Their complementarities are based on differences in capacities to uptake nitrogen and phosphate components from wastewater. Although many physiological studies have been conducted, the molecular mechanisms underlying Cd hyperaccumulation in duckweeds are largely unknown. punctata was transferred from nutrient-rich solution to distilled water and sampled at different time points. Miranda, Ana F.; Kumar, N. R.; Spangenberg, German; Subudhi, Sanjukta; Lal, Banwari; Mouradov, Aidyn. The dry weight following treatment increased by 10% compared to the controls at 240 h. When both sources of N are available, plants prefer to take up NH4+, but will take up NO3- when it is the only N source. You can change the display of the base map and layers by clicking on the layer control box in the upper right-hand corner. The aquatic plants, Azolla filiculoides, and Landoltia punctate, were used as complementing phytoremediators of wastewater containing high levels of phosphate, which simulates the effluents from textile, dyeing, and laundry detergent industries. Results s Duckweed (wild Landoltia punctata) was collected opportunistically from the surface of wild ponds in Huilong Town, Xinjin County, Chengdu, China. of Soil and Water Systems, Twin Falls Research and Extension Center, Univ. Su H, Zhao Y, Jiang J, Lu Q, Li Q, Luo Y, et al. Uniconazole-induced starch accumulation in the bioenergy crop duckweed (Landoltia punctata) I: transcriptome analysis of the effects of uniconazole on chlorophyll and … 2020. Here, pilot-scale comparisons of three duckweed species (Spirodela polyrhiza K1, Lemna minor K2 and Landoltia punctata K3) in monoculture and polyculture were investigated. This plant is easily confused with the native plant, giant duckweed, Spirodela polyrhiza . Flora category. 6H2O]. Plants 9, no. Results. duckweed; hydrogen; phytoremediation; wastewater treatment, Help us to further improve by taking part in this short 5 minute survey, The Influence of Local Habitat and Microclimate on the Levels of Secondary Metabolites in Slovak Bilberry (, Copper Uptake and Accumulation, Ultra-Structural Alteration, and Bast Fibre Yield and Quality of Fibrous Jute (, Fundamental and Applied Research for the Effective Deployment of Phytoremediation. The statements, opinions and data contained in the journal, © 1996-2020 MDPI (Basel, Switzerland) unless otherwise stated. The fresh plants were dried at 60°C with drying oven(DHP9050A, Shanghai, China), crushed into powder with (FS100S-3, Guangzhou, China), and then hydrolyzed with 1% H2SO4. Noxious Weed Information; This plant is listed by the U.S. federal government or a state. Subscribe to receive issue release notifications and newsletters from MDPI journals, You can make submissions to other journals. "Aquatic Plants, Landoltia punctata, and Azolla filiculoides as Bio-Converters of Wastewater to Biofuel." Received: 5 March 2020 / Revised: 26 March 2020 / Accepted: 26 March 2020 / Published: 1 April 2020, (This article belongs to the Special Issue, This is an open access article distributed under the, Note that from the first issue of 2016, MDPI journals use article numbers instead of page numbers. Use of Duckweed (Landoltia punctata) as a Fermentation Substrate for the Production of Higher Alcohols as Biofuels Haifeng Su,† Yun Zhao,† Juan Jiang,† Qiuli Lu,† Qing Li,† Yao Luo,† Hai Zhao,*,‡ and Maolin Wang*,† †Key Laboratory of Bio-resources and Eco-environment of the Ministry of Education, College of Life Sciences, Sichuan University, California county polygons can be turned off and on in the layer control box. Duckweed, a fresh-water aquatic plant, is of interest to the scientific community because of its use in bioremediation, and its potential use as a biofuel. duckweed (Landoltia punctata) ... biofuel as well as for sewage treatment. See further details. Engineering Corynebacterium crenatum to produce higher alcohols for biofuel using hydrolysates of duckweed (Landoltia punctata) as feedstock. 1. Article CAS Google Scholar 2015 Apr 2;8:57. doi: 10.1186/s13068-015-0246-7. The maximum uranium removal for the plant cultivar occurred at pH 4~5 of … 2013 May 8;6(1):72. doi: 10.1186/1754-6834-6 … (Landoltia punctata) under nutrient starvation Xiang Tao1,2†, Yang Fang1†, Yao Xiao1, Yan-ling Jin1, Xin-rong Ma1, Yun Zhao2, Kai-ze He1, Hai Zhao1* and Hai-yan Wang2* Abstract Background: Duckweed can thrive on anthropogenic wastewater and produce tremendous biomass production. Author to whom correspondence should be addressed. Crawford proposed segregating the species to a new genus Landoltia containing just the species L. punctata , on the basis of biochemical and DNA studies. Lead contamination has become a serious issue and approaches are continuously searched for lead removal. 2015 Feb 7;14:16. doi: 10.1186/s12934-015-0199-3. <>stream Mey.) "5rGל�|! Results The fronds of Landoltia punctata were sprayed evenly with 800 mg/L uniconazole. �i�g䥣��\e�;;�-JNAU�+��uΤ��i��j�!���Ѝ�)o�`�i�"Oʨ§q�0���y����Q|(��)6�$��� ����玳�L�tMBSw��Go"��@U� M�Ei�ԓL�)1�\4j�k�ܣv�ySSp�>.���1t�B��l xڭZ[��6�~���K�4[L ����&Yo윬gv�C��S�"R�����5��Ҍw횪 ݍ�w���n,~|-u�D���o"�8Z��£�?>�8,�"�E��E�"���=�㙈U��v�hh�cn�ś�\��y��}zt� ����4QL�0�@���ⷬ�$��螯n���Afr��,V��斘!�d��"ԋ������CW���p�wڝ,d"2�Rھ The aquatic plants, Azolla filiculoides, and Landoltia punctate, were used as complementing phytoremediators of wastewater containing high levels of phosphate, which … of Idaho, 315 Fall Ave. East, Twin Falls, ID, 83303 USA %���� The development of bioethanol can The statements, opinions and data contained in the journals are solely ; Kumar, N.R. Biotechnol Biofuels. 2. This study globally analyzed the response to nutrient starvation in order to investigate the starch accumulation in duckweed (Landoltia punctata).L. Structural class. Miranda AF, Kumar NR, Spangenberg G, Subudhi S, Lal B, Mouradov A. Landoltia punctata is a widely distributed duckweed species with great potential to accumulate enormous amounts of starch for bioethanol production. 2020; 9(4):437. Among the five genera of duckweed, Landoltia punctata has great potential in starch production and heavy metal bio-extraction. Miranda, A.F. �]fBʼn���1lj�����/U^w�s8�*���=�6�7MՕ9���˻�,^E8����� �E�Ri(�,� �����MU9d�����X5�ƴPJ�G��|�U٬^7��9t��֚[����$��Μr�ǎ��auM��h�� bt��M�8^0����+)�R��]y FlKD�H�Q�.������m���~�k����.�02�Nq�4�4+�0������zثp��c�X�@����gǙ���?w��,�"��h� uN��B-V�mӏ��k_�����ks�;�J��P�}��c���9�2Y��C|�?vN����f[�C�A������&�[I
U��٫�>凒q�ͫsx#��"�A��F�Ȧ-�������]s��tl=�.����,���A��c��EƱи�J±�草��K1�rp�p�ș�u�m�j�*���ԅi�����WG���{?���i;���w�c{v��R�v�;�*�ve'��(��p�1c"�B�X�"�&r~�+7[�}_�W�ty�0xuf�i!xzF�қ�����o��ă��j�4RʀA������}���|] Nutrient starvation and light deprivation effects on starch accumulation in Landoltia punctata cultivated on anaerobically digested dairy manure Kevin Kruger Dep. The aquatic plants, Azolla filiculoides, and Landoltia punctate, were used as complementing phytoremediators of wastewater containing high levels of phosphate, which simulates the effluents from textile, dyeing, and laundry detergent industries. The purple-backed duckweed, Landoltia punctata, is rich in starch and flavonoids. D.H. Les & D.J. Abstract. School of Sciences, RMIT University, Bundoora West Campus, Bundoora VIC 3083, Australia, The Energy and Resources Institute, New Delhi 110 003, India, AgriBio, Centre for AgriBioscience, La Trobe University, Bundoora VIC 3083, Australia, School of Applied Systems Biology, La Trobe University, Bundoora VIC 3086, Australia. ; Spangenberg, G.; Subudhi, S.; Lal, B.; Mouradov, A. Landoltia duckweed is smaller than Spirodela polyrhiza , is more shoe-shaped, does not have a red dot on top, usually has only up to 4 roots, and sometimes has a red margin on the underneath of the leaves. To assess the potential of duckweeds as agents for nitrogen removal and biofuel feedstocks, Spirodela polyrhiza, Lemna minor, Lemna gibba, and Landoltia punctata were cultured in effluents of municipal wastewater, swine wastewater, or anaerobic digestion for 4 days. 1. View plants Article Aquatic Plants, Landoltia punctata, and Azolla filiculoides as Bio-Converters of Wastewater to Biofuel Ana F. Miranda 1, N. Ram Kumar 2, German Spangenberg 3,4, Sanjukta Subudhi 2, Banwari Lal 2 and Aidyn Mouradov 1,* 1 School of Sciences, RMIT University, Bundoora West Campus, Bundoora VIC 3083, Australia; [email protected] The 2020-2021 WSSP research project focuses on the DNA sequence analysis of genes from the duckweed plant Landoltia punctat a, and how these genes compare to those found in other species. those of the individual authors and contributors and not of the publisher and the editor(s). Microbial Cell Factories 2015, 14, 16. Here, dried biomasses of Landoltia punctata and Spirodela polyrhiza were utilized as adsorbent for Pb 2+ removal. 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