Literature DB >> 18202829

Molecular analysis of physiological responses to changes in nitrogen in a marine macroalga, Porphyra yezoensis (Rhodophyta).

M Kakinuma1, D A Coury, C Nakamoto, K Sakaguchi, H Amano.   

Abstract

The rhodophyte seaweed Porphyra yezoensis, known more commonly world-wide as "nori", is an important commercial crop in Japan. Cultivation of nori in Japan is often affected by outbreaks of "iroochi", a discoloration of the thalli due to a decrease in inorganic nutrients in the culture area that in turn decreases the amount of photosynthetic pigments in the thalli. Treating thalli with inorganic nitrogen can reverse iroochi. In this paper, we report on the characterization of three P. yezoensis genes, a nitrate transporter (PyNRT2) and two urea transporters (PyUT1 and PyUT2), which may be involved in reversing iroochi. The predicted length of the PyNRT2 protein was 479 amino acids (AA), while PyUT1 and PyUT2 were 740 and 680 AA, respectively. PyNRT2 was more similar to NRT2 from a chromophyte than to NRTs from Chlamydomonas and higher plants. The two P. yezoensis UTs had 56% AA identity to each other, and showed the closest relationship to higher plant and yeast DUR3 proteins which formed a subfamily of the sodium-solute symporter protein family. Hydrophobicity plots of the AA sequences showed that the PyNRT2, PyUT1, and PyUT2 included 12, 15, and 16 transmembrane domains, respectively. Southern blot analysis indicated that the P. yezoensis genome has a single NRT2-encoding gene and at least four UT-encoding genes. Expression analysis of PyNRT2 and PyUT genes showed that the messenger RNA level of the PyNRT2 gene reached a maximum after 48 h in the nitrate starvation condition and was then restored to the constitutive level, while expression of the PyUT genes was induced in proportion to treatment times in the nitrate starvation condition. These results suggest that the PyNRT2 and PyUT are responsible for the high-affinity nitrate/urea transport systems that operate under low external nitrate concentrations.

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Year:  2008        PMID: 18202829     DOI: 10.1007/s10565-007-9053-7

Source DB:  PubMed          Journal:  Cell Biol Toxicol        ISSN: 0742-2091            Impact factor:   6.691


  5 in total

1.  Analysis of Porphyra membrane transporters demonstrates gene transfer among photosynthetic eukaryotes and numerous sodium-coupled transport systems.

Authors:  Cheong Xin Chan; Simone Zäuner; Glen Wheeler; Arthur R Grossman; Simon E Prochnik; Nicolas A Blouin; Yunyun Zhuang; Christoph Benning; Gry Mine Berg; Charles Yarish; Renée L Eriksen; Anita S Klein; Senjie Lin; Ira Levine; Susan H Brawley; Debashish Bhattacharya
Journal:  Plant Physiol       Date:  2012-02-14       Impact factor: 8.340

2.  Discolored Red Seaweed Pyropia yezoensis with Low Commercial Value Is a Novel Resource for Production of Agar Polysaccharides.

Authors:  Keiji Sasuga; Tomoya Yamanashi; Shigeru Nakayama; Syuetsu Ono; Koji Mikami
Journal:  Mar Biotechnol (NY)       Date:  2018-04-26       Impact factor: 3.619

3.  Characterization of the global transcriptome for Pyropia haitanensis (Bangiales, Rhodophyta) and development of cSSR markers.

Authors:  Chaotian Xie; Bing Li; Yan Xu; Dehua Ji; Changsheng Chen
Journal:  BMC Genomics       Date:  2013-02-16       Impact factor: 3.969

4.  Ammonium and urea transporter inventory of the selaginella and physcomitrella genomes.

Authors:  Roberto De Michele; Dominique Loqué; Sylvie Lalonde; Wolf B Frommer
Journal:  Front Plant Sci       Date:  2012-04-09       Impact factor: 5.753

5.  Genome-wide transcriptome analyses of silicon metabolism in Phaeodactylum tricornutum reveal the multilevel regulation of silicic acid transporters.

Authors:  Guillaume Sapriel; Michelle Quinet; Marc Heijde; Laurent Jourdren; Véronique Tanty; Guangzuo Luo; Stéphane Le Crom; Pascal Jean Lopez
Journal:  PLoS One       Date:  2009-10-14       Impact factor: 3.240

  5 in total

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