作物学报 ›› 2020, Vol. 46 ›› Issue (9): 1380-1387.doi: 10.3724/SP.J.1006.2020.94200
李竟才1,2(
), 王强林3, 宋威武4, 黄维1, 肖桂林1, 吴承金4, 顾钦2, 宋波涛1,*(
)
LI Jing-Cai1,2(
), WANG Qiang-Lin3, SONG Wei-Wu4, HUANG Wei1, XIAO Gui-Lin1, WU Cheng-Jin4, GU Qin2, SONG Bo-Tao1,*(
)
摘要:
休眠期是马铃薯(Solanum tuberosum L.)重要的块茎性状之一, 寻找调控马铃薯块茎休眠的关键基因, 揭示其分子机制以选育具有适宜休眠期长度的马铃薯品种, 对于解决当前马铃薯产业中过长或过短休眠期带来的经济损失和食品安全隐患等问题十分关键。前期研究在二倍体马铃薯连锁群体中定位了6个加性休眠QTL, 本研究拟在四倍体马铃薯育种材料中验证这些休眠QTL。基于休眠QTL连锁的候选基因标记, 采用混合线性模型(MLM), 模型中考虑群体结构和亲缘关系(Q+K), 在四倍体马铃薯自然群体St-hzau中对马铃薯块茎休眠期进行了关联分析。5号染色体上休眠QTL DorB5.3连锁的候选基因标记S199_300和GWD (根据葡聚糖水双激酶α-glucan water dikinase基因设计)与马铃薯块茎休眠期具有显著的关联(P<0.05), 分别解释了休眠期表型变异的7.8%和3.2%, 分别能增加休眠期7.1 d和4.5 d, 即在二倍体马铃薯连锁群体中定位的稳定主效休眠QTL DorB5.3在四倍体马铃薯关联群体St-hzau中也表现显著, DorB5.3的稳定性在关联分析结果中得到了验证, 表明候选基因标记策略在马铃薯块茎休眠QTL关联分析中是一种有效的策略。本研究所验证的主效休眠QTL DorB5.3及相应连锁标记可以直接用于马铃薯休眠育种。据此可以推测GWD可能在控制还原糖含量和块茎休眠2个方面均发挥作用, 马铃薯块茎休眠机制与还原糖含量变化机制可能存在着部分交叉。
| [1] | 王鹏, 连勇, 金黎平. 马铃薯块茎休眠及萌发过程中几种酶活性变化. 华北农学报, 2003,18(1):33-36. |
| Wang P, Lian Y, Jin L P. The research on the regulation of enzymes during dormancy and dormancy releasing. Acta Agric Boreali-Sin, 2003,18(1):33-36 (in Chinese with English abstract). | |
| [2] | 司怀军, 张宁, 刘柏林, 文义凯, 唐勋, 杨江伟, 周香艳. 马铃薯块茎休眠与发芽性状调控的分子基础研究. 见: 2017年马铃薯大会主编. 马铃薯产业与精准扶贫. 哈尔滨: 哈尔滨地图出版社, 2017. pp 177-182. |
| Si H J, Zhang N, Liu B L, Wen Y K, Tang X, Yang J W, Zhou X Y. Molecular basic study on the regulation of dormancy and germination of potato tubers. In: 2017 Potato Conference, eds. Potato Industry and Precise Poverty Alleviation. Harbin: Harbin Cartographic Press, 2017. pp 177-182(in Chinese). | |
| [3] |
Koornneef M, Bentsink L, Hilhorst H. Seed dormancy and germination. Curr Opin Plant Biol, 2002,5:33-36.
doi: 10.1016/s1369-5266(01)00219-9 pmid: 11788305 |
| [4] |
Bisognin D, Manrique-Carpintero N, Douches D. QTL analysis of tuber dormancy and sprouting in potato. Am J Potato Res, 2018,95:374-382.
doi: 10.1007/s12230-018-9638-0 |
| [5] |
Freyre R, Warnke S, Sosinski B, Douches D. Quantitative trait locus analysis of tuber dormancy in diploid potato (Solanum spp.). Theor Appl Genet, 1994,89:474-480.
doi: 10.1007/BF00225383 pmid: 24177897 |
| [6] |
Naz R, Li M, Ramzan S, Li G, Liu J, Cai X, Xie C. QTL mapping for microtuber dormancy and GA3 content in a diploid potato population. Biol Open, 2018, 7: bio027375.
doi: 10.1242/bio.039362 pmid: 30404898 |
| [7] | Sliwka J, Wasilewicz-Flis I, Jakuczun H, Gebhardt C. Tagging quantitative trait loci for dormancy, tuber shape, regularity of tuber shape, eye depth and flesh colour in diploid potato originated from sixSolanum species. Plant Breed, 2008,127:49-55. |
| [8] |
Simko I, McMurry S, Yang H, Manschot A, Davies P, Ewing E. Evidence from polygene mapping for a causal relationship between potato tuber dormancy and abscisic acid content. Plant Physiol, 1997,115:1453-1459.
doi: 10.1104/pp.115.4.1453 pmid: 12223876 |
| [9] |
Van den Berg J, Ewing E, Plaisted R, McMurry S, Bonierbale M. QTL analysis of potato tuber dormancy. Theor Appl Genet, 1996,93:317-324.
doi: 10.1007/BF00223171 pmid: 24162286 |
| [10] | Li J, Huang W, Cao H, Xiao G, Zhou J, Xie C, Xia J, Song B. Additive and epistatic QTLs underlying the dormancy in a diploid potato population across seven environments. Sci Hortic, 2018,240:578-584. |
| [11] |
Thornsberry J, Goodman M, Doebley J, Kresovich S, Nielsen D, Buckler E. Dwarf8 polymorphisms associate with variation in flowering time. Nat Genet, 2001,28:286-289.
doi: 10.1038/90135 pmid: 11431702 |
| [12] | 田润苗, 张雪海, 汤继华, 白光红, 付志远. 玉米种子萌发相关性状的全基因组关联分析. 作物学报, 2018,44:672-685. |
| Tian R M, Zhang X H, Tang J H, Bai G H, Fu Z Y. Genome-wide association studies of seed germination related traits in maize. Acta Agron Sin, 2018,44:672-685 (in Chinese with English abstract) . | |
| [13] | 霍强, 杨鸿, 陈志友, 荐红举, 曲存民, 卢坤, 李加纳. 基于QTL定位和全基因组关联分析筛选甘蓝型油菜株高和一次有效分枝高度的候选基因. 作物学报, 2020,46:214-227. |
| Huo Q, Yang H, Chen Z Y, Jian H J, Qu C M, Lu K, Li J N. Candidate genes screening for plant height and the first branch height based on QTL mapping and genome-wide association study in rapessed (Brassica napus L.). Acta Agron Sin, 2020,46:214-227 (in Chinese with English abstract) . | |
| [14] | 邹伟伟, 路雪丽, 王丽, 薛大伟, 曾大力, 李志新. 不同氮水平下水稻钾吸收及全基因组关联分析. 作物学报, 2019,45:1189-1199. |
| Zou W W, Lu X L, Wang L, Xue D W, Zeng D L, Li Z X. Potassium uptake and genome-wide association analysis of rice under different nitrogen levels. Acta Agron Sin, 2019,45:1189-1199 (in Chinese with English abstract) . | |
| [15] |
D'Hoop B, Keizer P, Paulo M, Visser R, van Eeuwijk F, van Eck H. Identification of agronomically important QTL in tetraploid potato cultivars using a marker-trait association analysis. Theor Appl Genet, 2014,127:731-748.
pmid: 24408376 |
| [16] |
Khlestkin V, Rozanova I, Efimov V, Khlestkina E. Starch phosphorylation associated SNPs found by genome-wide association studies in the potato (Solanum tuberosum L.). BMC Genet, 2019,20:29.
doi: 10.1186/s12863-019-0729-9 pmid: 30885119 |
| [17] |
Klaassen M, Willemsen J, Vos P, Visser R, van Eck H, Maliepaard C, Trindade L. Genome-wide association analysis in tetraploid potato reveals four QTLs for protein content. Mol Breed, 2019,39:151.
doi: 10.1007/s11032-019-1070-8 |
| [18] |
Li L, Paulo M, Strahwald J, Lübeck J, Hofferbert H, Tacke E, Junghans H, Wunder J, Draffehn A, van Eeuwijk F, Gebhardt C. Natural DNA variation at candidate loci is associated with potato chip color, tuber starch content, yield and starch yield. Theor Appl Genet, 2008,116:1167-1181.
doi: 10.1007/s00122-008-0746-y |
| [19] | Van Ittersum M, Aben F, Keijzer C. Morphological changes in tuber buds during dormancy and initial sprout growth of seed potatoes. Potato Res, 1992,35:249-260. |
| [20] |
Liu B, Zhang N, Wen Y, Jin X, Yang J, Si H, Wang D. Transcriptomic changes during tuber dormancy release process revealed by RNA sequencing in potato. J Biotechnol, 2015,198:17-30.
doi: 10.1016/j.jbiotec.2015.01.019 pmid: 25661840 |
| [21] | Dellaporta S, Jonathan W, Hicks J. A plant DNA minipreparation: version II. Plant Mol Biol Rep, 1983,1:19-21. |
| [22] | Li J, Lindqvist-Kreuze H, Tian Z, Liu J, Song B, Landeo J, Portal L, Gastelo M, Frisancho J, Sanchez L, Meijer D, Xie C, Bonierbale M. Conditional QTL underlying resistance to late blight in a diploid potato population. Theor Appl Genet, 2012,124:1339-1350. |
| [23] |
Xiao G, Huang W, Cao H, Tu W, Wang H, Zheng X, Liu J, Song B, Xie C. Genetic loci conferring reducing sugar accumulation and conversion of cold-stored potato tubers revealed by QTL analysis in a diploid population. Front Plant Sci, 2018,9:315.
doi: 10.3389/fpls.2018.00315 pmid: 29593769 |
| [24] | Han Y, Teng C, Hu Z, Song Y. An optimal method of DNA silver staining in polyacrylamide gels. Electrophoresis, 2008,29:1355-1358. |
| [25] |
Pritchard J, Stephens M, Donnelly P. Inference of population structure using multilocus genotype data. Genetics, 2000,155:945-959.
pmid: 10835412 |
| [26] | Earl D, von Holdt B. STRUCTURE HARVESTER: a website and program for visualizing STRUCTURE output and implementing the Evanno method. Conserv Genet Resour, 2012,4:359-361. |
| [27] | Bradbury P, Zhang Z, Kroon D, Casstevens T, Ramdoss Y, Buckler E. TASSEL: software for association mapping of complex traits in diverse samples. Bioinformatics, 2007,23:2633-2635. |
| [28] |
Zhang Z, Ersoz E, Lai C, Todhunter R, Tiwari H, Gore M, Bradbury P, Yu J, Arnett D, Ordovas J, Buckler E S. Mixed linear model approach adapted for genome-wide association studies. Nat Genet, 2010,42:355-360.
pmid: 20208535 |
| [29] | Voorrips R. MapChart: software for the graphical presentation of linkage maps and QTLs. J Hered, 2002,93:77-78. |
| [30] | Suttle J. Physiological regulation of potato tuber dormancy. Am J Potato Res, 2004,81:253-262. |
| [31] | Vreugdenhil D. The canon of potato science: dormancy. Potato Res, 2007,50:371-373. |
| [32] | Hou J, Liu T, Reid S, Zhang H, Peng X, Sun K, Dua J, Sonnewald U, Song B. Silencing of α-amylase StAmy23 in potato tuber leads to delayed sprouting. Plant Physiol Biochem, 2019,139:411-418. |
| [33] |
Ritter G, Lloyd J, Eckermann N, Rottmann A, Kossmann J, Steup M. The starch-related R1 protein is an alpha-glucan, water dikinase. Proc Natl Acad Sci USA, 2002,99:7166-7171.
pmid: 12011472 |
| [34] |
Mikkelsen R, Mutenda K, Mant A, Schurmann P, Blennow A. Alpha-glucan, water dikinase (GWD): a plastidic enzyme with redox-regulated and coordinated catalytic activity and binding affinity. Proc Natl Acad Sci USA, 2005,102:1785-1790.
doi: 10.1073/pnas.0406674102 pmid: 15665090 |
| [35] |
Lorberth R, Ritte G, Willmitzer L, Kossmann J. Inhibition of a starch-granule-bound protein leads to modified starch and repression of cold sweetening. Nat Biotechnol, 1998,16:473-477.
pmid: 9592398 |
| [1] | 陈国欢, 张锐, 李艳迪, 赵佳琪, 任湧涛, 张天赐, 郭华春, 李俊, 杨芳. 外源硒叶面喷施对浅紫色马铃薯块茎花青素合成的影响[J]. 作物学报, 2026, 52(6): 1876-1890. |
| [2] | 习千辉, 徐梓瑗, 刘梦梦, 王宏艺, 郎凯琳, 井震海, 陈锋, 赵磊. 小麦籽粒铜含量的全基因组关联分析及候选基因预测[J]. 作物学报, 2026, 52(6): 1604-1617. |
| [3] | 毛嘉琦, 黄朋雨, 赵佳佳, 郑兴卫, 武棒棒, 郝宇琼, 屈非, 刘成, 马朋涛, 郑军. 山西小麦品种白粉病抗性评价及抗病基因分子检测[J]. 作物学报, 2026, 52(6): 1669-1681. |
| [4] | 唐宽强, 李公允, 宋美毅, 赵雪, 常春玲. 大豆株高性状全基因组关联分析及预测模型构建[J]. 作物学报, 2026, 52(6): 1743-1756. |
| [5] | 郑玉珍, 齐飞艳, 孙子淇, 刘华, 秦利, 石磊, 王娟, 汪蒙蒙, 韩锁义, 徐静, 苗利娟, 黄冰艳, 董文召, 郑峥, 张新友. 花生籽仁总超长链脂肪酸和7种脂肪酸组分的QTL定位[J]. 作物学报, 2026, 52(6): 1646-1657. |
| [6] | 王文辕, 燕雪嘉, 刘玉霖, 孙晓彤, 李亚楠, 唐鑫华, 石瑛. 耐弱光马铃薯品种筛选及转录因子编码基因StPIF3的克隆与功能分析[J]. 作物学报, 2026, 52(6): 1631-1645. |
| [7] | 杨欣雨, 崔文涛, 迪力尼格尔·阿力木, 汪凯翔, 吴鹏昊, 任姣姣. 玉米穗上叶片数全基因组关联分析和全基因组选择[J]. 作物学报, 2026, 52(5): 1573-1590. |
| [8] | 闫安, 蒋昆炜, 王蓉圆, 田林, 张璐, 王韵, 徐建龙. 水稻剑叶小维管束数基因SVN7的鉴定与克隆[J]. 作物学报, 2026, 52(5): 1364-1372. |
| [9] | 宋松泉, 唐翠芳, 梁裕荣, 程红焱, 王伟青. sRNA的生物合成和作用机制及其对种子发育和休眠与萌发调控的研究进展[J]. 作物学报, 2026, 52(4): 959-981. |
| [10] | 田立涛, 丁宁, 王树林, 齐恩芳, 张荣, 王蕊蕊, 马利雯, 李建武, 杨江伟. 马铃薯Argonaute基因家族鉴定及晚疫病诱导表达分析[J]. 作物学报, 2026, 52(4): 1116-1126. |
| [11] | 张宇, 刘芳, 蔡诚诚, 杨小华, 吉阿么石扎, 杨元军, 王西瑶. 溴乙烷与赤霉素协同处理破除马铃薯块茎休眠的机理初探[J]. 作物学报, 2026, 52(3): 825-838. |
| [12] | 张超, 郭欢, 李忠玲, 岳淑宁, 赵娜. 基于BSA-seq技术定位玉米籽粒花青素关联基因[J]. 作物学报, 2026, 52(3): 780-789. |
| [13] | 汪玲, 胡好, 宋家凤, 程洁蓝, 陈颖, 郑婷婷, 吕钊彦, 朱晓彪, 侯华兰. 马铃薯UDP-糖基转移酶基因StUGT52的克隆及功能验证[J]. 作物学报, 2026, 52(3): 665-676. |
| [14] | 马亮, 马璐, 张舒钰, 章慧敏, 王仁明, 宋旭东, 张振良, 冒宇翔, 陆虎华, 陈国清, 郝德荣, 周广飞. 玉米苞叶数目转录组分析及候选基因鉴定[J]. 作物学报, 2026, 52(3): 790-801. |
| [15] | 刘长友, 王珅, 时会影, 沈颖超, 孙蕾, 王彦, 张志肖, 苏秋竹, 田静, 范保杰. 基于饭豆基因资源的小豆远缘杂交群体抗豆象QTL定位[J]. 作物学报, 2026, 52(3): 936-944. |
|
||