Welcome to Acta Agronomica Sinica,

Acta Agron Sin ›› 2009, Vol. 35 ›› Issue (4): 749-754.doi: 10.3724/SP.J.1006.2009.00749

• RESEARCH NOTES • Previous Articles     Next Articles

Comparison on Gene Expression and Microstructure of Tobacco Leaves at Maturity Stage in Different Types of Soil in southern Anhui Province,China

QIU Li-You1,LI Fu-Xin2,ZU Chao-Long3,MA Chen-Xin3,YANG Chao2,FENG Yun1,LIU Guo-Shun2,ZHAO Hui-Jie1*   

  1. 1College of Life Sciences,Henan Agricultural University,Zhengzhou 450002,China;2Agronomy College,Henan Agricultural University,Zhengzhou 450002,China;3Anhui Wannan Tobacco Leaf Co.Ltd.,Xuancheng 242000,China
  • Received:2008-06-04 Revised:2008-12-15 Online:2009-04-12 Published:2009-02-16
  • Contact: ZHAO Hui-Jie

Abstract:

Yunyan 97(Nicotiana tabacum) was planted in four types of soil including coarse sandy soil, coarse sandy mud, powder sandy soil, and rice soil (CK), in the south of Anhui. The gene expression profile and cell construction of tobacco leaves at maturity stage were explored using cDNA microarray and microscopical technique. Comparing tobacco leaves grown in coarse sandy soil to rice soil, up-regulated genes were mainly for cell multiplication, growth, development, and oxidation stress, while genes in photosynthesis, protein and phospholipids synthesis were down-regulated. Specifically up-regulated genes involved in auxin transport, polysaccharide synthesis, and responsible for protein and amino acid degradation in tobacco leaves cultivated in coarse sandy mud briefly compared with rice soil. Compared to rice soil, up-regulated genes of tobacco leaves in powder sandy soil principally dealt with drought stressand degrading cellulose, pectin, starch, and protein. The microscopic and ultramicroscopic structure of the tobacco leaves revealed that tobacco leaves in powder sandy soil and rice soil grew badly. On the contrary, coarse sandy mud and especially coarse sandysoil produced well grown leaves. The results should conduce to unveil the mechanism of burnt-sweet sensation formation in tobacco leaves cultivated in the south of Anhui Province.

Key words: Tobacco, Soil type, Maturity stage, cDNA microarray, Microstructure

[1] Liu G-S(刘国顺), Yang C(杨超), Zu C-L(祖朝龙), Qiu L-Y(邱立友), Feng Y(冯云). Study on edaphon dynamics in four type s of soil. Acta Tab Sin (中国烟草学报), 2007, 13(5): 38–43(in Chinese with English abstract)
[2] Yang C(杨超), Liu G-S(刘国顺), Qiu L-Y(邱立友), Zu C-L(祖朝龙), Wang F(王芳). A primary investigation of microorganism population in different types of tobacco planting soils. Chin Tob Sci (中国烟草科学), 2007, 28(5): 31–36(in Chinese with English abstract)
[3] Miao F(苗芳), Zhang S-W(张篙午). Microstructure and ultrastructure changes of flag leaf during the anthesis bearing stage of wheat. J Northwest A&F Univ (Nat Sci Edn)(西北农林科技大学学报·自然科学版), 2004, 32(suppl): 6–10
[4] Aubourg S, Kreis M, Lecharny A. The DEAD box RNA helicase family in Arabidopsis thaliana. Nucl Acids Res, 1999, 27: 628–636
[5] Riechmann J L, Heard J, Martin G, Reuber L, Jiang C Z, Keddie J, Adam L, Pineda O, Ratcliffe O J, Samaha R R, Creelman R, Pilgrim M, Broun P, Zhang J Z, Ghandehari D, Sherman B K, Yu G L. Arabidopsis transcription factors: Genome-wide comparative analysis among eukaryotes. Science, 2000, 290: 2105–2110
[6] Liu Q(刘 强), Zhang G-Y(张贵友), Chen S-Y(陈受宜). Structure and regulatory function of plant transcription factors. Chin Sci Bull (科学通报), 2000, 45(14): 1465–1474 (in Chinese with English abstract)
[7] Abe M, Takahashi T, Komeda Y. Cloning and characterization of an L1 layer-specific gene in Arabidopsis thaliana. Plant Cell Physiol, 1999, 40: 571–580
[8] Cvr?ková F, Novotny M, Pícková D, Zársky V. Formin homology 2 domains occur in multiple contexts in angiosperms. BMC Genomics, 2004, 5: 44. doi: 10.1186/1471-2164-5-44
[9] Li C B, Gao F, Zhong Y W, Wei C H, Li Y. Cloning and functional analysis of tobacco pectin methylesterase. Prog Bio-Chem Biophys, 2004, 31: 643–649
[10] Ogawa T, Pan L, Kawai-Yamada M, Yu L H, Yamamura S, Koyama T, Kitajima S, Ohme-Takagi M, Sato F, Uchimiya H. Functional analysis of Arabidopsis ethylene-responsive element binding protein conferring resistance to Bax and abiotic stress-induced plant cell death. Plant Physiol, 2005, 138: 1436–1445
[11] Romeis T, Piedras P, Zhang S Q, Klessig D F, Hirt H, Jones J D G. Rapid Avr 9- and Cf-9-dependent activation of MAP kinases in tobacco cell cultures and leaves: Convergence of resistance gene, elicitor, wound, and salicylate responses. Plant Cell, 1999, 11: 273–287
[12] Inada S, Ohgishi M, Mayama T, Okada K, Sakai T. RPT2 is a signal transducer involved in phototropic response and stomatal opening by association with phototropin 1 in Arabidopsis thaliana. Plant Cell, 2004, 16: 887–896
[13] Chen Y, Yang X, He K, Liu M, Li J, Gao Z, Lin Z, Zhang Y, Wang X, Qiu X, Shen Y, Zhang L, Deng X, Luo J, Deng X-W, Chen Z, Gu H, Qu L J. The MYB transcription factor superfamily of Arabidopsis: Expression analysis and phylogenetic comparison with the rice MYB family. Plant Mol Biol, 2006, 60: 107–124
[14] Babula D, Misztal L H, Jakubowicz M, Kaczmarek M, Nowak W, Sadowski J. Genes involved in biosynthesis and signalisation of ethylene in Brassica oleracea and Arabidopsis thaliana: identification and genome comparative mapping of specific gene homologues. Theor Appl Genet, 2006, 112: 410–420
[15] Paul S, Gable K, Dunn T M. A six-membrane-spanning topology for yeast and Arabidopsis Tsc13p, the enoyl reductases of the microsomal fatty acid elongating system. J Biol Chem, 2007, 282: 19237–19246
[16] Buttery R G, Ling L C, Juliano B O, Turnbaugh J G. Cooked rice aroma and 2-acetyl-1-pyrroline. J Agric Food Chem, 1983, 31: 823–826
[17] Yoshihashi T, Huong N T T, Inatomi H. Precursors of 2-acetyl-1-pyrroline, a potent flavor compound of an aromatic rice variety. J Agric Food Chem, 2002, 50: 2001–2004
[18] Yoshihashi T, Nguyen T T H, Kabaki N. Area dependency of 2-acetyl-1-pyrroline content in an aromatic rice variety, Khao Dawk Mali 105. Jarq-Japan Agric Res Q, 2004, 38: 105–109
[19] Tuteja N. Mechanisms of high salinity tolerance in plants. Methods Enzymol, 2007, 428: 419–438
[20] Roychoudhury A, Basu S, Sailendra N. Sarkar S N, Sengupta D N. Comparative physiological and molecular responses of a common aromatic indica rice cultivar to high salinity with non-aromatic indica rice cultivars. Plant Cell Rep, 2008, 27: 1395–1410
[21] Wei Y-Q(魏玉清), Xu X(许兴), Wang P(王璞). Physiological responses of Lycium barbarum L. under soil salt stress. Chin Agric Sci Bull (中国农学通报), 2005, 21(9): 213–217(in Chinese with English abstract)
[22] Niu Y(牛艳), Xu X(许兴), ZhengG-Q(郑国琦), Wei Y-Q(魏玉清). Study on relationships between soil fertilizer and salt and polysaccharide and total sugar of Lycium barbarum different regions of Ningxia. Chin Agric Sci Bull (中国农学通报), 2006, 22(12): 51–69(in Chinese with English abstract)
[1] Yang Yue, Zhang Xin-Xin, He Zeng-Hui, Li Rui-Dong, Pan Yu-Jie, Li Jia-Kang, Du Wei, Xu Da-Yong, Du Jin-Song. Non-destructive prediction and visualization of major chemical components in tobacco leaves using hyperspectral imaging [J]. Acta Agronomica Sinica, 2026, 52(3): 922-935.
[2] Zhan Ge-Rui, Yu Wen, Li Feng, Wu Ming-Zhu, Xu Xin, Luo Zhao-Peng, Wu Sheng-Xin, Yang Jun, Zhang Zhi-Qiang, Wang Zhong. Functional study of NtWRKY6 in response to ABA expression and regulation of polyphenol synthesis [J]. Acta Agronomica Sinica, 2026, 52(2): 446-458.
[3] Zhu Jia-Bao, Wang Xian-Ling, Fan You-Zhong, Wang Zong-Kai, Kuai Jie, Wang Bo, Wang Jing, Xu Zheng-Hua, Zhao Jie, Zhou Guang-Sheng. Effects of straw incorporation combined with nitrogen management on stem quality and lodging resistance of rapeseed following rice [J]. Acta Agronomica Sinica, 2026, 52(1): 233-248.
[4] Kong Na, Liu Tao, Liu Wen-Ting, Chen Gang, Wen Li-Chao, Deng Zhi-Chao, Guo Mei, Li Wei, Guo Yong-Feng. Cloning of the NtCEP7 gene in tobacco and functional analysis of its encoded peptide in seedling-stage drought resistance [J]. Acta Agronomica Sinica, 2026, 52(1): 249-261.
[5] JI Bai-Lu, SUN Yi-Wen, LIU Wan-Feng, QIAN Ya-Xin, JIANG Cai-Hong, GENG Rui-Mei, LIU Dan, CHENG Li-Rui, YANG Ai-Guo, HUANG Li-Yu, LI Xiao-Xu, PU Wen-Xuan, GAO Jun-Ping, ZHANG Qiang, WEN Liu-Ying. Functional verification of the key gene NtLPAT involved in lipid biosynthesis in tobacco [J]. Acta Agronomica Sinica, 2025, 51(9): 2527-2537.
[6] LIU Bo, CHI Ming, CAO Meng-Qi, TANG Da, YANG Heng-Zhao, ZHANG Wei-Hua, XUE Cong. Impact of potato StuPPO9 gene overexpression on drought resistance in Nicotiana benthamiana [J]. Acta Agronomica Sinica, 2024, 50(9): 2237-2247.
[7] LIU Ying-Chao, FANG Dun-Huang, XU Hai-Ming, TONG Zhi-Jun, XIAO Bing-Guang. QTL mapping of alkaloids in tobacco [J]. Acta Agronomica Sinica, 2024, 50(1): 42-54.
[8] WEN Li-Chao, XIONG Tao, DENG Zhi-Chao, LIU Tao, GUO Cun, LI Wei, GUO Yong-Feng. Expression and functional characterization of NtNAC080 transcription factor gene from Nicotiana tabacumin under abiotic stress [J]. Acta Agronomica Sinica, 2023, 49(8): 2171-2182.
[9] CUI Fang-Fang, MENG Lin-Feng, LIU Miao-Miao, ZHANG Jian-Qiang, WANG Jian-Ge, LIU Qi-Yuan. Characteristics of MADS-box and SUPERMAN genes in tobacco cytoplasmic male sterile line K326 [J]. Acta Agronomica Sinica, 2023, 49(12): 3204-3214.
[10] LI Xiu, LI Liu-Long, LI Mu-Rong, YIN Li-Jun, WANG Xiao-Yan. Effects of shading postanthesis on flag leaf chlorophyll content, leaf microstructure and yield of different wheat varieties [J]. Acta Agronomica Sinica, 2023, 49(1): 286-294.
[11] YUAN Yu-Jie, ZHANG Si-Qi, WANG Ming-Yue, LUO Xiao, ZENG Yu-Han, SONG Lu-Xin, LU Hui, CHEN Hong, TAO You-Feng, DENG Fei, REN Wan-Jun. Effects of cooking rice-to-water ratio on grain microstructure and eating characteristics of indica hybrid rice with different amylose contents [J]. Acta Agronomica Sinica, 2022, 48(12): 3225-3233.
[12] LI Peng, LIU Che, SONG Hao, YAO Pan-Pan, SU Pei-Lin, WEI Yao-Wei, YANG Yong-Xia, LI Qing-Chang. Identification and analysis of non-specific lipid transfer protein family in tobacco [J]. Acta Agronomica Sinica, 2021, 47(11): 2184-2198.
[13] WANG Shi-Ya, ZHENG Dian-Feng, FENG Nai-Jie, LIANG Xi-Long, XIANG Hong-Tao, FENG Sheng-Jie, JIN Dan, LIU Mei-Ling, MU Bao-Min. Effects of uniconazole on physiological characteristics and microstructure under waterlogging stress at seedling stage in soybean [J]. Acta Agronomica Sinica, 2021, 47(10): 1988-2000.
[14] LIU Qing-Li,JIANG Yu-Zhou,ZOU Yan,ZHANG Yun-Gui,ZHANG Heng,SHI Jun-Xiong,LI Zhi-Hong. The study of carbon budget on field-tobacco ecosystem [J]. Acta Agronomica Sinica, 2020, 46(8): 1258-1265.
[15] DONG Qing-Yuan,MA De-Qing,YANG Xue,LIU Yong,HUANG Chang-Jun,YUAN Cheng,FANG Dun-Huang,YU Hai-Qin,TONG Zhi-Jun,SHEN Jun-Ru,XU Yin-Lian,LUO Mei-Zhong,LI Yong-Ping,ZENG Jian-Min. Construction and characterization of a BAC library for flue-cured tobacco line with high resistance to blank shank [J]. Acta Agronomica Sinica, 2020, 46(6): 869-877.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!