Acta Agron Sin ›› 2011, Vol. 37 ›› Issue (01): 95-104.doi: 10.3724/SP.J.1006.2011.00095
• CROP GENETICS & BREEDING·GERMPLASM RESOURCES·MOLECULAR GENETICS • Previous Articles Next Articles
LI Long-Yun1,2,YU Ji-Wen1,*,ZHAI Hong-Hong1,HUANG Shuang-Ling1,LI Xing-Li1,ZHANG Hong-Wei1,ZHANG Jin-Fa3,YU Shu-Xun1,*
[1]Xiang S-K(项时康), Yu N(余楠), Hu Y-C(胡育昌), Tang S-R(唐淑荣), Xiong Z-W(熊宗伟), Yang W-H(杨伟华). Discussion on the current situation of cotton quality in China. Acta Gossypii Sin (棉花学报), 1999, 11(1): 1–10 (in Chinese with English abstract) [2]Ferguson D L, Turley R B. Comparison of protein profiles during cotton Gossypium hirsutum L. fiber cell development with partial sequences of two proteins. Agric Food Chem, 1996, 44: 4022–4027 [3]Schuber A M, Benedict C R. Cotton fiber development kinetics of cell elongation and secondary wall thickening. Crop Sci, 1973: 704–709 [4]Kim H J, Triplett B A. Cotton fiber growth in planta and in vitro. Models for plant cell elongation and cell wall biogenesis. Plant Physiol, 2001, 127: 1361–1366 [5]Basra A S, Malik C P. Development of the cotton fiber. Int Rev Cytol, 1984, 89: 65–113 [6]Shang-Guan X-X(上官小霞), Wang L-J(王凌健), Li Y-E(李燕娥), Liang Y-S(梁运生). Progress in studies on molecular mechanism of cotton fiber development and quality improvement. Cotton Sci (棉花学报), 2008, 20(1): 62–69 (in Chinese with English abstract) [7]Luo D(罗达). Latest advances in mechanisms of cotton fiber development from China. Mol Plant Breed (分子植物育种), 2006, 4(3): 1–3 (in Chinese with English abstract) [8]Zhang H(张辉), Tang W-K(汤文开), Tan X(谭新), Gong L-L(龚路路), Li X-B(李学宝). Progresses in the study of gene regulation of cotton fiber development. Chin Bull Bot (植物学通报), 2007, 24(2): 127–133 (in Chinese with English abstract) [9]Li C H, Zhu Y Q, Meng Y L,Wang J W, Xu K X, Zhang T Z, Chen X Y. Isolation of genes preferentially expressed in cotton fibers by cDNA filter array and RT-PCR. Plant Sci, 2002, 163: 1113–1120 [10]Arpat A, Waugh M, Sullivan J P, Gonzales M, Frisch D, Main D, Wood T, Leslie A, Wing R, Wilkins T. Functional genomics of cell elongation in developing cotton fibers. Plant Mol Biol, 2004, 54: 911–929 [11]Zhao G R, Liu J Y. Isolation of a cotton RGP gene: a homolog of reversibly glycosylated polypeptide highly expressed during fiber development. Biochim Biophvs Acta, 2002, 1574: 370–374 [12]Gou J Y, Wang L J, Chen S P, Hu W L, Chen X Y. Gene expression and metabolite profiles of cotton fiber during cell elongation and secondary cell wall synthesis. Cell Res, 2007, 17: 422–434 [13]Wang HY, Yu Y, Chen ZL, Xia GX . Functional characterization of Gossypiurn hirsuturn profilin 1 gene (GhPEN1) in tobacco suspensioncells. Characterization of in vivo functions of a cotton profiling gene. Planta, 2005, 222: 594–603 [14]Li X B, F'an X P, Wang X L, Cai L, Yang W C. The cotton ACTIN1 gene is functionally expressed in fibers and participates in fiber elongation. Plant Cell, 2005, 17: 859–875 [15]Li X B, Cai L, Cheng N H, Liu J W. Molecular characterization of the cotton GhTUB1 gene that is preferentially expressed in fiber. Plant Physio1, 2002, 130: 666–674 [16]Shi Y H, Zhu S W, Mao X Z, Feng J X, Qin Y M, Zhang L, Cheng J, Wei L P, Wang Z Y, Zhu Y X. Transcriptome profiling, molecular biological, and physiological studies reveal a major role for ethylene in cotton fiber cell elongation. Plant Cell, 2006, 18: 651–664 [17]Ouyang B, Yang T, Li H X, Zhang L, Zhang Y Y, Zhang J H, Fei Z J, Ye Z B. Identification of early salt stress response genes in tomato root by suppression subtractive hybridization and microarray analysis. J Exp Bot, 2007, 1: 1–14 [18]Yin H Y, Zhao Y C, Zhang Y, Zhang H W, Xu L Z, Zou Z, Yang W P, Cheng J, Zhou Y X. Genome-wide analysis of the expression profile of Saccharomyces cerevisiae in response to treatment with the plant isoflavone, wighteone, as a potential antifungal agent. Biotechnol Lett, 2006, 28: 99–105 [19]Chaudhary B, Hovav R, Rapp R, Verma N, Udall J A, Wendel J F. Global analysis of gene expression in cotton fibers from wild and domesticated Gossypium barbadense. Evol Dev, 2008, 10: 567–582 [20]Hovav R, Udall J A, Hovav E, Rapp R, Flagel L, Wendel J F. A majority of cotton genes are expressed in single-celled fiber. Planta, 2008: 319–329 [21]Jiang J-X(蒋建雄), Zhang T-Z(张天真). Extraction of total RNA in cotton organs with CTAB-acidic phenolic method. Cotton Sci (棉花学报), 2003, 15(3): 166–167 (in Chinese with English abstract) [22]Wang H-S(王洪水), Hou X-S(侯相山). Research progress of gene chip technology. J Anhui Agri Sci (安徽农业科学), 2007 ,35( 8) : 2241- 2243, 2245(in Chinese with English abstract) [23]Udall J A, Flagel L E, Cheung F, Woodward A W, Hovav R, Rapp R A, Swanson J M, Lee J J, Gingle A R, Nettleton D, Town C D, Chen Z J, Wendel J F. Spotted cotton oligonucleotide microarrays for gene expression analysis. BMC Genomics, 2007, 8: 1471–2164 [24]She Y-B(佘义斌), Zhu Y-C(朱一超), Zhang T-Z(张天真), Guo W-Z(郭旺珍). Cloning, expression, and mapping of S-adenosyl-L-homocysteine hydrolase (GhSAHH) cDNA in Cotton. Acta Agron Sin (作物学报), 2008, 34(6): 958–964 (in Chinese with English abstract) [25]Dixon D C, Seagull R W, Triplett B A. Changes in the accumulation of α-and β-tubulin isotypes during cotton fiber development. Plant Physiol, 1994: 1347–1353 [26]Li Y L, Sun J, Li C H, Zhu Y Q, Xia G X. Preferential expression of a beta-tubulin gene in developing cotton fibers. Cotton Sci, 2002, 14 (suppl): 43 [27]Ji S J, Lu Y C, Li J, Wei G, Liang X J, Zhu Y X. A-beta-tubulin-like cDNA expressed specifically in elongating cotton fibers induces longitudinal growth of fission yeast. Biochem Biophys Res Commun, 2002, 296: 1245–1250 [28]Yang Z B. Small GTPases: Versatile signaling switches in plants. Plant Cell, 2002, 14(suppl): 375–388 [29]Ren M-Z(任茂智), Chen Q-J(陈全家), Zhang R(张锐), Guo S-D(郭三堆). The structural characteristics, alternative splicing and genetic expression analysis of ADP-ribosylation 1 factor1 (arf1) in cotton. Acta Genet Sin (遗传学报), 2004, 31(8): 850–857 (in Chinese with English abstract) |
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