%0 Journal Article
%A JIA Hai-Yan
%A LIU Jian-Xin
%A LIU Xiu-Li
%A WANG Jin-Cheng
%T Effect of Ca2+ on Seed Germination and Seedling Formation of Oat Induced by H2O2 under Saline-Alkali Complex Stress
%D 2017
%R 10.7525/j.issn.1673-5102.2017.06.008
%J Bulletin of Botanical Research
%P 855-860
%V 37
%N 6
%X Salinity-alkalinity stress is an important factor of restricting crop high-yield and good quality, Ca2+ and H2O2 as signal molecules involved in crop response to stress. In order to understand whether Ca2+ is involved in the regulation of H2O2 on the seed germination and seedling formation in plant under saline-alkali stress, using subordinate function analysis method, we studied the effects of extracellular dissociation Ca2+ chelant EGTA, plasma membrane Ca2+ channel blockers LaCl3, tonoplast Ca2+ release inhibitor ruthenium red(RR) and H2O2 on seed germination and seedling formation under saline-alkali complex stress(NaCl:Na2SO4:NaHCO3:Na2CO3=12:8:9:1) with oat(Avena nude). The results showed that 25-200 mmol·L-1 saline-alkali complex stress significantly inhibited seed germination and seedling formation of oat, and its inhibition was more obvious as the concentration was increased. While 0.001-2 mmol·L-1 H2O2 could promote the seed germination and seedling formation of oat, and 0.5 mmol·L-1 H2O2 significantly relieve the inhibition of 75 mmol·L-1 saline-alkali complex stress to seed germination and seedling formation of oat. After EGAT treatment, combining with LaCl3 and RR, the effect of H2O2 was decreased. Therefore, Ca2+ was involved in the signal transduction of seed germination and seedling formation of oat induced by H2O2 under saline-alkali mixed stress.
%U https://bbr.nefu.edu.cn/EN/10.7525/j.issn.1673-5102.2017.06.008