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中国生物工程杂志

China Biotechnology
China Biotechnology  2009, Vol. 29 Issue (05): 111-115    DOI:
    
The Research Progress on Molecular Improvement of Cotton Fiber Qualities
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Abstract  Cotton fiber is an important natural fiber resources and raw material for textile industry.The progress on molecular improvement of cotton fiber qualities that transgenic strategy using both cotton fiber development genes and foreign genes, and molecular marker assisted selection to improve cotton fiber qualities were presented.Some breeding strategies to improve cotton fiber qualities are suggested based on present status of molecular breeding on cotton fiber qualities.

Key wordscotton;fiber qualities;improvemen     
Received: 22 December 2008      Published: 06 May 2009
Cite this article:

CHEN Qiang- Cui-Bai-Meng- Li-Juan-Hua- Bang-Meng. The Research Progress on Molecular Improvement of Cotton Fiber Qualities. China Biotechnology, 2009, 29(05): 111-115.

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https://manu60.magtech.com.cn/biotech/     OR     https://manu60.magtech.com.cn/biotech/Y2009/V29/I05/111

[1] 刘进元,赵广荣,李骥.棉花纤维品质改良的分子工程.植物学报,2000,42(10):991~995 Liu J Y, Zhao G R , Li J. Acta Botanica Sinica, 2000, 42(10):991~995 [2] 张辉,汤文开,李学宝,等.棉纤维发育及其相关基因表达调控研究进展.植物学通报, 2007, 24 (2): 127~133 Zhang H,Tang W K,Li X B,et al. Chinese Bulletin of Botany ,2007, 24 (2): 127~133 [3] 上官小霞,王凌健,李燕娥,等.棉花纤维发育的分子机理及品质改良研究进展.棉花学报,2008 ,20 (1) :62~69 ShangGuan X X, Wang L J , Li Y E , et al. Cotton Science, 2008,20 (1) :62~69 [4] RUAN Y L, Llewellyn D J, Furbank R T. Suppression of sucrose synthase gene expression represses cotton fiber cell initiation, elongation, and seed development. Plant cell, 2003, 15: 952~964 [5] Li X B, Fan X P, Wang X L, et al. The cotton ACTIN1 gene is functionally expressed in fibers and participates in fiber elongation. Plant Cell, 2005, 17:859~875 [6] John M E, Keller G. Metabolic pathway engineering in cotton: biosynthesis of polyhydroxybutyratein fiber cell. Proceedings of the National Academy of Sciences, USA, 1996, 93:12678~12773 [7] 秦永华,乔志新,刘进元.转基因技术在棉花育种上的应用.棉花学报,2007,19(6):482~488 Qin Y H , Qiao Z X , Liu J Y .Cotton Science, 2007,19(6):482~488 [8] Li X, Wang X D, Zhao X Q, et al. Improvement of cotton fiber quality by transforming the acsA and acsB genes into Gossypium hirsutum L. by means of vacuum infiltration. Plant Cell Reports, 2004, 22:691~697 [9] Haigler C H, Singh B, Zhang D S, et al. Transgenic cotton overproducing spinach sucrose phosphate synthase showed enhanced leaf sucrose synthesis and improved fiber quality under controlled environmental conditions. Plant Mol Biol, 2007, 63:815~832 [10] Xu X Q, Wu M G, Zhao Q, et al. Designing and transgenic expression of melanin gene in tobacco trichome and cotton fiber. Plant Biol, 2007, 9:41~48 [11] 王静,冯恒文,赵国忠,等.转动物角蛋白培育优质棉新种质研究.中国棉花,2002,29 (10): 8~9 Wang J, Feng H W, Zhao G Z, et al. China Cotton, 2002,29 (10): 8~9 [12] 张震林,陈松,刘正銮,等.转蚕丝芯蛋白基因获得高强纤维棉花植株.江西农业学报,2004,16(1):15~19 Zhang Z L, Chen S, Liu Z L, et al. Acta Agriculturae Jiangxi, 2004,16(1):15~19 [13] 黄全生,刘霞,王义琴,等.基因枪轰击法将蜘蛛丝蛋白基因(ADF3)转入海岛棉的研究.新疆农业科学, 2004,41(4):248~250 Huang Q S, Liu X, Wang Y Q,et al. Xinjiang Agricultural Sciences, 2004,41(4):248~250 [14] John M E.Genetic engineering strategies for cotton Fiber modification.Cotton fiber: Developmental Biology, Quality Improvement, and Textile Processing. New York:Food Products Press,1999,271~292 [15] Yuan Y L, Zhang T Z,GuoW Z, et al. .Molecular tagging and mapping of QTLs for superquality fiberproperties in upland cotton. Acta Genetica Sinica, 2001, 28(12): 1151~1161 [16] 石玉真,刘爱英,李俊文,等.与棉花纤维强度连锁的主效QTL应用于棉花分子标记辅助育种.分子植物育种, 2007, 5(4): 521~27 Shi Y Z, Liu A Y, Li J W, et al. Molecular Plant Breeding, 2007, 5(4): 521~27 [17] Mei M,Syed N H,Gao W,et al.Genetic mapping and QTL analysis of fiberrelated traits in cotton(Gossypium)Theor Appl Genet,2004,108:280~291 [18] ShenX L, ZhangT Z,GuoW Z, et al. Mapping fiber and yield QTLs with main, epistatic, and QTL environment interaction effects in recombinant inbred lines of upland cotton.Crop Science,2006, 46: 61~66 [19] Shen X L,GuoW Z, Lu Q X, et al.Genetic mapping of quantitative trait loci for fiber quality and yield trait by RIL approach in upland cotton.Euphytica, 2007, 155: 371~380 [20] 王娟,郭旺珍,张天真.渝棉1号优质纤维QTL的标记与定位.作物学报,2007, 33(12): 1915~1921 Wang J, Guo W Z, Zhang T Z. Acta Agronomica Sinica, 2007, 33(12): 1915~1921 [21] Zhang J F, Yuan Y L, Yu S X,et al. AFLPRGA markers in comparison with RGA and AFLP in cultivated tetraploid cotton. Crop Science, 2007, 47:180~187 [22] Yu J W, Yu S X, Lu C R, et al.Highdensity Linkage Map of Cultivated Allotertrapoid Cotton Based on TRAP,SSR,SRAP and AFLP Markers.In:Proceedings of the 2nd International Conference on Plant Molecular Breeding,Sanya, China, 2007 [23] He D H, Lin Z X, Zhang X L, et al.QTL mapping for economic traits based on a dense genetic map of cotton with PCRbased markers using the interspecific cross of Gossypium hirsutum×Gossypium barbadense. Euphytica,2007, 153 (17):181~197 [24] Shen F F, Yu S X, Xie Q G, et al. Identification of genes associated with cotyledon senescence in upland cotton. Chinese Science Bulletin, 2006, 51 (9) :1085~1094 [25] Yu S X, Song M Z, Fan S L. Biochemical genetics of shortseason cotton cultivars that express early maturity without senescence.Journal of Integrative Plant Biology, 2005, 47 (3):334~342 [26] Shen F F, Yu S X, Han X L, et al. Cloning and characterization of a gene encoding cysteine proteases from senescent leaves of Gossypium hirsutum. Chinese Science Bulletin, 2004, 49 (24):2601~2607
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