小麦穗发芽抗性相关基因研究进展
Progress on Gene Discovery Related to Wheat Pre-Harvest Sprouting Resistance
DOI: 10.12677/HJAS.2017.79083, PDF,   
作者: 朱展望, 朱伟伟, 陈 泠, 刘易科, 佟汉文, 张宇庆, 邹 娟:湖北省农业科学院粮食作物研究所/粮食作物遗传改良与种质创新湖北省重点实验室/湖北省小麦工程技术研究中心/农业部华中地区小麦病害生物学科学观测实验站,湖北 武汉;高春保*:湖北省农业科学院粮食作物研究所/粮食作物遗传改良与种质创新湖北省重点实验室/湖北省小麦工程技术研究中心/农业部华中地区小麦病害生物学科学观测实验站,湖北 武汉;主要粮食作物产业化湖北省协同创新中心,湖北 荆州
关键词: 小麦穗发芽研究进展Wheat Pre-Harvest Sprouting Progress
摘要: 穗发芽会造成小麦籽粒产量和质量的下降,给小麦生产带来重大损失,选用抗性品种是降低穗发芽危害的经济有效手段。随着分子生物学的不断发展,小麦穗发芽抗性相关基因得到解析,并开发了育种可用的分子标记。本文对粒色基因、Vp-1、Sdr等和穗发芽抗性相关的重要基因的研究进展进行综述。
Abstract: Wheat pre-harvest sprouting (PHS) leads to significant loss of production. Use of host resistance in commercially cultivated wheat varieties is an economical, effective and environmentally-friendly method to manage PHS. With the progress of molecular biology, several genes related to PHS were discovered and diagnostic markers were developed. In this paper, we reviewed the progress on the discovery of PHS resistance related genes, such as R-1, Vp-1 and Sdr.
文章引用:朱展望, 朱伟伟, 陈泠, 刘易科, 佟汉文, 张宇庆, 邹娟, 高春保. 小麦穗发芽抗性相关基因研究进展[J]. 农业科学, 2017, 7(9): 615-620. https://doi.org/10.12677/HJAS.2017.79083

参考文献

[1] Gill, B.S., Appels, R., Bothaoberholster, A.M., et al. (2004) A Workshop Report on Wheat Genome Sequencing: International Genome Research on Wheat Consortium. Genetics, 168, 1087-1096. [Google Scholar] [CrossRef] [PubMed]
[2] Black, M., Bewley, J.D. and Halmer, P. (2006) The Encyclopedia of Seeds Science, Technology and Uses. CABI Publishing, Oxfordshire, 528. [Google Scholar] [CrossRef
[3] 刘莉, 王海庆, 陈志国. 小麦抗穗发芽研究进展[J]. 作物杂志, 2013(4): 6-11.
[4] 王根平, 毕惠惠, 孙永伟, 等. 红粒小麦Tamyb10单倍型检测及其与穗发芽抗性的关系[J]. 作物学报, 2014, 40(6): 984-993.
[5] Flintham, J.E. (2000) Different Genetic Components Control Coat-Imposed and Embryo-Imposed Dormancy in Wheat. Seed Science Research, 10, 43-50. [Google Scholar] [CrossRef
[6] Warner, R.L, Kudrna, D.A., Spaeth, S.C., et al. (2000) Dormancy in White-Grain Mutants of Chinese Spring Wheat (Triticum aestivum L.). Seed Science Research, 10, 51-60.
[7] Groos, C., Gay, G., Perretant, M.R., et al. (2002) Study of the Relationship between Pre-Harvest Sprouting and Grain Color by Quantitative Trait Loci Analysis in a White × Red Grain Bread-Wheat Cross. Theoretical & Applied Genetics, 104, 39-47. [Google Scholar] [CrossRef] [PubMed]
[8] Himi, E., Mares, D.J., Yanagisawa, A. and Noda, K. (2002) Effect of Grain Colour Gene (R) on Grain Dormancy and Sensitivity of the Embryo to Abscisic Acid (ABA) in Wheat. Journal of Experimental Botany, 53, 1569-1574. [Google Scholar] [CrossRef] [PubMed]
[9] Miyamoto, T. and Everson, E.H. (1958) Biochemical and Physiological Studies of Wheat Seed Pigmentation. Agronomy Journal, 50, 733-734. [Google Scholar] [CrossRef
[10] McCallum, J.A. and Walker, J.R.L. (1990) Proanthocyanidins in Wheat Bran. Cereal Chemistry, 67, 282-285.
[11] Holton, T.A. and Cornish, E.C. (1995) Genetics and Biochemistry of Anthocyanin Biosynthesis. Plant Cell, 7, 1071. [Google Scholar] [CrossRef] [PubMed]
[12] Matus-Cádiz, M.A., Daskalchuk, T.E., Verma, B., et al. (2008) Phenolic Compounds Contribute to Dark Bran Pigmentation in Hard White Wheat. Journal of Agricultural & Food Chemistry, 56, 1644-1653. [Google Scholar] [CrossRef] [PubMed]
[13] Nilsson-Ehle, H. Kreuzungsuntersuchungen an hafer und weizen. Lunds Universitets Arsskrift, 7, 3-82.
[14] McIntosh, R.A., Hart, C.E., Devos, K.M., et al. (1998) Catalogue of Gene Symbols for Wheat. Proceedings of IX International Wheat Genetics Symposium, Saskatoon, 2-7 August 1998.
[15] Lin, M., Zhang, D., Liu, S., et al. (2016) Genome-Wide Association Analysis on Pre-Harvest Sprouting Resistance and Grain Color in U.S. Winter Wheat. BMC Genomics, 17, 794. [Google Scholar] [CrossRef] [PubMed]
[16] Bi, H.H., Sun, Y.W., Xiao, Y.G., et al. (2014) Characterization of DFR Allelic Variations and Their Associations with Pre-Harvest Sprouting Resistance in a Set of Red-Grained Chinese Wheat Germplasm. Euphytica, 195, 197-207. [Google Scholar] [CrossRef
[17] 朱展望, 李君辉, 佟汉文, 等. 小麦红粒性状遗传研究进展[J]. 湖北农业科学, 2016, 55(24): 6321-6323.
[18] Nakamura, S. and Toyama, T. (2001) Isolation of a VP1 Homologue from Wheat and Analysis of Its Expression in Embryos of Dormant and Non-Dormant Cultivars. Journal of Experimental Botany, 52, 875-876. [Google Scholar] [CrossRef] [PubMed]
[19] Mckibbin, R.S., Wilkinson, M.D., Bailey, P.C., et al. (2002) Transcripts of Vp-1 Homeologues Are Misspliced in Modern Wheat and Ancestral Species. Proceedings of the National Academy of Sciences, 99, 10203-10208. [Google Scholar] [CrossRef] [PubMed]
[20] Yang, Y., Ma, Y.Z., Xu, Z.S., et al. (2007) Isolation and Characterization of Viviparous-1 Genes in Wheat Cultivars with Distinct ABA Sensitivity and Pre-Harvest Sprouting Tolerance. Journal of Experimental Botany, 58, 2863. [Google Scholar] [CrossRef] [PubMed]
[21] Chang, C., Zhang, H.P., Feng, J.M., et al. (2010) Identifying Alleles of Viviparous-1B Associated with Pre-Harvest Sprouting in Micro-Core Collections of Chinese Wheat Germplasm. Molecular Breeding, 25, 481-490. [Google Scholar] [CrossRef
[22] Yang, Y., Zhao, X.L., Xia, L.Q., et al. (2007) Development and Validation of a Viviparous-1, STS Marker for Pre-Harvest Sprouting Tolerance in Chinese Wheats. Theoretical & Applied Genetics, 115, 971-980. [Google Scholar] [CrossRef] [PubMed]
[23] Wang, J., Liu, Y., Wang, Y., et al. (2011) Genetic Variation of Vp1 in Sichuan Wheat Accessions and Its Association with Pre-Harvest Sprouting Response. Genes & Genomics, 33, 139-146. [Google Scholar] [CrossRef
[24] Chang, C., Feng, J.M., Si, H.Q., et al. (2010) Validating a Novel Allele of Viviparous-1 (Vp-1Bf) Associated with High Seed Dormancy of Chinese Wheat Landrace, Wanxianbaimaizi. Molecular Breeding, 25, 517-525. [Google Scholar] [CrossRef
[25] Xia, L.Q., Yang, Y., Ma, Y.Z., et al. (2009) What Can the Viviparous-1 Gene Tell Us about Wheat Pre-Harvest Sprouting? Euphytica, 168, 385-394. [Google Scholar] [CrossRef
[26] Xia, L.Q., Ganal, M.W., Shewry, P.R., et al. (2008) Exploiting the Diversity of Viviparous-1 Gene Associated with Pre-Harvest Sprouting Tolerance in European Wheat Varieties. Euphytica, 159, 411-417. [Google Scholar] [CrossRef
[27] Yang, Y., Chen, X.M., He, Z.H., et al. (2009) Distribution of Vp-1 Alleles in Chinese White-Grained Landraces, Historical and Current Wheat Cultivars. Cereal Research Communications, 37, 169-177. [Google Scholar] [CrossRef
[28] Yang, Y., Zhang, C.L., Liu, S.X., et al. (2014) Characterization of the Rich Haplotypes of Viviparous-1A in Chinese Wheats and Development of a Novel Sequence-Tagged Site Marker for Pre-Harvest Sprouting Resistance. Molecular Breeding, 33, 75-88. [Google Scholar] [CrossRef
[29] Zhou, S.H., Lin, F.U., Qiu-Hong, W.U., et al. (2017) QTL Mapping Revealed TaVp-1A Conferred Pre-Harvest Sprouting Resistance in Wheat Population Yanda 1817×Beinong 6. Journal of Integrative Agriculture, 16, 435-444. [Google Scholar] [CrossRef
[30] Zhang, Y., Xia, X. and He, Z. (2016) The Seed Dormancy Allele TaSdr-A1a, Associated with Pre-Harvest Sprouting Tolerance Is Mainly Present in Chinese Wheat Landraces. Theoretical & Applied Genetics, 1-9.
[31] Zhang, Y., Miao, X., Xia, X., et al. (2014) Cloning of Seed Dormancy Genes (TaSdr) Associated with Tolerance to Pre-Harvest Sprouting in Common Wheat and Development of a Functional Marker. Theoretical & Applied Genetics, 127, 855-866. [Google Scholar] [CrossRef] [PubMed]
[32] Kim, K.H., Shin, S.H., Lee, H.S., et al. (2014) Relationship between Pre-Harvest Sprouting and Functional Markers, TaVp-1A, TaSdr-B1 and TaPHS1 in Korean Wheat Cultivars. Research on Crops, 15, 604. [Google Scholar] [CrossRef
[33] Mohan, A., Kulwal, P., Singh, R., et al. (2009) Genome-Wide QTL Analysis for Pre-Harvest Sprouting Tolerance in Bread Wheat. Euphytica, 168, 319-329. [Google Scholar] [CrossRef
[34] Munkvold, J.D., Tanaka, J., Benscher, D., et al. (2009) Mapping Quantitative Trait Loci for Preharvest Sprouting Resistance in White Wheat. Theoretical & Applied Genetics, 119, 1223-1235. [Google Scholar] [CrossRef] [PubMed]
[35] Kulwal, P., Ishikawa, G., Benscher, D., et al. (2012) Association Mapping for Pre-Harvest Sprouting Resistance in White Winter Wheat. Theoretical & Applied Genetics, 125, 793-805. [Google Scholar] [CrossRef] [PubMed]
[36] Rehman Arif, M.A., Neumann, K., Nagel, M., et al. (2012) An Association Mapping Analysis of Dormancy and Pre-Harvest Sprouting in Wheat. Euphytica, 188, 409-417. [Google Scholar] [CrossRef
[37] Chen, C.X., Cai, S.B. and Bai, G.H. (2008) A Major QTL Controlling Seed Dormancy and Pre-Harvest Sprouting Resistance on Chromosome 4A in a Chinese Wheat Landrace. Molecular Breeding, 21, 351-358. [Google Scholar] [CrossRef
[38] Lin, M., Cai, S., Wang, S., et al. (2015) Genotyping-by-Sequencing (GBS) Identified SNP Tightly Linked to QTL for Pre-Harvest Sprouting Resistance. Theoretical & Applied Genetics, 128, 1385-1395. [Google Scholar] [CrossRef] [PubMed]
[39] 董静, 秦丹丹, 许甫超, 等. 小麦穗发芽抗性的分子机制和育种研究进展[J]. 湖北农业科学, 2015, 54(22): 5509-5514.