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兼抗麦长管蚜和大麦黄矮病毒的小麦种质田间鉴定筛选

, PP. 723-729

Keywords: 抗性,小麦,种质资源,麦长管蚜,大麦黄矮病

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Abstract:

为鉴定筛选兼抗麦长管蚜和大麦黄矮病毒(Barleyyellowdwarfvirus,BYDV)的小麦种质,采用自然感蚜/感病系数法,对36个外引和远缘杂交选育的小麦种质材料进行了2年的田间鉴定,并分析了感虫性与感病性的相关关系。结果表明,2年中均兼抗麦长管蚜和BYDV的种质仅有KOKIPPCAS、KOK、Amigo-3和PI137739共4个材料,占总鉴定材料的11.11%;对二者均敏感的有98-10-35q-9、186Tm39、Tam200e12-14a、Tam200(27)7、小偃22、西农1376和小偃6号共7个材料,占19.44%。其它材料仅抗虫或仅抗病,或仅在一年中表现抗病或抗虫,如材料98-10-30和98-10-35a8抗麦长管蚜,但对BYDV敏感;材料Tam200(13)G和PIG23(2)C感蚜,但对BYDV有抑制作用。BYDV发生普遍率(发病株率)和严重度(病情指数)与有蚜株率显著相关,严重度还与感蚜指数显著相关,但感病植株的病级均值与有蚜株率无显著相关性。表明自然界长期的进化和选择使许多抗病虫基因得以保存下来,但较多抗性基因只在抗病或抗虫的某一方面表现有效,需给予更多关注。

References

[1]  Mitchell P L. Heteroptera as vectors of plant pathogens. Neotropical Entomology, 2004, 33(5): 519-545
[2]  Fereres A, Moreno A. Behavioural aspects influencing plant virus transmission by homopteran insects. Virus Research, 2009, 141(2): 158-168
[3]  Bosque-Pérez N A, Eigenbrode S. The influence of virus-induced changes in plants on aphid vectors: insights from luteovirus pathosystems. Virus Research, 2011, 159(2): 201-205
[4]  Thackray D J, Diggle A J, Jones R A C. BYDV predictor: asimulation model to predict aphid arrival, epidemics of Barley yellow dwarf virus and yield losses in wheat crops in a Mediterranean-type environment. Plant Pathology, 2009, 58(1): 186-202
[5]  Yu Xiangquan, Chen Wang, Wu Yunfeng, et al. Investigation of wheat varieties on resistance to BYDV and detection of BYDV population by multiplex PCR. Journal of Triticeae Crops, 2010, 30(6): 1053-1057 (in Chinese) [于祥泉, 陈旺, 吴云锋, 等. 小麦黄矮病品种抗病性调查及种群多重PCR检测. 麦类作物学报, 2010, 30(6):1053-1057]
[6]  Liu X L, Yang X F, Wang C Y, et al. Molecular mapping of resistance gene to English grain aphid (Sitobion avenae F.) in Triticum durum wheat line C273. Theoretical and Applied Genetics, 2012, 124(2): 287-293
[7]  Niks R E, Parlevliet J E, Lindhout P, et al. Plant disease and insect resistance breeding. Zhang Hongsheng, Bao Yongmei, translation. Beijing: Science Press, 2013 (in Chinese) [Niks R E, Parlevliet J E, Lindhout P, et al. 植物抗病虫育种. 张红生, 鲍永美, 译. 北京: 科学出版社, 2013]
[8]  Singh R P. Genetic association of gene Bdv1 for tolerance tobarley yellow dwarf virus with genes Lr34 and Yr18 for adult plant resistance to rusts in bread wheat. Plant Disease, 1993, 77(11): 1103-1106
[9]  Scholz M, Ruge-Wehling B, Habekuβ A, et al. Ryd4Hb : a novel resistance gene introgressed from Hordeum bulbosum into barley and conferring complete and dominant resistance to the barley yellow dwarf virus. Theoretical and Applied Genetics, 2009, 119(5): 837-849
[10]  Graybosch R A, Lee J H, Peterson C J, et al. Genetic, agronomic and quality comparisons of two 1AL. 1RS. wheat-rye chromosomal translocations. Plant Breeding, 1999, 118: 125-130
[11]  Duan Canxing, Wang Xiaoou, Zhu Zhendong. Screening and evaluation of wheat germplasm for resistance to the aphid (Sitobion avenae). Journal of Plant Genetic Resources, 2006, 7(3): 297-300 (in Chinese) [段灿星, 王晓鸣, 朱振东. 小麦种质对麦长管蚜的抗性鉴定与评价. 植物遗传资源学报, 2006, 7(3): 297-300]
[12]  Liu Xinlun, Wang Changyou, Wang Yajuan, et al. Screening and evaluation of different wheat varieties for resisance to English grain aphid Sitobion avenae at seedling and adult-plant stages. Journal of Plant Protection, 2014, 41(2): 216-224 (in Chinese) [刘新伦, 王长有, 王亚娟, 等. 不同小麦品种资源苗期和成株期麦长管蚜抗性鉴定和分析. 植物保护学报, 2014, 41(2): 216-224]
[13]  Liu Xinlun, Wang Yajuan, Sang Liqun, et al. Relationship between morphological characters of wheat germplasm and their resistance to Sitobion avenae (F.). Journal of Triticeae Crops, 2006, 26 (6): 24-28 (in Chinese) [刘新伦, 王亚娟, 桑利群, 等. 小麦种质资源的抗蚜性及其与表型性状的关系. 麦类作物学报, 2006, 26 (6): 24-28]
[14]  更多...
[15]  Painter R H. Resistance of plants to insects. Annual Review of Entomology, 1958, 3: 267-290
[16]  Qian Youting, Zhou Guanghe. Studies on screening technique for wheat yellow dwarf virus in the field. Journal of Plant Protection, 1986, 13(3): 159-164 (in Chinese) [钱幼亭, 周广和. 麦类种质资源抗耐小麦黄矮病毒的田间鉴定技术研究. 植物保护学报, 1986, 13(3): 159-164]
[17]  Zhang Qinfeng, Ren Zhiying, Jin Xinzao. Identification of wheat varieties resistant to yellow dwarf virus. Plant Protection, 1984, 10(6): 13-14 (in Chinese) [张秦风, 任芝英, 金欣藻. 关于小麦品种抗黄矮病毒的鉴定问题. 植物保护, 1984, 10(6): 13-14]
[18]  Meng Qingxiang, Tian Zhenying. Preliminary study on Sitobion avenae spatial distribution pattern and sampling technique. Ningxia Agricultural Science and Technology, 1985(3): 11-14 (in Chinese) [孟庆祥, 田振英. 麦长管蚜空间分布型与抽样技术的初步研究. 宁夏农业科技, 1985(3): 11-14]
[19]  Zheng Guilin, Yu Fengyun. Study on wheat aphids spatial distribution pattern and sampling technique. Plant disease and pest forecasting, 1988(3): 26-29 (in Chinese) [郑桂林, 于风云. 麦蚜空间分布型及抽样技术的研究. 病虫测报, 1988(3): 26-29]
[20]  Zhang Rulin, Xu Yanxia, Yu Suoying. Study on Sitobion avenae spatial distribution pattern and sampling technique. Chinese Bulletin of Entomology, 1991, 28(3): 135-137 (in Chinese) [张汝霖, 徐艳霞, 于锁英. 麦长管蚜空间分布型及抽样技术的研究. 昆虫知识, 1991, 28(3): 135-137]
[21]  Hu X S, Keller M A, Liu X F, et al. The resistance and correlation analysis to three species of cereal aphids (Hemiptera:Aphididae) on 10 wheat varieties or lines. Journal of Economic Entomology, 2013, 106(4): 1894-1901
[22]  Hou Youming, Feng Baocheng, Liu Shaoyou. A study on the resistive dynamic making for the wheat varieties to English grain aphid Macrosiphum avenae (F.). Journal of Northwest University(Natural Science Edition), 1996, 26 (5): 427-430 (in Chinese) [侯有明, 冯宝成, 刘绍友. 小麦品种对麦长管蚜抗性的动态分析. 西北大学学报(自然科学报), 1996, 26 (5): 427-430]
[23]  Liu X F, Hu X S, Keller M A, et al. Tripartite interactions of Barley yellow dwarf virus, Sitobion avenae and wheat varieties. PLoS ONE, 2014, 9(9): e106639
[24]  Hesler L S, Tharp C I. Antibiosis and antixenosis to Rhopalosi phum padi among triticaleaccessions. Euphytica, 2005, 143(1/2): 153-160
[25]  Liu Yong, Ni Hanxiang, Sun Jingrui, et al. The effects of wheat varieties resistant to aphids on the population of Sitobion avenae (Fabricius) and parasitization as well as development of its parasitic wasp aphidius avenae haliday. Journal of Plant Protection, 2001, 28(3): 203-206 (in Chinese) [刘勇, 倪汉祥, 孙京瑞, 等. 小麦抗虫品种对麦长管蚜种群及蚜茧蜂寄生和发育的影响. 植物保护学报, 2001, 28(3): 203-206]
[26]  Dogimont C, Bendahmane_A, Chovelon V, et al. Host plant resistance to aphids in cultivated crops: genetic and molecular bases, and interactions with aphid populations. Comptes Rendus Biologies, 2010, 333(6/7): 566-573
[27]  Liu X D, Zhang Z Y, Liu Y, et al. Molecular evidence of barley yellow dwarf virus replication/movement suppressed by the resistance gene Bdv2. Acta Genetica Sinica, 2005, 32(9): 942-947
[28]  Zhang Z, Lin Z, Xin Z. Research progress in BYDV resistance genes derived from wheat and its wild relatives. Journal of Genetics and Genomics, 2009, 36(9): 567-573
[29]  Qualset C O, Loerns G F, Ullman D E, et al. Genetics of host plant resistance to barley yellow dwarf virus.//Burnet P A. World perspectives on barley yellow dwarf: proceedings of the international workshop. Mexico: CIMMYT,1990: 368-382

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