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Leaf stiffness of two Moraceae species based on leaf tensity determined by compressing different external gripping forces under dehydration stress
Deke Xing;  Xiaole Chen;  Yanyou Wu;  Qian Chen;  Lin Li;  Weiguo Fu;  Yu Shu
2019
Source PublicationJournal of Plant Interactions
Volume14Issue:1Pages:610-616
Abstract

Leaf water status determination based on mechanical and electrophysiological properties helps determine the inherent as well as instantaneous leaf dehydration tolerance synchronously. The leaf water potential (ΨL), physiological capacitance (CP) and gripping force (F) were determined with leaves of Broussonetia papyrifera (L.) Vent. and Morus alba L. Real-time leaf stiffness (LCSrt) and maximum leaf stiffness (LCSmax) were investigated by compressing a leaf with external gripping force. Results indicated that LT displayed good correlation with F. Compared to M. alba, a better instantaneous dehydration tolerance or pressure resistance in B. papyrifera was correlated to its persistent stronger LCSrt or LCSmax, respectively. B. papyrifera showed better flexibility and tolerance to wider range of pressure than M. alba. The higher leaf mechanical strength helped to maintain a higher outward pulling force of cell walls; thus, the subsequent negative pressure effectively inhibited cellular water loss. B. papyrifera exhibited better drought resistance than M. alba.

KeywordLeaf Stiffness Leaf Tensity Pressure Resistance Cellular Water Loss Drought Resistance
Indexed BySCI
Language英语
Document Type期刊论文
Identifierhttp://ir.gyig.ac.cn/handle/42920512-1/10510
Collection环境地球化学国家重点实验室
Affiliation1.Key Laboratory of Modern Agricultural Equipment and Technology, Ministry of Education, Institute of Agricultural Engineering, Jiangsu University, Zhenjiang, People’s Republic of China
2.Research Center for Environmental Bio-Science and Technology, State Key Laboratory of Environmental Geochemistry, Chinese Academy of Sciences, Institute of Geochemistry, Guiyang, People’s Republic of China
Recommended Citation
GB/T 7714
Deke Xing;Xiaole Chen;Yanyou Wu;Qian Chen;Lin Li;Weiguo Fu;Yu Shu. Leaf stiffness of two Moraceae species based on leaf tensity determined by compressing different external gripping forces under dehydration stress[J]. Journal of Plant Interactions,2019,14(1):610-616.
APA Deke Xing;Xiaole Chen;Yanyou Wu;Qian Chen;Lin Li;Weiguo Fu;Yu Shu.(2019).Leaf stiffness of two Moraceae species based on leaf tensity determined by compressing different external gripping forces under dehydration stress.Journal of Plant Interactions,14(1),610-616.
MLA Deke Xing;Xiaole Chen;Yanyou Wu;Qian Chen;Lin Li;Weiguo Fu;Yu Shu."Leaf stiffness of two Moraceae species based on leaf tensity determined by compressing different external gripping forces under dehydration stress".Journal of Plant Interactions 14.1(2019):610-616.
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