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黄槽竹及其变种自然极端低温后的生理响应特征
引用本文:夏雯,尹子旭,官凤英.黄槽竹及其变种自然极端低温后的生理响应特征[J].北京林业大学学报,2022,44(3):75-84.
作者姓名:夏雯  尹子旭  官凤英
作者单位:1.国际竹藤中心,国家林业和草原局/北京市共建竹藤科学与技术重点实验室,北京 100102
基金项目:国际竹藤中心科研业务费专项
摘    要:目的]为探究北京地区黄槽竹及其变种自然低温胁迫下的生理响应特征并对抗寒能力进行综合评价.方法]以黄槽竹、金镶玉竹、黄秆京竹3个竹种为研究对象,分析其自然极端低温后的叶绿素含量、渗透调节物质、抗氧化系统指标、内源激素特征,并采用熵权TOPSIS法对抗寒性进行综合评价.结果]黄槽竹叶绿素含量均高于其他两个竹种.黄秆京...

关 键 词:黄槽竹  极端低温  生理生化指标  熵权TOPSIS法
收稿时间:2021-08-26

Physiological response characteristics of Phyllostachys aureosulcata and its varieties after natural extreme low temperature
Xia Wen,Yin Zixu,Guan Fengying.Physiological response characteristics of Phyllostachys aureosulcata and its varieties after natural extreme low temperature[J].Journal of Beijing Forestry University,2022,44(3):75-84.
Authors:Xia Wen  Yin Zixu  Guan Fengying
Institution:1.International Center for Bamboo and Rattan, National Forestry and Grassland Administration Key Laboratory of Science and Bamboo and Rattan, Beijing 100102, China2.National Location Observation and Research Station of the Bamboo Ecosystem in Yixing, National Forestry and Grassland Administration, Yixing 214200, Jiangsu, China
Abstract:  Objective  This study aimed to investigate the physiological responses of Phyllostachys aureosulcata and its varieties to natural low temperatures in Beijing and to make a comprehensive evaluation of their cold tolerance.   Method   Phyllostachys aureosulcata and its varieties (Phyllostachys aureosulcata f. spectabilis, Phyllostachys aureosulcata f. aureocarlis) were used to analyze their chlorophyll content, osmoregulatory substances, antioxidant system indicators and endogenous hormone characteristics, the entropy-weighted TOPSIS method was used to comprehensively evaluate the cold tolerance of the three varieties.   Result  The chlorophyll content of Phyllostachys aureosulcata was higher than that of its varieties. Phyllostachys aureosulcata f. aureocarlis had the highest malondialdehyde (MDA) content, but its antioxidant enzyme (SOD, POD, CAT) activities were lower than those of the other two varieties. The soluble sugar and soluble protein contents in young bamboo leaves were significantly higher than those of the other two varieties. The chlorophyll content, the activity of SOD and POD of Phyllostachys aureosulcata f. spectabilis decreased significantly with increasing age, and the changes in osmotic substances content were not significantly different (P > 0.05). The content of the three osmotic substances was significantly higher in young Phyllostachys aureosulcata f. aureocarlis than in the old ones, and the difference in the indexes of the antioxidant system between the two age stages of Phyllostachys aureosulcata reached a significant level (P < 0.05). The ABA/GA3 ratios of the three varieties were ranked as follows: Phyllostachys aureosulcata f. spectabilis, Phyllostachys aureosulcata, Phyllostachys aureosulcata f. aureocarlis. ANOVA and correlation analysis showed that chlorophyll a, chlorophyll b, total chlorophyll, soluble sugar, soluble protein, MDA, POD, CAT, and SOD differed significantly (P < 0.05) among varieties, and all indicators were correlated with each other to different extents.   Conclusion  Variety influenced the cold hardiness of Phyllostachys aureosulcata and its varieties most, followed by the interaction between variety and age. Based on the entropy-weighted TOPSIS comprehensive evaluation method, MDA content accounted for the greatest weight (35.44%) in the cold hardiness indicators, followed by the activities of POD and SOD. Evaluation of the 11 indicators showed that Phyllostachys aureosulcata f. aureocarlis was the most cold resistant variety. The ratio of ABA/GA3 indicates that the hormones may regulate cold tolerance in bamboo by crosstalk. 
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