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荒漠草原猪毛蒿生长和代谢对降水变化的响应
引用本文:陈生钢,庞丹波,陈林,卞莹莹,万红云,何文强,曹萌豪.荒漠草原猪毛蒿生长和代谢对降水变化的响应[J].北京林业大学学报,2022,44(2):65-74.
作者姓名:陈生钢  庞丹波  陈林  卞莹莹  万红云  何文强  曹萌豪
作者单位:1.宁夏特种设备检验检测院,宁夏 银川 750000
基金项目:宁夏自然科学基金项目(2020AAC03102、2020AAC03105);;国家自然科学基金项目(31960359);
摘    要:目的]研究荒漠草原猪毛蒿生长和代谢特征对降水变化的响应,可为荒漠草原植被恢复与重建提供参考.方法]本文采用野外增减降水试验,于2017-2020年研究了降水改变(增水30%、对照和减水30%)条件下猪毛蒿生长特征及其代谢产物,旨在探讨猪毛蒿生长代谢对降水改变的响应机制.结果]在降水量较多的2018年(385.6m...

关 键 词:荒漠草原  猪毛蒿  降水变化  生长特征  代谢调控
收稿时间:2021-10-16

Response of growth and metabolism of Artemisia scoparia to precipitation change in desert steppe
Chen Shenggang,Pang Danbo,Chen Lin,Bian Yingying,Wan Hongyun,He Wenqiang,Cao Menghao.Response of growth and metabolism of Artemisia scoparia to precipitation change in desert steppe[J].Journal of Beijing Forestry University,2022,44(2):65-74.
Authors:Chen Shenggang  Pang Danbo  Chen Lin  Bian Yingying  Wan Hongyun  He Wenqiang  Cao Menghao
Institution:(Special Equipment Inspection and Testing Institute of Ningxia,Yinchuan 750000,Ningxia,China;Breeding Base for State Key Laboratory of Land Degradation and Ecological Restoration in Northwest China(Ningxia University),Yinchuan 750021,Ningxia,China;Key Laboratory of Restoration and Reconstruction of Degraded Ecosystem in Northwest China(Ningxia University)of Ministry of Education,Yinchuan 750021,Ningxia,China;College of Ecology and Environment,Ningxia University,Yinchuan 750021,Ningxia,China;College of Agriculture,Ningxia University,Yinchuan 750021,Ningxia,China)
Abstract:Objective]Studying the response of growth and metabolic characteristics of Artemisia scoparia to precipitation changes can provide reference for vegetation restoration and reconstruction in desert steppe.Method]Test method of precipitation control was adopted and the growth characteristics of A.scoparia under the condition of precipitation change(30% water increase treatments,IT;check treatments,CK;30% water decrease treatments,DT)were continuously observed from 2017 to 2020,and its metabolites were determined to explore the response mechanism of growth response and metabolic adaptation of A.scoparia to precipitation change.Result]The results showed that precipitation changes had little effect on the growth characteristics of A.scoparia in the year with more precipitation(2018),while the aboveground biomass,density,plant height and crown width of A.scoparia had significant response to precipitation changes in the dry year(2020).Seven hundreds and seventy two metabolites were detected in the stem and leaf mixture of A.scoparia,including flavonoids,phenolic acids,lipids,etc.The 43 metabolites with significant differences among different precipitation treatments were mainly flavonoids,phenolic acids,organic acids,lipids,amino acids and their derivatives.There were 52 individual differential metabolites in the increased and decreased water treatment,and the differential metabolites were mainly up-regulated,which accounted for 76.07% of differential metabolites,while there were only 2 common differential metabolites in common among the three treatments.The results indicated that the precipitation change in desert steppe was an important factor affecting the growth and metabolism characteristics of A.scoparia.In metabolic pathway,precipitation changes mainly affected anthocyanin biosynthesis,arginine biosynthesis and starch and sucrose metabolism in stem and leaf mixture of A.scoparia.Conclusion]A.scoparia in desert steppe adapted to the change of precipitation by enhancing the phenotypic plasticity of aboveground biomass,density,plant height and crown width.The phenotypic plasticity variation in dry years of precipitation was more obvious than that in wet years.Precipitation can significantly change the metabolites of stem and leaf of A.scoparia,which may be the expression of physiological plasticity of A.scoparia under drought environment.Although the KEGG metabolic pathway of A.scoparia under different precipitation treatments was found,the specific regulation mechanism of the differential pathway needs to be further explored.
Keywords:desert steppe  Artemisia scoparia  precipitation change  growth characteristics  metabolic regulation
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