您好,欢迎访问广西农业科学院 机构知识库!

CRITICAL VALUES OF CHLORINE TOLERANCE OF SUGARCANE IN SEVERAL KINDS OF SOILS

文献类型: 会议论文

第一作者: YU-YI HUANG

作者: YU-YI HUANG 1 ; ZE-PU JIANG;

作者机构: 1.Soil and Fertilizer Institute, Guangxi Academy of Agricultural Sciences, Manning 530007, Guangxi, P.R.China

关键词: sugarcane;critical value of chlorine tolerance;yield;sugar content

会议名称: Technologies to improve sugar productivity in developing countries

主办单位:

页码: 213-216

摘要: Aim: To explore the critical values of chlorine tolerance of sugarcane and understand the effects of chlorine on the growth and quality of sugarcane in different kinds of soils. Methods and results: A pot experiment was conducted to study the criticalvalue of chlorine tolerance of sugarcane by using the representative soils of Guangxi province in terms of calcareous soil, alluvial soil, lateritic soils derived from quaternary period red earth and sand-shale stone. These four soils were treated at concentrations of 0 to 3200 or 6400 mg Cl/kg soil under the equivalent N, P, and K fertilizers used and sugarcane was grown in these soils. The results indicated that the sugarcane at seedling stage showed toxic symptoms: dwarf in plant height, cured and stiff leaves, dieback from leaf apex and extended to the base when the concentration of chlorine applied to these four kinds of soils was 3200 mg/kg soil, and such symptoms occurred severely in the two lateritic soils. With the growth of sugarcane, chlorine tolerance increased; to sugarcane, the critical values of chlorine tolerance were 412 mg/kg in calcareous soil, 474 mg/kg in alluvial soil, 245 mg/kg in lateritic soil derived from quaternary period red earth, and 255 mg/kg in lateritic soil derived from sand-shale stone. The results also showed that the sugar content had a decreased trend with the increase of chlorine concentration beyond a Cl application of 200 mg/kg soil in calcareous soil and alluvial soil, and 100 mg/kg soil in lateritic soils.There were different critical values of chlorine tolerance of sugarcane in different kinds of soils. This shows that the higher the critical values of chlorine tolerance of sugarcane in a soil, the much chlorine -containing fertilizers can be applied tothe soil. Significance and impact: To understand the critical values of critical values of sugarcane chlorine tolerance in different kinds of soils is beneficial to the application of chlorine -containing fertilizers and prevent sugarcane from chlorine toxicity.

分类号: TS24

  • 相关文献

[1]Effects of Sub-soil Drip Fertigation on Sugarcane in Field Conditions. Huang, Yu-Yi,Liu, Bin,Tang, Qi-Zhan,Li, Yang-Rui,Li, Yang-Rui,Xu, Lin,Huang, Hai-Rong,Li, Yang-Rui,Xu, Lin,Huang, Hai-Rong,Li, Yang-Rui,Xu, Lin,Huang, Hai-Rong,Li, Yang-Rui,Xu, Lin,Huang, Hai-Rong. 2012

[2]Combined application of NPK on yield quality of sugarcane applied through SSDI. Huang, Hai-Rong,Li, Yang-Rui,Yang, Li-Tao,Li, Yang-Rui,Li, Yang-Rui. 2010

[3]Response of Sugarcane to Calcium Silicate on Yield, Gas Exchange Characteristics, Leaf Nutrient Concentrations, and Soil Properties in Two Different Soils. Li, Yang-Rui,Huang, Hai-Rong. 2012

[4]EFFECT OF APPLICATION OF FERTILIZERS AND NUTRIENT ELEMENTS ON YIELD AND QUALITY OF SUGARCANE IN GUANGXI. HONG-WEI TAN,LIU-QIANG ZHOU,RU-LIN XIE,MEI-FU HUANG. 2004

[5]Genetic variability among the chloroplast genomes of sugarcane (Saccharum spp) and its wild progenitor species Saccharum spontaneum L.. Lu, X.,Zhou, H.,Pan, Y. -B.. 2014

[6]Genetic Diversity of Nitrogen-Fixing and Plant Growth Promoting Pseudomonas Species Isolated from Sugarcane Rhizosphere. Singh, Rajesh K.,Singh, Pratiksha,Song, Qi-Qi,Xing, Yong-Xiu,Yang, Li-Tao,Li, Yang-Rui,Li, Yang-Rui. 2017

[7]Biochar Improves Sugarcane Seedling Root and Soil Properties Under a Pot Experiment. Li, Yangrui,Yang, Liu,Li, Yangrui,Yang, Liu,Li, Yangrui,Liao, Fen,Huang, Min,Yang, Litao. 2015

[8]Effect of Trash Addition to the Soil on Microbial Communities and Physico-Chemical Properties of Soils and Growth of Sugarcane Plants. Wei, Guang-Po,Chen, Gui-Fen,Liu, Bin,Huang, Dong-Liang,Li, Yang-Rui,Huang, Dong-Liang,Li, Yang-Rui,Huang, Dong-Liang,Li, Yang-Rui,Huang, Dong-Liang,Li, Yang-Rui. 2014

[9]Nutrient Decomposition Rate and Sugarcane Yield as Influenced by Mung Bean Intercropping and Crop Residue Recycling. Su, Li-Rong,Li, Yang-Rui,He, Tie-Guang,Su, Li-Rong,Su, Tian-Ming,Qin, Fang,Li, Qin,Li, Yang-Rui. 2018

[10]ATP-Citrate Lyase Gene (SoACLA-1), a Novel ACLA Gene in Sugarcane, and Its Overexpression Enhance Drought Tolerance of Transgenic Tobacco. Li, Jian,Sun, Bo,Liu, Jia-Yi,Zhao, Wen-Hui,Huang, Chan,Yang, Li-Tao,Li, Yang-Rui,Yang, Li-Tao,Li, Yang-Rui. 2017

[11]Transcriptome of High-Sucrose Sugarcane Variety GT35. Gao, Yi-Jing,Gui, Yi-Yun,Chen, Zhong-Liang,Qin, Cui-Xian,Wang, Miao,Li, Yang-Rui,Liao, Qing,Li, Yang-Rui,Yang, Li-Tao. 2016

[12]Cd Content in Sugarcane and Its Relationship with Soil Factors. Zhou, Liu-Qiang,Huang, Jin-Sheng,Zeng, Yan,Xie, Ru-Lin,Zhu, Xiao-Hui,Liu, Xi-Hui,Tan, Hong-Wei,Li, Yang-Rui. 2017

[13]Sugar Industry and Improved Sugarcane Farming Technologies in China. Song, Xiu-Peng,Wu, Jian-Ming,Li, Chang-Ning,Liang, Qiang,Liu, Xi-Hui,Wang, Wei-Zan,Tan, Hong-Wei,Li, Yang-Rui,Song, Xiu-Peng,Wu, Jian-Ming,Li, Chang-Ning,Liang, Qiang,Liu, Xi-Hui,Wang, Wei-Zan,Tan, Hong-Wei,Yang, Li-Tao. 2016

[14]Intercropping in Sugarcane Cultivation Influenced the Soil Properties and Enhanced the Diversity of Vital Diazotrophic Bacteria. Wang, Fei-Yong,Li, Chang-Ning,Lan, Tao-Ju,Li, Yang-Rui,Wang, Fei-Yong,Li, Chang-Ning,Li, Yang-Rui,Wang, Zhen,Wang, Fei-Yong,Singh, Rajesh Kumar,Singh, Pratiksha,Yang, Li-Tao. 2017

[15]Proteomic Analysis of Osmotic Stress-Responsive Proteins in Sugarcane Leaves. Li, Yang-Rui,Qiu, Li-Hang,Huang, Xing,Zhou, Gui,Zou, Cheng-Lin,Huang, Li-Ping,Li, Yang-Rui,Srivastava, Manoj Kumar.

[16]Plant Growth-Promoting Nitrogen-Fixing Enterobacteria Are in Association with Sugarcane Plants Growing in Guangxi, China. Zhang, Xincheng,Yang, Litao,Li, Yangrui,Lin, Li,Hu, Chunjin,Li, Yangrui,Lin, Li,Yang, Litao,Li, Yangrui,Li, Zhengyi,Chang, Siping,An, Qianli.

[17]Overexpression of sugarcane gene SoSnRK2.1 confers drought tolerance in transgenic tobacco. Sun, Bo,Niu, Jun-Qi,Tan, Qin-Liang,Li, Jian,Yang, Li-Tao,Li, Yang-Rui,Yang, Li-Tao,Li, Yang-Rui.

[18]Artificial Inoculation Method of Pokkah Boeng Disease of Sugarcane and Screening of Resistant Germplasm Resources in Subtropical China. Sun, Hai-Jun,Guo, Qiang,Xu, Shi-Qiang,Wang, Ji-Hua,Zhang, Mu-Qing,Wang, Ze-Ping,Lin, Shan-Hai,Zhang, Mu-Qing,Wang, Ze-Ping,Lin, Shan-Hai,Zhang, Mu-Qing. 2017

[19]Role of the SPS Gene Families in the Regulation of Sucrose Accumulation in Sugarcane. Qin, Cui-Xian,Gui, Yi-Yun,Chen, Zhong-Liang,Wang, Miao,Liao, Qing,Li, Yang-Rui,Zhao, Li-Han,Lakshmanan, Prakash. 2017

[20]Verification of Progeny from Crosses Between Sugarcane (Saccharum spp.) and an Intergeneric Hybrid (Erianthus arundinaceus x Saccharum spontaneum) with Molecular Makers. Liu, Xi-Hui,Zhang, Rong-Hua,Zhou, Hui,Liao, Jiang-Xiong,Duan, Wei-Xing,Zhang, Ge-Min,Gao, Yi-Jing,Liu, Xi-Hui,Zhang, Rong-Hua,Zhou, Hui,Liao, Jiang-Xiong,Duan, Wei-Xing,Zhang, Ge-Min,Gao, Yi-Jing,Liu, Xi-Hui,Zhang, Rong-Hua,Zhou, Hui,Liao, Jiang-Xiong,Duan, Wei-Xing,Zhang, Ge-Min. 2015

作者其他论文 更多>>