|Table of Contents|

Identification of Resistance and Preliminary Analysis of Resistance Sources for the Soybean Mosaic Virus in New Soybean Lines(PDF)

《大豆科学》[ISSN:1000-9841/CN:23-1227/S]

Issue:
2017年04期
Page:
598-605
Research Field:
Publishing date:

Info

Title:
Identification of Resistance and Preliminary Analysis of Resistance Sources for the Soybean Mosaic Virus in New Soybean Lines
Author(s):
HUANG Zhi-ping LI Jie-kun WANG Wei-hu HU Guo-yu WU Qian WANG Da-gang
(Crop Institute of Anhui Academy of Agricultural Sciences/Key Laboratory of Crop Quality Improvement of Anhui Province, Hefei 230031,China)
Keywords:
Soybean Soybean mosaic virus Identification Resistance sources
PACS:
-
DOI:
10.11861/j.issn.1000-9841.2017.04.0598
Abstract:
Soybean mosaic virus disease is one of main diseases reducing quality and yield in soybean [Glycine max (L) Merr]. The resistance of 394 new bred soybean lines was tested using soybean mosaic virus (SMV) prevalent strains SC3 and SC7. The resistance sources were carried out through investigating the parental resistance. The results showed that among the 394 lines inoculated by SC3 and SC7, 120 (30.46%) and 80 (20.30%) exhibited high resistance, respectively.64 lines (16.24%), such as H20443, H21660, H22501, Y50574 and Y52933 et al. were high resistant to both SC3 and SC7, and should be utilized as resistance resources in breeding programs.The analysis of the resistance sources of new lines showed that the offspring of resistant type (RT)×RT was the highest probability with the resistance new lines, and others successively were the offspring of RT×intermediate type (IT) >RT×susceptible type (ST) >IT×RT >IT×IT >ST×RT >ST×IT, the offspring of ST×ST was the lowest probability with the resistance new lines.These results will provide references for the breeding of new soybean lines and the combination of resistance breeding parents.

References:

[1]李凯,刘志涛,李海朝,等.国家大豆区域试验品种对SMV和SCN的抗性分析[J].大豆科学,2013,32(5):670-675.(Li K, Liu Z T, Li H C, et al.Resistance to soybean mosaic virus and soybean cyst nematode of soybean cultivars from China national soybean uniform trials [J]. Soybean Science, 2013, 32(5): 670-675.)

[2]智海剑,盖钧镒,陈应志,等.2002-2004年国家大豆区试品种对大豆花叶病毒抗性的评价[J].大豆科学,2005,24(3):190-192.(Zhi H J, Gai J Y, Chen Y Z, et al. Evaluation of resistance to SMV of the entries in the national uniform soybean tests (2002-2004) [J]. Soybean Science, 2005, 24(3): 190-192.)
[3]白丽,李凯,陈应志,等.部分国家和省(市)区试品种对大豆花叶病毒的抗性分析[J].中国油料作物学报,2007,29(1):86-89.(Bai L, Li K, Chen Y Z, et al. Evaluation of resistance to SMV of cultivars from soybean nation and local regional test [J]. Chinese Journal of Oil Crop Sciences, 2007, 29(1): 86-89.)
[4]杨华,李凯,杨清华,等.国内部分新品种对大豆花叶病毒抗性的鉴定[J].华北农学报,2008,23(S2):253-255.(Yang H, Li K, Yang Q H ,et al.Evaluation of resistance to SMV of cultivars from soybean national and local test in 2004-2006 [J]. Acta Agriculturae Boreali-Sinica, 2008, 23(S2): 253-255.)
[5]王大刚,卢为国,马莹,等.新育成大豆品种对SMV和SCN的抗性评价[J].大豆科学,2009,28(6):949-953.(Wang D G, Lu W G, Ma Y, et al. Evaluation of resistance of soybean cultivars to soybean mosaic virus and soybean cyst nematode [J]. Soybean Science, 2009, 28(6): 949-953.)
[6]王修强,盖钧镒,濮祖芹.黄淮和长江中下游地区大豆花叶病毒株系鉴定与分布[J].大豆科学,2003,22(2):102-107-(Wang X Q, Gai J Y, Pu Z Q. Classification and distribution of strain groups of soybean mosaic virus in middle and lower Huang-Huai and Changjiang valleys [J]. Soybean Science, 2003, 22(2): 102-107.)
[7]智海剑,盖钧镒,何小红.大豆对SMV数量(程度)抗性的综合分级方法研究[J].大豆科学,2005,24(2):5-11.(Zhi H J, Gai J Y, He X H. Study on methods of classification of quantitative resistance to soybean mosaic virus in soybean [J]. Soybean Science, 2005, 24(2): 5-11.)
[8]王大刚,黄志平,张磊,等.大豆抗大豆花叶病毒病鉴定技术规程[S].安徽省质量技术监督局,DB34/T 2510-2015.(Wang D G, Huang Z P, Zhang L, et al. Rules for evaluation of soybean for resistance to soybean mosaic virus [S]. Anhui Bureau of Quality and Technical Supervision, DB34/T 2510-2015)
[9]Zhi H J, Gai J Y. Performances and germplasm evaluation of quantitative resistance to soybean mosaic virus in soybeans [J]. Agricultural Science in China, 2004, 3(4): 247-253.
[10]侯文焕,杨永庆,林静,等.不同来源大豆材料对SMV株系SC3和SC7的抗性分析[J].大豆科学,2015,34(5):861-866.(Hou W H, Yang Y Q, Lin J, et al.Resistance of different origin soybeans to SMV strains SC3 and SC7 [J]. Soybean Science, 2015, 34(5): 861-866.)
[11]智海剑,盖钧镒.大豆对SMV数量抗性的表现形式与种质鉴定[J].中国农业科学,2004,37(10):1422-1427.(Zhi H J, Gai J Y. Performances and germplasm evaluayion of quantitative resistance to soybean mosaic virus in soybeans [J]. Chinese Agricultural Sciences, 2004, 37(10): 1422-1427.)
[12]王大刚,胡国玉,黄志平,等.大豆种质资源抗大豆花叶病毒的鉴定[J].作物杂志,2013(2):32-36.(Wang D G, Hu G Y, Huang Z P, et al. Identification of soybean germplasm resources resistance to soybean mosaic virus [J]. Crops, 2013(2): 32-36.)
[13]于国宜,王大刚,吴倩,等.2009-2015年安徽省大豆试验新品系对SMV和SCN的抗性评价[J].大豆科学,2016,35(5):782-788.(Yu G Y, Wang D G, Wu Q, et al.Evaluation of resistance of soybean new lines to soybean mosaic virus and soybean cyst nematode in Anhui Province in 2009-2015.[J]. Soybean Science, 2016, 35(5): 782-788.)
[14]黄志平,王维虎,张磊,等.分子标记辅助黄淮大豆生育期组归属研究[J].中国油料作物学报,2016,38(6):713-721.(Huang Z P, Wang W H, Zhang L, et al. Maturity group classification of soybean varieties with molecular marker in Huang-Huai region [J]. Chinese Journal of Oil Crop Sciences, 2016, 38(6): 713-721.)
[15]毕研飞,徐兵划,钱春桃,等.分子标记辅助甜瓜抗蔓枯病基因的聚合及品种改良[J].中国农业科学,2015,48(3):523-533.(Bi Y F, Xu B H, Qian C Y, et al. Pyramiding disease resistance genes and variety improvement by molecular marker-assisted selection in melon (Cucumis melon L) [J]. Chinese Agricultural Sciences, 2015, 48(3): 523-533.)
[16]Ma Y, Li H C, Wang D G, et al. Molecular mapping and marker assisted selection of resistance gene RSC12 to soybean mosaic virus in soybean [J]. Legume Genomics and Genetics, 2010, 1(8): 41-46.
[17]韩英鹏,赵雪,李修平,等.大豆种质对花叶病毒病和疫霉根腐病抗病性的SSR标记辅助鉴定[J].大豆科学,2014,33(1):27-30.(Han Y P, Zhao X, Li X P, et al. SSR identification of soybean cultivar with resistance to soybean mosaic virus and Phytophthpra root rot [J]. Soybean Science, 2014, 33(1): 27-30).

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Last Update: 2017-08-14