科学研究

论文论著



2024年

1. Yang LQ,  He XT, Ru SG, Zhang YY*.  Herbicide leakage into seawater impacts primary productivity and zooplankton globally. Nature Communications, 2024. 15:1783.


2. Zhao HS, Zhang ZH*, Nair S, Li HM, He C, Shi Q, Zheng Q, Cai RH, Luo GM, Xie SC, Jiao NZ, Zhang YY*, Overlooked vital role of persistent algae-bacteria interaction in ocean recalcitrant carbon sequestration and its response to ocean warming, Global Change Biology, 2024. DOI:10.1111/gcb.17570


3. Zhao JL, Nair S, Zhang ZH, Wang ZM, Jiao NZ, Zhang YY*. Macroalgal virosphere assists with host-microbiome equilibrium regulation and affects prokaryotes in surrounding marine environments.  The ISME Journal, 2024. 18(1), wrae083.


4. Zhang YY*, Nair S*,   Zhang ZH, Zhao JL, Zhao HS, Lu LF, Chang LR, Jiao NZ.  Adverse environmental perturbations may threaten kelp farming sustainability by exacerbating Enterobacterales diseases.  Environmental Science & Technology, 2024. DOI:10.1021/acs.est.3c09921


5. Gao XY, Xiao YH, Wang ZW, Zhao HS, Yue YF, Nair S, Zhang ZH*, Zhang YY*. Adaptive traits of Planctomycetota bacteria to thrive in macroalgal habitats and establish mutually beneficial relationship with macroalgae. Limnology and Oceanography Letters, 2024. DOI:10.1002/lol2.10424


6. Wang SD, Zhang ZH, Yang KG, Zhao JL, Wang WJ, Wang ZT, Liang Z, Zhang YY*, Zhang YK, Liu JH*, Zhang LH*. SMMP: A deep-coverage marine metaproteome method for microbial community analysis throughout the water column using 1 L of seawater. Analytical Chemistry, 2024.96 (29), 12030-12039


7. Zhang ZH, Jiao NZ, Zhang YY*. Global Ocean Microbiome Catalogue: a gateway to unlock marine microbial resources and ecosystem functions. Innovation Life, 2024.2(4): 100099 


8. Nair S, Zhang ZH, Wang XJ, Zhang B, Jiao NZ, Zhang YY*. Engineering microbiomes to enhance macroalgal health, biomass yield, and carbon sequestration. Green Carbon, 2024.


9. Li HM, Feng XT, Xiong TQ, Zhang ZH, Huang SR, Zhang YY*. Herbivore grazing enhances macroalgal organic carbon release and althers their carbon sequestration fate in the ocean.  Marine Environmental Research, 2024


2023年

1. Zhang ZH, Li DH, Xie RZ, Guo RY, Nair S, Han H, Zhang GJ, Zhao Q, Zhang LH, Jiao NZ, Zhang YY*.  Plastoquinone synthesis inhibition by tetrabromo biphenydiol as a widespread algicidal mechanism of marine bacteria. The ISME Journal, 2023. 17(11):1979-1992


2. Li HM, Feng XT, Xiong TQ, Shao W, Wu WC, Zhang YY*.  Particulate organic carbon released during macroalgal growth has significant carbon sequestration potential in the ocean.   Environmental Science & Technology, 2023.57(48):19723-19731


3. Xiong TQ, Li HM, Yue YF, Hu YB, Zhai WD, Xue L, Jiao NZ, Zhang YY*.  Legacy effects of late macroalgal blooms on dissolved inorganic carbon pool through alkalinity enhancement in coastal ocean. Environmental Science & Technology, 2023. 57:2186-2196


4. Li HM, Feng XT, Xiong TQ, He C, Wu WC, Shi Q, Jiao NZ, Zhang YY*. Green tides significantly alter the molecular composition and properties of coastal DOC and perfom dissolved carbon sequestration. Environmental Science & Technology, 2023. 57:770-779


5. Xiong TQ, Li HM, Hu YB, Zhai WD, Zhang Z, Liu Y, Zhang JH, Lu LF, Chang LR, Xue L, Wei QS, Jiao NZ, Zhang YY*. Seaweed farming envrionments do not always function as CO2 sink under synergistic influence of macroalgae and microorganisms.  Agriculture, Ecosystems and Environment, 2023. 361(28):108824


6. Zhang YY*, Liu D, Jiao NZ*. Tapping carbon sequestration potential of blooming macroalgae to mitigate climate change. Ocean-Land-Atmosphere Research , 2023. 2, 0033.  DOI:10.34133/olar.0033


2022年

1.  Nair S, Zhang ZH, Li HM, Zhao HS, Shen H, Gao SJ, Jiao NZ, Zhang YY*. Inherent tendency of Synechocccus and heterotrophic bacteria for mutualism on long-term coexistence despite environmental interference. Science Advances, 2022. 8, eabf4792


Li HM, Zhang ZH, Xiong TQ, Tang KX, He C, Shi Q, Jiao NZ, Zhang YY*. Carbon sequestration in the form of recalcitrant DOC in seaweed (kelp) farming environment. Environmental Science & Technology, 2022. 56(12), 9112-9122


3. Nair S, Li CC, Mou SL, Zhang ZH*, Zhang YY*. A novel phage indirectly regulates diatom growth by infecting diatom-associated biofilm-forming bacterium.  Applied and Environmental Microbiology, 2022.88(5), e02138-21


4.  Li CC, Shi TM, Sun YC, Zhang YY*. A novel method to create efficient phage cocktails via use of phage-resistant bacteria . Applied and Environmental Microbiology, 2022. 88(6), e02323-21


5.  Mou SL, Zhang ZH, Zhao HS, Nair S, Li YH, Xu KD, Tian JW, Zhang YY*. A dark-tolerant diatom (Chaetoceros) cultured from deep sea. Journal of Phycology, 2022.58(2), 208-218


6.  Zhao JL, Wang ZM, Li CC, Shi TM, Liang YT, Jiao NZ, Zhang YY*. Significant differences in planktonic virus communities between 'cellular fraction' (0.22~3.0 µm) and 'viral fraction' (< 0.22 μm) in the ocean. Microbial Ecology, 2023. 86(2):825-842


7. Zhang ZH, Zhao HS, Mou SL, Nair S, Zhao JL, Jiao NZ, Zhang YY*. Phage infection benefits marine diatome Phaeodactylum tricomutum by regulating the associated bacterial community. Microbial Ecology, 2023. 86(1):144-153


8. Feng XT, Li HM, Zhang ZH, Xiong TQ, Shi XY, He C, Shi Q, Jiao NZ, Zhang YY*. Microbial-mediated contribution of kelp detritus to different forms of oceani carbon sequestration. Ecological Indicators, 2022, 142, 109186


9. Zhao HS, Zhang ZH, Nair S, Zhao JL, Mou SL, Xu KD, Zhang YY*. Vertically exported phytoplankton (<20 um) and their correlation network with bacterioplankton along a deep-sea seamount. Frontiers in Marine Science, 2022, 9, 862494


10. Liu Y, Zhang JH, Wu WG, ZhongY, Li HM, Wang XM, Yang J, Zhang YY. Effects of sheillfish and macro-algae IMTA in North China on the environment, inorganic carbon system, organic carbon system, and sea-air co2 fluxes. Frontiers in Marine Science, 2022, 9, 864306



2021年

1.   Zhang ZH#, Nair S#, Tang LL, Zhao HS, Hu ZZ, Chen MM, Zhang Y, Kao SJ, Jiao NZ, Zhang YY*. Long-term survival of Synechococcus and heterotrophic bacteria without external nutrient supply after changes in their relationship from antagonism to mutualism. mBio, 2021. 12(4),e01614-21


2.  Yang LQ, Mu SL, Li HM, Zhang ZH, Jiao NZ, Zhang YY*. Terrestrial input of herbicides has significant impacts on phyto- and bacterioplankton communities in coastal waters. Limnology and Oceanography, 2021, 999(11):1-18


3.  Zhao JL, Jing HM, Wang ZM, Wang L, Jian HH, Zhang R, Xiao X, Chen F, Jiao NZ, Zhang YY*. Novel viral communities potentially assisting in carbon, nitrogen, and sulfur metabolism in the upper slope sediments of Mariana Trech. mSystems, 2021. DOI: 10.1128/msystems.01358-21


4. Wang L#, Zhao JL#, Wang ZM, Li N, Song JM, Zhang R, Jiao NZ, Zhang YY*. phoH-carrying virus communities responded to multiple factors and their correlation network with prokaryotes in sediments along Bohai Sea, Yellow Sea, and East China Sea in China. Science of the Total Environment, 2021, DOI: 10.1016/j.scitotenv.2021.152477


2020年

1.  Chen J, Li HM, Zhang ZZ, He C, Shi Q, Jiao NZ, Zhang YY. DOC dynamics and bacterial community succession during long-term degradation of Ulva prolifera and their implications for the legacy effect of green tides on refractory DOC pool in seawater. Water Research, 2020, 116268.


2. Zhang ZH, Tang LL, Liang YT, Li G, Li HM, Rivkin R, Jiao NZ, Zhang YY. The relationship between two Synechococcus strains and heterotrophic bacterial communities and its associated carbon flow.Journal of Applied Phycology, 2020, doi:10.1007/s10811-020-02343-6.


3. Li CC, Wang ZM, Zhao JL, Wang L, Xie GS, Huang J, Zhang YY. A novel vibriophage vB_VcaS_HC containing lysogeny-related gene has strong lytic ability against pathogenic bacteria. Virologica Sinica, 2020.


4. Yang LQ, Zhang YY.  Effects of atrazine and its two major derivatives on the photosynthetic physiology and carbon sequestration potential of a marine diatom. Ecotoxicology and Environmental Safety. 2020, DOI.org/10.1016/j.ecoenv.2020.111359.


5. Fan W, Zhang ZJ, Yao ZZ, Xiao CB, Zhang Y, Zhang YY, Liu JH, Di YA, Chen Y, Pan YW.  A sea trial of enhancing carbon removal from Chinese coastal waters by stimulating seaweed cultivation through artificial upwelling. Applied Ocean Research, 2020, 101:102260.


6. Yao ZZ, Fan W, Xiao CB, Lin TC, Zhang Y, Zhang YY, Liu JH, Zhang ZJ, Pan YW, Chen Y.  Numerical Studies on the Suitable Position of Artificial Upwelling in a Semi-Enclosed Bay. Water, 2020, 12(1), 177.


      2019年

1. Zhang YY, He PM, Li HM, Li G, Liu JH, Jiao FL, Zhang JH, Huo YZ, Shi XY, Su RG, Ye NH, Liu DY, Yu RC, Wang ZL, Zhou MJ, Jiao NZ. Ulva prolifera green tide outbreaks and their environmental impact in the Yellow Sea, China. National Science Review, 2019, 6(4): 825-838. 


2. Yang LQ, Li HM, Zhang YY, Jiao NZ. Environmental risk assessment of triazine herbicides in the Bohai Sea and the Yellow Sea and their toxicity to phytoplankton at environmental concentrations. Environment International, 2019, 133: 105175.

 

3. Wang ZM, Zhao JL, Wang L, Li CC, Liu JH, Zhang LH, Zhang YY. A novel benthic phage infectiing Shewanella with strong replication ability. Viruses, 2019, 11,1081.

 

4. Liang YT, Zhang YY, Zhou C, Li HM, Kang XM, Wang L, Song JM, Jiao NZ. Cumulative impact of long-term intensive mariculture on total and active bacterial communities in the core sediments of the Ailian Bay, North China. 2019, Science of The Total Environment, 2019, 691: 1212-1224.

 

5. Liang YT, Wang L, Wang ZM, Zhao JL, Yang QW, Wang M, Yang KG, Zhang LH, Jiao NZ and Zhang YY. Metagenomic Analysis of the Diversity of DNA Viruses in the Surface and Deep Sea of the South China Sea. Frontiers in Microbiology, 2019, 10: 1951.

 

6. Li HM, Zhang YY, Chen J, Zheng X, Liu F, Jiao NZ. Nitrogen uptake and assimilation preferences of the main green tide alga Ulva prolifera in the Yellow Sea, China. Journal of Applied Phycology, 2019, 31(1):625-635.

 

7. Wang ZM, Zhang ZH, Hu ZZ, Zhao JL, Zhao DX, Zhang YY. Alginatibacterium sediminis gen. nov., sp. nov., a novel marine gammaproteobacterium isolated from coastal sediment. International Journal of Systematic and Evolutionary Microbiology, 2019, 69(2): 511-516.

 

8. Yang LQ, Tang LL, Li HM, Wang L, Zhang YY, Unique Microbial Communities Inhabiting Underground Seawater in an Intertidal Area Utilized for Industrialized Aquaculture, as Compared with the Coastal Water. Geomicrobiology Journal, 2019: 1-9.


 

2018年

1. Mou SL, Li G, Li HM, Li FZ, Shao ZS, Li JS, Qu CF, Zhang YY. Differential physiological responses of the coastal cyanobacterium Synechococcus sp. PCC7002 to elevated pCO2 at lag, exponential, and stationary growth phases. Science China Earth Sciences, 2018, 61(10): 1397-1405.

 

2. Chi XQ, Wang L, Guo R, Zhao D, Li J, Zhang Y, Jiao NZ. RuBisCO large-subunit gene primers for assessing the CO2-assimilating planktonic community structure in Jiaozhou Bay, China. FEMS Microbiology Letters, 2018, 365(14): fny140.

 

3. Li HM, Zhang YY, Liang YT, Chen J, Zhu YC, Zhao YT, Jiao NZ. Impacts of maricultural activities on characteristics of dissolved organic carbon and nutrients in a typical raft-culture area of the Yellow Sea, North China. Marine Pollution Bulletin, 2018, 137, 456-464

 

4. Guo RY, Liang YT, Xin Y, Wang L, Mou SL, Cao CJ, Xie RZ, Zhang CL, Tian JW, Zhang YY. Insight into the Pico- and Nano-phytoplankton communities in the deepest biosphere, the Mariana Trench. Frontiers in Microbiology, 2018, 9: 2289.

 

5. Yang LQ, Li XY, Li X, Su ZC, Zhang CG, Zhang HW. Catabolic profiles dynamics during the bioremediation process of chlorimuron-ethyl contaminated soil by methanolivorans CHL1. Ecotoxicology and Environmental Safety, 2018, 155, 43-49.

 

6. Jiao NZ, Liang YT, Zhang YY et al. Carbon pools and fluxes in the China Seas and adjacent oceans. Science China Earth Sciences, 2018, 61(11):1535-1563.

 

7. Wang ZM, Zhang ZH, Li CC, Zhang MQ, Zhao DX, Li J, Zhang YY. Algihabitans albus gen. nov., sp. nov., isolated from a culture of the green alga Ulva prolifera. International Journal of Systematic and Evolutionary Microbiology, 2019, 69(3): 828-832.

 

8. 焦念志,梁彦韬,张永雨,刘纪化等, 中国海及邻近区域碳库与通量综合分析. 中国科学: 地球科学, 2018,48(11):1393-1421.

 

9. 牟善莉, 李刚, 李鸿妹, 李法中, 邵智生, 李劲松, 曲长凤, 张永雨. 2018. 近海聚球藻Synechococcus PCC7002在不同生长期对环境CO2浓度升高的生理响应. 中国科学: 地球科学, 2018, 48(12):1620-1628.

 

10. 张增虎, 唐丽丽, 张永雨. 海洋中藻菌相互关系及其生态功能.微生物学通报, 2018, 45(9): 1-11.

 

2017年

1. Liang YT, Zhang YY*, Wang NN, Luo TW, Zhang Y, Richard BR, Estimating Primary Production of Picophytoplankton Using the Carbon-Based Ocean Productivity Model: A Preliminary Study. Frontiers in Microbiology, 2017, 8:1926.

 

2. Liang YT, Zhang YY*, Zhang Y, Luo TW, Rivkin R, Jiao NZ*. Distributions and relationships of virio-and pico-plankton in the epi-, meso- and bathypelagic zones of the Western Pacific Ocean. FEMS Microbiology Ecology, 2017, 93: fiw238.

 

3. Li HM, Zhang YY*, Tang HJ, Shi XY*., Rivkin R, Legendre L. Spatiotemporal variations of inorganic nutrients along the Jiangsu coast, China, and the occurrence of macroalgal blooms (green tides) in the southern Yellow Sea. Harmful Algae, 2017, 63, 164-72.

 

4. Li HM, Li XM, Li Q, Liu Y, Song JD, Zhang YY*. Environmental response to long-term mariculture activities in the Weihai coastal area, China. Science of the Total Envionment, 2017, 601, 22-31.

 

5. Mou SL, Zhang YY*, Li G, Li HM, Liang YT, Tang LL, Tao JC, Xu JJ, Li J, Zhang CL, Jiao NZ. Effects of elevated CO2 and nitrogen supply on the growth and photosynthetic physiology of a marine cyanobacterium, Synechococcus sp. PCC7002. Journal of Applied Phycology, 2017, 29(4):1755-1763.

 

6. Zhang YY*, Zhang JH, Liang YT, Li HM, Li G, et al. Carbon sequestration processes and mechanisms in coastal mariculture environments in China. Science China-Earth Sciences, 2017 60(12): 2097-2107.

 

7. Zhang Y, Zhao MX, Cui Q, Fan W, Qi JG, Chen Y, Zhang YY, et al. Processes of coastal ecosystem carbon sequestration and approaches for increasing carbon sink. Science China Earth Science, 60(5): 809-820.

 

8. Liu ZY, Yao XQ, Zhang Q, Liu Z, Wang ZJ, Zhang YY, Li FL. Modulation of the Acetone/Butanol Ratio during Fermentation of Corn Stover-derived Hydrolysate by Clostridium beijerinckii NCIMB 8052. Applied and Environmental Microbiology, 2017, 83(7): e03386-16.

 


 

 



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