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    题名 作者 年代 出处 被引量
1Phytodesalination of a salt-affected soil with the halophyte Sesuvium portulacastrum L. to arrange in advance the requirements for the successful growth of a glycophytic crop显示文摘Mokded Rabhi Siwar Ferchichi Jihène Jouini Mohamed Hédi Hamrouni Hans-Werner Koyro Annamaria Ranieri Chedly Abdelly Abderrazak Smaoui 2010Bioresource Technology2010,,17:1
2Effectiveness of compost use in salt-affected soil显示文摘Abdelbasset Lakhdar Mokded Rabhi Tahar Ghnaya 2009Journal ??of Hazardous Materials2009,171,123:1
3Blunt left diaphragmatic rupture 显示文摘Daldoul S Moussi A Mokded N 2012Tunis Med2012,90,3:1
4Blunt left diaphragmaticrupture显示文摘Daldoul S Moussi A Mokded N 2012Tunis Med2012,90,3:1
5Effectiveness of compost use in salt-affected soil显示文摘Abdelbasset Lakhdar Mokded Rabhi Tahar Ghnaya 2009Journal of Hazardous Materials2009,171,123:1
6Phytodesalination of a salt-affected soil with the halophyte Sesuvium portulacastrum L to arrange in advancethe requirements for the successful growth of a glycophytic crop显示文摘Mokded R Siwar F Jihene J 2010Bioresource Technology2010,101,:1
7Optimization of salt concentrations for a higher carotenoid pro- duction in Dunaliella salina ( chlorophyceae )显示文摘Farhat Nejia Rabhi Mokded Falleh Hanen 2011Journal of Phycology2011,47,5:1
8Ecophysiological aspects and photosynthetic pathways in 105 plants species in saline and arid environments of Tunisia显示文摘In Tunisian arid regions, plant life forms, ecotypes, physiological types and photosynthetic pathways(C3, C4or CAM) remain unclear. Understanding the characters of these plant species could be important for land restoration. A literature survey was conducted for 105 plants species in arid regions of Tunisia. These plant species belong to several ecotypes: halophytes, xerophytes, gypsophytes, psamophytes, xero-halophytes, gypso-halophytes, psamo-halophytes, psamo-xerophytes, xero-gypsophytes and hygro-halophytes. The variation of photosynthetic pathway types in the 105 studied species shows that 56.2% were C3, 41.0% were C4, 1.9% were CAM and 1.0% were C3-CAM. The C3 pathway was more abundant in the halophytes, whereas the C4 one was more common in the xerophytes, gypsophytes, gypso-halophytes and psamo-halophytes. The ratio of C3 to C4 species(C3/C4 ratio) was 0.2 in the psamo-halophytes, 0.8 in the gypso-halophytes, 1.1 in the xerophytes, 1.6 in the xero-halophytes, 1.8 in the hygrohalophytes, 2.0 in the psamophytes and 3.8 in the halophytes. The annuals were mainly C3 plants whereas most of perennials were C4 ones. The C3/C4ratio was 1.3 in succulent species and 1.4 in non-succulent species. Thus, succulence seems not to affect the distribution of C3 and C4 pathways within the studied plants. This investigation shows high percentages of C4 plants occurred in Tunisian arid regions. However, there were significant differences in their abundance among ecotypes. Basing on C3/C4 ratio, we can find that the abundance of the C4 pathway was in the following order: psamo-halophytes, gypso-halophytes, xerophytes, xero-halophytes, hygro-halophytes, psamophytes and halophytes. In Tunisian arid regions, C4 species were most abundant in xerophytes and less abundant in halophytes. In the Chenopodiaceae the number of C3 plants was 13 and the number of C4 species was 20 and in the Poaceae the number of C3 was 23 and the number of C4 was 19 species. Thus, the most C4 proportion was in the Chenopodiaceae and Poaceae species. This confirms the fact that the Chenopodiaceae and the Poaceae were the leading families that tolerate salinity and aridity.Abdallah ATIA Mokded RABHI Ahmed DEBEZ Chedly ABDELLY Houda GOUIA Chiraz Chaffei HAOUARI Abderrazak SMAOUI 2014Journal of Arid Land2014,6,6:0
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