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Acta Agron Sin ›› 2013, Vol. 39 ›› Issue (10): 1871-1879.doi: 10.3724/SP.J.1006.2013.01871

• TILLAGE & CULTIVATION·PHYSIOLOGY & BIOCHEMISTRY • Previous Articles     Next Articles

Effects of Shading at Different Growth Stages on Different Traits and Yield of Soybean

WANG Yi,YANG Wen-Yu,ZHANG Xia,YONG Tai-Wen,LIU Wei-Guo,SHU Ben-Ying   

  1. College of Agriculture, Sichuan Agriculture University/Key Laboratory of Crop Ecophysiology and Farming System in Southwest China, Ministry of Agriculture, Ya’an, 625014, China
  • Received:2013-02-08 Revised:2013-06-10 Online:2013-10-12 Published:2013-08-01
  • Contact: 杨文钰, E-mail: wenyu.yang@263.net

Abstract:

Intercropping and relay-intercropping are important technologies to improve land utilization rate and crop yield, but their yields are limited by shading, which is different for intercropped soybean and relay-intercropped soybean at different growth stages. To clear the effect of shading at different growth stages on morphology and yield of soybean, we treated Guixia 2, Nandou 12, Nandongkang 22, E61, and C103 with the 50% transmittance shading net using the natural light as control. The results showed that effects of shading on different morphological characters were different at different growth stages, showing a significant influence on length of main stem and main stem length/stem diameter during the early growth period (VER1 and VER2). Compared with control, the main stem length and main stem length/stem diameter were increased by 45.75% and 93.64% respectively. Shading had significant influence on the number of branches and the height of lowest pod at the late growth stage (R1R8 and R2R8). Compared with control, the number of branches was decreased by 29.97% and the height of lowest pod was increased by 28.59%. The effects of shading on yield of cultivars with different growth periods were different, the cultivars with R/V below 1.4 was affected significantly by the early growth period shading, the cultivars with R/V equal to or greater than 1.5 was easily affected by the late growth stage shading. Results of correlation analysis and path analysis showed main stem length, first internode length, branch height, stem length/stem diameter and stem length/branch number were negatively correlated with yield per plant significantly, branch number was positively and significantly correlated with yield per plant, main stem length/stem diameter and main stem length/branch numbercould be key indexes for yield per plant.

Key words: Soybean, Shading, Morphological, Yield, Growth Stage

[1]Yin Z-L(尹宗伦). Undertaking the task for revitalization of our soybean. J Chin Inst Food Sci Tech (中国食品学报), 2006, 6(4): 1–5 (in Chinese with English abstract)



[2]Yang W-Y(杨文钰), Yong T-W(雍太文), Ren W-J(任万军), Fan G-Q(樊高琼), Mou J-Y(牟锦毅), Lu X-L(卢学兰). Develop relay-planting soybean, revitalize soybean industry. Soybean Sci (大豆科学), 2008, 27(1): 1–7 (in Chinese with English abstract)



[3]Wu X(吴迅), Zhang M-R(张明荣), Wu H-Y(吴海英), Huang Y-B(黄玉碧), Liu G-L(刘国林), Yang K-X(杨克相). The status and prospects of soybean with great tolerance to shading in southern of China. Heilongjiang Agric Sci (黑龙江农业科学), 2009, (5): 148–150 (in Chinese with English abstract)



[4]Liu G-C(刘广才). Difference and Its Mechanism of Interspecific Nutrition Competition in Different Intercropping Systems. PhD Dissertation of Gansu Agricultural University, 2005 (in Chinese with English abstract)



[5]Li P(李萍), Zhang Y-C(张永成), Tian F(田丰). Research progress on the physiology and ecology and benefit evaluation of potato/faba bean intercropping system. J Anhui Agric Sci (安徽农业科学), 2012, 40(27): 13313–13314 (in Chinese with English abstract)



[6]Liu C-H(李彩虹), Wu B-Z(吴伯志). Summary of planting patterns on intercropping maize. J Maize Sci (玉米科学), 2005, 13(2): 85–89 (in Chinese with English abstract)



[7]Xiao J-X(肖靖秀), Zheng Y(郑毅). Nutrients uptake and pests and diseases control of crops in intercropping system. Chin Agric Sci Bull (中国农学通报), 2005, 21(3): 150–154 (in Chinese with English abstract)



[8]Dong Z(董钻). Yield Physiology of Soybean. Beijing: China Agriculture Press, 2000. pp 55–56 (in Chinese)



[9]Li C-Y(李初英), Sun Z-D(孙祖东), Chen H-Z(陈怀珠), Yang S-Z(杨守臻). Study of the influence of shading stress to the development stages and the form characters of soybean. Chin Agric Sci Bull (中国农学通报), 2006, 22(9): 170–173 (in Chinese with English abstract)



[10]Huang Q-C(黄其椿), Li C-Y(李初英), Wu J-M(吴建明), Zhao Y-H(赵艳红), Yang S-Z(杨守臻), Zhao H-T(赵洪涛), Chen H-Z(陈怀珠), Sun Z-D(孙祖东). Influence of shading stress on yield and yield traits of vegetable soybean. Soybean Sci (大豆科学), 2012, 1(31): 81–91 (in Chinese with English abstract)



[11]Josephine C H, William B. Light and shade effects on abscission and 14C-photoassimilate partitioning among reproductive structures in soybean. Plant Physiol, 1983, 73: 434–439



[12]Egli D B. Cultivar maturity and response of soybean to shade stress during seed filling. Field Crops Res, 1997, 52: 1–8



[13]Wu Q-L(吴其林), Wang Z(王竹), Yang W-Y(杨文钰). Seeding shading affects morphogenesis and substance accumulation of stem in soybean. Soybean Sci (大豆科学), 2007, 6(26): 865–872 (in Chinese with English abstract)



[14]Liang Z-L(梁镇林). Studies on variation and difference of characters of stem and leaf between shade-enduring and shade-non-enduring soybeans. Soybean Sci (大豆科学), 2007, 1(19): 34–41 (in Chinese with English abstract)



[15]Chen H-Z(陈怀珠), Sun Z-D(孙祖东), Yang S-Z(杨守臻), Li C-Y(李初英). Effect of shading on major characters of soybean and preliminary study on the identification method of soybean shade endurance. Chin J Oil Crop Sci (中国油料作物学报), 2003, 25(4): 76–82 (in Chinese with English abstract)



[16]Huang Q-C(黄其椿), Li C-Y(李初英), Zhao H-T(赵洪涛), Wu J-M(吴建明), Zhao Y-H(赵艳红), Yang S-Z(杨守臻), Chen H-Z(陈怀珠), Sun Z-D(孙祖东). Research of shading-tolerant on vegetable soybean germplasm resources under shading stress. Southwest China J Agric Sci (西南农业学报), 2012, 25(6): 2212–2217 (in Chinese with English abstract)



[17]Sun Z-Q(孙志强), Tian P-Z(田佩占), Wang J-A(王继安). Preliminary study on the growth period structure of soybean varieties in the northeast of China. Soybean Sci (大豆科学), 1990, 3(9): 198–204 (in Chinese with English abstract)



[18]Fehr W R, Caviness C E. Stages of Soybean Development: Special Report. Iowa State University Press: Ames, Iowa 1977. p 11



[19]Wang Z(王竹), Yang W-Y(杨文钰), Wu Q-L(吴其林). Effects of shading in maize/soybean relay-cropping system on the photosynthetic characteristics and yield of soybean. Acta Agron Sin (作物学报), 2007, 33(9): 1502–1507 (in Chinese with English abstract)



[20]Cai K-Z(蔡昆争), Luo S-M(骆世明). Effect of shading on growth, development and yield formation of rice, Chin J Appl Ecol (应用生态学报), 1999, 2(10): 193–196 (in Chinese with English abstract)



[21]Liu X-Z(刘贤赵), Kang S-Z(康绍忠). Effects of shading on photosynthesis and yield of tomato plants at different growth stages. Acta Hortic Sin (园艺学报), 2002, 29(5): 427–432 (in Chinese with English abstract)



[22]Lang Y-Z(郎有忠), Dou Y-X(窦永秀), Wang M-E(王美娥), Zhang Z-J(张祖建), Zhu Q-S(朱庆森). Effects of growth duration on grain yield and quality in rice. Acta Agron Sin (作物学报), 2012, 38(3): 528–534 (in Chinese with English abstract)



[23]Hou X-L(侯兴亮), Li J-F(李景富), Xu X-Y(许向阳). Effect of low light on morphological and physiological indexes of tomato at different growth stages. Acta Hortic Sin (园艺学报), 2002, 29(2): 123–127 (in Chinese with English abstract)

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