干旱胁迫,">渗透调节,">抗旱性,主成分分析,保护酶," /> 干旱胁迫,">渗透调节,">抗旱性,主成分分析,保护酶,"/> drought stress,protective enzyme,drought,"/> <span style="font-size: 10.5pt;">Ecophysiological adaptation of four Salix clones under persistent drought stress</span>

SHANDONG SCIENCE ›› 2016, Vol. 29 ›› Issue (3): 97-104.doi: 10.3976/j.issn.1002-4026.2016.03.017

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Ecophysiological adaptation of four Salix clones under persistent drought stress

TAI Xiu-guo, YANG Zhen-ya, LI Bo, CAO Zhen-yu, CAO Bang-hua   

  1. Key Laboratory of Agricultural Ecology and Environment, Shandong Agricultural University, Tai’ an 271000, China
  • Received:2015-12-17 Online:2016-06-20 Published:2016-06-20

Abstract:

To compare the difference of ecophysiological adaptation of four Salix clones, we addressed the dynamic variation of osmotic adjustment and protective enzyme activities of their annual cutting seedlings under persistent drought stress by pot experiments. Results show that relative electrical conductivity and malondialdehyde gradually increase with the increase of drought stress time. Their proline, soluble sugar and activities of peroxidase and superoxide dismutase totally increase. Drought resistance capability of poor drought resistance clones first decreases with the increase of drought stress. We comprehensively evaluate drought resistance of the four Salix clones with principal component analysis based ecophysiological indexes.

Key words: osmotic adjustment, principal component analysis(PCA ) , drought stress')">drought stress, protective enzyme, drought

CLC Number: 

  • Cite this article

    TAI Xiu-guo, YANG Zhen-ya, LI Bo, CAO Zhen-yu, CAO Bang-hua. Ecophysiological adaptation of four Salix clones under persistent drought stress[J].SHANDONG SCIENCE, 2016, 29(3): 97-104.