|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | Resistance and susceptibility of alfalfa (Medicago sativa L.) cultivars to the aphid Therioaphis maculata (Homoptera: Aphididae): insect biology and cultivar evaluation显示文摘蚜虫 Therioaphis maculata 的抽象生物学在苜蓿(Medicago sativa L.) 上被学习,包括四抵抗(Mesa-Sirsa, CUF101,贝克和 Lahontan ) 并且二易受影响(弧和 Caliverde ) 苜蓿栽培变种,并且大多数之一收割了巴西栽培变种, Crioula。在控制条件下面,抗生现象(即,减少的长寿,肥沃和蚜虫的增加的死亡) 主要在抵抗苜蓿栽培变种上被观察,除了在 Lahontan 上。Crioula 似乎对蚜虫容忍。现在的数据支持栽培变种的地理限制用法,并且我们作为抗生现象的来源建议贝克和 Mesa-Sirsa,并且提供热带 T 的生物信息。苜蓿上的 maculata 遗传因子型。 | ALEXANDRE DE ALMEIDA E SILVA ELENICE MOURO VARANDA JOSE RICARDO BAROSELA | 2006 | Insect Science2006,13,1: | 5 |
| 2 | Perpendicularly Self-Oriented and Shape-Controlled L10-FePt Nanorods Directly Synthesized by a Temperature-Modulated Process显示文摘合成并且有高强制的地的四角形的包含阶段的 L10-Fe55Pt45 nanorods 自己组装被描述。试验性的过程为同样综合的 nanoparticles 导致了四角形 / 立方的阶段比率结束到 1:1。在这进程使用不同表面活化剂 / 溶剂比例从 nanospheres 允许粒子形态学的控制到 nanowires。有一些 60 的 Monodisperse | Tiago Luis da Silva Laudemir Carlos Varanda | 2011 | Nano Research2011,4,7: | 2 |
| 3 | Impacts of land use conflicts on riverine ecosystems 显示文摘 | Renato F Valle Junior Simone G P Varandas Femando A L Pacheco | 2014 | Land Use Policy2014,43,: | 1 |
| 4 | Mechanical properties of high density polyethylene/carbon nanotube composites显示文摘 | Kanagaraj S Varanda R F Zhil'tsova V T | 2007 | Composites Science and Technologic2007,67,1516: | 1 |
| 5 | Mutagenic activity promoted by amentoflavone and methanolic extract of Byrsonima crassa Niedenzu显示文摘 | Cássia Regina Primila Cardoso Ilce Mara de Syllos Cólus Caroline Cristiane Bernardi Miriam Sannomiya Wagner Vilegas Eliana Aparecida Varanda | 2006 | Toxicology2006,,1: | 1 |
| 6 | Effect of ursolic acid from epicuticular waxes of Jacaranda decurrens on Schizaphis graminum 显示文摘 | Varanda E M Ztlniga G E Salatino A | 1992 | Journal of Natural Products1992,55,6: | 1 |
| 7 | Environmental performance assessment of the melamine-ureaformaldehyde(MUF)resin manufacture:A case study in Brazil显示文摘 | SILVA D A L LAHR F A R VARANDA L D | 2015 | Journal of Cleaner Production2015,96,: | 1 |
| 8 | Glucose and fructose levels on grape skin: Interference in Lobesia botrana behaviour 显示文摘 | VARANDAS S TEIXEIRA M J MARQUES J C | 2004 | Anal Chem Acta2004,513,: | 1 |
| 9 | Magnetic properties of spindle-type iron fine particles obtained from hematite显示文摘 | VARANDA L C JAFELICCI M GOYA G F | 2001 | Journal of Magnetism and Magnetic Materials2001,,226: | 1 |
| 10 | High throughput sequencing unravels tomato-pathogen interactions towards a sustainable plant breeding显示文摘Tomato(Solanum lycopersicum)is one of the most economically important vegetables throughout the world.It is one of the best studied cultivated dicotyledonous plants,often used as a model system for plant research into classical genetics,cytogenetics,molecular genetics,and molecular biology.Tomato plants are affected by different pathogens such as viruses,viroids,fungi,oomycetes,bacteria,and nematodes,that reduce yield and affect product quality.The study of tomato as a plant-pathogen system helps to accelerate the discovery and understanding of the molecular mechanisms underlying disease resistance and offers the opportunity of improving the yield and quality of their edible products.The use of functional genomics has contributed to this purpose through both traditional and recently developed techniques,that allow the identification of plant key functional genes in susceptible and resistant responses,and the understanding of the molecular basis of compatible interactions during pathogen attack.Next-generation sequencing technologies(NGS),which produce massive quantities of sequencing data,have greatly accelerated research in biological sciences and offer great opportunities to better understand the molecular networks of plant–pathogen interactions.In this review,we summarize important research that used high-throughput RNA-seq technology to obtain transcriptome changes in tomato plants in response to a wide range of pathogens such as viruses,fungi,bacteria,oomycetes,and nematodes.These findings will facilitate genetic engineering efforts to incorporate new sources of resistance in tomato for protection against pathogens and are of major importance for sustainable plant-disease management,namely the ones relying on the plant’s innate immune mechanisms in view of plant breeding. | Maria Doroteia Campos Maria do Rosario Felix Mariana Patanita Patrick Materatski Carla Varanda | 2021 | Horticulture Research2021,8,1: | 1 |
| 11 | Effect of ursolic acid from epicuticular waxes of Jacaranda decurrens on Schizaphis graminum显示文摘 | Varanda E M Zūniga G E Salatino A | 1992 | J Nat Prod1992,55,6: | 1 |
| 12 | Contrasting impact of small dams on the macroinvertebrates of two Iberian mountain rivers显示文摘 | Rui Manuel Vitor Cortes Maria Teresa Ferreira Simone Varandas Oliveira Francisco Godinho | 1998 | Hydrobiologia1998,,1: | 1 |
| 13 | Mechanical properties of high density polyethylene/carbon nanotube composites 显示文摘 | Kanagaraj S Varanda R F ZHIL'tsova V T | 2007 | Composites Science and Technology2007,67,1516: | 1 |
| 14 | Evaluating macroinverte- brate biological metrics for ecological assessment of streams in northern Portugal 显示文摘 | Varandas S G Cortes R M V | 2010 | Environmental Monito- ring and Assessment2010,166,14: | 1 |
| 15 | Allosteric Control of Gating Mechanisms Revisited: The Large Conductance Ca 2+ -Activated K + Channel显示文摘 | Rafael A. Rosales Wamberto A. Varanda | 2009 | Biophysical Journal2009,,10: | 1 |
| 16 | Effect of ursolic acid from epicuticular waxes of Jacaranda decurrens on Schizaphis graminum显示文摘 | VARANDA E M ZUNIGA G E SALATINO A | 1992 | Journal of Natural Products1992,55,6: | 1 |
| 17 | Glucose and fructose levels on grape skin: interference in Lobesia botrana behaviour显示文摘 | VARANDAS S TEIXEIRA M J MARQUES J C | 2004 | Anal Chem Acta2004,513,: | 1 |
| 18 | Mena associates withRacl and modulates connexin 43 remodeling in cardiomyocytes 显示文摘 | Ram R Wescott AP Varandas K | 2014 | Am J Physiol Heart Circ Physiol2014,306,1: | 1 |
| 19 | 显示文摘 | Varanda L C Jafelicci M Jr | 2006 | J Am Chem Soc2006,128,11: | 1 |
| 20 | Life cycle analysis of biodiesel production 显示文摘 | Varanda M G Pinto G Martins F | 2011 | Fuel Processing Technology2011,92,5: | 1 |