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 uBio  Web Results 51 - 60 of about 790

Synonyms:
   Pseudogobius avicennia 
   Vaimosa avicennia 

Broader Terms:
   Perciformes (perch-likes) 
   Pseudogobius (snouted gobies) 
   Vaimosa 
 
 


External Resources:

Common Names: 大眼拟鰕虎鱼, 大眼擬鰕虎魚



51.  Effect of mangrove species on removal of tetrabromobisphenol A from contaminated sediments.LinkIT
Jiang Y, Lu H, Xia K, Wang Q, Yang J, Hong H, Liu J, Yan C
Chemosphere, 2020
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

52.  Oil spill from the Era: Mangroves taking eons to recover.LinkIT
Connolly RM, Connolly FN, Hayes MA
Marine pollution bulletin, 2020
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

53.  Uptake, biotransformation and physiological response of TBBPA in mangrove plants after hydroponics exposure.LinkIT
Jiang Y, Lu H, Wang Y, Hong H, Wang Q, Liu J, Yan C
Marine pollution bulletin, 2020
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

54.  Is the central-marginal hypothesis a general rule? Evidence from three distributions of an expanding mangrove species, Avicennia germinans (L.) L.LinkIT
Kennedy JP, Preziosi RF, Rowntree JK, Feller IC
Molecular ecology, 2020
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

55.  Data on dendrometric parameters, basic wood density, below- and aboveground biomass of tree species from Mangrove, Miombo, Mopane, and Mecrusse woodlands.LinkIT
Magalhães TM, Cossa VN, Mate RS
Data in brief, 2020
http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0

56.  Molecular responses to freshwater limitation in the mangrove tree Avicennia germinans (Acanthaceae).LinkIT
Cruz MV, Mori GM, Oh DH, Dassanayake M, Zucchi MI, Oliveira RS, Souza AP
Molecular ecology Mol Ecol Molecular responses to freshwater limitation in the mangrove tree Avicennia germinans (Acanthaceae). 344-362 10.1111/mec.15330 Environmental variation along the geographical space can shape populations by natural selection. In the context of global warming and changing precipitation regimes, it is crucial to understand the role of environmental heterogeneity in tropical trees adaptation, given their disproportional contribution to water and carbon biogeochemical cycles. Here, we investigated how heterogeneity in freshwater availability along tropical wetlands has influenced molecular variations of the black mangrove (Avicennia germinans). A total of 57 trees were sampled at seven sites differing markedly in precipitation regime and riverine freshwater inputs. Using 2,297 genome-wide single nucleotide polymorphic markers, we found signatures of natural selection by the association between variations in allele frequencies and environmental variables, including the precipitation of the warmest quarter and the annual precipitation. Additionally, we found candidate loci for selection based on statistical deviations from neutral expectations of interpopulation differentiation. Most candidate loci within transcribed sequences were functionally associated with central aspects of drought tolerance or plant response to drought. Moreover, our results suggest the occurrence of the rapid evolution of a population, probably in response to sudden and persistent limitations in plant access to soil water, following a road construction in 1974. Observations supporting rapid evolution included the reduction in tree size and changes in allele frequencies and in transcript expression associated with increased drought tolerance through the accumulation of osmoprotectants and antioxidants, biosynthesis of cuticles, protection against protein degradation, stomatal closure, photorespiration and photosynthesis. We describe a major role of spatial heterogeneity in freshwater availability in the specialization of this typically tropical tree. © 2019 John Wiley & Sons Ltd. Cruz Mariana Vargas MV 0000-0001-8569-2234 Department of Plant Biology, Institute of Biology, University of Campinas (Unicamp), Campinas, Brazil. Mori Gustavo Maruyama GM 0000-0003-2308-2224 Institute of Biosciences, São Paulo State University (Unesp), São Vicente, Brazil. Oh Dong-Ha DH 0000-0003-1526-9814 Department of Biological Sciences, Louisiana State University (LSU), Louisiana, LA, USA. Dassanayake Maheshi M 0000-0003-3123-3731 Department of Biological Sciences, Louisiana State University (LSU), Louisiana, LA, USA. Zucchi Maria Imaculada MI 0000-0002-4863-1843 São Paulo Agency for Agribusiness Technology (APTA), Piracicaba, Brazil. Oliveira Rafael Silva RS 0000-0002-6392-2526 Department of Plant Biology, Institute of Biology, University of Campinas (Unicamp), Campinas, Brazil. Souza Anete Pereira de AP 0000-0003-3831-9829 Department of Plant Biology, Institute of Biology, University of Campinas (Unicamp), Campinas, Brazil. eng Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S. 2019 12 30 England Mol Ecol 9214478 0962-1083 IM Avicennia germinans (Black Mangrove) RNA-Seq drought-tolerance ecological genomics nextRAD tropical tree 2019 03 26 2019 11 27 2019 11 28 2019 12 14 6 0 2019 12 14 6 0 2019 12 14 6 0 ppublish 31834961 10.1111/mec.15330 REFERENCES, 2020</i></font><br><font color=#008000>http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0<br></font></span><br>57.  <a href=http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0 class=title>Production and Characterization of Bioplastic by Polyhydroxybutyrate Accumulating <i>Erythrobacter aquimaris</i> Isolated from Mangrove Rhizosphere.</a><a href=http://ubio.org/tools/linkit.php?map%5B%5D=all&link_type=2&url=http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0><img src=linkit.png border=0 title='LinkIT' alt='LinkIT'></a> <br><span class=j>Mostafa YS, Alrumman SA, Otaif KA, Alamri SA, Mostafa MS, Sahlabji T<br><font color=gray><i>Molecules (Basel, Switzerland), 2020</i></font><br><font color=#008000>http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0<br></font></span><br>58.  <a href=http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0 class=title>Local adaptation of a dominant coastal tree to freshwater availability and solar radiation suggested by genomic and ecophysiological approaches.</a><a href=http://ubio.org/tools/linkit.php?map%5B%5D=all&link_type=2&url=http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0><img src=linkit.png border=0 title='LinkIT' alt='LinkIT'></a> <br><span class=j>Cruz MV, Mori GM, Signori-Müller C, da Silva CC, Oh DH, Dassanayake M, Zucchi MI, Oliveira RS, de Souza AP<br><font color=gray><i>Scientific reports, 2019</i></font><br><font color=#008000>http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0<br></font></span><br>59.  <a href=http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0 class=title>Spatial variation and ecological risk assessment of heavy metals in mangrove sediments across China.</a><a href=http://ubio.org/tools/linkit.php?map%5B%5D=all&link_type=2&url=http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0><img src=linkit.png border=0 title='LinkIT' alt='LinkIT'></a> <br><span class=j>Shi C, Ding H, Zan Q, Li R<br><font color=gray><i>Marine pollution bulletin, 2019</i></font><br><font color=#008000>http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0<br></font></span><br>60.  <a href=http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0 class=title>Transcriptome sequencing and identification of cytochrome P450 monooxygenases involved in the biosynthesis of maslinic acid and corosolic acid in <i>Avicennia marina</i>.</a><a href=http://ubio.org/tools/linkit.php?map%5B%5D=all&link_type=2&url=http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0><img src=linkit.png border=0 title='LinkIT' alt='LinkIT'></a> <br><span class=j>Nakamura M, Linh TM, Lien LQ, Suzuki H, Mai NC, Giang VH, Tamura K, Thanh NV, Suzuki H, Misaki R, Muranaka T, Ban NK, Fujiyama K, Seki H<br><font color=gray><i>Plant biotechnology (Tokyo, Japan), 2018</i></font><br><font color=#008000>http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&db=pubmed&dopt=Abstract&list_uids=0<br></font></span><br><br><br><table cellspacing=0 cellpadding=0 align=center><tr valign=bottom><td align=center><a href=http://ubio.org/portal/index.php?search=Pseudogobius+avicennia&category=l&client=pubmed&startPage=5><img src=p.png border=0></a></td><td align=center><a href=http://ubio.org/portal/index.php?search=Pseudogobius+avicennia&category=l&client=pubmed&startPage=1><img src=o_yellow.png border=0></a></td><td align=center><a href=http://ubio.org/portal/index.php?search=Pseudogobius+avicennia&category=l&client=pubmed&startPage=2><img src=o_yellow.png border=0></a></td><td align=center><a href=http://ubio.org/portal/index.php?search=Pseudogobius+avicennia&category=l&client=pubmed&startPage=3><img src=o_yellow.png border=0></a></td><td align=center><a href=http://ubio.org/portal/index.php?search=Pseudogobius+avicennia&category=l&client=pubmed&startPage=4><img 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