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6篇 您的检索式:作者名="Senjie Lin"
    题名 作者 年代 出处 被引量
1Cytological and biochemical responses of Dunaliella tertiolecta (Volvocalcs, Chlorophyta) to iron stress 显示文摘LIN Senjie GOBLER C J CARPENTER E J 2001Phycologia2001,40,:1
2Rubisco of Dunaliella tertioleeta is redistributed between the pyrenoid and the stroma as a light/shade response 显示文摘LIN Senjie CARPENTER E J 1997Marine Biology1997,127,:1
3Phytoplankton dynamics in and near the highly eutrophic Pearl River Estuary, South China Sea显示文摘Dajun Qiu Liangmin Huang Jianlin Zhang and Senjie Lin 2010Continental Shelf Research2010,30,2:1
4A Rhizobium bacterium and its population dynamics under different culture conditions of its associated toxic dinoflagellate Gambierdiscus balechii显示文摘Rhizobium bacteria are known as symbionts of legumes for developing nodules on plant roots and fixing N2 for the host plants but unknown for associations with dinoflagellates.Here,we detected,isolated,and characterized a Rhizobium species from the marine toxic dinoflagellate Gambierdiscus culture.Its 16S rRNA gene(rDNA)is 99%identical to that of Rhizobium rosettiformans,and the affiliation is supported by the phylogenetic placement of its cell wall hydrolase-encoding gene(cwh).Using quantitative PCR of 16S rDNA and cwh,we found that the abundance of this bacterium increased during the late exponential growth phase of Gambierdiscus and under nitrogen limitation,suggesting potential physiological interactions between the dinoflagellate and the bacterium.This is the first report of dinoflagellate-associated Rhizobium bacterium,and its prevalence and ecological roles in dinoflagellate-Rhizobium relationships remain to be investigated in the future.Zhen Wu Xiaohong Yang Senjie Lin Wai Hin Lee Paul K.S.Lam 2021Marine Life Science & Technology2021,3,4:0
5Heterologous expression and cell membrane localization of dinoflagellate opsins (rhodopsin proteins) in mammalian cells显示文摘Rhodopsins are now found in all domains of life,and are classified into two large groups:type II,found in animals and type I found in microbes including Bacteria,Archaea,and Eukarya.While type II rhodopsin functions in many photodependent signaling processes including vision,type 1 among others contains rhodopsins that function as a light-driven proton pump to convert light into ATP as in proteobacteria(named proteorhodopsin).Proteorhodopsin homologs have been documented in dinoflagellates,but their subcellular localizations and functions are still poorly understood.Even though sequence analyses suggest that it is a membrane protein,experimental evidence that dinoflagellate rhodopsins are localized on the plasma membrane or endomembranes is still lacking.As no robust dinoflagellate gene transformation tool was available,we used HEK 293T cells to construct a mammalian expression system for two dinoflagellate rhodopsin genes.The success of expressing these genes in the system shows that this mammalian cell type is suitable for expressing dinoflagellate genes.Immunofluorescence of the expressed protein locates these dinoflagellate rhodopsins on the cell membrane.This result indicates that the protein codons and membrane targeting signal of the dinoflagellate genes are compatible with the mammalian cells,and the proteins'subcellular localization is consistent with proton pump rhodopsins.Minglei Ma Xinguo Shi Senjie Lin 2020Marine Life Science & Technology2020,2,3:0
6Development rate of Labidocera euchaeta Giesbrecht in Xiamen Harbor显示文摘-The development rate of Labidocera euchaeta Giesbrecht in the Xiamen Harbor was studied in laboratory. The results showed that the development times of egg and larval stages ( D ) were significantly correlated with temperature ( T ), following the Belehradek function, D = α( T -7. 5)-1.0634. The development time from egg to larval stages and adult, as well as generation time can be predicted from the equation for egg development ( α=411/24) by appropriately multipling the constant (α) with a proportion. The development was not isochronal over the whole larval period. Durations of naupliar stages were short and quasi-isochronal, which favored their non-feeding development. In contrast, durations of copepodid stages (C) were long. CV had the longest duration followed by CI, both of which are considered as the critical stages in the larval development. The acclimation effect of the seasonal temperature on the development rate was also observed.Lin Senjie and Li Song Department of Oceanography, Xiamen University, Xiamen, China 1990Acta Oceanologica Sinica1990,9,3:0
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