Scientia Agricultura Sinica ›› 2006, Vol. 39 ›› Issue (03): 494-501 .

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

Border Effect and Physiological Characteristic Responses of Foxtail Millet to Different Micro-Catchment Stripshapes in Semiarid Region of South Ningxia

,,,,   

  • Received:2005-11-17 Revised:1900-01-01 Online:2006-03-10 Published:2006-03-10

Abstract: 【Objective】It has important scientific values that the yield increase mechanism of micro-catchment cultivation is further understand through studying border effect and physiological characteristic of foxtail millet among different micro-catchment stripshapes in semiarid region of south Ningxia.【Method】Photosynthetic characteristic and chlorophyll contents and yield among different stripshapes were measured in side row and middle row, respectively.【Result】 Photosynthetic rate, transpiration rate, stomatic conductance and chlorophyll contents of side row were higher than those of middle row among different stripshapes. When the furrow: ridge ratio was fixed, the wider the width of the furrow and ridge was, the stronger the border advantage, the bigger the border effect index of yield and border effect of foxtail millet among different stripshapes. In the meantime, the highest yield increase of side rows went up to 196.5%, on the contrary, the highest yield increase of middle rows went down to 12.4%. The optimal width of ridge and furrow seemed to be 45 cm in the less than 250 mm rainfall area of Ningxia, the 45 cm﹕45 cm ridge and furrow system led to a yield increase of 5 028 kg·ha-1(132%) in 2004 and of 2 075.6 kg·ha-1(178.9%) in 2005 compared with the controls. Contribution ratio of yield increase of side row and middle row in an experiment were: treatment 1 (30﹕30) 100% (without middle row), treatment 2 (45﹕45) 79.67% and 20.33%, treatment 3 (60﹕60) 71.43% and 28.57%, treatment 4 (75﹕75) 69.38% and 30.62%, respectively.【Conclusion】The photosynthetic characteristic of side row and middle row was different, when the furrow: ridge ratio was fixed, the wider the width of furrow and ridge was, the bigger the border effect of foxtail millet among different stripshapes.

Key words: Water micro-catchment, Border effect, Photosynthetic rate, Drought resistance

[1] MENG Yu,WEN PengFei,DING ZhiQiang,TIAN WenZhong,ZHANG XuePin,HE Li,DUAN JianZhao,LIU WanDai,FENG Wei. Identification and Evaluation of Drought Resistance of Wheat Varieties Based on Thermal Infrared Image [J]. Scientia Agricultura Sinica, 2022, 55(13): 2538-2551.
[2] WANG JunJie,TIAN Xiang,QIN HuiBin,WANG HaiGang,CAO XiaoNing,CHEN Ling,LIU SiChen,QIAO ZhiJun. Regulation Effects of Photoperiod on Growth and Leaf Endogenous Hormones in Broomcorn Millet [J]. Scientia Agricultura Sinica, 2021, 54(2): 286-295.
[3] HOU JiaMin,LUO Ning,WANG Su,MENG QingFeng,WANG Pu. Effects of Increasing Planting Density on Grain Yield, Leaf Area Index and Photosynthetic Rate of Maize in China [J]. Scientia Agricultura Sinica, 2021, 54(12): 2538-2546.
[4] WEI Xin, WANG HanTao, WEI HengLing, FU XiaoKang, MA Liang, LU JianHua, WANG XingFen, YU ShuXun. Cloning and Drought Resistance Analysis of GhWRKY33 in Upland Cotton [J]. Scientia Agricultura Sinica, 2020, 53(22): 4537-4549.
[5] WANG YuBin, PING JunAi, NIU Hao, CHU JianQiang, DU ZhiHong, Lü Xin, LI HuiMing, ZHANG FuYao. Evaluation of Identification and Classification Index for Drought Resistance at Middle and Late Growth Stage in Grain Sorghum Germplasms [J]. Scientia Agricultura Sinica, 2019, 52(22): 4039-4049.
[6] REN ShengMao, DENG YuChuan, WEN FengJun, Sajad Hussain, PU QuanMing, YU XiaoBo, LIU WeiGuo, YANG WenYu. Effects of Intercropping on the Transformation of Carbohydrate Related Substances in Stem of Soybean Seedling Stage and Its Relationship with Leaf Photosynthesis [J]. Scientia Agricultura Sinica, 2018, 51(7): 1272-1282.
[7] ZHAO WanYing, YU TaiFei, YANG JunFeng, LIU Pei, CHEN Jun, CHEN Ming, ZHOU YongBin, MA YouZhi, XU ZhaoShi, MIN DongHong. Verification and Analyses of Soybean GmbZIP16 Gene Resistance to Drought [J]. Scientia Agricultura Sinica, 2018, 51(15): 2835-2845.
[8] WANG Can, ZHOU LingBo, ZHANG GuoBing, XU Yan, ZHANG LiYi, GAO Xu, GAO Jie, JIANG Ne, SHAO MingBo. Drought Resistance Identification and Drought Resistance Indices Screening of Liquor-Making Waxy Sorghum Resources at Adult Plant Stage [J]. Scientia Agricultura Sinica, 2017, 50(8): 1388-1402.
[9] LIU WenPing, Lü Wei, LI DongHua, REN GuoXiang, ZHANG YanXin, WEN Fei, HAN JunMei, ZHANG XiuRong. Drought Resistance of Sesame Germplasm Resources and Association Analysis at Adult Stage [J]. Scientia Agricultura Sinica, 2017, 50(4): 625-639.
[10] TIAN ChunYan, TAO LianAn, YU HuaXian, DONG LiHua, JING YanFen, BIAN Xin, LANG RongBin, ZHOU QingMing, AN RuDong, SUN YouFang, YANG LiHe. Drought Resistance Evolution of F1 andF2 Hybrids from Five Climatic Ecotypes Saccharum spontaneum L. [J]. Scientia Agricultura Sinica, 2017, 50(22): 4408-4420.
[11] LU ZhiJuan, ZHANG YongQing, ZHANG Chu, LIU LiQin, YANG ChunTing. Comprehensive Evaluation and Indicators of the Drought Resistance of Different Genotypes of Fagopyrum tataricum at Seedling Stage [J]. Scientia Agricultura Sinica, 2017, 50(17): 3311-3322.
[12] WANG Can, ZHOU LingBo, ZHANG GuoBing, ZHANG LiYi, XU Yan1, GAO Xu, JIANG Ne, SHAO MingBo. Drought Resistance Identification and Drought Resistance Indices Screening of Job’s Tears (Coxi lacryma-jobi L.) Germplasm Resources at Seedling Stage [J]. Scientia Agricultura Sinica, 2017, 50(15): 2872-2887.
[13] REN BaiZhao, ZHANG JiWang, DONG ShuTing, ZHAO Bin, LIU Peng. Effect of Waterlogging at Early Period on Canopy Structure and Photosynthetic Characteristics of Summer Maize [J]. Scientia Agricultura Sinica, 2017, 50(11): 2093-2103.
[14] ZHOU Zhen-xiang, LI Zhi-kang, CHEN Ying, WANG Zhi-qin, YANG Jian-chang, GU Jun-fei. Effects of Reduced Chlorophyll Content on Photoinhibition and Photosynthetic Electron Transport in Rice Leaves [J]. Scientia Agricultura Sinica, 2016, 49(19): 3709-3720.
[15] NI Wei-ru, WANG An-ran, HE Xi-yan, XU Jin, WU Shu-jing, CHEN Xue-sen, MAO Zhi-quan, SHEN Xiang. Effects of After-Reap Soil on Physiological Indexes and Leaf Antioxidant Activity of the Different Apple Cultivars With the Same Rootstock [J]. Scientia Agricultura Sinica, 2016, 49(18): 3597-3607.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!