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Energy partitioning and evapotranspiration in a black locust plantation on the Yellow River Delta,China 被引量:2
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作者 Xiang Gao Zhenyu Du +8 位作者 Qingshan Yang Jinsong Zhang Yongtao Li Xiaojie Wang fengxue gu Weiping Hao Zekun Yang Dexi Liu Jianmin Chu 《Journal of Forestry Research》 SCIE CAS CSCD 2022年第4期1219-1232,共14页
Plantations of woody tree species play a crucial role in ecological security along coastal zones.Understanding energy partitioning and evapotranspiration can reveal land–atmosphere interaction processes.We investigat... Plantations of woody tree species play a crucial role in ecological security along coastal zones.Understanding energy partitioning and evapotranspiration can reveal land–atmosphere interaction processes.We investigated energy fluxes,evapotranspiration,and their related biophysical factors using eddy covariance techniques in a black locust(Robinia pseudoacacia L.)plantation in 2016,2018,and 2019 on the Yellow River Delta.Downward longwave radiation offsets 84–85%of upward longwave radiation;upward shortwave radiation accounted for 12–13%of downward shortwave radiation.The ratio of net radiation to downward radiation was 18–19%over the three years.During the growing season,latent heat flux was the largest component of net radiation;during the dormant season,the sensible heat flux was the dominant component of net radiation.The seasonal variation in daily evapotranspiration was mainly controlled by net radiation,air temperature,vapor pressure deficit,and leaf area index.Black locust phenology influenced daily evapotranspiration variations,and evapotranspiration was greater under sea winds than under land winds because soil water content at 10-cm depth was greater under sea winds during the day.Seasonal patterns of daily evaporative fraction,Bowen ratio,crop coefficient,Priestley–Taylor coefficient,surface conductance,and decoupling coefficient were mainly controlled by leaf area index.The threshold value of daily surface conductance was approximately 8 mm sover the plantation. 展开更多
关键词 Black locust plantation Yellow River Delta Eddy covariance Energy partitioning EVAPOTRANSPIRATION
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植物磷脂酸的特性及其在ABA诱导气孔运动中的作用 被引量:2
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作者 王雅静 张欣莹 +5 位作者 黄桂荣 刘晓英 郭瑞 顾峰雪 钟秀丽 梅旭荣 《植物学报》 CAS CSCD 北大核心 2019年第2期245-254,共10页
磷脂酸(PA)是应答多种生理过程的第二信使,其作为一个脂质信号快速积累从而响应多种环境。PA主要通过磷脂酶D (PLD)和磷脂酶C/甘油二酯激酶(PLC/DGK)途径产生。基于PLDs的生化特性、激活机制以及在不同类型胁迫下被激活的特定同种型的差... 磷脂酸(PA)是应答多种生理过程的第二信使,其作为一个脂质信号快速积累从而响应多种环境。PA主要通过磷脂酶D (PLD)和磷脂酶C/甘油二酯激酶(PLC/DGK)途径产生。基于PLDs的生化特性、激活机制以及在不同类型胁迫下被激活的特定同种型的差异,不同类型胁迫下会产生特定分子种组成的PA。PA在多种环境下起信号转导作用,在调节气孔运动中,PA的作用模式主要是通过与多种蛋白结合,激活或抑制这些蛋白的活性,进而执行其信使功能。该文主要综述PA的生化特性以及信号途径中PA互作蛋白的研究进展,并提出PA研究中亟待解决的问题及今后的重点研究方向。 展开更多
关键词 细胞骨架 机制 磷脂酸 信号转导 气孔运动
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