Scientia Agricultura Sinica ›› 2011, Vol. 44 ›› Issue (2): 225-232 .

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

Plant Regeneration and Agrobacterium-mediated Transformation Using Large Immature Embryos of Wheat

SHI Zhen-yuan, YIN Gui-xiang, DU Li-pu, TAO Li-li, XU Hui-jun, YE Xing-guo
  

  1. (中国农业科学院作物科学研究所/国家基因资源与遗传改良重大科学工程/农业部作物遗传育种重点开放实验室)

  • Received:2010-06-18 Revised:2010-07-03 Online:2011-01-15 Published:2011-01-15
  • Contact: YE Xing-guo

Abstract:

【Objective】 The immature embryo culture of wheat is closely related with the explant age. Thereby, it is essential to improve the regeneration efficiency of wheat immature embryos with larger size. 【Method】 Eighteen Triticum aestivum genotypes and five Triticum durum genotypes were used as material in this research, and their large immature embryos post pollination for 15-17 days were cultured or transformed with Agrobacterium after or before using cutting pieces treatment. Regeneration and transformation of the larger explants were evaluated by shoots induction rate, transient expression of histochemical staining, and PCR detection. 【Result】 The results indicated that the larger immature embryos of 1.5-1.8 mm in size gave an increased regeneration rate of 18.2% when precultured for 2 days and then cut into pieces for further culture, which was obviously higher than the control of no cutting treatment and the other two treatments with 4 days preculture or 6 days preculture, respectively, before cutting. The regeneration frequency of the larger immature embryos from different wheat genotypes varied from 16.9% to 46.7% by employing the breaking treatment, being raised by 5 to 10 times comparing with the control treatment for different cultivars, among which the larger immature embryos fragments of Bobwhite and Zhong8423 performed a regeneration rate of more than 40%. Weak light had a positive effect on the regeneration rate of the fragments of the larger immature embryos, 5.4% to 47.4% higher than the control. Being transformed by Agrobacterium, the larger immature embryos tissues showed a GUS transient expression rate of 0 to 76.7% among the genotypes tested, in which Kenong199 was the highest, Verry and Alondra were followed by 64.4% and 47.2%. Putative transgenic plants were generated from the larger immature embryos infected by Agrobacterium, and identified by PCR further. 【Conclusion】 Regeneration of wheat large immature embryos was improved greatly by treatments of cutting and weak light culture. The larger immature embryos of Kenong199, Verry and Alondra were sensitive to Agrobacterium infection, suggesting to be used in the transformation protocol. Transgenic plants can be achieved by employing the larger explants.

Key words: wheat, large immature embryos, broken treatment, plant regeneration, Agrobacterium-mediated transformation

[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] YAN YanGe, ZHANG ShuiQin, LI YanTing, ZHAO BingQiang, YUAN Liang. Effects of Dextran Modified Urea on Winter Wheat Yield and Fate of Nitrogen Fertilizer [J]. Scientia Agricultura Sinica, 2023, 56(2): 287-299.
[3] XU JiuKai, YUAN Liang, WEN YanChen, ZHANG ShuiQin, LI YanTing, LI HaiYan, ZHAO BingQiang. Nitrogen Fertilizer Replacement Value of Livestock Manure in the Winter Wheat Growing Season [J]. Scientia Agricultura Sinica, 2023, 56(2): 300-313.
[4] ZHAO HaiXia,XIAO Xin,DONG QiXin,WU HuaLa,LI ChengLei,WU Qi. Optimization of Callus Genetic Transformation System and Its Application in FtCHS1 Overexpression in Tartary Buckwheat [J]. Scientia Agricultura Sinica, 2022, 55(9): 1723-1734.
[5] WANG HaoLin,MA Yue,LI YongHua,LI Chao,ZHAO MingQin,YUAN AiJing,QIU WeiHong,HE Gang,SHI Mei,WANG ZhaoHui. Optimal Management of Phosphorus Fertilization Based on the Yield and Grain Manganese Concentration of Wheat [J]. Scientia Agricultura Sinica, 2022, 55(9): 1800-1810.
[6] 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.
[7] MA XiaoYan,YANG Yu,HUANG DongLin,WANG ZhaoHui,GAO YaJun,LI YongGang,LÜ Hui. Annual Nutrients Balance and Economic Return Analysis of Wheat with Fertilizers Reduction and Different Rotations [J]. Scientia Agricultura Sinica, 2022, 55(8): 1589-1603.
[8] LIU Shuo,ZHANG Hui,GAO ZhiYuan,XU JiLi,TIAN Hui. Genetic Variations of Potassium Harvest Index in 437 Wheat Varieties [J]. Scientia Agricultura Sinica, 2022, 55(7): 1284-1300.
[9] WANG YangYang,LIU WanDai,HE Li,REN DeChao,DUAN JianZhao,HU Xin,GUO TianCai,WANG YongHua,FENG Wei. Evaluation of Low Temperature Freezing Injury in Winter Wheat and Difference Analysis of Water Effect Based on Multivariate Statistical Analysis [J]. Scientia Agricultura Sinica, 2022, 55(7): 1301-1318.
[10] GOU ZhiWen,YIN Wen,CHAI Qiang,FAN ZhiLong,HU FaLong,ZHAO Cai,YU AiZhong,FAN Hong. Analysis of Sustainability of Multiple Cropping Green Manure in Wheat-Maize Intercropping After Wheat Harvested in Arid Irrigation Areas [J]. Scientia Agricultura Sinica, 2022, 55(7): 1319-1331.
[11] ZHI Lei,ZHE Li,SUN NanNan,YANG Yang,Dauren Serikbay,JIA HanZhong,HU YinGang,CHEN Liang. Genome-Wide Association Analysis of Lead Tolerance in Wheat at Seedling Stage [J]. Scientia Agricultura Sinica, 2022, 55(6): 1064-1081.
[12] QIN YuQing,CHENG HongBo,CHAI YuWei,MA JianTao,LI Rui,LI YaWei,CHANG Lei,CHAI ShouXi. Increasing Effects of Wheat Yield Under Mulching Cultivation in Northern of China: A Meta-Analysis [J]. Scientia Agricultura Sinica, 2022, 55(6): 1095-1109.
[13] CAI WeiDi,ZHANG Yu,LIU HaiYan,ZHENG HengBiao,CHENG Tao,TIAN YongChao,ZHU Yan,CAO WeiXing,YAO Xia. Early Detection on Wheat Canopy Powdery Mildew with Hyperspectral Imaging [J]. Scientia Agricultura Sinica, 2022, 55(6): 1110-1126.
[14] ZONG Cheng, WU JinXin, ZHU JiuGang, DONG ZhiHao, LI JunFeng, SHAO Tao, LIU QinHua. Effects of Additives on the Fermentation Quality of Agricultural By-Products and Wheat Straw Mixed Silage [J]. Scientia Agricultura Sinica, 2022, 55(5): 1037-1046.
[15] MA HongXiang, WANG YongGang, GAO YuJiao, HE Yi, JIANG Peng, WU Lei, ZHANG Xu. Review and Prospect on the Breeding for the Resistance to Fusarium Head Blight in Wheat [J]. Scientia Agricultura Sinica, 2022, 55(5): 837-855.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!