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作物学报 ›› 2012, Vol. 38 ›› Issue (03): 462-470.doi: 10.3724/SP.J.1006.2012.00462

• 作物遗传育种·种质资源·分子遗传学 • 上一篇    下一篇

陕农138小孢子发育过程中蛋白表达差异的比较分析

毕惠惠1,**,杨华瑞1,**,马俊会1,刘录祥2,王成社1,*,许喜堂1,邹淑芳1,谢彦周1   

  1. 1西北农林科技大学农学院,陕西杨凌 712100;2中国农业科学院作物科学研究所,北京 100081
  • 收稿日期:2011-06-30 修回日期:2011-10-12 出版日期:2012-03-12 网络出版日期:2011-12-01
  • 基金资助:

    本研究由国家重点基础研究计划(973计划)项目(2009CB118301), 国家高技术研究发展计划(863计划)项目(2007AA100102-5), 国家科技支撑计划项目(2008BAD97B01)资助。

Analysis of Protein Expression at Different Microspore Development Stages in Wheat Cultivar Shaannong 138

BI Hui-Hui1,**, YANG Hua-Rui1,**,MA Jun-Hui1,LIU Lu-Xiang2,WANG Cheng-She1,*,XU Xi-Tang1,ZOU Shu-Fang1,XIE Yan-Zhou1   

  1. 1 College of Agronomy, Northwest A&F University, Yangling 712100, China; 2 Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing 100081, China
  • Received:2011-06-30 Revised:2011-10-12 Published:2012-03-12 Published online:2011-12-01

摘要: 为了寻找小麦单核中晚期愈伤组织诱导率较高的原因,探讨小麦花药发育的蛋白质代谢机制,本试验利用双向电泳技术对陕农138小麦小孢子单核中晚期和双核期的全蛋白分析表明,在等电点4~7之间可识别约450个以上清晰的蛋白质点,检测到差异点26个,对其中14个质量较好、重复性较高的差异表达的蛋白质点采用基质辅助激光解吸分离飞行时间质谱(MALDI-TOF-MS)进行肽指纹图谱分析,并利用Mascot软件在NCBInr数据库搜索,鉴定出11个蛋白质点,另3个蛋白质点未得到有意义的鉴定,11个蛋白质点分别被鉴定为UDP-葡萄糖焦磷酸化酶(1个蛋白点)、叶绿素抗体结合蛋白(1个蛋白点)、pentatricopeptide重复蛋白PPR566-6 (1个蛋白点)、半胱氨酸蛋白酶抑制剂(1个蛋白点)、泛素(1个蛋白点)、S-腺苷-L-半胱氨酸水解酶(2个蛋白点)、放氧增强蛋白(2个蛋白点)和假定蛋白(2个蛋白点)。这些蛋白质点的功能涉及到糖代谢、蛋白质降解、细胞防卫等代谢过程。

关键词: 蛋白表达, 小孢子发育, 双向电泳, 花药培养, 花药培养力

Abstract: To understand the metabolic mechanism of wheat anther development, we analyzed the holoprotein of Shaannong 138 at mid-late mononuclear pollen and binuclear pollen stages using two-dimensional electrophoresis technique. More than 450 clear protein spots were identified, including 26 differentially expressed protein spots. We selected 14 protein spots with expression difference at least two times for further separation by means of matrix-assisted laser desorption time of flight mass spectrometry peptide mass fingerprint analysis (MALDI-TOF-MS) in isoelectric point (pI) of 4–7. After indexing database NCBInr using software Mascot, we identified 11 significant protein spots. These protein spots were classified into several groups based on function, i.e., UDP-glucose pyrophosphorylase (one spot), chlorophyll antibody-binding protein (one spot), pentatricopeptide repeat protein PPR566-6 (one spot), cysteine protease inhibitor (one spot), ubiquitin (one spot), S-adenosyl-L-cysteine hydrolase (two spots), oxygen-enhanced proteins (two spots), and putative proteins (two spots). These proteins are involved in glycometabolism, protein degradation, cell defense, and some other metabolic processes.

Key words: Protein expression, Microspore development, Two-dimensional electrophoresis, Anther culture, Anther cultural ability

[1]Sui X-X(隋新霞), Fan Q-Q(樊庆琦), Li G-Y(李根英), Huang C-Y(黄承彦). Review on wheat anther culture. J Triticeae Crops (麦类作物学报), 2005, 25(4): 127–131 (in Chinese with English abstract)

[2]Wang P(王培), Chen X-R(陈玉蓉). Effects of growth conditions of anther-donor plants on the production of pollen plants in wheat anther culture. Acta Genet Sin (遗传学报), 1980, 7(1): 64–71 (in Chinese with English abstract)

[3]He D-G(何定岗), Ou-Yang J-W(欧阳俊闻). Response of wheat anthers at different development stages to culture in vitro. Acta Genet Sin (遗传学报), 1984, 6(2): 6–9 (in Chinese with English abstract)

[4]Chen X-H( 陈蕊红), Ye J-X(叶景秀), Zhang G-S(张改生), Wang J-S(王俊生), Niu N(牛娜), Ma S-C(马守才), Zhao J-X(赵继新), Zhu J-C(朱建楚). Differential proteomic analysis of anther proteins between cytoplasmic-nuclear male sterility line and its maintainer in wheat (Triticum aestivum L.). Prog Biochem Biophys (生物化学与生物物理进展), 2009, 36(4): 431–440 (in Chinese with English abstract)

[5]Imin N, Kerim T, Weinman J J, Rolfe B G. Characterisation of rice anther proteins expressed at the young microspore stage. Proteomics, 2001, 1: 1149–1161

[6]Kerim T, Imin N, Weinman J J, Rolfe B G. Proteome analysis of male gametophyte development in rice anthers. Proteomics, 2003, 3: 738–751

[7]Qi Y-F(齐延芳), Yang J-C(杨景成), Zhou Z-H(周柱化), Xing Y-J(邢燕菊), Xu L-H(徐立华), Xu F-Z(许方佐), Qiu D-L(邱登林). Isozyme analysis of maize (Zea mays L.) inbred lines and an F2 segregation population during anther culture procedure. Acta Agric Nucl Sin (核农学报), 2003, 17(3): 191–195 (in Chinese with English abstract)

[8]Damerval C, Vienne D D, Zivy M. Technical improvements in two-dimensional electrophoresis increase the level of genetic variation detected in wheat seedling proteins. Electrophoresis, 1986, 7: 52–54

[9]Bradford M M. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal Chem, 1976, 72: 248–254

[10]Görg A, Obermaier C, Boguth G, Weiss W. Recent developments in two-dimensional gel electrophoresis with immobilized pH gradients:wide pH gradients up pH 12, longer separation distances and simplified procedures. Electrophoresis, 1999, 20: 712–717

[11]Yang H-R(杨华瑞), Ma J-H(马俊会), Liu L-X(刘录祥), Wang C-H(王成社), Xu X-T(许喜堂), Yang J-R(杨进荣), Zou S-F(邹淑芳). Comparation analysis of the protein expressed at different developmental stages of wheat variety Shannong 138. J Triticeae Crops (麦类作物学报), 2010, 30(4): 680–683 (in Chinese with English abstract)

[12]Eimert K, Villand P, Kilian A. Cloning and characterization of several cDNAs for UDP-glucose pyrophosphorylase from barley (Hordeum vulgare) tissues. Gene, 1996, 170: 227–232

[13]Tian C-E(田长恩), Zhang M-Y(张明永), Liang C-Y(梁承邺), Huang Y-W(黄毓文), Liu H-X(刘鸿先). New progress in physiological biochemistry mechanism of plant male sterility. Chin Bull Life Sci (生命科学), 1999, 11(suppl): 94–97 (in Chinese with English abstract)

[14]Wen L(文李), Liu G(刘盖), Zhang Z-J(张再君), Tao J(陶钧), Wan C-X(万翠香), Li S-Q(李绍清), Zhu Y-G(朱英国). Preliminary proteomics analysis of the total proteins of HL type cytoplasmic male sterility rice anther. Hereditas (遗传), 2006, 28(3): 311–316 (in Chinese with English abstract)

[15]Zhang Z X, Tang W H, Zhang F D. Fertility restoration mechanisms in S-type cytoplasmic male sterility of maize (Zea mays L.) revealed through expression differences identified by cDNA Microarray and suppression subtractive hybridization. Plant Mol Biol Rep, 2005, 23: 17–38

[16]Chen X(陈昕), Wang L(王琳). Research progress of S-adenosyl-homocysteine hydrolase and its inhibitors. Chin J Med Chem (中国药物化学杂志), 1998, 8(1): 66–72 (in Chinese with English abstract)

[17]Tanaka H, Masuta C, Kataoka J. Inducible expression by plant hormones of S-adenosyl-L-homocysteine hydrolase gene from Nicotiana tabacum during early flower bud formation in vitro. Plant Sci Limerick, 1996, 113: 167–174

[18]Tanaka H, Masuta C, Uehara K. Morphological changes and hypomethylation of DNA in transgenic tobacco expressing antisense RNA of the S-adenosyl-L-homocysteine hydrolase gene. Plant Mol Biol, 1997, 35: 981–986

[19]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)

[20]Li H-X(李红霞), Zhang L-Y(张龙雨), Zhang G-S(张改生), Niu N(牛娜), Zhu Z-W(朱展望). Construction of cDNA library from fertility-related genes of male sterile wheat with Aegilops kotschyi cytoplasm by SSH. Acta Agron Sin (作物学报), 2008, 34(6): 965–971 (in Chinese with English abstract)

[21]Zhu H-G(朱华国), Tu L-L(涂礼莉), Jin S-X(金双侠), Xu L(徐理), Tan J-F(谭家福), Deng F-L(邓锋林), Zhang X-L(张献龙). Differential gene expression of cotton initial dedifferentiation. Chin Sci Bull (科学通报), 2008, 53(20): 2483–2492 (in Chinese)

[22]Sun Q-M(孙钦秒), Leng J(冷静), Li L-B(李良璧), Kuang T-Y(匡廷云). Recent advances of studies on the structure and function of the light harvesting chlorophyll A/B-protein complex. Chin Bull Bot (植物学通报), 2000, 17(4): 289–301 (in Chinese with English abstract)

[23]Bentolila S, Alfonso A, Hanson M. A pentatricopeptide repeat-containing gene restores fertility to male-sterile plants. Proc Natl Acad Sci USA, 2002, 99: 10887–10892

[24]Camille M. Barr, Lila Fishman. The nuclear component of a cytonuclear hybrid incompatibility in Mimulus maps to a cluster of pentatricopeptide repeat genes. Genetics, 2010, 184: 455–465

[25]Koizuka N, Imai R, Fujimoto H, Hayakawa T, Kimura Y, Kohno-Murase J, Sakai T, Kawasaki S, Imamura J. Genetic characterization of a pentatricopeptide repeat protein gene, orf687, that restores fertility in the cytoplasmic male-sterile kosena radish. Plant J, 2003, 34: 407–415

[26]Lurin C, Andres C, Aubourg S, Bellaoui M, Bitton F, Bruyere C, Caboche M, Debast C, Gualberto J, Hoffmann B, Lecharny A, Ret M L, Martin-Magniette M L., Renou J P, Szurek B, Taconnat L, Small I. Genome-wide analysis of Arabidopsis pentatricopeptide repeat proteins reveals their essential role in organelle biogenesis. Plant Cell, 2004, 16: 2089–2103

[27]Ding Y H, Liu N Y, Tang Z S, Liu J, Yang W C. Arabidopsis glutamine-rich protein 23 is essential for early embryogenesis and encodes a novel nuclear PPR motif protein that interacts with RNA polymerase II subunit III. Plant Cell, 2006, 18: 815–830

[28]Mitsuru H, Hiroshi M, Mamoru S. A pentatricopeptide repeat protein is required for RNA processing of clpP pre-mRNA in moss chloroplasts. J Biol Chem, 2007, 282: 10773–10782
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