We used a salt-resistant poplar genotype Populus euphratica and two salt-sensitive genotypes, Populus 'popularis 35-44' (P. popularis) and the hybrid P. talassica Kom x (P. euphratica + Salix alba L.) to exami...We used a salt-resistant poplar genotype Populus euphratica and two salt-sensitive genotypes, Populus 'popularis 35-44' (P. popularis) and the hybrid P. talassica Kom x (P. euphratica + Salix alba L.) to examine genotypic differences in nutrient selectivity under NaCl stress. One-year-old seedlings of P. euphratica and one-year-old hardwood cuttings of P. popularis were used in a short-term study (24 hours), while in a long-term study, up to 4 weeks, two-year-old seedlings of P. euphratica and the hybrid P. talassica Kom x (P. euphratica + Salix alba L.) were compared. In the short-term study, K+ concentration in the xylem sap ([K+]xylem) of P. euphratica significantly increased after salt stress was initiated, and maintained 1-2 fold higher than control levels during the period of salt stress (24 hours). Xylem Ca2+ and Mg2+ concentrations ([Ca2+]xylem, [Mg2+]xylem) in P. euphratica resembled the pattern of K+ despite a lesser magnitude in elevation. However, [K+]xylem, [Ca2+]xylem and [Mg2+]xylem in P. popularis exhibited a transient increase at the beginning of salt treatment, thereafter, they all returned to control levels at 4 hours and no further rise was observed in the following hours. Xylem Na+/K+, Na+/Ca2+ and Na+/Mg2+ in P. popularis increased sharply upon NaCl stress and steadily reached the maximum at 24 hours. In contrast, xylem Na+/K+, Na+/Ca2+ and Na+/Mg2+ in NaCl-treated plants of P. euphratica did not significantly increase during the period of salt stress (24 hours). Noteworthy, Na+/K+ markedly declined after the onset of stress. These results suggest that P. euphratica had a higher nutrient selectivity in face of salinity. A same trend was observed in a 4-week study. Xylem Na+/K+, Na+/Ca2+ and Na+/Mg2+ in salinised plants of the hybrid abruptly increased after 4 days of stress, and then continuously increased to reach the highest level at day 8 or day 15. In comparison, the magnitude of Na+/K+, Na+/Ca2+ and Na+/Mg2+ elevation in the xylem of P. euphratica was much lower during the observation p展开更多
土壤干旱是北方地区杨树人工林生长和生态效益的重要限制因子。以群众杨(Populus×popularis‘35-44’)扦插苗为研究材料,采用盆栽称重法控制土壤水分,设置正常供水、中度干旱、重度干旱3种水分梯度。分别于2016年9月与2017年9月测...土壤干旱是北方地区杨树人工林生长和生态效益的重要限制因子。以群众杨(Populus×popularis‘35-44’)扦插苗为研究材料,采用盆栽称重法控制土壤水分,设置正常供水、中度干旱、重度干旱3种水分梯度。分别于2016年9月与2017年9月测定叶片气体交换参数、各器官干重、根冠比、叶经济性状等指标,研究了持续2年干旱胁迫下群众杨扦插苗光合特性与器官干物质分配的变化规律,分析了土壤干旱程度、树龄在"小老树"形成中的作用过程。2016年与2017年中度、重度干旱胁迫下功能叶净光合速率(P_n)受到非气孔限制,与正常供水相比分别降低了36.08%、56.42%;18.47%、5.13%。第一年干旱胁迫下群众杨气孔导度(G_s)和蒸腾速率(T_r)显著降低;第二年干旱胁迫下G_s与正常供水无显著差异,而T_r显著提高,有利于叶片C、N元素的运输分配进而维持较高的P_n。第一年随干旱胁迫程度加剧,群众杨叶片C/N显著提高,光合产物分配趋向于叶器官。第二年中度干旱胁迫下叶片C/N与正常供水相比无显著差异,各器官干重下降幅度均低于2016年,而根冠比显著增加,表明其光合产物主要用于地下部构建以适应中度干旱环境;持续重度干旱则光合产物向茎中的分配比例提高。干旱胁迫导致群众杨功能叶水分利用效率(WUE,Water use efficiency)与光合氮利用效率(PNUE,Photosynthetic nitrogen use efficiency)显著降低,整株氮利用效率(NUE,Whole plant nitrogen use efficiency)显著提高。严重土壤干旱下叶片耗水增强、PNUE下降以及茎木质部碳投资增加可能是群众杨小老树形成的重要原因。展开更多
《中国植物志》和"Flora of China"是目前世界上最大型、记录植物种类最多的植物志,它为有效保护和合理利用我国的植物资源提供了极为重要的基础信息和科学依据。近年来,基于分子系统学研究提出的APG系统被广泛接受,相应方法...《中国植物志》和"Flora of China"是目前世界上最大型、记录植物种类最多的植物志,它为有效保护和合理利用我国的植物资源提供了极为重要的基础信息和科学依据。近年来,基于分子系统学研究提出的APG系统被广泛接受,相应方法得到的系统也相继应用于整个维管植物中。以APG系统为代表的维管植物新系统为全面和系统地修订植物志提供了新的系统框架。本文依据最新的分子系统学"线性排列"成果与《中国植物志》和"Flora of China"在科级水平上进行对比,确定了以APG系统为代表的分子系统框架下中国维管植物为309科,其中石松类和蕨类植物38科,裸子植物10科和被子植物261科。尽管中国维管植物不少科的界限发生了较大的变化,其总数却变化不大,在《中国植物志》中为300科,"Flora of China"为309科。此外,还重点介绍了一些主要科的变动情况。展开更多
石松类和蕨类植物在秦仁昌(1978)系统、《中国蕨类植物科属志》、《中国植物志》、Christenhusz维管植物线性排列系统中和"Flora of China"的科属组成、数量存在很大差异。秦仁昌(1978)系统收录63科223属,《中国蕨类植物科属...石松类和蕨类植物在秦仁昌(1978)系统、《中国蕨类植物科属志》、《中国植物志》、Christenhusz维管植物线性排列系统中和"Flora of China"的科属组成、数量存在很大差异。秦仁昌(1978)系统收录63科223属,《中国蕨类植物科属志》63科226属,《中国植物志》61科220属、Christenhusz线性排列系统38科163属和"Flora of China"38科177属。本文通过比较石松类和蕨类植物的几个主要分类系统中科属的变动情况,拟为新一代植物志(iFlora)中石松类和蕨类植物的编研提供依据。同时,还指出了几个主要的分类系统中关于中文名、拉丁名以及命名人的不一致和错误,为进一步研究提供检索和鉴定参考。展开更多
基金Foundation for the Author of National Excellent Doctoral Dissertation of PRC (Grant No. 200152)the Teaching and Research Award Program for Outstanding Young Teachers in Higher Education Institution of MOE, PRC, the National Nat
文摘We used a salt-resistant poplar genotype Populus euphratica and two salt-sensitive genotypes, Populus 'popularis 35-44' (P. popularis) and the hybrid P. talassica Kom x (P. euphratica + Salix alba L.) to examine genotypic differences in nutrient selectivity under NaCl stress. One-year-old seedlings of P. euphratica and one-year-old hardwood cuttings of P. popularis were used in a short-term study (24 hours), while in a long-term study, up to 4 weeks, two-year-old seedlings of P. euphratica and the hybrid P. talassica Kom x (P. euphratica + Salix alba L.) were compared. In the short-term study, K+ concentration in the xylem sap ([K+]xylem) of P. euphratica significantly increased after salt stress was initiated, and maintained 1-2 fold higher than control levels during the period of salt stress (24 hours). Xylem Ca2+ and Mg2+ concentrations ([Ca2+]xylem, [Mg2+]xylem) in P. euphratica resembled the pattern of K+ despite a lesser magnitude in elevation. However, [K+]xylem, [Ca2+]xylem and [Mg2+]xylem in P. popularis exhibited a transient increase at the beginning of salt treatment, thereafter, they all returned to control levels at 4 hours and no further rise was observed in the following hours. Xylem Na+/K+, Na+/Ca2+ and Na+/Mg2+ in P. popularis increased sharply upon NaCl stress and steadily reached the maximum at 24 hours. In contrast, xylem Na+/K+, Na+/Ca2+ and Na+/Mg2+ in NaCl-treated plants of P. euphratica did not significantly increase during the period of salt stress (24 hours). Noteworthy, Na+/K+ markedly declined after the onset of stress. These results suggest that P. euphratica had a higher nutrient selectivity in face of salinity. A same trend was observed in a 4-week study. Xylem Na+/K+, Na+/Ca2+ and Na+/Mg2+ in salinised plants of the hybrid abruptly increased after 4 days of stress, and then continuously increased to reach the highest level at day 8 or day 15. In comparison, the magnitude of Na+/K+, Na+/Ca2+ and Na+/Mg2+ elevation in the xylem of P. euphratica was much lower during the observation p
文摘土壤干旱是北方地区杨树人工林生长和生态效益的重要限制因子。以群众杨(Populus×popularis‘35-44’)扦插苗为研究材料,采用盆栽称重法控制土壤水分,设置正常供水、中度干旱、重度干旱3种水分梯度。分别于2016年9月与2017年9月测定叶片气体交换参数、各器官干重、根冠比、叶经济性状等指标,研究了持续2年干旱胁迫下群众杨扦插苗光合特性与器官干物质分配的变化规律,分析了土壤干旱程度、树龄在"小老树"形成中的作用过程。2016年与2017年中度、重度干旱胁迫下功能叶净光合速率(P_n)受到非气孔限制,与正常供水相比分别降低了36.08%、56.42%;18.47%、5.13%。第一年干旱胁迫下群众杨气孔导度(G_s)和蒸腾速率(T_r)显著降低;第二年干旱胁迫下G_s与正常供水无显著差异,而T_r显著提高,有利于叶片C、N元素的运输分配进而维持较高的P_n。第一年随干旱胁迫程度加剧,群众杨叶片C/N显著提高,光合产物分配趋向于叶器官。第二年中度干旱胁迫下叶片C/N与正常供水相比无显著差异,各器官干重下降幅度均低于2016年,而根冠比显著增加,表明其光合产物主要用于地下部构建以适应中度干旱环境;持续重度干旱则光合产物向茎中的分配比例提高。干旱胁迫导致群众杨功能叶水分利用效率(WUE,Water use efficiency)与光合氮利用效率(PNUE,Photosynthetic nitrogen use efficiency)显著降低,整株氮利用效率(NUE,Whole plant nitrogen use efficiency)显著提高。严重土壤干旱下叶片耗水增强、PNUE下降以及茎木质部碳投资增加可能是群众杨小老树形成的重要原因。
文摘《中国植物志》和"Flora of China"是目前世界上最大型、记录植物种类最多的植物志,它为有效保护和合理利用我国的植物资源提供了极为重要的基础信息和科学依据。近年来,基于分子系统学研究提出的APG系统被广泛接受,相应方法得到的系统也相继应用于整个维管植物中。以APG系统为代表的维管植物新系统为全面和系统地修订植物志提供了新的系统框架。本文依据最新的分子系统学"线性排列"成果与《中国植物志》和"Flora of China"在科级水平上进行对比,确定了以APG系统为代表的分子系统框架下中国维管植物为309科,其中石松类和蕨类植物38科,裸子植物10科和被子植物261科。尽管中国维管植物不少科的界限发生了较大的变化,其总数却变化不大,在《中国植物志》中为300科,"Flora of China"为309科。此外,还重点介绍了一些主要科的变动情况。
文摘石松类和蕨类植物在秦仁昌(1978)系统、《中国蕨类植物科属志》、《中国植物志》、Christenhusz维管植物线性排列系统中和"Flora of China"的科属组成、数量存在很大差异。秦仁昌(1978)系统收录63科223属,《中国蕨类植物科属志》63科226属,《中国植物志》61科220属、Christenhusz线性排列系统38科163属和"Flora of China"38科177属。本文通过比较石松类和蕨类植物的几个主要分类系统中科属的变动情况,拟为新一代植物志(iFlora)中石松类和蕨类植物的编研提供依据。同时,还指出了几个主要的分类系统中关于中文名、拉丁名以及命名人的不一致和错误,为进一步研究提供检索和鉴定参考。