Acta Agronomica Sinica ›› 2019, Vol. 45 ›› Issue (3): 469-476.doi: 10.3724/SP.J.1006.2019.84082
• RESEARCH NOTES • Previous Articles Next Articles
Xiao-Hong ZHANG1,Gen-Hai HU1,Han-Tao WANG2,Cong-Cong WANG2,Heng-Ling WEI2,Yuan-Zhi FU1,Shu-Xun YU2,*()
[1] |
董承光, 王娟, 周小凤, 马晓梅, 李生秀, 王旭文, 肖光顺, 李保成 . 新疆早熟陆地棉早熟性状的遗传分析. 西北农业学报, 2014,23(12):96-101.
doi: 10.7606/j.issn.1004-1389.2014.12.015 |
Dong C G, Wang J, Zhou X F, Ma X M, Li S X, Wang X W, Xiao G S, Li B C . Inheritance of earliness traits in xinjiang early-maturity upland cotton ( G. hirsutum L.). Acta Agric Boreali-occident Sin, 2014,13(12):96-101 (in Chinese with English abstract).
doi: 10.7606/j.issn.1004-1389.2014.12.015 |
|
[2] |
喻树迅, 王寒涛, 魏恒玲, 宿俊吉 . 棉花早熟性研究进展及其应用. 棉花学报, 2017,29:1-10.
doi: 10.11963/1002-7807.ysxysx.20170825 |
Yu S X, Wang H T, Wei H L, Su J J . Research progress and application of early maturity in upland cotton. Cotton Sci, 2017,29:1-10 (in Chinese with English abstract).
doi: 10.11963/1002-7807.ysxysx.20170825 |
|
[3] |
Chautard H, Jacquet M, Schoentgen F, Bureaud N, Benedetti H . Tfs1p, a member of the PEBP family, inhibits the Ira2p but not the Ira1p Ras GTPase-activating protein in Saccharomyces cerevisiae . Eukary Cell, 2004,3:459-470.
doi: 10.1128/EC.3.2.459-470.2004 pmid: 15075275 |
[4] |
Hengst U, Albrecht H, Hess D, Monard D . The phosphatidylethanolamine-binding protein is the prototype of a novel family of serine protease inhibitors . J Biol Chem, 2001,276:535-540.
doi: 10.1074/jbc.M002524200 pmid: 11034991 |
[5] |
Banfield M J, Barker J J, Perry A C, Brady R L . Function from structure? The crystal structure of human phosphatidylethanolamine-binding protein suggests a role in membrane signal transduction . Structure, 1998,6:1245-1254.
doi: 10.1016/S0969-2126(98)00125-7 pmid: 9782050 |
[6] |
Ryu J Y, Park C M, Seo P J . The floral repressor BROTHER OF FT AND TFL1 (BFT) modulates flowering initiation under high salinity in Arabidopsis. Mol Cells, 2011,32:295-303.
doi: 10.1007/s10059-011-0112-9 pmid: 3887636 |
[7] |
Hanzawa Y, Money T, Bradley D . A single amino acid converts a repressor to an activator of flowering . Proc Natl Acad Sci USA, 2005,102:7748-7753.
doi: 10.1073/pnas.0500932102 pmid: 15894619 |
[8] |
Conti L, Bradley D . TERMINAL FLOWER1 is a mobile signal controlling Arabidopsis architecture. Plant Cell, 2007,19:767-778.
doi: 10.1105/tpc.106.049767 pmid: 17369370 |
[9] |
Hanano S, Goto K . Arabidopsis TERMINAL FLOWER1 is involved in the regulation of flowering time and inflorescence development through transcriptional repression. Plant Cell, 2011,23:3172-3184.
doi: 10.1105/tpc.111.088641 |
[10] | Serrano-Mislata A, Fernandez-Nohales P, Domenech M J, Hanzawa Y, Bradley D, Madueno F . Separate elements of the TERMINAL FLOWER 1 cis-regulatory region integrate pathways to control flowering time and shoot meristem identity. Development, 2016,143:3315-3327. |
[11] |
Liu X, Zhang J, Abuahmad A, Franks R G, Xie D Y, Xiang Q Y . Analysis of two TFL1 homologs of dogwood species ( Cornus L.) indicates functional conservation in control of transition to flowering. Planta, 2016,243:1129-1141.
doi: 10.1007/s00425-016-2466-x pmid: 26825444 |
[12] |
Rantanen M, Kurokura T, Jiang P, Mouhu K, Hytonen T . Strawberry homologue of terminal flower1 integrates photoperiod and temperature signals to inhibit flowering . Plant J, 2015,82:163-173.
doi: 10.1111/tpj.12809 pmid: 25720985 |
[13] |
Si Z F, Liu H, Zhu J K, Chen J D, Wang Q, Fang L, Gao F K, Tian Y, Chen Y L, Chang L J, Liu B L, Han Z G, Zhou B L, Hu Y, Huang X Z, Zhang T Z . Mutation of SELF-PRUNING homologs in cotton promotes short-branching plant architecture . J Exp Bot, 2018,69:2543-2553.
doi: 10.1093/jxb/ery093 pmid: 29547987 |
[14] |
Li F G, Fan G Y, Lu C R, Xiao G H, Zou C S, Kohel R J, Ma Z Y, Shang H H, Ma X F, Wu J Y, Liang X M, Huang G, Percy R G, Liu K, Yang W H, Chen W B, Du X M, Shi C C, Yuan Y L, Ye W W, Liu X, Zhang X Y, Liu W Q, Wei H L, Wei S J, Huang G D, Zhang X L, Zhu S J, Zhang H, Sun F M, Wang X F, Liang J, Wang J H, He Q, Huang L H, Wang J, Cui J J, Song G L, Wang K B, Xu X, Yu J Z, Zhu Y X, Yu S X . Genome sequence of cultivated upland cotton ( Gossypium hirsutum TM-1) provides insights into genome evolution. Nat Biotechnol, 2015,33:524-530.
doi: 10.1038/nbt.3208 pmid: 25893780 |
[15] |
Zhang T Z, Hu Y, Jiang W K, Fang L, Guan X Y, Chen J D, Zhang J B, Saski C A, Scheffler B E, Stelly D M , Hulse-Kemp A M, Wan Q, Liu B L, Liu C X, Wang S, Pan M Q, Wang Y K, Wang D W, Ye W X, Chang L J, Zhang W P, Song Q, Kirkbride R C, Chen X Y, Dennis E, Llewellyn D J, Peterson D G, Thaxton P, Jones D C, Wang Q, Xu X Y, Zhang H, Wu H T, Zhou L, Mei G F, Chen S Q, Tian Y, Xiang D, Li X H, Ding J, Zuo Q Y, Tao L N, Liu Y C, Li J, Lin Y, Hui Y Y, Cao Z S, Cai C P, Zhu X F, Jiang Z, Zhou B L, Guo W Z, Li R Q, Chen Z J. Sequencing of allotetraploid cotton (Gossypium hirsutum L. acc. TM-1) provides a resource for fiber improvement. Nat Biotechnol, 2015,33:531-537.
doi: 10.1038/nbt.3207 pmid: 25893781 |
[16] |
Sparkes I A, Runions J, Kearns A, Hawes C . Rapid, transient expression of fluorescent fusion proteins in tobacco plants and generation of stably transformed plants . Nat Protoc, 2006,1:2019-2025.
doi: 10.1038/nprot.2006.286 pmid: 17487191 |
[17] |
Hori K, Matsubara K, Yano M . Genetic control of flowering time in rice: integration of Mendelian genetics and genomics . Theor Appl Genet, 2016,129:2241-2252.
doi: 10.1007/s00122-016-2773-4 |
[18] |
东锐, 院海英, 顾超, 郑银英, 黄先忠, 崔百明 . 棉花GhFTL1基因的克隆及初步功能分析. 棉花学报, 2011,23:515-521.
doi: 10.3969/j.issn.1002-7807.2011.06.005 |
Dong R, Yuan H Y, Gu C, Zheng Y Y, Huang X Z, Cui B M . Cloning and primary analysis of the function of GhFTL1 gene in cotton(Gossypium hirsutum L.). Cotton Sci, 2011,23:515-521 (in Chinese with English abstract).
doi: 10.3969/j.issn.1002-7807.2011.06.005 |
|
[19] |
吴嫚, 范术丽, 宋美珍, 庞朝友, 喻树迅 . 棉花GhCO基因的克隆与表达分析. 棉花学报, 2010,22:387-392.
doi: 10.3969/j.issn.1002-7807.2010.05.001 |
Wu M, Fan S L, Song M Z, Pang C Y, Yu S X . Cloning and expression analysis of GhCO gene in Gossypium hirsutum L. Cotton Sci, 2010,22:387-392 (in Chinese with English abstract).
doi: 10.3969/j.issn.1002-7807.2010.05.001 |
|
[20] | 张文香, 庞朝友, 范术丽, 宋美珍, 魏恒玲, 喻树迅 . 棉花SVP-like基因GhMADS29的克隆与表达分析. 安徽农业科学, 2015,43(15):28-31. |
Zhang W X, Pang C Y, Fan S L, Song M Z, Wei H L, Yu S X . Molecular cloning and expression analysis of SVP-like gene GhMADS29 from Gossypium hirsutum L. J Anhui Agric Sci, 2015,43(15):28-31 (in Chinese with English abstract). | |
[21] |
Jeong S, Clark S E . Photoperiod regulates flower meristem development in Arabidopsis thaliana. Genetics, 2005,169:907-915.
doi: 10.1534/genetics.104.033357 |
[22] |
Mengin V, Pyl E T, Alexandre M T, Sulpice R, Krohn N, Encke B, Stitt M . Photosynthate partitioning to starch in Arabidopsis thaliana is insensitive to light intensity but sensitive to photoperiod due to a restriction on growth in the light in short photoperiods. Plant Cell Environ, 2017,40:2608-2627.
doi: 10.1111/pce.13000 pmid: 28628949 |
[23] |
Zhang X H, Wang C C, Pang C Y, Wei H L, Wang H T, Song M Z, Fan S L, Yu S S . Characterization and functional analysis of PEBP family genes in upland cotton ( Gossypium hirsutum L.). PLoS One, 2016,11:e0161080.
doi: 10.1371/journal.pone.0161080 pmid: 725 |
[24] |
Ryu J Y, Lee H J, Seo P J, Jung J H, Ahn J H, Park C M . The Arabidopsis floral repressor BFT delays flowering by competing with FT for FD binding under high salinity. Mol Plant, 2014,7:377-387.
doi: 10.1093/mp/sst114 pmid: 23935007 |
[1] | HAN Bei, WANG Xu-Wen, LI Bao-Qi, YU Yu, TIAN Qin, YANG Xi-Yan. Association analysis of drought tolerance traits of upland cotton accessions (Gossypium hirsutum L.) [J]. Acta Agronomica Sinica, 2021, 47(3): 438-450. |
[2] | Mao-Ni CHAO,Hai-Yan HU,Run-Hao WANG,Yu CHEN,Li-Na FU,Qing-Qing LIU,Qing-Lian WANG. Cloning and functional analysis of promoter of potassium transporter gene GhHAK5 in upland cotton (Gossypium hirsutum L.) [J]. Acta Agronomica Sinica, 2020, 46(01): 40-51. |
[3] | Mi WU,Nian WANG,Chao SHEN,Cong HUANG,Tian-Wang WEN,Zhong-Xu LIN. Development and evaluation of InDel markers in cotton based on whole-genome re-sequencing data [J]. Acta Agronomica Sinica, 2019, 45(2): 196-203. |
[4] | Cong HUANG,Xiao-Fang LI,Ding-Guo LI,Zhong-Xu LIN. QTL Mapping for Yield, Growth Period and Plant Height Traits Using MAGIC Population in Upland Cotton [J]. Acta Agronomica Sinica, 2018, 44(9): 1320-1333. |
[5] | Chao LI,Zhi-Kun LI,Qi-Shen GU,Jun YANG,Hui-Feng KE,Li-Qiang WU,Guo-Ning WANG,Yan ZHANG,Jin-Hua WU,Gui-Yin ZHANG,Yuan-Yuan YAN,Zhi-Ying MA,Xing-Fen WANG. Molecular Evaluation for Chromosome Segment Substitution Lines of Gossypium barbadense and QTL Mapping for Fiber Quality and Yield [J]. Acta Agronomica Sinica, 2018, 44(8): 1114-1126. |
[6] | Guo-Zhong ZHU,Fang ZHANG,Jie FU,Le-Chen LI,Er-Li NIU,Wang-Zhen GUO. Genome-wide Screening and Evaluation of SNP Core Loci for Identification of Upland Cotton Varieties [J]. Acta Agronomica Sinica, 2018, 44(11): 1631-1639. |
[7] | Mao-Ni CHAO, Qing-Yu WEN, Zhi-Yong ZHANG, Gen-Hai HU, Jin-Bao ZHANG, Guo WANG, Qing-Lian WANG. Sequence Characteristics and Expression Analysis of Potassium Transporter Gene GhHAK5 in Upland Cotton (Gossypium hirsutum L.) [J]. Acta Agronomica Sinica, 2018, 44(02): 236-244. |
[8] | SHEN Chao,LI Ding-Guo,NIE Yi-Chun,LIN Zhong-Xu. QTL Mapping for Yield and Fiber Quality Traits Using Gossypium mustelinum Chromosome Segment Introgression Lines [J]. Acta Agron Sin, 2017, 43(12): 1733-1745. |
[9] | LYU You-Jun,YANG Wei-Jun,ZHAO Lan-Jie,YAO Jin-Bo,CHEN Wei,LI Yan,ZHANG Yong-Shan. Genome-wide Identification and Expression Analysis of SRO Genes Family in Gossypium hirsutum L. [J]. Acta Agron Sin, 2017, 43(10): 1468-1479. |
[10] | YANG Yan-Long,XIAO-Fei,XU Shou-Zhen,WANG Yu-Xuan,ZUOWen-Qing,LIANG Fu-Bin,ZHANG Wang-Feng. Development of Cotton Canopy Structure Characteristics of Cotton Varieties Grown in Different Decades in Northern Xinjiang [J]. Acta Agron Sin, 2017, 43(10): 1518-1526. |
[11] | CHEN Xu-Sheng,DI Jia-Chun,ZHOU Xiang-Yang,ZHAO Liang. Hormone Expression and Tp Gene Chromosomal Localization of Tall Plant Mutant from Upland Cotton [J]. Acta Agron Sin, 2017, 43(06): 935-939. |
[12] | PENG Zhen,HE Shou-Pu,GONG Wen-Fang,PAN Zhao-E,JIA Yin-Hua,LU Yan-Li,DU Xiong-Ming. Transcriptome Analysis of Transcription Factors Expression PatterninUpland Cotton Seedlings under NaCl Stress [J]. Acta Agron Sin, 2017, 43(03): 354-370. |
[13] | HAN Ze-Gang,ZHAO Zeng-Qiang,HE Lan-Lan,CHAI Meng-Liang,LI Hui-Hui,ZHANG Wei. Expression Changes of Transcription Factors in Susceptible and Resistant Upland Cotton Cultivars (Gossypium hirsutum L.) in Response to Fusarium wilt [J]. Acta Agron Sin, 2015, 41(02): 228-239. |
[14] | PENG Zhen,HE Shou-Pu,SUN Jun-Ling,XU Fei-Fei,JIA Yin-Hua,PAN Zhao-E,WANG Li-RuDU Xiong-Ming. An Efficient Approach to Identify Salt Tolerance of Upland Cotton at Seedling Stage [J]. Acta Agron Sin, 2014, 40(03): 476-486. |
[15] | AI Xian-Tao,LIANG Ya-Jun,SHA Hong,WANG Jun-Duo,ZHENG Ju-Yun,Tu-Er-Xun-Jiang,DUO Li-Kun,LI Xue-Yuan,HUA Jin-Ping. Genetic Diversity Analysis on Local Upland Cotton Cultivars in Xinjiang Based on SSR Markers [J]. Acta Agron Sin, 2014, 40(02): 369-379. |
|