Please wait a minute...
干旱区科学  2011, Vol. 3 Issue (4): 303-305    DOI: 10.3724/SP.J.1227.2011.303
  研究简讯 本期目录 | 过刊浏览 | 高级检索 |
Fauna of Heteroptera in the deserts of Kazakhstan
Yesenbekova Perizat Abdykairovna
Institute of Zoology, Akademgorodok 050060, Kazakhstan
Fauna of Heteroptera in the deserts of Kazakhstan
Yesenbekova Perizat Abdykairovna
Institute of Zoology, Akademgorodok 050060, Kazakhstan
下载:  PDF (349KB) 
输出:  BibTeX | EndNote (RIS)      
摘要 Heteroptera is an important group among the insect orders, not only for its number of species, but also for its distribution and food preference. A total of 405 species of Heteroptera were identified in the desert areas of Kazakhstan, in which 158 species are distributed in the sandy deserts, 105 species in the Solonchak deserts, 75 species in the clay deserts, and 67 species in the rocky-rubbly deserts.
服务
把本文推荐给朋友
加入引用管理器
E-mail Alert
RSS
作者相关文章
Yesenbekova Perizat Abdykairovna
关键词:  mycorrhiza  vadose zone  hydraulic redistribution  drought    
Abstract: Heteroptera is an important group among the insect orders, not only for its number of species, but also for its distribution and food preference. A total of 405 species of Heteroptera were identified in the desert areas of Kazakhstan, in which 158 species are distributed in the sandy deserts, 105 species in the Solonchak deserts, 75 species in the clay deserts, and 67 species in the rocky-rubbly deserts.
Key words:  mycorrhiza    vadose zone    hydraulic redistribution    drought
收稿日期:  2011-02-13      修回日期:  2011-06-24           出版日期:  2011-12-07      发布日期:  2011-09-06      期的出版日期:  2011-12-07
通讯作者:  Yesenbekova Perizat Abdykairovna    E-mail:  esenbekova_periz@ mail.ru
引用本文:    
Yesenbekova Perizat Abdykairovna. Fauna of Heteroptera in the deserts of Kazakhstan[J]. 干旱区科学, 2011, 3(4): 303-305.
Yesenbekova Perizat Abdykairovna. Fauna of Heteroptera in the deserts of Kazakhstan. Journal of Arid Land, 2011, 3(4): 303-305.
链接本文:  
http://jal.xjegi.com/CN/10.3724/SP.J.1227.2011.303  或          http://jal.xjegi.com/CN/Y2011/V3/I4/303
[1] HOU Ying, NIU Zhenmin, ZHENG Fang, WANG Nai’ang, WANG Jianyu, LI Zhuolun, CHEN H. Drought fluctuations based on dendrochronology since 1786 for the Lenglongling Mountains at the northwestern fringe of the East Asian summer monsoon region[J]. 干旱区科学, 2016, 8(4): 492-505.
[2] GAO Liming, ZHANG Yaonan. Spatio-temporal variation of hydrological drought under climate change during the period 1960–2013 in the Hexi Corridor, China[J]. 干旱区科学, 2016, 8(2): 157-171.
[3] WANG Xiaohua, XIAO Honglang, REN Juan, CHENG Yiben, YANG Qiu. An ultrasonic humidification fluorescent tracing method for detecting unsaturated atmospheric water absorption by the aerial parts of desert plants[J]. 干旱区科学, 2016, 8(2): 272-283.
[4] Murat KARABULUT. Drought analysis in Antakya-Kahramanmara? Graben, Turkey[J]. 干旱区科学, 2015, 7(6): 741-754.
[5] Partha P DHAR, Abdul A AL-QARAWI, Mohammed A U MRIDHA. Arbuscular mycorrhizal fungal association in Asteraceae plants growing in the arid lands of Saudi Arabia[J]. 干旱区科学, 2015, 7(5): 676-686.
[6] WU Yanfeng, Batur BAKE, ZHANG Jusong, Hamid RASULOV. Spatio-temporal patterns of drought in North Xinjiang, China, 1961–2012 based on meteorological drought index[J]. 干旱区科学, 2015, 7(4): 527-543.
[7] XiuFang ZHU, AnZhou ZHAO, YiZhan LI, XianFeng LIU. Agricultural irrigation requirements under future climate scenarios in China[J]. 干旱区科学, 2015, 7(2): 224-237.
[8] Flavia Alejandra FUNK, Alejandro LOYDI, Guadalupe PETER. Effects of biological soil crusts and drought on emergence and survival of a Patagonian perennial grass in the Monte of Argentina[J]. 干旱区科学, 2014, 6(6): 735-741.
[9] QiQiang GUO, WenHui ZHANG, HuiE LI. Comparison of photosynthesis and antioxidative protection in Sophora moorcroftiana and Caragana maximovicziana under water stress[J]. 干旱区科学, 2014, 6(5): 637-645.
[10] Sarah SYMANCZIK, Janusz B?ASZKOWSKI, Sally KOEGEL, Thomas BOLLER, Andres WIEMKEN. Isolation and identification of desert habituated arbuscular mycorrhizal fungi newly reported from the Arabian Peninsula[J]. 干旱区科学, 2014, 6(4): 488-497.
[11] HongLing LIU, Yong TAN, Monika NELL, Karin ZITTER-EGLSEER, Chris WAWSCRAH, Brigi. Arbuscular mycorrhizal fungal colonization of  Glycyrrhiza glabra roots enhances plant biomass, phosphorus uptake and concentration of root secondary metabolites[J]. 干旱区科学, 2014, 6(2): 186-194.
[12] Rui LI, Atsushi TSUNEKAWA, Mitsuru TSUBO. Index-based assessment of agricultural drought in a semi-arid region of Inner Mongolia, China[J]. 干旱区科学, 2014, 6(1): 3-15.
[13] TengFei YU, Qi FENG, JianHua SI, HaiYang XI, Wei LI. Patterns, magnitude, and controlling factors of hydraulic redistribution of soil water by Tamarix ramosissima roots[J]. 干旱区科学, 2013, 5(3): 396-407.
[14] YuanRun ZHENG, LianHe JIANG, Yong GAO, Xi CHEN, GePing LUO, XianWei FENG, YunJia. Persistence of four dominant psammophyte species in central Inner Mongolia of China under continual drought[J]. 干旱区科学, 2013, 5(3): 331-339.
[15] Ge YU, Dave SAUCHYN, YongFei LI. Drought changes and the mechanism analysis for the North American Prairie[J]. 干旱区科学, 2013, 5(1): 1-14.
No Suggested Reading articles found!
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed