洋甘菊
PEG比率
发芽
苗木
聚乙二醇
渗透性休克
园艺
渗透压
盐度
化学
渗透
植物
生物
生物化学
基因
经济
膜
生态学
财务
作者
Sayed Fakhreddin Afzali,Hajabbasi,H. Shariatmadari,Khorshid Razmjoo,Amir Hossein Khoshgoftarmanesh
摘要
The adverse effects of salinity and PEG-induced water stress on growth of Matricaria chamomilla were assessed at the germination stage using osmotic solution of NaCl (0, -0.175. -0.358, -0.541, -0.716 MPa), and polyethylene glycol (PEG 6000) (0, -0.05, -0.1, -0.2, -0.3 MPa), respectively. Effect of NaCl salinity stress (0, 40, 80, 120 and 190 mM NaCI) at early growth stage of chamomile was also studied. The levels of NaCl and PEG-induced water stress were determined in first experiment. Both seed germination rate and seedling growth reduced with increasing osmotic potential of growth medium either due to NaCl or due to PEG. However, PEG-induced osmotic stress caused more growth inhibition compared with NaCl-induced osmotic stress. Seeds were not germinated at -0.8 MPa of NaCI and -0.4 MPa of PEG. In conclusion, adverse effects of salt stress on germination and early growth of chamomile is due to Na+ accumulation in addition to its osmotic stre
ss.
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