|Table of Contents|

Investigation and Analysis of Main Agronomic Traits of Transgenic Soybean with GsCa2+-ATPase Gene(PDF)

《大豆科学》[ISSN:1000-9841/CN:23-1227/S]

Issue:
2012年06期
Page:
903-906
Research Field:
Publishing date:

Info

Title:
Investigation and Analysis of Main Agronomic Traits of Transgenic Soybean with GsCa2+-ATPase Gene
Author(s):
ZHAO Chao-yueBAI XiFAN ChaoLIN Fan-minCAI HuaJI WeiZHU Yan-ming
Plant Bioengineering Laboratory,College of Life Sciences,Northeast Agricultural University,Harbin 150030,Heilongjiang,China
Keywords:
Transgenic soybeanTolerant to saline and alkaline stressGsCa2+-ATPase geneAgronomic traits
PACS:
S565.1
DOI:
10.3969/j.issn.1000-9841.2012.06.009
Abstract:
In order to evaluate the variation of the main agronomic traits between transgenic soybean and the control,the seed germination,seed shattering,yield traits,morphological and quality traits of three T3 transgenic soybean lines HF50-CA-1,HF55-CA-1 and HF55-CA-2 were investigated and analyzed.No obvious differences in seed germination,seed shattering,yield traits,morphological traits and protein content were found for transgenic soybeans.The oil content of HF50-CA-1,HF55-CA-1 were decreased by 1.01% and 0.56% compared with the control,while HF55-CA-2 had no obvious differences.This study provides an important genetic resource for the industrialization of alkali tolerant transgenic soybeans.

References:

[1]赵可夫,李法曾.中国盐生植物[M].北京:科学出版社,1999.(Zhao K F,Li F Z.China halophyte[M].Beijing:Science Press,1999.)

[2]蔡一荣,李望丰,刘立侠,.大豆品质改良的基因工程育种概况[J].大豆科学,2006,25(1):62-66.(Cai Y RLi W F,Liu L X,et al.Genetic engineering on improving soybean quality traits in breeding[J].Soybean Science,2006,25(1):62-66.)

[3]江香梅,黄敏仁,王明庥.植物抗盐碱、耐干旱基因工程研究进展[J].南京林业大学学报(自然科学版),2006,25(5):57-61.(Jiang X M,Huang M R,Wang M X.A review on salt and drought resistance gene engineering in plants[J].Journal of Nanjing Forestry University(Natural Sciences Edition),2006,25(5):57-61.)

[4]化烨,才华,朱延明,.植物耐盐基因工程研究进展[J].东北农业大学学报,2010,41(10):150-156.(Hua Y,Cai H,Zhu Y M.Research progress on plant salt stress tolerance genetic engineering[J].Journal of Northeast Agricultural University,2010,41(10):150-156.)

[5]周延清,王娜,苑保军,.大豆遗传转化研究进展[J].武汉植物学研究,2004,22(2):163-170.(Zhou Y QWang N,Yuan B J,et al.Current review on genetic transformation of soybean[J].Journal of Wuhan Botanical Research,2004,22(2):163-170.)

[6]张家榕,李贵全.大豆农艺性状与抗旱性研究[J].山西农业大学学报,2006,26(2):143-145.(Zhang J RLi G Q.Studies on agricultural property and drought resistance of soybean[J].Journal of Shanxi Agricultural University,2006,26(2):143-145.)

[7]Geisler M,Erangne N,Gomès E,et al.The ACA4 gene of Arabidopsis eneodes a vacuolar membrane calcium pump that improves salt tolerance in yeast[J].Plant Physiology,2000,124(4):1814-27.

[8]Qudeimat E,Faltusz A M C,Wheeler G,et al.A PIIB-type Ca2+-ATPase is essential for stress adaptation in Physcomitrella patens[J].PNAS,2008,105(49):19555-19560.

[9]武维华.植物生理学[M].北京:科学出版社,2003.(Wu W H.Plant physiology[M].Beijing:Science Press,2003)

[10]范玲玲,陈刚,戴绍军,等.NaHCO3胁迫下星星草根中Ca2+与Ca2+-ATPase的超微细胞化学定位[J].植物学报,2010,45(3):337-344.(Fan L L,Chen G,Dai S J,et al.Ultracy to chemical Localization of Ca2+?and Ca2+-ATPase in the root of Puccinellia tenuiflora?under NaHCO3 stress[J].Chinese Bulletin of Botany,2010,45(3):337-344.)

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Last Update: 2014-08-19