Register      Login
Functional Plant Biology Functional Plant Biology Society
Plant function and evolutionary biology

Articles citing this paper

Kinetic response of photosystem II photochemistry in the cyanobacterium Spirulina platensis to high salinity is characterized by two distinct phases

Congming Lu, Giuseppe Torzillo and Avigad Vonshak
26(3) pp.283 - 292


24 articles found in Crossref database.

Effects of salinity stress on photosystem II function in cyanobacterial Spirulina platensis cells
Lu Congming, Vonshak Avigad
Physiologia Plantarum. 2002 114(3). p.405
Effects of heat stress on PSII photochemistry in a cyanobacterium Spirulina platensis
Zhao Binbin, Wang Jia, Gong Hongmei, Wen Xiaogang, Ren Haiyun, Lu Congming
Plant Science. 2008 175(4). p.556
Inhibition of the water splitting system by sodium chloride stress in the green alga Chlorella vulgari
EL-Sheekh Mostafa M.
Brazilian Journal of Plant Physiology. 2004 16(1). p.25
Photochemical properties in flag leaves of a super-high-yielding hybrid rice and a traditional hybrid rice (Oryza sativa L.) probed by chlorophyll a fluorescence transient
Zhang Meiping, Shan YongJie, Kochian Leon, Strasser Reto J., Chen GuoXiang
Photosynthesis Research. 2015 126(2-3). p.275
Heat stress induces an inhibition of excitation energy transfer from phycobilisomes to photosystem II but not to photosystem I in a cyanobacterium Spirulina platensis
Wen Xiaogang, Gong Hongmei, Lu Congming
Plant Physiology and Biochemistry. 2005 43(4). p.389
Modeling and Optimizing the Effect of Light Color, Sodium Chloride and Glucose Concentration on Biomass Production and the Quality of Arthrospira platensis Using Response Surface Methodology (RSM)
Nosratimovafagh Ahmad, Fereidouni Abolghasem Esmaeili, Krujatz Felix
Life. 2022 12(3). p.371
Handbook of Microalgal Culture (2003)
Vonshak Avigad, Torzillo Giuseppe
Characterization of photosystem II in salt-stressed cyanobacterial Spirulina platensis cells
Gong Hongmei, Tang Yunlai, Wang Jia, Wen Xiaogang, Zhang Lixin, Lu Congming
Biochimica et Biophysica Acta (BBA) - Bioenergetics. 2008 1777(6). p.488
Physiological changes induced by sodium chloride stress in Aphanizomenon gracile, Cylindrospermopsis raciborskii and Dolichospermum sp.
Houliez Emilie, Briand Enora, Malo Florent, Rovillon Georges-Augustin, Hervé Fabienne, Robert Elise, Marchand Laetitia, Zykwinska Agata, Caruana Amandine M.N.
Harmful Algae. 2021 103 p.102028
Improvement of the growth of Arthrospira (Spirulina) platensis from Toliara (Madagascar): Effect of agitation, salinity and CO2 addition
Ravelonandro Pierre H., Ratianarivo Dominique H., Joannis-Cassan Claire, Isambert Arsène, Raherimandimby Marson
Food and Bioproducts Processing. 2011 89(3). p.209
CO2 Biofixation by Microalgae (2014)
High value pigment production from Arthrospira (Spirulina) platensis cultured in seawater
Mary Leema J.T., Kirubagaran R., Vinithkumar N.V., Dheenan P.S., Karthikayulu S.
Bioresource Technology. 2010 101(23). p.9221
Handbook of Microalgal Culture (2013)
Torzillo Giuseppe, Vonshak Avigad
Ecology of Cyanobacteria II (2012)
Sili Claudio, Torzillo Giuseppe, Vonshak Avigad
Effects of salt stress on basic processes of photosynthesis
Sudhir P., Murthy S.D.S.
Photosynthetica. 2004 42(4). p.481
Salt stress induces a decrease in excitation energy transfer from phycobilisomes to photosystem II but an increase to photosystem I in the cyanobacterium Spirulina platensis
Zhang Tao, Gong Hongmei, Wen Xiaogang, Lu Congming
Journal of Plant Physiology. 2010 167(12). p.951
PAM fluorometry as a tool to assess microalgal nutrient stress and monitor cellular neutral lipids
White S., Anandraj A., Bux F.
Bioresource Technology. 2011 102(2). p.1675
Growth factors arrangement enhances Thermosynechococcus sp. CL-1 carotenoid productivity during CO2 fixation
Li Tzy Ying, Narindri Rara Winayu Birgitta, Hsueh Hsin Ta, Chu Hsin
Food and Bioproducts Processing. 2020 124 p.258
ACCLIMATION TO LOW TEMPERATURE OF TWO ARTHROSPIRA PLATENSIS (CYANOBACTERIA) STRAINS INVOLVES DOWN‐REGULATION OF PSII AND IMPROVED RESISTANCE TO PHOTOINHIBITION1
Vonshak Avigad, Novoplansky Nurit
Journal of Phycology. 2008 44(4). p.1071
Phycobiliproteins: Recent Developments and Future Applications (2017)
Kannaujiya Vinod K., Sundaram Shanthy, Sinha Rajeshwar P.
Non-Invasive Rapid Harvest Time Determination of Oil-Producing Microalgae Cultivations for Biodiesel Production by Using Chlorophyll Fluorescence
Qiao Yaqin, Rong Junfeng, Chen Hui, He Chenliu, Wang Qiang
Frontiers in Energy Research. 2015 3
Frontier Discoveries and Innovations in Interdisciplinary Microbiology (2016)
Chakdar Hillol, Pabbi Sunil
Treatment of real aquaculture wastewater from a fishery utilizing phytoremediation with microalgae
Liu Yang, Lv Junping, Feng Jia, Liu Qi, Nan Fangru, Xie Shulian
Journal of Chemical Technology & Biotechnology. 2019 94(3). p.900
Melting out of sea ice causes greater photosynthetic stress in algae than freezing in1
Ralph Peter J., Ryan Ken G., Martin Andrew, Fenton Glenn
Journal of Phycology. 2007 43(5). p.948

Committee on Publication Ethics


Abstract Export Citation Get Permission