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Photosynthetic and Respiratory Acclimation to Experimental Warming for Four SpeCies in a Tallgrass Prairie Ecosystem 被引量:12
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作者 Xuhui Zhou Xiaozhong Liu Linda L. Wallace Yiqi Luo 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2007年第3期270-281,共12页
Global temperature has been Increased by 0.6 ℃ over the past century and is predicted to Increase by 1.4-5.8 ℃ by the end of this century. It is unclear what impacts global warming will have on tallgrass species. In... Global temperature has been Increased by 0.6 ℃ over the past century and is predicted to Increase by 1.4-5.8 ℃ by the end of this century. It is unclear what impacts global warming will have on tallgrass species. In the present study, we examined leaf net photosynthetic rate (P.) and leaf respiration rate in darkness (Rd) of Aster erlcoldes (L.) Nesom, Ambrosia psllostachya DC., Helianthus mollis Lam., and Sorghastrum nutans (L.) Nash In response to experimental warming in a tallgrass prairie ecosystem of the Great Plains, USA, in the autumn (fall) of 2000 and through 2001. Warming has been Implemented with infrared heaters since 21 November 1999. The P. increased significantly In spring, decreased in early fall, and did not change in summer and late fall in the four species under warming compared with control. The Rd of the four species increased significantly until mid-summer and then did not change under warming. Measured temperature-response curves of P. showed that warming Increased the optimum temperature of P. (Topt) by 2.32 and 4.59 ℃ for H. mollis and S. nutans, respectively, in August, whereas there were no changes in May and September, and A. ericoldes and A. psllostachya also showed no changes in any of the 3 months. However, P. at optimum temperature (Popt) showed downregulation in September and no regulation in May and August for all four species. The temperature-response curves of Rd Illustrate that the temperature sensitivity of Rd, Q10, was lower in the warmed plots compared with the control plots, except for A. ericoides in August, whereas there were no changes In May and September for all four species. The results of the present study indicate that photosynthetic and respiratory acclimation varies with species and among seasons, occurring In the mid-growing season and not in the early and late growing seasons. 展开更多
关键词 ACCLIMATION ambrosia psilostachya climatic warming PHOTOSYNTHESIS RESPIRATION Sorghastrum nutans tallgrass prairie temperature
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多年生豚草在中国的潜在分布预测
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作者 李盼畔 何旭诺 +4 位作者 吴海荣 陈萍 刘明航 武目涛 王亚锋 《植物检疫》 2022年第4期57-62,共6页
通过筛选多年生豚草在全球的分布点,并用SPSS从22个环境变量中筛选出12个,用MaxEnt软件对多年生豚草的潜在地理分布区进行预测。结果表明,多年生豚草在我国适生范围较广,其中高度适生区分布在吉林、辽宁、内蒙古、河北、山西、陕西、宁... 通过筛选多年生豚草在全球的分布点,并用SPSS从22个环境变量中筛选出12个,用MaxEnt软件对多年生豚草的潜在地理分布区进行预测。结果表明,多年生豚草在我国适生范围较广,其中高度适生区分布在吉林、辽宁、内蒙古、河北、山西、陕西、宁夏、甘肃、福建以及上海的部分区域,且最冷季平均温度、年平均气温、最湿季降水量和最热月最高温度是影响其分布的主要环境变量。该结果可为监测与防控这种检疫性杂草提供理论基础。 展开更多
关键词 多年生豚草 最大熵模型 环境变量 预测 地理分布区
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