Zhang Xiao-Ling, Liu Jing-Jing, Wu Ling-Shang, Si Jin-Ping, Guo Ying-Ying, Yu Jie, Wang Lin-Hua
Nurturing Station for State Key Laboratory of Subtropical Silviculture, Zhejiang Agricultural and Forestry University, Key Laboratory of Varieties Created and Ecological Cultivation of Dendrobium officinale for National Chinese Traditional Medicine Administrative Bureau, Zhejiang Provincial Strategic Alliance for Technical Innovation in Industry of Dendrobium officinale, Lin'an 311300, China.
Fenghua Jiuwei Shengcaotang Professinal Cooperatives of Dendrobium officinale, Fenghua 315500, China.
Zhongguo Zhong Yao Za Zhi. 2013 Nov;38(21):3687-90.
Using phenol-sulfuric acid method and hot-dip method of alcohol-soluble extracts, the contents of polysaccharides and alcohol-soluble extracts in 11 F1 generations of Dendrobium officinale were determined. The results showed that the polysaccharides contents in samples collected in May and February were 32.89%-43.07% and 25.77%-35.25%, respectively, while the extracts contents were 2.81%-4.85% and 7.90%-17.40%, respectively. They were significantly different among families. The content of polysaccharides in offspring could be significantly improved by hybridization between parents with low and high polysaccharides contents, and the hybrid vigor was obvious. Cross breeding was an effective way for breeding new varieties with higher polysaccharides contents. Harvest time would significantly affect the contents of polysaccharides and alcohol-soluble extracts. The contents of polysaccharides in families collected in May were higher than those of polysaccharides in families collected in February, but the extracts content had the opposite variation. The extents of quantitative variation of polysaccharides and alcohol-soluble extracts were different among families, and each family had its own rules. It would be significant in giving full play to their role as the excellent varieties and increasing effectiveness by studying on the quantitative accumulation regularity of polysaccharides and alcohol-soluble extracts in superior families (varieties) of D. officinale to determine the best harvesting time.
采用苯酚-硫酸法和醇溶性浸出物热浸法,测定了11个铁皮石斛F1代中多糖和醇溶性浸出物的含量。结果表明,5月和2月采集的样品中多糖含量分别为32.89%-43.07%和25.77%-35.25%,而浸出物含量分别为2.81%-4.85%和7.90%-17.40%。不同家系间差异显著。通过多糖含量高低不同的亲本杂交,可显著提高子代的多糖含量,杂种优势明显。杂交育种是培育高多糖含量新品种的有效途径。采收时间对多糖和醇溶性浸出物含量有显著影响。5月采集的家系中多糖含量高于2月采集的家系,但浸出物含量变化趋势相反。不同家系中多糖和醇溶性浸出物的定量变异程度不同,各有规律。研究铁皮石斛优良家系(品种)中多糖和醇溶性浸出物的定量积累规律,确定最佳采收时间,对于充分发挥其优良品种作用、提高效益具有重要意义。