Welcome to Acta Agronomica Sinica,

Acta Agron Sin ›› 2009, Vol. 35 ›› Issue (7): 1328-1335.doi: 10.3724/SP.J.1006.2009.01328

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

GGE Biplot Analysis of Effects of Planting Density on Growth and Yield Components of High Oil Peanut

CHEN Si-Long1,LI Yu-Rong1,*,CHENG Zeng-Shu1,LIU Ji-Sheng2   

  1. 1Institute of Food and Oil Crops,Hebei Academy of Agriculture and forestry Sciencess/Laboratory of Crop Genetics and Breeding of Hebei Province,Shijiazhuang 050031,China;2Shijiazhuang 3502 Farm,Shijiazhuang 050031,China
  • Received:2008-11-27 Revised:2009-03-18 Online:2009-07-12 Published:2009-05-19
  • Contact: LI Yu-Rong, E-mail: liyrl@yahoo.com.cn; Tel: 0311-87670656

Abstract:

Peanut planting density directly affects peanut yield and yield components, it is an effective way to adopt an optimal growing system for improving yield level. The paper presents an optimum density of peanut cultivation and a new method of data analysis. Five treatments (densities at 7.5×104, 105×104, 150×104, 195×104, and 240×104 holes per hectare) were designed with peanut cultivar Jihua 4. We investigated the agronomic traits, economic traits, yield components and pod yield in peanut, analyzed the differences between growing densities and every trait determined by SAS (Statistical Analysis System) and GGE (Genotype main effects plus Genotype×Environment interaction model). The results showed that there were inconsistent performances between traits and densities. The number of flowers per plant in the whole growth period, the number of pods per plant, pod yield per plant and pod yield per hectare were more sensitive to peanut planting density, but the main stem height, lateral branches length, shelling percentage, oil yield per hectare and protein yield per hectare were more stable. The number of flowers per plant in the whole growth period, the number of pods per plant, 100-pod weight and pod yield per plant decreased significantly with the increase of planting density, but pod yield per hectare increased. Pod yield produced by plants with the highest planting density were slightly greater than those with the lower planting density, while with planting density increasing, the increasing degree of pod yield per hectare decreased. Although the total pod yield increased with density, the higher yield achieved at the higher density did not give a higher economic profit which also affected by seed cost for planting. The result showed that the optimal planting density of Jihua 4 was from 105.0×104 to 150×104 holes per hectare based on maximal economic profit. GGEbiplot is a new and more realistic and effective method to analyze growth and yield components of high oil peanut cultivar.

Key words: Peanut, Planting density, GGEbiplot, Yield

[1] Zheng Y-P(郑亚萍), Tian Y-Y(田云云), Sha J-F(沙继锋), Zhang M-Y(张美英). Yield potential and high-yielding channels of peanut. J Peanut Sci (花生学报), 2002, 31(1): 1-7 (in Chinese with English abstract)

[2] Wan S-B(万书波), Zheng Y-P(郑亚萍), Liu D-Z(刘道忠), Cheng B(成波), Wu Z-F(吴正峰), Chen D-X(陈殿绪), Wang C-B(王才斌). Optimization of peanut-wheat intercropping system on date, fertilizer and plant density. Chin J Oil Crop Sci (中国油料作物学报), 2006, 28(3): 319-323 (in Chinese with English abstract)

[3] Zheng Y-P(郑亚萍), Wang C-B(王才斌), Cheng B(成波), Wu Z-F(吴正峰), Jiang S-Q(姜淑庆), Sun X-S(孙秀山), Chen D-X(陈殿绪). Yield effect and optimized-measure combination of N fertilizer and plant density for different peanut variety types under single-seed planting. Agric Res Arid Areas (干旱地区农业研究), 2007, 25(1): 201-205 (in Chinese with English abstract)

[4] Wu X-T(吴鑫桃). Influence of different cultivars, densities and nitrogen rates on yield of the peanut with red membrane. J Anhui Agric Sci (安徽农业科学), 2005, 33(4): 575-575 (in Chinese)

[5] MaasA L, Dashiell K E, Melouk H A. Planting density influences disease incidence and severity of sclerotinia blight in peanut. Crop Sci, 2006, 46: 1341-1345

[6] Huang W-M(黄文美). Effects of different planting density on yield of peanut in Tongren. Gengzuo Yu Zaipei (耕作与栽培), 2007, (2): 27-27, 56 (in Chinese)

[7] Zhou Y-Z(周彦忠), Li C-H(李才华), Liu P(刘平). Adaptability experience on plant date and density of peanut new cultivar Yuanza 9102. J Henan Agric Sci (河南农业科学), 2007, (4): 48-49 (in Chinese)

[8] Xu Z-Y(许志毅), Li Y-X(李阳溪). Preliminary report on the test of characteristics and planting density of Quanhua 7, a new variety of peanut. Subtrop Agric Res (亚热带农业研究), 2006, 2(4): 248-250 (in Chinese with English abstract)

[9] Cheng Z-S(程增书), Xu G-Z(徐桂真), Wang Y-B(王延兵), Li Y-R(李玉荣). Effect of sowing time and planting density on yield and quality in peanut. Chin Agric Sci Bull (中国农学通报), 2006, 22(7): 190-193 (in Chinese with English abstract)

[10]Fan X M, Kang M S, Chen H, Zhang Y, Tan J, Xu C. Yield stability of maize hybrids evaluated in multi-environment trials in Yunnan. Agron J, 2007, 99: 220-228

[11]Yan W, Cornelius P L, Crossa J, Hunt L A. Two types of GGE biplots for analyzing multi-environment trial data. Crop Sci, 2001, 41: 656-663

[12]Yan W, Rajcan I. Biplot analysis of test sites and trait relations of soybean in Ontario. Crop Sci, 2002, 42: 11-20

[13]Samonte S O P B, Wilson L T, McClung A M, Medley J C. Targeting cultivars onto rice growing environments using AMMI and SREG GGE biplot analyses. Crop Sci, 2005, 45: 2414-2424

[14]Zhang Y(张勇), He Z-H(何中虎), Zhang A-M(张爱民). GGE biplot for studying paste property of Chinese spring wheat. Acta Agron Sin (作物学报), 2003, 29(2): 245-251 (in Chinese with English abstract)

[15]Jiang H-F(姜慧芳), Duan N-X(段乃雄), Ren X-P(任小平). Descriptors and Data Standard for Peanut (Arachis spp.) (花生种质资源描述规范和数据标准), 1st edn. Beijing: China Agriculture Press, 2006. pp 59-77 (in Chinese)

[16]Yan W K. GGEbiplot-A windows application for graphical analysis of multienvironment trial data and other types of two-way data. Agron J, 2001, 93: 1111-1118

[17]Yan W-K(严威凯), Sheng Q-L(盛庆来), Hu Y-G(胡跃高), Hunt L A. GGE biplot: An ideal tool for studying genotype by environment interaction of regional yield trial data. Acta Agron Sin (作物学报), 2001, 27(1): 21-28 (in Chinese with English abstract)

[18]Ngouajio M, Wang G, Hausbeck M K. Changes in pickling cucumber yield and economic value in response to planting density. Crop Sci, 2006, 46: 1570-1575

[19]Legard D E, Xiao C L, Mertely J C, Chandler C K. Effects of plant spacing and cultivar on incidence of Botrytis fruit rot in annual strawberry. Plant Dis, 2000, 84: 531-538

[20]Shandong Peanut Research Institute (山东花生研究所). Peanut Cultivation and Physiology (花生栽培生理). Shanghai: Shanghai Scientific and Technical Press, 1990. pp 81-97 (in Chinese)

[21]Wan S-B(万书波). China Peanut Cultivation Science (中国花生栽培学), 2nd edn. Shanghai: Shanghai Scientific and Technical Press, 2003. pp 297-302 (in Chinese)

[22]Hofmann W C, Kittock D L, Alemayehu M. Planting seed density in relation to cotton emergence and yield. Agron J, 1988, 80: 834-836
Campbell T A, White G A. Population density and planting date effects on Kenaf performance. Agron J, 1982, 74: 74-77
[1] WANG Dan, ZHOU Bao-Yuan, MA Wei, GE Jun-Zhu, DING Zai-Song, LI Cong-Feng, ZHAO Ming. Characteristics of the annual distribution and utilization of climate resource for double maize cropping system in the middle reaches of Yangtze River [J]. Acta Agronomica Sinica, 2022, 48(6): 1437-1450.
[2] WANG Wang-Nian, GE Jun-Zhu, YANG Hai-Chang, YIN Fa-Ting, HUANG Tai-Li, KUAI Jie, WANG Jing, WANG Bo, ZHOU Guang-Sheng, FU Ting-Dong. Adaptation of feed crops to saline-alkali soil stress and effect of improving saline-alkali soil [J]. Acta Agronomica Sinica, 2022, 48(6): 1451-1462.
[3] YAN Jia-Qian, GU Yi-Biao, XUE Zhang-Yi, ZHOU Tian-Yang, GE Qian-Qian, ZHANG Hao, LIU Li-Jun, WANG Zhi-Qin, GU Jun-Fei, YANG Jian-Chang, ZHOU Zhen-Ling, XU Da-Yong. Different responses of rice cultivars to salt stress and the underlying mechanisms [J]. Acta Agronomica Sinica, 2022, 48(6): 1463-1475.
[4] YANG Huan, ZHOU Ying, CHEN Ping, DU Qing, ZHENG Ben-Chuan, PU Tian, WEN Jing, YANG Wen-Yu, YONG Tai-Wen. Effects of nutrient uptake and utilization on yield of maize-legume strip intercropping system [J]. Acta Agronomica Sinica, 2022, 48(6): 1476-1487.
[5] CHEN Jing, REN Bai-Zhao, ZHAO Bin, LIU Peng, ZHANG Ji-Wang. Regulation of leaf-spraying glycine betaine on yield formation and antioxidation of summer maize sowed in different dates [J]. Acta Agronomica Sinica, 2022, 48(6): 1502-1515.
[6] LI Yi-Jun, LYU Hou-Quan. Effect of agricultural meteorological disasters on the production corn in the Northeast China [J]. Acta Agronomica Sinica, 2022, 48(6): 1537-1545.
[7] LI Hai-Fen, WEI Hao, WEN Shi-Jie, LU Qing, LIU Hao, LI Shao-Xiong, HONG Yan-Bin, CHEN Xiao-Ping, LIANG Xuan-Qiang. Cloning and expression analysis of voltage dependent anion channel (AhVDAC) gene in the geotropism response of the peanut gynophores [J]. Acta Agronomica Sinica, 2022, 48(6): 1558-1565.
[8] SHI Yan-Yan, MA Zhi-Hua, WU Chun-Hua, ZHOU Yong-Jin, LI Rong. Effects of ridge tillage with film mulching in furrow on photosynthetic characteristics of potato and yield formation in dryland farming [J]. Acta Agronomica Sinica, 2022, 48(5): 1288-1297.
[9] YAN Xiao-Yu, GUO Wen-Jun, QIN Du-Lin, WANG Shuang-Lei, NIE Jun-Jun, ZHAO Na, QI Jie, SONG Xian-Liang, MAO Li-Li, SUN Xue-Zhen. Effects of cotton stubble return and subsoiling on dry matter accumulation, nutrient uptake, and yield of cotton in coastal saline-alkali soil [J]. Acta Agronomica Sinica, 2022, 48(5): 1235-1247.
[10] KE Jian, CHEN Ting-Ting, WU Zhou, ZHU Tie-Zhong, SUN Jie, HE Hai-Bing, YOU Cui-Cui, ZHU De-Quan, WU Li-Quan. Suitable varieties and high-yielding population characteristics of late season rice in the northern margin area of double-cropping rice along the Yangtze River [J]. Acta Agronomica Sinica, 2022, 48(4): 1005-1016.
[11] LI Rui-Dong, YIN Yang-Yang, SONG Wen-Wen, WU Ting-Ting, SUN Shi, HAN Tian-Fu, XU Cai-Long, WU Cun-Xiang, HU Shui-Xiu. Effects of close planting densities on assimilate accumulation and yield of soybean with different plant branching types [J]. Acta Agronomica Sinica, 2022, 48(4): 942-951.
[12] WANG Lyu, CUI Yue-Zhen, WU Yu-Hong, HAO Xing-Shun, ZHANG Chun-Hui, WANG Jun-Yi, LIU Yi-Xin, LI Xiao-Gang, QIN Yu-Hang. Effects of rice stalks mulching combined with green manure (Astragalus smicus L.) incorporated into soil and reducing nitrogen fertilizer rate on rice yield and soil fertility [J]. Acta Agronomica Sinica, 2022, 48(4): 952-961.
[13] DU Hao, CHENG Yu-Han, LI Tai, HOU Zhi-Hong, LI Yong-Li, NAN Hai-Yang, DONG Li-Dong, LIU Bao-Hui, CHENG Qun. Improving seed number per pod of soybean by molecular breeding based on Ln locus [J]. Acta Agronomica Sinica, 2022, 48(3): 565-571.
[14] CHEN Yun, LI Si-Yu, ZHU An, LIU Kun, ZHANG Ya-Jun, ZHANG Hao, GU Jun-Fei, ZHANG Wei-Yang, LIU Li-Jun, YANG Jian-Chang. Effects of seeding rates and panicle nitrogen fertilizer rates on grain yield and quality in good taste rice cultivars under direct sowing [J]. Acta Agronomica Sinica, 2022, 48(3): 656-666.
[15] YUAN Jia-Qi, LIU Yan-Yang, XU Ke, LI Guo-Hui, CHEN Tian-Ye, ZHOU Hu-Yi, GUO Bao-Wei, HUO Zhong-Yang, DAI Qi-Gen, ZHANG Hong-Cheng. Nitrogen and density treatment to improve resource utilization and yield in late sowing japonica rice [J]. Acta Agronomica Sinica, 2022, 48(3): 667-681.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!