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适度干旱和低养分投入促进黄精生长发育与黄精多糖累积
引用本文:闫莉,刘玉翠,王晓光,庄鑫,郭俊杰,李婧,贺立鹏,肖井雷. 适度干旱和低养分投入促进黄精生长发育与黄精多糖累积[J]. 植物营养与肥料学报, 2021, 27(8): 1468-1476. DOI: 10.11674/zwyf.2021119
作者姓名:闫莉  刘玉翠  王晓光  庄鑫  郭俊杰  李婧  贺立鹏  肖井雷
作者单位:1.长春中医药大学药学院,吉林长春 130117
基金项目:吉林省教育厅项目(JJKH20190479KJ);中央本级重大增减支项目(2060302);2018级全国中药特色技术传承人才培训项目(T20184828005)
摘    要:[目的]探究在不同水肥胁迫条件下黄精光合特性、生长发育及黄精多糖含量的差异,为黄精栽培生产中水肥管理提供科学依据.[方法]试验设4个单因素黄精盆栽试验.水分试验设计灌水量400 mm (严重干旱)、500 mm (中度干旱)、600 mm (轻度干旱)、700 mm (充分供水)、800 mm (极充分供水) 5个水平...

关 键 词:黄精  水肥胁迫  光合特性  生物量  黄精多糖
收稿时间:2021-03-10

Moderate drought and less fertilizer input promote growth and polysaccharide accumulation in Polygonatum sibiricum Red.
YAN Li,LIU Yu-cui,WANG Xiao-guang,ZHUANG Xin,GUO Jun-jie,LI Jing,HE Li-peng,XIAO Jing-lei. Moderate drought and less fertilizer input promote growth and polysaccharide accumulation in Polygonatum sibiricum Red.[J]. Plant Nutrition and Fertilizer Science, 2021, 27(8): 1468-1476. DOI: 10.11674/zwyf.2021119
Authors:YAN Li  LIU Yu-cui  WANG Xiao-guang  ZHUANG Xin  GUO Jun-jie  LI Jing  HE Li-peng  XIAO Jing-lei
Affiliation:1.School of Pharmacy, Changchun University of Chinese Medicine, Changchun, Jilin 130117, China
Abstract:  【Objectives】  We explored differences in photosynthetic characteristics, growth development, and polysaccharide content of Polygonatum sibiricum Red. under different fertilizers and water stress. The aim was to provide a scientific basis for water and fertilizer requirements in the cultivation and production of P. sibiricum Red.  【Methods】  Four single-factor irrigation potted experiments were carried out. The irrigation experiment comprised five irrigation treatments (400 mm, 500 mm, 600 mm, 700 mm, and 800 mm) to simulate severe drought, moderate drought, mild drought, sufficient irrigation, and excessive irrigation. The single N, P, and K fertilizer experiments were composed of low, theoretical, experienced, and excess levels under 680 mm irrigation (i.e., average annual precipitation). The detailed quantity of nitrogen fertilizer (urea) applied were 110, 225, 375, and 525 kg/hm2; 260, 525, 750, and 975 kg/hm2 for phosphorus fertilizer(diammonium phosphate), and 75, 150, 225, and 300 kg/hm2 for potassium fertilizer (potassium sulphate). At the mid growth stage of P. sibiricum, the net photosynthetic rate (Pn), transpiration rate (Tr), stomatal conductance (Gs), and intercellular CO2 concentration (Ci) were measured with a photosynthetic meter, and the fluorescence parameter values were determined using a chlorophyll fluorescence detector. Plant height, root length, leaf area, and fresh and dry weight of rhizome were recorded. A UV-Vis spectrophotometer was used to determine polysaccharide content in the rhizome.  【Results】  The highest photosynthetic capacity and polysaccharide content of P. sibiricum was recorded under moderate drought stress. The growth and development of P. sibiricum was vigorous under sufficient irrigation; however, the photosynthetic rate and polysaccharide content decreased compared with that of moderate drought. Pn, Gs and Tr values were higher under excessive N fertilization than other N treatments. The Pn curve had an N-shape with an increasing N fertilization rate. The highest Fm was observed under low N, experienced P, and low K rate. The leaves of P. sibiricum showed an evident trend of Chlorophyll A Fluorescence Transient (OJIP) under different water and fertilizer rates. The plant height and biomass were higher under low N and low K rates than those in the others. The highest polysaccharide content was recorded under the experienced fertilization rate. There was a significant correlation between plant height and rhizome biomass (P < 0.05) and an extremely significant correlation between leaf area and polysaccharide content (P < 0.01). The elongation of plant height led to high P. sibiricum yield, and leaves with the larger area had higher polysaccharide content.  【Conclusions】  Moderate drought and slightly low fertilizer application rate than experience, primarily N and K fertilizer, could maintain rhizomes high biomass and large leaf area, improve vigorous photosynthetic efficiency, and high polysaccharide content in the rhizome of P. sibiricum.
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