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不同密度和整枝方式对辣椒光合特性、干物质分配及产量的影响
引用本文:侯 超,陶承光,王丽萍,王 鑫,邹春蕾.不同密度和整枝方式对辣椒光合特性、干物质分配及产量的影响[J].西北农业学报,2010,19(3):159-162.
作者姓名:侯 超  陶承光  王丽萍  王 鑫  邹春蕾
作者单位:1. 沈阳农业大学,园艺学院,沈阳,110161
2. 沈阳农业大学,园艺学院,沈阳,110161;辽宁省农业科学院,沈阳,110161
3. 辽宁省农业科学院,沈阳,110161
摘    要:以牛角椒为材料,采用6.67、5.56、4.76万株.hm-2三种密度和两种整枝方式,在日光温室栽培,研究不同群体结构对辣椒光合特性、干物质分配及产量的影响。结果表明,四杆整枝的功能叶光合速率高于自然整枝,且各层次光合产物分布均匀,根系生长较旺盛,是增产的主要原因。辣椒产量与中下部功能叶片光合速率关系密切,在一定范围内,密度越大,中下部气孔导度和蒸腾速率越高,光合速率越高,呼吸消耗小,总产量也越高。

关 键 词:辣椒  栽培密度  整枝方式  光合速率  干物质分配
收稿时间:2009/9/4 0:00:00
修稿时间:2009/10/20 0:00:00

Effect of Different Density and Training Methods on Photosynthetic Characteristics,Dry Matter Distribution and Yield of Capsicum annuum L.
HOU Chao,TAO Chengguang,WANG Liping,WANG Xin and ZOU Chunlei.Effect of Different Density and Training Methods on Photosynthetic Characteristics,Dry Matter Distribution and Yield of Capsicum annuum L.[J].Acta Agriculturae Boreali-occidentalis Sinica,2010,19(3):159-162.
Authors:HOU Chao  TAO Chengguang  WANG Liping  WANG Xin and ZOU Chunlei
Institution:HOU Chao1,TAO Chengguang1,2,WANG Liping2,WANG Xin2 , ZOU Chunlei2(1.Department of Horticulture,Shenyang Agricultural University,Shenyang 110161,China,2.Liaoning Academy of Agriculture Sciences,China)
Abstract:The photosynthetic characteristics and dry matter distribution patterns of Cayenne pepper were studied under three plant densities(66.7 kilo-plants·hm~(-2),55.6 kilo-plants·hm~(-2),47.6 kilo-plants·hm~(-2)) and two training methods (natural training and four-stem training) in greenhouse. The results indicated that higher yield of pepper was detected in four-stem training caused by higher photosynthetic rate,evenly distributed dry matter,and vigorous root growth at different canopy levels. There was significant positive correlation between pepper yield and functional leaves at middle and lower canopy levels. Within certain limits,higher plant density was connected with higher stomatal conductance and transpiration rate. Higher photosynthetic rate and lower respiration rate contributed to higher yield.
Keywords:Pepper  Plant density  Training method  Photosynthetic rate  Dry matter distribution
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