TURGOR

作品数:10被引量:17H指数:2
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相关领域:生物学更多>>
相关期刊:《Journal of Plant Ecology》《北京林业大学学报》《Journal of Integrative Plant Biology》《Agricultural Sciences》更多>>
相关基金:国家自然科学基金更多>>
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Sucrose-responsive osmoregulation of plant cell size by a long non-coding RNA被引量:1
《Molecular Plant》2024年第11期1719-1732,共14页Jakub Hajný Tereza Trávnícková Martina pundová Michelle Roenspies R.M.Imtiaz Karim Rony Sebastian Sacharowski Michal Krzyszton David Zalabák Christian S.Hardtke Ales Pecinka Holger Puchta Szymon Swiezewski Jaimie M.van Norman Ondrej Novák 
supported by the EMBO long-term fellowship(ALTF 217-2021);by the project JG_2024_003 implemented within the PalackýUniversity Young Researcher Grant;supported by NSF CAREER award 1751385.
In plants,sugars are the key source of energy and metabolic building blocks.The systemic transport of sugars is essential for plant growth and morphogenesis.Plants evolved intricate molecular networks to effectively d...
关键词:lncRNA AUXIN TURGOR sugar transport cell size 
How plants sense and respond to osmotic stress被引量:3
《Journal of Integrative Plant Biology》2024年第3期394-423,共30页Bo Yu Dai-Yin Chao Yang Zhao 
supported by the STI 2030-Major Projects(2023ZD0407102);the Science and Technology Commission of Shanghai Municipality grant 22ZR1481400(to Y.Z.);the Shanghai Center for Plant Stress Biology from the Chinese Academy of Sciences。
Drought is one of the most serious abiotic stresses to land plants.Plants sense and respond to drought stress to survive under water deficiency.Scientists have studied how plants sense drought stress,or osmotic stress...
关键词:cell volume DROUGHT membrane tension osmotic stress TURGOR 
Direct evidence for dynamics of cell heterogeneity in watercored apples: turgor-associated metabolic modifications and within-fruit water potential gradient unveiled by single-cell analyses被引量:1
《Horticulture Research》2021年第1期2516-2530,共15页Hiroshi Wada Keisuke Nakata Hiroshi Nonami Rosa Erra-Balsells Miho Tatsuki Yuto Hatakeyama Fukuyo Tanaka 
This work was in part supported by JSPS KAKENHI Grant Number 20H02982;JSPS Research Fellowship for Young Scientists 19J13330.
Watercore is a physiological disorder in apple(Malus×domestica Borkh.)fruits that appears as water-soaked tissues adjacent to the vascular core,although there is little information on what exactly occurs at cell leve...
关键词:potential GRADIENT ALCOHOLS 
Leaf turgor loss point at full hydration for 41 native and introduced tree and shrub species from Central Europe
《Journal of Plant Ecology》2020年第6期754-756,共3页Norbert Kunert Ivana Tomaskova 
The last years,Central European forests have suffered from drought as a direct consequence of climate change.All these forests have a long management history and it lies in the landowner’s responsibility to replant d...
关键词:osmotic potential drought tolerance leaf hydraulic trait permanent wilting point tree mortality woody species climate change 
Modulation of Guard Cell Turgor and Drought Folerance by a Peroxisomal Acetate-Malate Shunt被引量:7
《Molecular Plant》2018年第10期1278-1291,共14页Huan Dong Ling Bai Yu Zhang Guozeng Zhang Yanqing Mao Lulu Min Fuyou Xiang Dongdong Qian Xiaohong Zhu Chun-Peng Song 
This work was supported by the National Natural Science Foundation of China (31430061) and the Ministry of Agriculture of China (2016ZX08009-003).
In plants, stomatal movements are tightly controlled by changes in cellular turgor pressure. Carbohydrates produced by glycolysis and the tricarboxylic acid cycle play an important role in regulating turgor pressure. ...
关键词:acetate-malate shunt acetyl-CoA synthetase BZU1/ACN1 guard cell turgor pressure 
Ecophysiological responses of two closely related Magnoliaceae genera to seasonal changes in subtropical China被引量:2
《Journal of Plant Ecology》2018年第3期434-444,共11页Hui Liu Liwei Zhu Qiuyuan Xu Marjorie R.Lundgren Keming Yang Ping Zhao Qing Ye 
National Natural Science Foundation of China(31670411).
Aims Plants use a variety of hydraulic strategies to adapt to seasonal drought that differ by species and environmental conditions.The early-diverging Magnoliaceae family includes two closely related genera with contr...
关键词:hydraulic conductivity leaf habit leaf turgor loss point PHYLOGENY PHOTOSYNTHESIS sap flow STOMATA 
Mechano-Stimulation Triggers Turgor Changes Associated with Trap Closure in the Darwin Plant Dionaea muscipula被引量:1
《Molecular Plant》2014年第4期744-746,共3页María Escalante-Pérez Sonke Scherzer;Khaled A.S. Al-Rasheid Christoph Dottinger Erwin Neher Rainer Hedrich 
The Darwin plant, also known as the Venus flytrap, Dionaea muscipula, has fascinated people since Darwin's time. The plant lives in nutrient-poor habitats but has been able to overcome the limitations of its surround...
Response of coleoptiles to water deficit: growth, turgor maintenance and osmotic adjustment in barley plants (Hordeum vulgare L.)
《Agricultural Sciences》2011年第3期159-166,共8页águeda González Luís Ayerbe 
Cereal crop improvement programmes involve the analysis of a great number of lines every year;the availability of a simple, rapid method that would allow the identification of a trait in the early stages of plant deve...
关键词:BARLEY DROUGHT Tolerance Water POTENTIAL OSMOTIC POTENTIAL Grain Yield 
Leaf Turgor Potential, Plant Growth and Photosynthesis in Organically Fertilized Sweet Corn被引量:2
《Pedosphere》2004年第2期165-170,共6页XUHui-Liant WANGXiao-Ju WANGJi-Hua XURong-Ya ZHAOAi-Hua 
A greenhouse pot experiment was conducted using a complete random design with six replications. A pressure-volume curve analysis was employed to study the effects of organic fertilizers on plant water relations in swe...
关键词:leaf photosynthesis osmotic potential sweet corn (Zea mays L.) turgor potential water potential 
Effects of Water Stress on Tissue Elasticity in Nine Tree Species
《北京林业大学学报》1992年第S2期25-32,共8页Li JiyueForest Resources College,Beijing Forestry University 
The experiments were carried out under the conditions of controlled soil water potential in a greenhouse. The effects of water stress on tissue elasticity were studied in 1 - 3 year-old seedlings Pinus tabulaeformis, ...
关键词:WATER stress WATER potential TURGOR elastic MODULUS pressure-volume 
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