期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
Physiological Response of Halophyte (<i>Suaeda altissima</i>(L.) Pall.) and Glycophyte (<i>Spinacia oleracea</i>L.) to Salinity
1
作者 Nataly R. Meychik Yuliya I. Nikolaeva Igor P. Yermakov 《American Journal of Plant Sciences》 2013年第2期427-435,共9页
We have done a comparative study of ion status, growth and biochemical parameters in shoots and roots of seablite (Suaeda altissima (L.) Pall.) and spinach (Spinacia oleracea L.) grown with different salinity levels i... We have done a comparative study of ion status, growth and biochemical parameters in shoots and roots of seablite (Suaeda altissima (L.) Pall.) and spinach (Spinacia oleracea L.) grown with different salinity levels in the medium (0.5 - 750 mМ). A distinctive feature of the halophyte was a high Na+ content in tissues at its low concentration in the medium (0.5 mM). In these conditions, Na+ accumulation in seablite roots was four-fold higher than in spinach roots, and Na+ content in seablite leaves was almost 20-fold higher than in spinach. Together with an increase in sodium concentration in the medium, K+ content decreased six-fold in seablite leaves, while in spinach it did not decrease so drastically. We can suppose that in the halophyte, some processes occur only in the presence of sodium, and these functions of sodium cannot be fully fulfilled by potassium. Analysis of protein and total nitrogen content in tissues shows that at high salinity, the ability to synthesize non-protein nitrogen-containing compounds increases in the halophyte and decreases in the glycophyte. Data on proline content dynamics show that its increase in tissues of spinach (salinity levels 150 and 250 mМ) and seablite (salinity levels 0.5 and 750 mМ) is an indicator of plant injury. In seablite and spinach, proline is not a major osmoregulator. Its concentration both in roots and leaves was no more than 2.5 μmol/g fresh weight. The data presented in this work concern the accumulation and distribution of Na+, Cl?, K+ and ions, as well as growth and biochemical parameters. Our data show that the development of adaptation reactions in the whole plants in the conditions of high salinity is determined by morphofunctional systems and their interaction. 展开更多
关键词 Suaeda altissima (l.) pall. SPINACIA oleracea l. SAlINITY Ions PRAlINE Nitrogen Protein
下载PDF
中国碱蓬属植物修订 被引量:3
2
作者 邢军武 《海洋与湖沼》 CAS CSCD 北大核心 2018年第6期1375-1379,共5页
本文对《中国植物志》藜科(Chenopodiaceae)碱蓬属(Suaeda Forsk. ex Scop.)长期存在的分类错误进行了纠正。将其中的高碱蓬S. altissima (L.) Pall.合并入碱蓬S. glauca (Bunge) Bunge,纵翅碱蓬S. pterantha (Kar. et Kir.) Bunge合并... 本文对《中国植物志》藜科(Chenopodiaceae)碱蓬属(Suaeda Forsk. ex Scop.)长期存在的分类错误进行了纠正。将其中的高碱蓬S. altissima (L.) Pall.合并入碱蓬S. glauca (Bunge) Bunge,纵翅碱蓬S. pterantha (Kar. et Kir.) Bunge合并入刺毛碱蓬S. acuminata (C.A. Mey.) Moq.,同时增加了垦利碱蓬(新种)S. kenliensis J. W. Xing sp. nov。由此将中国碱蓬属(Suaeda)植物从原来的20种,变更为19种。并重新修订了中国碱蓬属(Suaeda)植物的分种检索表,使中国碱蓬属(Suaeda)植物的系统分类更趋于完善,为《中国植物志》的修订和碱蓬属(Suaeda)植物分类及其深入研究与开发利用提供了依据。 展开更多
关键词 碱蓬属 新种 垦利碱蓬(新种)Suaeda kenliensis J.W.Xing SP.NOV 高碱蓬s.altissima(l.)pall. 碱蓬S.glauca(Bunge)Bunge 纵翅碱蓬S.pterantha(Kar.et Kir.)Bunge 刺毛碱蓬S.acuminata (C.A.Mey.)Moq.
下载PDF
山东碱蓬属两种植物形态解剖学研究 被引量:3
3
作者 孙稚颖 《食品与药品》 CAS 2014年第1期9-12,共4页
目的鉴别比较山东碱蓬及盐地碱蓬的外部形态与其内部解剖构造。方法采用常规显微制片法,在解剖镜与光学显微镜下观察比较碱蓬及盐地碱蓬。结果碱蓬和盐地碱蓬在外部形态、叶表皮微形态、叶横切面、茎横切面解剖构造等方面存在差异。结... 目的鉴别比较山东碱蓬及盐地碱蓬的外部形态与其内部解剖构造。方法采用常规显微制片法,在解剖镜与光学显微镜下观察比较碱蓬及盐地碱蓬。结果碱蓬和盐地碱蓬在外部形态、叶表皮微形态、叶横切面、茎横切面解剖构造等方面存在差异。结论本研究为碱蓬和盐地碱蓬的鉴别及开发利用提供了参考。 展开更多
关键词 碱蓬 盐地碱蓬 形态 解剖 Suaeda glauca (Bge ) Bge S SAlSA (l ) pall
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部