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基质水势对切花百合植株干物质分配影响的预测模型
引用本文:董永义,李刚,安东升,罗卫红.基质水势对切花百合植株干物质分配影响的预测模型[J].应用生态学报,2012,23(4):1055-1062.
作者姓名:董永义  李刚  安东升  罗卫红
作者单位:1. 南京农业大学农学院,南京210095;内蒙古民族大学农学院,内蒙古通辽028042
2. 南京农业大学农学院,南京,210095
基金项目:国家自然科学基金项目(4975070);公益性行业(气象)科研专项经费项目(GYHY200906023);国家科技支撑计划项目(2006BAD07B05);内蒙古民族大学科研创新团队项目(NMD1003)资助
摘    要:干物质分配与转移是观赏植物外观品质形成的基础,受水分影响极大.本文以切花百合品种‘索邦’为试验材料,于2009年3月至2010年1月在南京的连栋温室内开展了不同定植期和不同水分处理的栽培试验,定量分析了不同定植期和不同水分处理条件下切花百合干物质分配和转移的变化规律,以及基质水势对百合地上部和地下部各器官(花、茎、叶、鳞茎、茎生根)干物质分配指数的动态影响,并确定了切花百合正常生长的临界基质水势,最终建立了基质水势对切花百合植株干物质分配影响的动态预测模型.结果表明:本文所建模型对百合各器官(花、茎、叶、鳞茎、茎生根)干质量的预测效果较好,模型对花、茎、叶、鳞茎、茎生根干质量的预测值与实测值之间的决定系数分别为0.96、0.95、0.86、0.95、0.85,预测相对标准误分别为19.2%、12.4%、19.4%、12.2%、31.7%.-15 kPa可作为切花百合‘索邦’水分管理的临界水势.

关 键 词:切花百合  基质水势  干物质分配  模型

A simulation model for predicting the dry matter allocation in cut lily plants under effects of substrate water potential
Dong Yong-Yi,Li Gang,An Dong-Sheng,Luo Wei-Hong.A simulation model for predicting the dry matter allocation in cut lily plants under effects of substrate water potential[J].Chinese Journal of Applied Ecology,2012,23(4):1055-1062.
Authors:Dong Yong-Yi  Li Gang  An Dong-Sheng  Luo Wei-Hong
Institution:College of Agriculture, Nanjing Agricultural University, Nanjing 210095, China. dongyong74@126.com
Abstract:Dry matter allocation and translocation is the base of the formation of appearance quality of ornamental plants, and strongly affected by water supply. Taking cut lily cultivar 'Sorbonne' as test material, a culture experiment of different planting dates and water supply levels was conducted in a multi-span greenhouse in Nanjing from March 2009 to January 2010 to quantitatively analyze the seasonal changes of the dry matter allocation and translocation in 'Sorbonne' plants and the effects of substrate water potential on the dry matter allocation indices for different organs (flower, stem, leaf, bulb, and root), aimed to define the critical substrate water potential for the normal growth of the cultivar, and establish a simulation model for predicting the dry matter allocation in cut lily plants under effects of substrate water potential. The model established in this study gave a good prediction on the dry mass of plant organs, with the coefficient of determination and the relative root mean square error between the simulated and measured values of the cultivar' s flower dry mass, stem dry mass, leaf dry mass, bulb dry mass, and root dry mass being 0.96 and 19.2%, 0.95 and 12.4%, 0.86 and 19.4%, 0.95 and 12.2%, and 0.85 and 31.7%, respectively. The critical water potential for the water management of cut lily could be -15 kPa.
Keywords:cut lily  substrate water potential  dry matter allocation  model  
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