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| 1 | 南海北部和西菲律宾海颗石藻种群特征及差异显示文摘本文对南海北部SCS-N站(116°E,18°30′N,2016年5月)和菲律宾海西部PAC-ST02-34站(129°59.7′E,17°29.7′N,2016年1月)真光层中颗石藻种群结构进行了对比。总体而言,南海北部真光层颗石藻丰度高于西菲律宾海,而物种多样性指数低于西菲律宾海,这与南海北部真光层中营养盐浓度高于同纬度西菲律宾海有关;两个海域颗石藻丰度极大值都出现在次表层,但在南海北部出现的深度要浅于西菲律宾海,这是由于南海北部真光层营养盐、温、盐跃层较西菲律宾海更浅。Florosphera profunda是两个海域颗石藻种群的主要优势种,南海北部次级优势种为Emiliania huxleyi和Gephyrocapsa oceanica,而西菲律宾海次级优势种则为Umbellosphaera irregularis。颗石藻属种的垂直分布构成在两个海域具有相似的特征,其中F.profunda主要分布在真光层中深层(>80m);G.oceanica和Gladiolithus flabellatus也主要出现在真光层中深层;Umbellosphaera irregularis,Syracosphaera pulchra,Helicosphaera carteri和Discosphaera tubifera等则主要分布在100m以浅;E.huxleyi和Calcidiscus leptoporus在南海北部主要分布在100m以浅,但在西菲律宾海则出现在深层(150m附近)。 | 梁文 Priyadarshani Nilanthi 冉莉华 杨志 邹杨浩 陈建芳 | 2017 | 微体古生物学报2017,34,3: | 2 |
| 2 | 松果菊根外植体植株再生能力的评价(英文)显示文摘为了评价松果菊Echinacea purpurea L.根外植体的再生能力,将从松果菊无菌小苗得到的根外植体和叶片以及叶柄外植体接种到含有不同种类和浓度的细胞分裂素和生长素的培养基上,诱导不定芽的再生.结果表明,在多数情况下,根外植体的再生能力显著高于叶片,和叶柄类似.0.3 mg/L的苄基腺嘌呤和0.01 mg/L的萘乙酸是诱导根外植体不定芽再生最合适的激素种类和质量浓度组合.根外植体培养的不定芽再生频率为100%,每个根外植体得到再生芽1.75个.当把这些由根再生的不定芽从母体组织切开并转移培养到含有0.01 mg/L萘乙酸的培养基后,很容易生根并成为完整的植株.可见根是组培快繁松果菊理想的外植体材料. | Dahanayake NILANTHI 赵福成 杨跃生 吴鸿 | 2009 | 华南农业大学学报2009,30,1: | 1 |
| 3 | Effects of Different Natural Organic Additives on in Vitro Shoot Regeneration of Raphanus sativus L. Var, Beeralu显示文摘 | Indeewari Manawadu Nilanthi Dahanayake Senanayakage Gamini Nonis Senanayake | 2014 | Journal of Agricultural Science and Technology(A)2014,4,3: | 1 |
| 4 | Quantitative phase imaging using three-wavelength optical phase unwrapping显示文摘 | Nilanthi Warnasooriya Myung K. Kim | 2009 | Journal of Modern Optics2009,,1: | 1 |
| 5 | Anther culture and haploid plant regeneration in purple coneflower (Echinacea purpurea L.)显示文摘 | Fu-Cheng Zhao Dahanayake Nilanthi Yue-Sheng Yang Hong Wu | 2006 | Plant Cell Tissue and Organ Culture2006,,1: | 1 |
| 6 | Soil-transmitted helminth infections: updating the global picture显示文摘 | Nilanthi R de Silva Simon Brooker Peter J Hotez Antonio Montresor Dirk Engels Lorenzo Savioli | 2003 | Trends in Parasitology2003,,12: | 1 |
| 7 | Soil-transmitted helminth infections: updating the global picture显示文摘 | Nilanthi R de Silva Simon Brooker Peter J Hotez Antonio Montresor Dirk Engels Lorenzo Savioli | 2003 | Trends in Parasitology2003,,12: | 1 |
| 8 | Effects of compost particle size,moisture content and binding agents on co-compost pellet properties显示文摘Composting is one of the sustainable answers for the management of organic municipal waste.Bulky nature of loose compost is one of the main drawbacks in promoting compost in agriculture and pelletization of compost can offset these drawbacks.In this study,the optimum conditions in a die and roller pelletizer to form pellets with desirable properties;bulk density,compressive strength,pellet length and disintegration ability with compost particles of different mesh sizes(2.5,3.5,5 mm),moisture contents(25%,30%,35%,40%,45%),different amounts and types of binding agents(1%,2%,3%by weight of Rice Flour(RF),Lime,Rock Phosphate(RP))were investigated.Pelletizing increased the bulk density of compost.Compost with≤5 mm particles and 25%moisture content resulted pellets with the highest compressive strength and a higher percentage of long pellets.However,the tested properties varied with the type and the amount binding agents used with compost.Disintegration was not observed in pellets free of binding agents during the tested period but binding agents enhanced disintegration.Both machine efficiency and production efficiency decreased with increased moisture in compost and increased with increased compost particle size.However,increased amounts of binding agents in compost reduced the machine efficiency.This work shows that compost pelletizing with and without binding agents,enhanced properties of compost required in transportation,storage and application in agriculture. | Lakshika Hettiarachchi Nilanthi Jayathilake Sudarshana Fernando Sanja Gunawardena | 2019 | International Journal of Agricultural and Biological Engineering2019,12,4: | 1 |
| 9 | Induction of tetraploids from peti- ole explants through colchicine treatments in Echinacea purpurea L 显示文摘 | Nilanthi D Chen XL Zhao FC | 2009 | J Biomed Biotechnol2009,1,: | 1 |
| 10 | Efficient in Vitro Micropropagation System for Radish (Raphanus sativus L.) Var. Beeralu Rabu显示文摘 | Indeewari Manawadu Nilanthi Dahanayake Senanayakage Gamini Nonis Senanayake | 2014 | Journal of Agricultural Science and Technology(B)2014,4,10: | 0 |
| 11 | Effect of Different Potting Mixtures on Growth and Yield of Soybean (Glycine max L.) and Soil Microbial Activity显示文摘 | Nilanthi Dahanayake Kankanam Pathiranage Iroshini Inoka Lanka Aloka Lanka Ranawake | 2014 | Journal of Agricultural Science and Technology(B)2014,4,3: | 0 |