中国农学通报 ›› 2021, Vol. 37 ›› Issue (11): 128-136.doi: 10.11924/j.issn.1000-6850.casb2020-0355
所属专题: 植物保护
收稿日期:
2020-08-12
修回日期:
2020-12-16
出版日期:
2021-04-15
发布日期:
2021-04-13
通讯作者:
吴则东,倪洪涛
作者简介:
石好琪,男,1997年出生,河南驻马店人,硕士研究生,研究方向:甜菜遗传及分子育种的研究。通信地址:150080 黑龙江省哈尔滨市南岗区学府路74号 黑龙江大学现代农业与生态学院,E-mail:
Shi Haoqi(), Pi Zhi, Wu Zedong(
), Ni Hongtao(
)
Received:
2020-08-12
Revised:
2020-12-16
Online:
2021-04-15
Published:
2021-04-13
Contact:
Wu Zedong,Ni Hongtao
摘要:
为了研究甜菜抗丛根病育种的抗性基因来源以及作用特点,笔者归纳了甜菜丛根病抗性的来源,包括Alba抗性源、Rizor和Holly抗性源、WB42抗性源、WB41和WB258抗性源以及R36抗性源,并介绍了5种甜菜丛根病的抗性基因特点。另外,对甜菜抗丛根病资源的育成方法进行了总结,包括回交、杂交和轮回选择。通过这些方法将携带抗丛根病资源的甜菜整合至适应性高的甜菜种质资源上,从而获得理想的抗性资源。针对甜菜抗丛根病育种过程中培育和选择甜菜丛根病抗性基因型的过程缓慢、费力且昂贵,以及具有抗性基因品种的抗性易被破坏的情况,现提出如下解决策略:(1)通过分子标记来选择理想的甜菜新品种;(2)不断鉴定新的抗性基因,并将其整合到甜菜的基因库中;(3)开发新抗源,通过鉴定其他基因座上与先前发现的抗性基因的等位基因,为释放具有足够抗性的品种提供机会。抗甜菜丛根病育种的下一个挑战将会是将新的抗性基因导入育种材料,并通过将不同基因座上的多个抗性基因聚合到育种系中进行组合,以最大限度地提高甜菜对丛根病的抗性水平。
中图分类号:
石好琪, 邳植, 吴则东, 倪洪涛. 甜菜抗丛根病育种研究进展[J]. 中国农学通报, 2021, 37(11): 128-136.
Shi Haoqi, Pi Zhi, Wu Zedong, Ni Hongtao. Sugar Beet Breeding for Resistance to Rhizomania: A Review[J]. Chinese Agricultural Science Bulletin, 2021, 37(11): 128-136.
抗性基因 | 抗性来源 | 品种起源 | 参考文献 |
---|---|---|---|
Alba | Alba | B.vulgaris ssp.maritima (Italy) | [ |
Rz1 | Rizor、Holly | B.vulgaris ssp.maritima (Italy) | [ |
Rz2 | WB42 | B.vulgaris ssp.maritima (Denmark) | [ |
Rz3 | WB41 | B.vulgaris ssp.maritima (Denmark) | [ |
Rz4 | R36 | B.vulgaris ssp.maritima (Denmark) | [ |
Rz5 | WB258 | B.vulgaris ssp.maritima (Italy) | [ |
抗性基因 | 抗性来源 | 品种起源 | 参考文献 |
---|---|---|---|
Alba | Alba | B.vulgaris ssp.maritima (Italy) | [ |
Rz1 | Rizor、Holly | B.vulgaris ssp.maritima (Italy) | [ |
Rz2 | WB42 | B.vulgaris ssp.maritima (Denmark) | [ |
Rz3 | WB41 | B.vulgaris ssp.maritima (Denmark) | [ |
Rz4 | R36 | B.vulgaris ssp.maritima (Denmark) | [ |
Rz5 | WB258 | B.vulgaris ssp.maritima (Italy) | [ |
B.maritima | 疾病指数 | 温室ELISA | 田间ELISA | |||||
---|---|---|---|---|---|---|---|---|
平均数 | 范围 | 平均数 | 范围 | 平均数 | 范围 | |||
WB258 | 0.8 | 0~4 | 0.592 | 0.065~1.999 | 0.355 | 0.008~1.398 | ||
WB41 | 0.2 | 0~4 | 0.162 | 0.001~0.973 | 0.228 | 0.002~1.405 | ||
WB42 | 0.5 | 0~1 | 0.030 | 0.001~0.166 | 0.147 | 0.001~1.124 | ||
WB8717(对照) | 1.21 | 1~4 | 0.413 | 0.082~1.369 | ||||
US HII(对照) | 0.693 | 0.108~1.509 |
B.maritima | 疾病指数 | 温室ELISA | 田间ELISA | |||||
---|---|---|---|---|---|---|---|---|
平均数 | 范围 | 平均数 | 范围 | 平均数 | 范围 | |||
WB258 | 0.8 | 0~4 | 0.592 | 0.065~1.999 | 0.355 | 0.008~1.398 | ||
WB41 | 0.2 | 0~4 | 0.162 | 0.001~0.973 | 0.228 | 0.002~1.405 | ||
WB42 | 0.5 | 0~1 | 0.030 | 0.001~0.166 | 0.147 | 0.001~1.124 | ||
WB8717(对照) | 1.21 | 1~4 | 0.413 | 0.082~1.369 | ||||
US HII(对照) | 0.693 | 0.108~1.509 |
[1] | Kim B K S. Identification of a variant of CMS-T cytoplasm and development of high resolution melting markers for distinguishing cytoplasm types and genotyping a restorer-of-fertility locus in onion (Allium cepa L.)[J]. Euphytica, 2019,215:164. |
[2] |
Mcgrann G R D, Grimmer M K, Effie S. MUTASA-GÖTTGENS, et al. Progress towards the understanding and control of sugar beet rhizomania disease[J]. Molecular Plant Pathology, 2009,10(1):129-141.
doi: 10.1111/j.1364-3703.2008.00514.x URL pmid: 19161359 |
[3] | Tamada T, Baba T. Beet Necrotic Yellow Vein Virus from Rizomania-Affected Sugar Beet in Japan[J]. Annals of the Phytopathological Society of Japan, 1973,39(4):325-332. |
[4] | Wang C, Li H Y, Zhang L Y, et al. Identification of an AFLP marker and conversion to a SCAR marker to identify cytoplasmic male-sterile or normal cytoplasm in Welsh onion (Allium fistulosum L.)[J]. Journal of Pomology & Horticultural ence, 2013,88(4):409-414. |
[5] | Oppong A S, Ayirebi D P K, Richard A, et al. Identification of CMS maintainers and restorers for hybrid rice development in Ghana[J]. Journal of Crop Improvement, 2018: 1-15. |
[6] | Johansson E. Rhizomania in sugar beet-a threat to beet growing that can be overcome by plant breeding[J]. Sveriges Utsädesförenings Tidskrift, 1985,95:115-121. |
[7] | Richardmolard M S. Rhizomania: a world-wide danger to sugar beet[J]. Span Progress in Agriculture, 1985: 92-94. |
[8] | Pavli O I, Stevanato P, Biancardi E, et al. Achievements and prospects in breeding for rhizomania resistance in sugar beet[J]. Field Crops Research, 2011,122(3):165-172. |
[9] |
Schlosser E. Epidemiology and management of Polymyxa betae and beet necrotic yellow vein virus[J]. Developments in Applied Biology, 1988.
URL pmid: 21396828 |
[10] | 王立方. 抗丛根病甜菜品种在我国的紧迫性和选育技术[J]. 中国甜菜糖业, 1992(1):13-18. |
[11] | 范文锋, 邓峰. 甜菜坏死黄脉病毒和介体甜菜多粘菌与生态因子的关系探讨[J]. 中国糖料, 1998(2):46-49. |
[12] | Whitney E D . Identification, distribution, and testing for resistance to rhizomania in Beta maritima.[J]. Plant Disease, 1989,73(4):287-290. |
[13] | Biaggi M D, Stevanato P, Trebbi D, et al. Sugar Beet Resistance to Rhizomania: State of the Art and Perspectives[J]. Sugar Tech, 2010,12(3-4):238-242. |
[14] | 吴则东, 张文彬, 王华忠. 甜菜丛根病研究进展[J]. 中国农学通报, 2012,28(16):131-137. |
[15] | 闫斌杰, 何新春, 赵丽梅, 等. 抗丛根病甜菜新品种ZT-6的选育[J]. 中国糖料, 2018,40(3):7-9. |
[16] | Biancardi E, Lewellen R T, Biaggi M D, et al. The origin of rhizomania resistance in sugar beet[J]. Euphytica, 2002,127(3):383-397. |
[17] | Scholten O E, Lange W. Breeding for resistance to rhizomania in sugar beet: A review[J]. Euphytica, 2000,112(3):219-231. |
[18] | De Biaggi M. Methodes de selection-Un cas concret.[J]. Proceedings of the 50th Winter Congress of the International Institute for Sugar Beet Research, 1987,50:157-161. |
[19] | G. Büttner, B. Märländer, Manthey R. Breeding for resistance to rhizomania in sugar‐beet (Beta vulgaris L.)[J]. Plant Breeding, 2010,114(2):160-164. |
[20] | De Biaggi M, Stevanato P, Trebbi D, et al. Sugar Beet Resistance to Rhizomania: State of the Art and Perspectives[J]. Sugar Tech, 2010,12(3-4):238-242. |
[21] |
Grimmer M K, Trybush S, Hanley S, et al. An anchored linkage map for sugar beet based on AFLP, SNP and RAPD markers and QTL mapping of a new source of resistance to Beet necrotic yellow vein virus[J]. Theor Appl Genet, 2007,114(7):1151-1160.
doi: 10.1007/s00122-007-0507-3 URL pmid: 17333102 |
[22] | Bongiovanni G C Lanzoni L. The rhizomania of the chard[J]. Progresso Agricolo, 1964,2:209, 220. |
[23] | Lewellen R T, Skoyen I O, Erichsen A W. Breeding sugar beet for resistance to rhizomania: Evaluation of host-plant reactions and selection for and inheritance of resistance[J]. In: Proc 50 th IIRB cong, Brussels, 1987: 139-156. |
[24] | Biancardi E, Lewellen R T, Biaggi M D, et al. The origin of rhizomania resistance in sugar beet[J]. Euphytica, 2002,127(3):383-397. |
[25] | Barzen E, Stahl R, Fuchs E, et al. Development of coupling-repulsion-phase SCAR markers diagnostic for the sugar beet Rr1 allele conferring resistance to rhizomania[J]. Molecular Breeding, 1997,3(3):231-238. |
[26] | Lewellen R T. Performance of near-isolines of sugar beet with resistance to rhizomania from different sources. Proceedings of the 58th IIRB Congress[J]. Brussels,Belgium, 1995: 83-92. |
[27] | Lewellen R T. Registration of 11 sugar beet germplasm C79 lines with resistance to rhizomania[J]. Crop Science, 1997,37:1026. |
[28] |
Scholten O E, Bock T S M D, Klein-Lankhorst R M, et al. Inheritance of resistance to beet necrotic yellow vein virus in Beta vulgaris conferred by a second gene for resistance[J]. Theoretical & Applied Genetics, 1999,99(3-4):740-746.
doi: 10.1007/s001220051292 URL pmid: 22665213 |
[29] | Lewellen R T, Skoyen I O, Erichsen A W. Breeding sugar beet for resistance to rhizomania: evaluation of host-plant reaction and selection for and inheritance of resistance. Proceedings of 50th IIRB Congress[J]. Brussels,Belgium, 1987: 139-156. |
[30] | Scholten O E, Jansen R, Keizer L C P, et al. Major genes for resistance to beet necrotic yellow vein virus (BNYVV) in Beta vulgaris[J]. Euphytica, 1996,91(3):331-339. |
[31] | Pelsy F, Merdinoglu D. Identification and mapping of random amplified polymorphic DNA markers linked to a rhizomania resistance gene in sugar beet (Beta vulgaris L.) by bulked segregant analysis[J]. Plant Breeding, 2010,115(5):371-377. |
[32] |
Wisler G C, Lewellen R T, Sears J L, et al. Specificity of TAS-ELISA for beet necrotic yellow vein virus and its application for determining rhizomania resistance in field grown sugar beets[J]. Plant Disease, 1999,83:864-870.
doi: 10.1094/PDIS.1999.83.9.864 URL pmid: 30841046 |
[33] | Amiri R, Moghaddam M, Mesbah M, et al. The inheritance of resistance to beet necrotic yellow vein virus (BNYVV) in B. vulgaris subsp. maritima, accession WB42: Statistical comparisons with Holly-1-4[J]. Euphytica, 2003,132(3):363-373. |
[34] |
Scholten O E, Klein-Lankhorst R M, Esselink D G, et al. Identification and mapping of random amplified polymorphic DNA (RAPD) markers linked to resistance against beet necrotic yellow vein virus (BNYVV) in Beta accessions[J]. Theoretical & Applied Genetics, 1997,94(1):123-130.
URL pmid: 19352754 |
[35] | Lewellen R T, Whitney E D. Registration of Germplasm Lines Developed from Composite Crosses of Sugarbeet × Beta Maritima[J]. Crop ence, 1993,33(4):882-883. |
[36] | Temmerman N D, Anfinrud M, Meulemans M, et al. Rhizomania resistance in the Tandem® sugar beet variety[J]. International Sugar Journal, 2009,111(1325):313-317. |
[37] | Lennefors B-L. Molecular breeding for resistance to rhizomania in sugar beets[J]. Doctoral journal Swedish University of Agricultural Sciences, 2006,106. |
[38] | Lewellen R T. Performance of near-isolines of sugar beet with resistance to rhizomania from different sources[J], 1995,In: Proc 58 th IIRB cong:pp 83-92. |
[39] | Whitney E D. Identification, distribution, and testing for resistance to Rhizomania in Beta maritima[J]. Plant Disease, 1989,73:287-290. |
[40] |
Acosta-Leal R, Bryan B K, Rush C M. Host effect on the genetic diversification of beet necrotic yellow vein virus single-plant populations[J]. Phytopathology, 2010,100(11):1204-1212.
URL pmid: 20649415 |
[41] |
Gidner S, Lennefors B L, Nilsson N O, et al. QTL mapping of BNYVV resistance from the WB41 source in sugar beet[J]. Genome, 2005,48(2):279-285.
doi: 10.1139/g04-108 URL pmid: 15838550 |
[42] | Panella L, Fenwick A L, Stevanato P, et al. Registration of FC1740 and FC1741 Multigerm, Rhizomania-Resistant Sugar Beet Germplasm with Resistance to Multiple Diseases[J]. J Plant Regist, 2018,12(2):257-263. |
[43] | Richardson K L. Registration of Sugar Beet Germplasm R21 and R40 with Resistance to Rhizomania from Beta vulgaris subsp. maritima[J]. J Plant Regist, 2018,12(1):138-141. |
[44] | Scholten O E, Lange W. Breeding for resistance to rhizomania in sugar beet: A review[J]. Euphytica, 2000,112(3):219-231. |
[45] |
Mcgrann G R D, Grimmer M K, EFFIE S. MUTASA-GÖTTGENS, et al. Progress towards the understanding and control of sugar beet rhizomania disease[J]. Molecular Plant Pathology, 2009.
doi: 10.1111/mpp.13036 URL pmid: 33609073 |
[46] |
Rush C M, Liu H Y, Lewellen R T, et al. The Continuing Saga of Rhizomania of Sugar Beets in the United States[J]. Plant Disease, 2006,90(1):4-15.
doi: 10.1094/PD-90-0004 URL pmid: 30786468 |
[47] |
Acosta-Leal R, Rush C M. Mutations Associated with Resistance-Breaking Isolates of Beet necrotic yellow vein virus and Their Allelic Discrimination Using TaqMan Technology[J]. Phytopathology, 2007,97(3):325-30.
doi: 10.1094/PHYTO-97-3-0325 URL pmid: 18943652 |
[48] | Asher M J C, Chwarszczynska D M, Leaman M. The evaluation of rhizomania resistant sugar beet for the UK[J]. Annals of Applied Biology, 2002,141(2):101-109. |
[49] | Hirai M, Matsumoto S. Genome Mapping and Molecular Breeding in Plants[M]// Pulses, Sugar and Tuber Crops. Springer Berlin Heidelberg, 2007. |
[50] |
Lein J C, Asbach K, Tian Y, et al. Resistance gene analogues are clustered on chromosome 3 of sugar beet and cosegregate with QTL for rhizomania resistance.[J]. Genome, 2007,50(1):61-71.
doi: 10.1139/g06-131 URL pmid: 17546072 |
[51] |
Scholten O E, Bock T S M D, Klein-Lankhorst R M, et al. Inheritance of resistance to beet necrotic yellow vein virus in Beta vulgaris conferred by a second gene for resistance[J]. Theoretical & Applied Genetics, 1999,99(3-4):740-746.
doi: 10.1007/s001220051292 URL pmid: 22665213 |
[52] | Grimmer M K, Trybush S, Hanley S, et al. An anchored linkage map for sugar beet based on AFLP, SNP and RAPD markers and QTL mapping of a new source of resistance to Beet necrotic yellow vein virus[J]. Tag.theoretical & Applied Genetics.theoretische Und Angewandte Genetik, 2007,114(7):1151. |
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