Acta Agronomica Sinica ›› 2022, Vol. 48 ›› Issue (1): 138-150.doi: 10.3724/SP.J.1006.2022.03072
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YU Rui-Su1(), TIAN Xiao-Kang1, LIU Bin-Bin1, DUAN Ying-Xin1, LI Ting1, ZHANG Xiu-Ying2, ZHANG Xing-Hua1, HAO Yin-Chuan1, LI Qin2, XUE Ji-Quan1,*(), XU Shu-Tu1,*()
[1] | 黄璐, 乔江方, 刘京宝, 夏来坤, 朱卫红, 李川, 周庆伟. 夏玉米不同密植群体抗倒性及机收指标探讨. 华北农学报, 2015, 30:198-201. |
Huang L, Qiao J F, Liu J B, Xia L K, Zhu W H, Li C, Zhou Q W. Research on the relationship between maize lodging resistance and grain mechanically harvesting qualities in different planting density. Acta Agric Boreali-Sin, 2015, 30:198-201 (in Chinese with English abstract). | |
[2] | 曹铁华, 梁烜赫, 李刚, 任军, 王洪君, 陈宝玉, 王立春. 玉米倒伏和扶直的产量效应研究. 玉米科学, 2013, 21(6):81-83. |
Cao T H, Liang X H, Li G, Ren J, Wang H J, Chen B Y, Wang L C. Yield effect of lodging and lifting up in maize after being attacked in Jilin province. J Maize Sci, 2013, 21(6):81-83 (in Chinese with English abstract). | |
[3] | Xue J, Xie R Z, Zhang W F, Wang K R, Hou P, Ming B, Gou L, Li S K. Research progress on reduced lodging of high-yield and -density maize. J Integr Agric, 2017, 16:2717-2725. |
[4] | Sheri A M, Larry L D, Bruce E H. Divergent selection for rind penetrometer resistance and its effects on European corn borer damage and stalk traits in corn. Crop Sci, 2004, 44:711-717. |
[5] | 李凯, 张晓祥, 管中荣, 沈亚欧, 潘光堂. 玉米株高和穗位高的全基因组关联分析. 玉米科学, 2017, 25:1-7. |
Li K, Zhang X X, Guan Z R, Shen Y O, Pan G T. Genome-wide association analysis of plant height and ear height in maize. J Maize Sci, 2017, 25:1-7 (in Chinese with English abstract). | |
[6] | Zuber M S, Grogan C O. A new technique for measuring stalk strength in corn. Crop Sci, 1961, 1:378-380. |
[7] | 薛军, 王克如, 谢瑞芝, 勾玲, 张旺锋, 明博, 侯鹏, 李少昆. 玉米生长后期倒伏研究进展. 中国农业科学, 2018, 51:1845-1854. |
Xue J, Wang K R, Xie R Z, Gou L, Zhang W F, Ming B, Hou P, Li S K. Research progress of maize lodging during late stage. Sci Agric Sin, 2018, 51:1845-1854 (in Chinese with English abstract) | |
[8] | 耿爱军, 杨建宁, 张兆磊, 张姬, 李汝莘. 国内外玉米收获机械发展现状及展望. 农机化研究, 2016, 38:251-257. |
Geng A J, Yang J N, Zhang Z L, Zhang J, Li R S. Discuss about the current situation and future of corn harvest machinery about domestic and abroad. J Agric Mech Res, 2016, 38:251-257 (in Chinese with English abstract) | |
[9] | 王永学, 张战辉, 刘宗华. 玉米抗倒伏性状的配合力效应及通径分析. 河南农业大学学报, 2011, 45(1):1-6. |
Wang Y X, Zhang Z H, Liu Z H. Combining ability and path analysis of lodging resistance traits in maize. J Henan Agric Univ, 2011, 45(1):1-6 (in Chinese with English abstract). | |
[10] | 李清超, 李永祥, 杨钊钊, 刘成, 刘志斋, 李春辉, 彭勃, 张岩, 王迪, 谭巍巍, 孙宝成, 石云素, 宋燕春, 张志明, 潘光堂, 黎裕, 王天宇. 基于多重相关RIL群体的玉米株高和穗位高QTL定位. 作物学报, 2013, 39:1521-1529. |
Li Q C, Li Y X, Yang Z Z, Liu C, Liu Z Z, Li C H, Peng B, Zhang Y, Wang D, Tan W W, Sun B C, Shi Y S, Song Y C, Zhang Z M, Pan G T, Wang T Y, Li Y. QTL mapping for plant height and ear height by using multiple related RIL populations in maize. Acta Agron Sin, 2013, 39:1521-1529 (in Chinese with English abstract). | |
[11] | Haixiao H, Yujie M, Hongwu W, Hai L, Shaojiang C. Identifying quantitative trait loci and determining closely related stalk traits for rind penetrometer resistance in a high-oil maize population. Theor Appl Genet 2012, 124:1439-1447. |
[12] | 靳英杰, 李鸿萍, 安盼盼, 程思贤, 赵向阳, 余天雨, 李潮海. 玉米抗倒性研究进展. 玉米科学, 2019, 27(2):94-98. |
Jin Y J, Li H P, An P P, Cheng S X, Zhao X Y, Yu T Y, Li C H. Research progress on the lodging resistance of maize. J Maize Sci, 2019, 27(2):94-98 (in Chinese with English abstract). | |
[13] | Li X, Zhou Z, Ding J, Wu Y, Zhou B, Wang R, Ma J, Wang S, Zhang X, Xia Z, Chen J, Wu J. Combined linkage and association mapping reveals QTL and candidate genes for plant and ear height in maize. Front Plant Sci, 2016, 7:833. |
[14] | Zhang Y, Liang T, Chen M, Zhang Y, Wang T, Lin H, Rong T, Zou C, Liu P, Lee M, Pan G, Shen Y, Lübberstedt T. Genetic dissection of stalk lodging-related traits using an IBM Syn10 DH population in maize across three environments (Zea mays L.). Mol Genet Genomics, 2019, 294:1277-1288. |
[15] | 刘敬贤, 黄亚群, 陈景堂, 祝丽英, 赵永锋, 郭晋杰. 基于高密度连锁图谱定位玉米株高QTL. 江苏农业科学, 2019, 47(13):38-41. |
Liu J X, Huang Y Q, Chen J T, Zhu L Y, Zhao Y F, Guo J J. QTL mapping for plant height in maize based on high density linkage map. Jiangsu Agric Sci, 2019, 47(13):38-41 (in Chinese with English abstract). | |
[16] | Henderson C R. General flexibility of linear model techniques for sire evaluation. J Dairy Sci, 1974, 57:963-972. |
[17] | Saghai M M, Biyashev R M, Yang G P, Zhang Q, Allard R W. Extraordinarily polymorphic microsatellite DNA in barley: species diversity, chromosomal locations, and population dynamics. Proc Natl Acad Sci USA, 1994, 91:5466-5470. |
[18] | Browning B L, Browning S R. Genotype imputation with millions of reference samples. Am J Hum Genet, 2016, 98:116-126. |
[19] | 徐云碧, 杨泉女, 郑洪建, 许彦芬, 桑志勤, 郭子锋, 彭海, 张丛, 蓝昊发, 王蕴波, 吴坤生, 陶家军, 张嘉楠. 靶向测序基因型检测(GBTS)技术及其应用. 中国农业科学, 2020, 53:2983-3004. |
Xu Y B, Yang Q N, Zhang H J, Xu Y F, Sang Z Q, Guo Z F, Peng H, Zhang C, Lan H F, Wang Y B, Wu K S, Tao J J, Zhang J N. Genotyping by target sequencing (GBTS) and its applications. Sci Agric Sin, 2020, 53:2983-3004 (in Chinese with English abstract). | |
[20] | Yang L, Li T, Liu BB, Li R R, Yu R S, Zhang X Y, Li Q, Xu S T, Xue J Q. Genetic analysis of ear-related traits under different pollination treatments in maize (Zea mays L.). Plant Breed, 2021, 140:211-222. |
[21] | Liu X, Huang M, Fan B, Buckler E S, Zhang Z. Iterative usage of fixed and random effect models for powerful and efficient genome-wide association studies. PLoS Genet, 2016, 12:1-24. |
[22] | Barrett J C, Fry B, Maller J, Daly M J. Haploview: analysis and visualization of LD and haplotype maps. Bioinformatics, 2005, 21:263-265. |
[23] | Ueda Y, Frimpong F, Qi Y, Matthus E, Wu L, Höller S, Kraska T, Frei M. Genetic dissection of ozone tolerance in rice (Oryza sativa L.) by a genome-wide association study. J Exp Bot, 2015, 66:293-306. |
[24] | Wang Y, Chantreau M, Sibout R, Hawkins S. Plant cell wall lignification and monolignol metabolism. Front Plant Sci, 2013, 4:220. |
[25] | Boerjan W, Ralph J, Baucher M. Lignin biosynthesis. Annu Rev Plant Biol, 2003, 54:519-546. |
[26] | Baldacci C F, Le Roy J, Huss B, Lion C, Créach A, Spriet C, Duponchel L, Biot C, Baucher M, Hawkins S, Neutelings G. UDP-GLYCOSYLTRANSFERASE 72E3 plays a role in lignification of secondary cell walls in Arabidopsis. Int J Mol Sci, 2020, 21:6094. |
[27] | Pan Z Q, Kentsis A, Dias D C, Yamoah K, Wu K. Nedd8 on cullin: building an expressway to protein destruction. Oncogene, 2004, 23:1985-1997. |
[28] | Bostick M, Lochhead S R, Honda A, Palmer S, Callis J. Related to ubiquitin 1 and 2 are redundant and essential and regulate vegetative growth, auxin signaling, and ethylene production in Arabidopsis. Plant Cell, 2004, 16:2418-2432. |
[29] | Beló A, Zheng P, Luck S, Shen B, Meyer D J, Li B, Tingey S, Rafalski A. Whole genome scan detects an allelic variant of fad2 associated with increased oleic acid levels in maize. Mol Genet Genomics, 2008, 279:1-10. |
[30] | Li Q, Yang X, Xu S, Cai Y, Zhang D, Han Y, Li L, Zhang Z, Gao S, Li J, Yan J. Genome-wide association studies identified three independent polymorphisms associated with α-tocopherol content in maize kernels. PLoS One, 2012, 7:36807. |
[31] | Zhang Y, Cui M, Zhang J M, Zhang L, Li C L, Kan X, Sun Q, Deng D X, Yin Z T. Confirmation and fine mapping of a major QTL for aflatoxin resistance in maize using a combination of linkage and association mapping. Toxins, 2016, 8:258. |
[32] | Cui M, Jia B, Liu H, Kan X, Zhang Y, Zhou R, Li Z, Yang L, Deng D, Yin Z. Genetic mapping of the leaf number above the primary ear and its relationship with plant height and flowering time in maize. Front Plant Sci, 2017, 8:1437. |
[33] | Hu H, Meng Y, Wang H, Liu H, Chen S. Identifying quantitative trait loci and determining closely related stalk traits for rind penetrometer resistance in a high-oil maize population. Theor Appl Genet, 2012, 124:1439-1447. |
[34] | Krakowsky M D, Lee M, Coors J G. Quantitative trait loci for cell wall components in recombinant inbred lines of maize (Zea mays L.): II. Leaf sheath tissue. Theor Appl Genet, 2006, 112:717-726. |
[35] | Hu H, Liu W, Fu Z, Homann L, Technow F, Wang H, Song C, Li S, Melchinger A E, Chen S. QTL mapping of stalk bending strength in a recombinant inbred line maize population. Theor Appl Genet, 2013, 126:2257-2266. |
[36] | Barrière Y, Méchin V, Lefevre B, Maltese S. QTLs for agronomic and cell wall traits in a maize RIL progeny derived from a cross between an old Minnesota13 line and a modern Iodent line. Theor Appl Genet, 2012, 125:531-549. |
[37] | 张体付, 梁帅强, 吕远大, 蒋璐, 赵涵. 基于三重测交群体解析玉米株高与穗位高杂种优势QTL. 核农学报, 2017, 31:837-843. |
Zhang T F, Liang S Q, Lyu Y D, Jiang L, Zhao H. QTL analysis of heterosis for plant height and ear position using triple testcross population in maize. J Nucl Agric Sci, 2017, 31:837-843 (in Chinese with English abstract). | |
[38] | 李凯, 张晓祥, 管中荣, 沈亚欧, 潘光堂. 玉米株高和穗位高的全基因组关联分析. 玉米科学, 2017, 25(6):1-7. |
Li K, Zhang X X, Guan Z R, Shen Y O, Pan G T. Genome-wide association analysis of plant height and ear height in maize. J Maize Sci, 2017, 25(6):1-7 (in Chinese with English abstract). | |
[39] | Krakowsky M D, Lee M, Coors J G. Quantitative trait loci for cell-wall components in recombinant inbred lines of maize (Zea mays L.): I. Stalk tissue. Theor Appl Genet, 2005, 111:337-346. |
[40] | 何坤辉, 常立国, 崔婷婷, 渠建洲, 郭东伟, 徐淑兔, 张兴华, 张仁和, 薛吉全, 刘建超. 多环境下玉米株高和穗位高的QTL定位. 中国农业科学, 2016, 49:1443-1452. |
He K H, Chang L G, Cui T T, Qu J Z, Guo D W, Xu S T, Zhang X H, Zhang R H, Xue J Q, Liu J C. Mapping QTL for plant height and ear height in maize under multi-environments. Sci Agric Sin, 2016, 49:1443-1452 (in Chinese with English abstract). | |
[41] | Zhang Y, Liu P, Zhang X, Zheng Q, Chen M, Ge F, Li Z, Sun W, Guan Z, Liang T, Zheng Y, Tan X, Zou C, Peng H, Pan G, Shen Y. Multi-locus genome-wide association study reveals the genetic architecture of stalk lodging resistance-related traits in maize. Front Plant Sci, 2018, 9:611. |
[42] | Ku L, Zhang L, Tian Z, Guo S, Su H, Ren Z, Wang Z, Li G, Wang X, Zhu Y, Zhou J, Chen Y. Dissection of the genetic architecture underlying the plant density response by mapping plant height-related traits in maize (Zea mays L.). Mol Genet Genomics, 2015, 290:1223-1233. |
[43] | Cheng J, Wen S, Bie Z. Overexpression of hexose transporter CsHT3 increases cellulose content in cucumber fruit peduncle. Plant Physiol Biochem, 2019, 145:107-113. |
[44] | Ke S, Luan X, Liang J, Hung Y H, Hsieh T F, Zhang X Q. Rice OsPEX1, an extension-like protein, affects lignin biosynthesis and plant growth. Plant Mol Biol, 2019, 100:151-161. |
[45] | Ahmad K F, Engel C K, Privé G G. Crystal structure of the BTB domain from PLZF. Proc Natl Acad Sci USA, 1998, 95:12123-12128. |
[46] | Norberg M, Holmlund M, Nilsson O. The BLADE ON PETIOLE genes act redundantly to control the growth and development of lateral organs. Development, 2005, 132:2203-2213. |
[47] | Yu X C, Zhu S Y, Gao G F, Wang X J, Zhao R, Zou K Q, Wang X F, Zhang X Y, Wu F Q, Peng C C, Zhang D P. Expression of a grape calcium-dependent protein kinase ACPK1 in Arabidopsis thaliana promotes plant growth and confers abscisic acid-hypersensitivity in germination, post-germination growth, and stomatal movement. Plant Mol Biol, 2007, 64:531-538. |
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