Scientia Agricultura Sinica ›› 2005, Vol. 38 ›› Issue (09): 1739-1747 .

• CROP GENETICS & BREEDING·GERMPLASM RESOURCES • Previous Articles     Next Articles

Proteome Analysis on ABA Sensitivity of Wheat Embryo Isolated from Cultivars Resistant or Susceptible to Sprouting

,,   

  1. 中国农科院作物所
  • Received:2004-10-09 Revised:1900-01-01 Online:2005-09-10 Published:2005-09-10

Abstract: There is a significant relationship between resistance to sprouting and ABA sensitivity in wheat. Variance of protein expression will take place after ABA treatment. In this study, wheat embryos isolated from resistant cultivar Shanyou 225 and susceptible cultivar Jimai 1 at 25th day after anthesis were incubated with or without ABA solution to identify ABA sensitivity, and then protein expression in the embryos was studied by proteome analysis. The results indicated that seven protein spots could be recognized according to the level of expression. They are NAD(P)H dehydrogenase, late embryogenesis abundant (LEA) protein Dc3, actin-depolymerizing factor 5 (ADF-5), calmodulin-related protein, salt-stress root protein RS1, 20 kD calcium-binding protein and auxin-responsive protein IAA19. These proteins could be divided into two categories. The abundance of some proteins, such as LEA, in dormant embryo was higher than that of non-dormant embryo,the expression level of these proteins are up-regulated by ABA. On the other hand, the auxin-responsive protein IAA19 with higher abundance in non-dormant embryo than dormant embryo was identified, its expression level was down-regulated by ABA. The proteins up-regulated by ABA are prone to express in water than ABA treatment in embryos of sprouting resistant genotype. These data are useful to study protein expression process of sprouting resistant genes.

Key words: Common wheat, Embryo, Pre-harvest Sprouting, ABA sensitivity, Proteome

[1] CHEN JiHao, ZHOU JieGuang, QU XiangRu, WANG SuRong, TANG HuaPing, JIANG Yun, TANG LiWei, $\boxed{\hbox{LAN XiuJin}}$, WEI YuMing, ZHOU JingZhong, MA Jian. Mapping and Analysis of QTL for Embryo Size-Related Traits in Tetraploid Wheat [J]. Scientia Agricultura Sinica, 2023, 56(2): 203-216.
[2] TANG HuaPing,CHEN HuangXin,LI Cong,GOU LuLu,TAN Cui,MU Yang,TANG LiWei,LAN XiuJin,WEI YuMing,MA Jian. Unconditional and Conditional QTL Analysis of Wheat Spike Length in Common Wheat Based on 55K SNP Array [J]. Scientia Agricultura Sinica, 2022, 55(8): 1492-1502.
[3] DING Peng,TONG YueYue,LIU HuiChao,YIN Xin,LIU JiangJun,HE Xi,SONG ZeHe,ZHANG HaiHan. Dynamic Changes of Yolk Microbiota in Yellow-Feathered Broiler and Its Role on Early Colonization of Intestinal Microbiota During the Embryonic Stage [J]. Scientia Agricultura Sinica, 2022, 55(14): 2837-2849.
[4] WANG RongHua,MENG LiFeng,FENG Mao,FANG Yu,WEI QiaoHong,MA BeiBei,ZHONG WeiLai,LI JianKe. Proteome Analysis of the Salivary Gland of Nurse Bee from High Royal Jelly Producing Bees and Italian Bees [J]. Scientia Agricultura Sinica, 2022, 55(13): 2667-2684.
[5] PeiPei ZHU,YiJia LUO,Wen XIANG,MingLei ZHANG,JianXia ZHANG. Rescue and Molecular Marker Assisted-Selection of the Cold-Resistant Seedless Grape Hybrid Embryo [J]. Scientia Agricultura Sinica, 2021, 54(6): 1218-1228.
[6] HOU ChengLi,HUANG CaiYan,ZHENG XiaoChun,LIU WeiHua,YANG Qi,ZHANG DeQuan. Changes of Antioxidant Activity and Its Possible Mechanism in Tan Sheep Meat in Different Postmortem Time [J]. Scientia Agricultura Sinica, 2021, 54(23): 5110-5124.
[7] ZHAO WeiSong,GUO QingGang,DONG LiHong,WANG PeiPei,SU ZhenHe,ZHANG XiaoYun,LU XiuYun,LI SheZeng,MA Ping. Transcriptome and Proteome Analysis of Bacillus subtilis NCD-2 Response to L-proline from Cotton Root Exudates [J]. Scientia Agricultura Sinica, 2021, 54(21): 4585-4600.
[8] ZHANG DanDan,XU TengTeng,GAO Di,QI Xin,NING Wei,RU ZhenYuan,ZHANG XiangDong,GUO TengLong,SHENTU LuYan,YU Tong,MA YangYang,LI YunSheng,ZHANG YunHai,CAO ZuBing. Transcription Factor TEAD4 Regulates Early Embryonic Development in Pigs [J]. Scientia Agricultura Sinica, 2021, 54(20): 4456-4465.
[9] ZHANG Yong,YAN Jun,XIAO YongGui,HAO YuanFeng,ZHANG Yan,XU KaiJie,CAO ShuangHe,TIAN YuBing,LI SiMin,YAN JunLiang,ZHANG ZhaoXing,CHEN XinMin,WANG DeSen,XIA XianChun,HE ZhongHu. Characterization of Wheat Cultivar Zhongmai 895 with High Yield Potential, Broad Adaptability, and Good Quality [J]. Scientia Agricultura Sinica, 2021, 54(15): 3158-3167.
[10] LIU HaiYing,FENG BiDe,RU ZhenGang,CHEN XiangDong,HUANG PeiXin,XING ChenTao,PAN YinYin,ZHEN JunQi. Relationship Between Phytohormones and Male Sterility of BNS and BNS366 in Wheat [J]. Scientia Agricultura Sinica, 2021, 54(1): 1-18.
[11] Xiao ZHANG,Man LI,DaTong LIU,Wei JIANG,Yong ZHANG,DeRong GAO. Analysis of Quality Traits and Breeding Inspiration in Yangmai Series Wheat Varieties [J]. Scientia Agricultura Sinica, 2020, 53(7): 1309-1321.
[12] ZHU ShiPing,WANG FuSheng,CHEN Jiao,YU Xin,YU Hong,LUO GuoTao,HU Zhou,FENG JinYing,ZHAO XiaoChun,HONG QiBin. Seed Traits and Seedling Performances of Different Types of Citrus Rootstock [J]. Scientia Agricultura Sinica, 2020, 53(3): 585-599.
[13] SHI TianPei,WANG XinYue,HOU HaoBin,ZHAO ZhiDa,SHANG MingYu,ZHANG Li. Analysis and Identification of circRNAs of Skeletal Muscle at Different Stages of Sheep Embryos Based on Whole Transcriptome Sequencing [J]. Scientia Agricultura Sinica, 2020, 53(3): 642-657.
[14] ZHANG Xue,YANG HongKun,ZHENG Ting,XIAO Yun,MO Piao,FAN GaoQiong. Effects of Exogenous ABA on Pre-Harvest Sprouting Resistance and Quality of White and Red Wheat Cultivars [J]. Scientia Agricultura Sinica, 2020, 53(23): 4750-4763.
[15] XIE KaiDong,PENG Jun,YUAN DongYa,QIANG RuiRui,XIE ShanPeng,ZHOU Rui,XIA QiangMing,WU XiaoMeng,KE FuZhi,LIU GaoPing,GROSSER Jude W,GUO WenWu. Production of Citrus Triploids Based on Interploidy Crossing with Bendizao and Man Tangerines as Female Parents [J]. Scientia Agricultura Sinica, 2020, 53(23): 4961-4968.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!