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Publikationen

Suchbegriffe: Abiotic stress, . Treffer: 12


** = Publikationen gelistet in SCI/SSCI (veröffentlicht im Web of Science)
* = Publikationen in sonstigen peer-reviewten Journalen (ggf. noch nicht im WoS veröffentlicht)
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2020

** Fumero, MV; Sulyok, M; Ramirez, ML; Leslie, JF; Chulze, SN Effects of water activity and temperature on fusaric and fusarinolic acid production by Fusarium temperatum.

FOOD CONTROL. 2020; 114, 107263 WoS FullText FullText_BOKU

2019

** Savi, T; García González, A; Herrera, JC; Forneck, A; Gas exchange, biomass and non-structural carbohydrates dynamics in vines under combined drought and biotic stress..

BMC Plant Biol. 2019; 19(1):408 WoS PubMed FullText FullText_BOKU

2018

** Ali, MA; Azeem, F; Nawaz, MA; Acet, T; Abbas, A; Imran, QM; Shah, KH; Rehman, HM; Chung, G; Yang, SH; Bohlmann, H Transcription factors WRKY11 and WRKY17 are involved in abiotic stress responses in Arabidopsis.

J PLANT PHYSIOL. 2018; 226: 12-21. WoS PubMed FullText FullText_BOKU

2017

** Savoi, S; Wong, DCJ; Degu, A; Herrera, JC; Bucchetti, B; Peterlunger, E; Fait, A; Mattivi, F; Castellarin, SD Multi-Omics and Integrated Network Analyses Reveal New Insights into the Systems Relationships between Metabolites, Structural Genes, and Transcriptional Regulators in Developing Grape Berries (Vitis vinifera L.) Exposed to Water Deficit.

FRONT PLANT SCI. 2017; 8: WoS PubMed PUBMED Central FullText FullText_BOKU

2016

** Rischbeck, P; Elsayed, S; Mistele, B; Barmeier, G; Heil, K; Schmidhalter, U Data fusion of spectral, thermal and canopy height parameters for improved yield prediction of drought stressed spring barley.

EUR J AGRON. 2016; 78: 44-59. WoS FullText FullText_BOKU

** Shelef, O; Pongrac, P; Pelicon, P; Vavpetic, P; Kelemen, M; Seifan, M; Rewald, B; Rachmilevitch, S Insights into root structure and function of Bassia indica: water redistribution and element dispersion.

FUNCT PLANT BIOL. 2016; 43(7): 620-631. WoS FullText FullText_BOKU

2015

** Sassmann, S; Adlassnig, W; Puschenreiter, M; Cadenas, EJP; Leyvas, M; Lichtscheidl, IK; Lang, I Free metal ion availability is a major factor for tolerance and growth in Physcomitrella patens.

ENVIRON EXP BOT. 2015; 110: 1-10. WoS FullText FullText_BOKU

2014

** Persak, H; Pitzschke, A Dominant Repression by Arabidopsis Transcription Factor MYB44 Causes Oxidative Damage and Hypersensitivity to Abiotic Stress.

INT J MOL SCI. 2014; 15(2): 2517-2537. WoS FullText FullText_BOKU

** Rischbeck, P; Baresel, P; Elsayed, S; Mistele, B; Schmidhalter, U Development of a diurnal dehydration index for spring barley phenotyping.

FUNCT PLANT BIOL. 2014; 41(12): 1249-1260. WoS FullText FullText_BOKU

2013

** Ali, MA; Plattner, S; Radakovic, Z; Wieczorek, K; Elashry, A; Grundler, FM; Ammelburg, M; Siddique, S; Bohlmann, H An Arabidopsis ATPase gene involved in nematode-induced syncytium development and abiotic stress responses..

Plant J. 2013; 74(5):852-866 WoS PubMed PUBMED Central FullText FullText_BOKU

2011

** Farid, A; Pabst, M; Schoberer, J; Altmann, F; Glössl, J; Strasser, R; Arabidopsis thaliana alpha1,2-glucosyltransferase (ALG10) is required for efficient N-glycosylation and leaf growth..

Plant J. 2011; 68(2):314-325 WoS PubMed PUBMED Central FullText FullText_BOKU

2010

** Lang-Mladek, C; Popova, O; Kiok, K; Berlinger, M; Rakic, B; Aufsatz, W; Jonak, C; Hauser, MT; Luschnig, C; Transgenerational inheritance and resetting of stress-induced loss of epigenetic gene silencing in Arabidopsis..

Mol Plant. 2010; 3(3):594-602 WoS PubMed PUBMED Central FullText FullText_BOKU

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