wheat [J]. Scientia Agricultura Sinica, 2025, 58(17): 3357-3371.
[4] HUANG LiQiang, JIANG Ru, ZHU BoZhi, PENG Huan, XU Chong, SONG JiaXiong, CHEN Min, LI YongQing, HUANG WenKun, PENG DeLiang. Identification and Evaluation of Major Potato Cultivars Resistance to Globodera rostochiensis and Detection of Their H1 Resistance Gene Marker [J]. Scientia Agricultura Sinica, 2024, 57(8): 1506-1516.
[5] WU ChuanLei, HU XiaoYu, WANG Wei, MIAO Long, BAI PengYu, WANG GuoJi, LI Na, SHU Kuo, QIU LiJuan, WANG XiaoBo. Development and Identification of Molecular Markers for Oil-Related Functional Genes and Polymerization Analysis of Excellent Alleles in Soybean [J]. Scientia Agricultura Sinica, 2024, 57(22): 4402-4415.
[6] XU TianJun, LÜ TianFang, LI ZiHao, ZHANG Yong, LIU HongWei, LIU YueE, CAI WanTao, ZHANG RuYang, SONG Wei, XING JinFeng, ZHAO JiuRan, WANG RongHuan. Comparison of Heat Tolerance of Maize Hybrids and Their Parental Inbreds with Different Genotypes [J]. Scientia Agricultura Sinica, 2024, 57(2): 403-415.
[7] CHEN WenJie, CHEN Yuan, WEI QingYuan, TANG FuYue, GUO XiaoHong, CHEN ShuFang, QIN XiaYan, WEI RongChang, LIANG Jiang. Identification of Candidate Genes Controlling SSCLD by Utilizing High-Generation Segregating Populations RNA-seq [J]. Scientia Agricultura Sinica, 2024, 57(15): 2914-2930.
[8] GAO Fu, WANG Rui, LIU DongJun, SUN HuiYan, WANG ZiYe, SONG WeiFu, LI TianYa. Stem Rust Resistance Genes Identification and Evaluation of 88 Wheat Cultivars (Lines) in Heilongjiang Province [J]. Scientia Agricultura Sinica, 2024, 57(13): 2568-2582.
[9] LIU Hua, ZENG FanPei, WANG Qian, CHEN GuoQuan, MIAO LiJuan, QIN Li, HAN SuoYi, DONG WenZhao, DU Pei, ZHANG XinYou. Development and Identification of an Interspecific Hexaploid Hybrid Between an A. hypogaea Cultivar and a Wild Species Arachis sp. 30119 in Peanut [J]. Scientia Agricultura Sinica, 2024, 57(10): 1870-1881.
[10] ZHOU JingWei, YE BoWei, ZHANG PengFei, ZHANG YuQing, HAO Min, YIN YuRuo, YUAN Chan, LI ZhiKang, LI ShunDa, XIA XianChun, HE ZhongHu, ZHANG HongJun, LAN CaiXia. Identification and Evaluation of Stripe Rust Resistance in 153 Wheat Collections [J]. Scientia Agricultura Sinica, 2024, 57(1): 18-33.
[11] BAI Bin, ZHANG HuaiZhi, DU JiuYuan, ZHANG XiaoYang, HE Rui, WU Ling, ZHANG Zhe, ZHANG YaoHui, CAO ShiQin, LIU ZhiYong. Current Situation and Strategy of Stripe Rust Resistance Genes Untilization in Winter Wheat Cultivars of Northwestern Oversummering Region for Puccinia striiformis f. sp. tritici in China [J]. Scientia Agricultura Sinica, 2024, 57(1): 4-17.
[12] ZANG XinShan, WANG KangWen, ZHANG XianLiang, WANG XuePing, WANG Jun, LIANG Yu, PEI XiaoYu, REN Xiang, LÜ YuLong, GAO Yu, WANG XingXing, PENG YunLing, MA XiongFeng. Research Advances of Map-Based Cloning Genes in Cotton [J]. Scientia Agricultura Sinica, 2023, 56(23): 4635-4647.
[13] ZHANG ZeYuan, LI Yue, ZHAO WenSha, GU JingJing, ZHANG AoYan, ZHANG HaiLong, SONG PengBo, WU JianHui, ZHANG ChuanLiang, SONG QuanHao, JIAN JunTao, SUN DaoJie, WANG XingRong. QTL Mapping and Molecular Marker Development of Traits Related to Grain Weight in Wheat [J]. Scientia Agricultura Sinica, 2023, 56(21): 4137-4149.
[14] YANG Hao, HUANG YanYan, YI ChunLin, SHI Jun, TAN ChuTian, REN WenRui, WANG WenMing. Development and Application of Specific Molecular Markers for Six Homologous Rice Blast Resistance Genes in Pi9 Locus of Rice [J]. Scientia Agricultura Sinica, 2023, 56(21): 4219-4233.
[15] DONG JiZi, CHEN LinQu, GUO HaoRu, ZHANG MengYu, LIU ZhiXiao, HAN Lei, TIAN ZhaoSaShuang, XU NingHao, GUO QingJie, HUANG ZhenJie, YANG AoYu, ZHAO ChunHua, WU YongZhen, SUN Han, QIN Ran, CUI Fa. Analysis of Genetic and Breeding Selection Effects of A Major QTL-qSl-2D for Wheat Spike Length [J]. Scientia Agricultura Sinica, 2023, 56(20): 3917-3930.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!