生物
脯氨酸
苗木
光合作用
园艺
糖
空气温度
植物
大气科学
地质学
氨基酸
生物化学
作者
Luzhen Chen,Xiao-Na Du,Luanmei Lu,Shi-Jie Zheng,Shengchang Yang
出处
期刊:PubMed
[National Institutes of Health]
日期:2012-04-01
卷期号:23 (4): 953-8
被引量:3
摘要
By setting up a set of simulated tidal systems with different air- and water temperature and tidal flood conditions, this paper studied the synergistic effects of low temperature in winter and ebb tide at night on the growth and key eco-physiological traits of Sonneratia apetala seedlings. Low air temperature depressed the seedlings growth, but the reduction in the seedling height and basal stem diameter was compensated 41.2% and 44.6%, respectively by a 5 degrees C increase of water temperature. Low air temperature (15 degrees C) reduced the leaf Fv/Fm significantly, indicating a dramatic reduction in the leaf photosynthetic capacity, whereas the flooded tide with higher water temperature could not compensate this damage. The flooded tide with high air temperature increased the proline and soluble sugar contents in mature leaves, which could protect the mature leaves from cold damage. When extreme cold events occurred, the flooded tide at night worked as a heat storage medium, which alleviated the cold damage on the seedlings growth and leaf physiological traits, and promoted the survival rate of S. apetala seedlings.
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