Temperature-ecological amplitude of Karenia mikimotoi and Prorocentrum donghaiense at different light intensities in laboratory culture
Karenia mikimotoi and Prorocentrum donghaiense are the major dominant species in red tides in southeast coastal area of China.To determine the temperature-ecological amplitude of Karenia mikimotoi and Prorocentrum donghaiense,firstly,experiments at four level temperatures(18,22,25,and 28℃)on cell de...
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description | Karenia mikimotoi and Prorocentrum donghaiense are the major dominant species in red tides in southeast coastal area of China.To determine the temperature-ecological amplitude of Karenia mikimotoi and Prorocentrum donghaiense,firstly,experiments at four level temperatures(18,22,25,and 28℃)on cell densities and specific growth rates of Karenia mikimotoi and Prorocentrum donghaiense at three light intensities(28.32,75.06,and 111.66μmol m-2s-1)were conducted,and then,a tolerance model between temperature and specific growth rate of the algae was established based on experimental results and Shelford’s law of tolerance;finally,the optimum temperature for algal growth,suitable temperature ranges for algal growth,and tolerance temperature ranges for algal growth were determined respectively according to our existing research results.The results showed the following:(1)Whether Karenia mikimotoi or Prorocentrum donghaiense,there existed an optimum temperature for algal growth(Topt)in the given temperature gradient level under the same light conditions,and when T≤Topt,the cell densities and specific growth rates of Karenia mikimotoi and Prorocentrum donghaiense increased significantly with increase in temperature(ANOVA,P |
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fullrecord | <record><control><sourceid>proquest_cross</sourceid><recordid>TN_cdi_proquest_journals_2114671340</recordid><sourceformat>XML</sourceformat><sourcesystem>PC</sourcesystem><sourcerecordid>2114671340</sourcerecordid><originalsourceid>FETCH-LOGICAL-c139t-5ed1fa282efea706df696a82ff6ab4abcf6d26583e94ca2432da8124fee711233</originalsourceid><addsrcrecordid>eNpdkD1PwzAQhj2ARPnYGS0xB_yROsmIKr5EJRjKHF3sc-uSxMV2JPoL-Nu4KhPTnXTv3XN6CLnm7HZel-oupu9OMK44F1zISp6QGWeMFayR8oycx7hlTDIumxn5WeGwwwBpClig9r1fOw09hWHXuzQZpN7SVwg4OqCD-3SDT95RGA19Dz54jWMK00CNH9cbcDhGpJCocdZiXkq0d-tNom5MeeSSw5h72kPnM9OHPdVTf2BfklMLfcSrv3pBPh4fVovnYvn29LK4XxY6v5uKORpuQdQCLULFlLGqUVALaxV0JXTaKiPUvJbYlBpEKYWBmovSIlbZhpQX5OZ4dxf814QxtVs_hTEjW8F5qSouS5ZT7JjSwccY0La74AYI-5az9qC4_a9Y_gKHInYn</addsrcrecordid><sourcetype>Aggregation Database</sourcetype><iscdi>true</iscdi><recordtype>article</recordtype><pqid>2114671340</pqid></control><display><type>article</type><title>Temperature-ecological amplitude of Karenia mikimotoi and Prorocentrum donghaiense at different light intensities in laboratory culture</title><source>EZB-FREE-00999 freely available EZB journals</source><creator>Wen, Shiyong ; Liu, Xizhen ; Wang, Zizhu ; Yu, Jun ; Zhang, Fengshou ; Liu, Yongjian ; Song, Lili</creator><creatorcontrib>Wen, Shiyong ; Liu, Xizhen ; Wang, Zizhu ; Yu, Jun ; Zhang, Fengshou ; Liu, Yongjian ; Song, Lili</creatorcontrib><description>Karenia mikimotoi and Prorocentrum donghaiense are the major dominant species in red tides in southeast coastal area of China.To determine the temperature-ecological amplitude of Karenia mikimotoi and Prorocentrum donghaiense,firstly,experiments at four level temperatures(18,22,25,and 28℃)on cell densities and specific growth rates of Karenia mikimotoi and Prorocentrum donghaiense at three light intensities(28.32,75.06,and 111.66μmol m-2s-1)were conducted,and then,a tolerance model between temperature and specific growth rate of the algae was established based on experimental results and Shelford’s law of tolerance;finally,the optimum temperature for algal growth,suitable temperature ranges for algal growth,and tolerance temperature ranges for algal growth were determined respectively according to our existing research results.The results showed the following:(1)Whether Karenia mikimotoi or Prorocentrum donghaiense,there existed an optimum temperature for algal growth(Topt)in the given temperature gradient level under the same light conditions,and when T≤Topt,the cell densities and specific growth rates of Karenia mikimotoi and Prorocentrum donghaiense increased significantly with increase in temperature(ANOVA,P<0.05);when T≥Topt,the algal cell densities and specific growth rates decreased significantly with increase in temperature(ANOVA,P<0.01).(2)The temperature-tolerance model was consistent with Shelford’s law of tolerance;(3)For Karenia mikimotoi cultures grown at the three light intensities(28.32,75.06,and 111.66μmol m-2s-1),the optimum temperatures were 22.48,22.37,22.33℃,respectively,suitable temperature ranges were 17.93-27.03℃,17.82-26.92℃,and 17.78-26.88℃,respectively,and tolerance temperature ranges were 13.38-31.58℃,13.27-31.47℃,13.23-31.43℃,respectively.(4)For Prorocentrum donghaiense cultures grown at the three light intensities(28.32,75.06,and 111.66μmol m-2s-1),the optimum temperatures were 22.10,21.99,21.93℃,respectively,suitable temperature ranges were 17.59-26.61℃,17.48-26.5℃,17.42-26.44℃,respectively,and tolerance temperature ranges were 13.08-31.12℃,12.97-31.01℃,12.91-30.95℃,respectively.</description><identifier>ISSN: 1000-0933</identifier><identifier>DOI: 10.5846/stxb201611212373</identifier><language>chi ; eng</language><publisher>Beijing: Science Press</publisher><subject>Algae ; Algal growth ; Amplitudes ; Cell culture ; Coastal ecology ; Coastal zone ; Dominant species ; Growth rate ; Herbivores ; Karenia mikimotoi ; Laboratory culture ; Luminous intensity ; Prorocentrum donghaiense ; Red tides ; Temperature ; Temperature effects ; Temperature gradients ; Temperature tolerance ; Variance analysis</subject><ispartof>Sheng tai xue bao, 2018-01, Vol.38 (14), p.5187</ispartof><rights>Copyright Science Press 2018</rights><lds50>peer_reviewed</lds50><woscitedreferencessubscribed>false</woscitedreferencessubscribed></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>314,776,780,27901,27902</link.rule.ids></links><search><creatorcontrib>Wen, Shiyong</creatorcontrib><creatorcontrib>Liu, Xizhen</creatorcontrib><creatorcontrib>Wang, Zizhu</creatorcontrib><creatorcontrib>Yu, Jun</creatorcontrib><creatorcontrib>Zhang, Fengshou</creatorcontrib><creatorcontrib>Liu, Yongjian</creatorcontrib><creatorcontrib>Song, Lili</creatorcontrib><title>Temperature-ecological amplitude of Karenia mikimotoi and Prorocentrum donghaiense at different light intensities in laboratory culture</title><title>Sheng tai xue bao</title><description>Karenia mikimotoi and Prorocentrum donghaiense are the major dominant species in red tides in southeast coastal area of China.To determine the temperature-ecological amplitude of Karenia mikimotoi and Prorocentrum donghaiense,firstly,experiments at four level temperatures(18,22,25,and 28℃)on cell densities and specific growth rates of Karenia mikimotoi and Prorocentrum donghaiense at three light intensities(28.32,75.06,and 111.66μmol m-2s-1)were conducted,and then,a tolerance model between temperature and specific growth rate of the algae was established based on experimental results and Shelford’s law of tolerance;finally,the optimum temperature for algal growth,suitable temperature ranges for algal growth,and tolerance temperature ranges for algal growth were determined respectively according to our existing research results.The results showed the following:(1)Whether Karenia mikimotoi or Prorocentrum donghaiense,there existed an optimum temperature for algal growth(Topt)in the given temperature gradient level under the same light conditions,and when T≤Topt,the cell densities and specific growth rates of Karenia mikimotoi and Prorocentrum donghaiense increased significantly with increase in temperature(ANOVA,P<0.05);when T≥Topt,the algal cell densities and specific growth rates decreased significantly with increase in temperature(ANOVA,P<0.01).(2)The temperature-tolerance model was consistent with Shelford’s law of tolerance;(3)For Karenia mikimotoi cultures grown at the three light intensities(28.32,75.06,and 111.66μmol m-2s-1),the optimum temperatures were 22.48,22.37,22.33℃,respectively,suitable temperature ranges were 17.93-27.03℃,17.82-26.92℃,and 17.78-26.88℃,respectively,and tolerance temperature ranges were 13.38-31.58℃,13.27-31.47℃,13.23-31.43℃,respectively.(4)For Prorocentrum donghaiense cultures grown at the three light intensities(28.32,75.06,and 111.66μmol m-2s-1),the optimum temperatures were 22.10,21.99,21.93℃,respectively,suitable temperature ranges were 17.59-26.61℃,17.48-26.5℃,17.42-26.44℃,respectively,and tolerance temperature ranges were 13.08-31.12℃,12.97-31.01℃,12.91-30.95℃,respectively.</description><subject>Algae</subject><subject>Algal growth</subject><subject>Amplitudes</subject><subject>Cell culture</subject><subject>Coastal ecology</subject><subject>Coastal zone</subject><subject>Dominant species</subject><subject>Growth rate</subject><subject>Herbivores</subject><subject>Karenia mikimotoi</subject><subject>Laboratory culture</subject><subject>Luminous intensity</subject><subject>Prorocentrum donghaiense</subject><subject>Red tides</subject><subject>Temperature</subject><subject>Temperature effects</subject><subject>Temperature gradients</subject><subject>Temperature tolerance</subject><subject>Variance analysis</subject><issn>1000-0933</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2018</creationdate><recordtype>article</recordtype><recordid>eNpdkD1PwzAQhj2ARPnYGS0xB_yROsmIKr5EJRjKHF3sc-uSxMV2JPoL-Nu4KhPTnXTv3XN6CLnm7HZel-oupu9OMK44F1zISp6QGWeMFayR8oycx7hlTDIumxn5WeGwwwBpClig9r1fOw09hWHXuzQZpN7SVwg4OqCD-3SDT95RGA19Dz54jWMK00CNH9cbcDhGpJCocdZiXkq0d-tNom5MeeSSw5h72kPnM9OHPdVTf2BfklMLfcSrv3pBPh4fVovnYvn29LK4XxY6v5uKORpuQdQCLULFlLGqUVALaxV0JXTaKiPUvJbYlBpEKYWBmovSIlbZhpQX5OZ4dxf814QxtVs_hTEjW8F5qSouS5ZT7JjSwccY0La74AYI-5az9qC4_a9Y_gKHInYn</recordid><startdate>20180101</startdate><enddate>20180101</enddate><creator>Wen, Shiyong</creator><creator>Liu, Xizhen</creator><creator>Wang, Zizhu</creator><creator>Yu, Jun</creator><creator>Zhang, Fengshou</creator><creator>Liu, Yongjian</creator><creator>Song, Lili</creator><general>Science Press</general><scope>AAYXX</scope><scope>CITATION</scope><scope>7SN</scope><scope>7ST</scope><scope>7UA</scope><scope>C1K</scope><scope>SOI</scope></search><sort><creationdate>20180101</creationdate><title>Temperature-ecological amplitude of Karenia mikimotoi and Prorocentrum donghaiense at different light intensities in laboratory culture</title><author>Wen, Shiyong ; Liu, Xizhen ; Wang, Zizhu ; Yu, Jun ; Zhang, Fengshou ; Liu, Yongjian ; Song, Lili</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c139t-5ed1fa282efea706df696a82ff6ab4abcf6d26583e94ca2432da8124fee711233</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>chi ; eng</language><creationdate>2018</creationdate><topic>Algae</topic><topic>Algal growth</topic><topic>Amplitudes</topic><topic>Cell culture</topic><topic>Coastal ecology</topic><topic>Coastal zone</topic><topic>Dominant species</topic><topic>Growth rate</topic><topic>Herbivores</topic><topic>Karenia mikimotoi</topic><topic>Laboratory culture</topic><topic>Luminous intensity</topic><topic>Prorocentrum donghaiense</topic><topic>Red tides</topic><topic>Temperature</topic><topic>Temperature effects</topic><topic>Temperature gradients</topic><topic>Temperature tolerance</topic><topic>Variance analysis</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Wen, Shiyong</creatorcontrib><creatorcontrib>Liu, Xizhen</creatorcontrib><creatorcontrib>Wang, Zizhu</creatorcontrib><creatorcontrib>Yu, Jun</creatorcontrib><creatorcontrib>Zhang, Fengshou</creatorcontrib><creatorcontrib>Liu, Yongjian</creatorcontrib><creatorcontrib>Song, Lili</creatorcontrib><collection>CrossRef</collection><collection>Ecology Abstracts</collection><collection>Environment Abstracts</collection><collection>Water Resources Abstracts</collection><collection>Environmental Sciences and Pollution Management</collection><collection>Environment Abstracts</collection><jtitle>Sheng tai xue bao</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Wen, Shiyong</au><au>Liu, Xizhen</au><au>Wang, Zizhu</au><au>Yu, Jun</au><au>Zhang, Fengshou</au><au>Liu, Yongjian</au><au>Song, Lili</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Temperature-ecological amplitude of Karenia mikimotoi and Prorocentrum donghaiense at different light intensities in laboratory culture</atitle><jtitle>Sheng tai xue bao</jtitle><date>2018-01-01</date><risdate>2018</risdate><volume>38</volume><issue>14</issue><spage>5187</spage><pages>5187-</pages><issn>1000-0933</issn><abstract>Karenia mikimotoi and Prorocentrum donghaiense are the major dominant species in red tides in southeast coastal area of China.To determine the temperature-ecological amplitude of Karenia mikimotoi and Prorocentrum donghaiense,firstly,experiments at four level temperatures(18,22,25,and 28℃)on cell densities and specific growth rates of Karenia mikimotoi and Prorocentrum donghaiense at three light intensities(28.32,75.06,and 111.66μmol m-2s-1)were conducted,and then,a tolerance model between temperature and specific growth rate of the algae was established based on experimental results and Shelford’s law of tolerance;finally,the optimum temperature for algal growth,suitable temperature ranges for algal growth,and tolerance temperature ranges for algal growth were determined respectively according to our existing research results.The results showed the following:(1)Whether Karenia mikimotoi or Prorocentrum donghaiense,there existed an optimum temperature for algal growth(Topt)in the given temperature gradient level under the same light conditions,and when T≤Topt,the cell densities and specific growth rates of Karenia mikimotoi and Prorocentrum donghaiense increased significantly with increase in temperature(ANOVA,P<0.05);when T≥Topt,the algal cell densities and specific growth rates decreased significantly with increase in temperature(ANOVA,P<0.01).(2)The temperature-tolerance model was consistent with Shelford’s law of tolerance;(3)For Karenia mikimotoi cultures grown at the three light intensities(28.32,75.06,and 111.66μmol m-2s-1),the optimum temperatures were 22.48,22.37,22.33℃,respectively,suitable temperature ranges were 17.93-27.03℃,17.82-26.92℃,and 17.78-26.88℃,respectively,and tolerance temperature ranges were 13.38-31.58℃,13.27-31.47℃,13.23-31.43℃,respectively.(4)For Prorocentrum donghaiense cultures grown at the three light intensities(28.32,75.06,and 111.66μmol m-2s-1),the optimum temperatures were 22.10,21.99,21.93℃,respectively,suitable temperature ranges were 17.59-26.61℃,17.48-26.5℃,17.42-26.44℃,respectively,and tolerance temperature ranges were 13.08-31.12℃,12.97-31.01℃,12.91-30.95℃,respectively.</abstract><cop>Beijing</cop><pub>Science Press</pub><doi>10.5846/stxb201611212373</doi></addata></record> |
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subjects | Algae Algal growth Amplitudes Cell culture Coastal ecology Coastal zone Dominant species Growth rate Herbivores Karenia mikimotoi Laboratory culture Luminous intensity Prorocentrum donghaiense Red tides Temperature Temperature effects Temperature gradients Temperature tolerance Variance analysis |
title | Temperature-ecological amplitude of Karenia mikimotoi and Prorocentrum donghaiense at different light intensities in laboratory culture |
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