维普中文期刊产品整合服务
6篇 您的检索式:作者名="REYNOLDS Alex"
    题名 作者 年代 出处 被引量
1Foxp3 Exploits a Pre-Existent Enhancer Landscape for Regulatory T Cell Lineage Specification显示文摘Robert M. Samstein Aaron Arvey Steven Z. Josefowicz Xiao Peng Alex Reynolds Richard Sandstrom Shane Neph Peter Sabo Jeong M. Kim Will Liao Ming O. Li Christina Leslie John A. Stamatoyannopoulos Alexander Y. Rudensky 2012Cell2012,,1:1
2A Phase I/II Study of Erlotinib in Combination with the Anti-Insulin-Like Growth Factor-1 Receptor Monoclonal Antibody IMC-A12 (Cixutumumab) in Patients with Advanced Non-small Cell Lung Cancer显示文摘Andrew Weickhardt Robert Doebele Ana Oton Janice Lettieri DeLee Maxson Michele Reynolds Amy Brown Mary K. Jackson Grace Dy Araba Adjei Gerald Fetterly Xian Lu Wilbur Franklin Marileila Varella-Garcia Fred R. Hirsch Murry W. Wynes Hagop Youssoufian Alex Ad 2012Journal of Thoracic Oncology2012,,2:1
3Systematic Localization of Common Disease-Associated Variation in Regulatory DNA显示文摘Matthew T. Maurano Richard Humbert Eric Rynes Robert E. Thurman Eric Haugen Hao Wang Alex P. Reynolds Richard Sandstrom Hongzhu Qu Jennifer Brody Anthony Shafer Fidencio Neri Kristen Lee Tanya Kutyavin Sandra Stehling-Sun Audra K. Johnson Theresa K. Canfi 2012Science2012,,6099:1
4Systematic Localization of Common Disease-Associated Variation in Regulatory DNA显示文摘Matthew T. Maurano Richard Humbert Eric Rynes Robert E. Thurman Eric Haugen Hao Wang Alex P. Reynolds Richard Sandstrom Hongzhu Qu Jennifer Brody Anthony Shafer Fidencio Neri Kristen Lee Tanya Kutyavin Sandra Stehling-Sun Audra K. Johnson Theresa K. Canfi 2012Science2012,,6099:1
5Tree community composition,structure and diversity along an elevational gradient in an Andean forest of Northern Ecuador显示文摘The Andean forests of northern Ecuador are known for their high levels of plant diversity relative to the area they occupy.Typically,these forests grow on steep slopes that lead to dramatic habitat gradients across short distances.These extreme habitat gradients make the Andean forest ecosystem an excellent natural laboratory for understanding the effect of elevation on forest community diversity,structure and composition.We established 31 plots(50 m×5 m)which are divided between two elevational transects in the cloud forest of the Siempre Verde Reserve in the western foothills of the Andes Mountains of northern Ecuador.All trees and tree ferns with a diameter at breast height(dbh)≥5 cm were measured and identified.We examined changes in community composition,structure,and diversity along and between the elevational transects and three elevational zones:low(2437–2700 m),middle(2756–3052 m),and high(3163–3334 m).We found four main trends associated with the elevational gradients at this site:(1)community composition differed between the two transects and among the three elevational zones according to N-MDS,ANOSIM,and percentage of shared species,with some species having limited distributions,(2)metrics of community structure showed opposite relationships with elevation,depending on the transect,with the only significant relationship(negative)found between basal area and elevation in the open trail transect,(3)alpha diversity,in general,peaked at mid-elevations,and(4)beta diversity consistently increased with distance between plots along elevation.The complexity of changes in community composition,structure,and alpha diversity along elevation may be related to the heterogeneity of the environment on a local scale,such as topography,soil composition,and even human impact,or to dispersal limitation and should be investigated further.These changes in community composition and the relatively high beta diversity found at this site exemplify the biological complexity of montane forest,reinforcing arguments from other studies on the importance of their conservation.JIMÉNEZ-PAZ Rosa WORTHY Samantha J VALENCIA Renato PÉREZÁlvaro J REYNOLDS Alex BARONE John A BURGESS Kevin S 2021Journal of Mountain Science2021,18,9:0
6Estimating Photosynthetic Attributes from High-Throughput Canopy Hyperspectral Sensing in Sorghum显示文摘Sorghum,a genetically diverse C_(4) cereal,is an ideal model to study natural variation in photosynthetic capacity.Specific leaf nitrogen(SLN)and leaf mass per leaf area(LMA),as well as,maximal rates of Rubisco carboxylation(V cmax),phosphoenolpyruvate(PEP)carboxylation(V pmax),and electron transport(J max),quantified using a C_(4) photosynthesis model,were evaluated in two field-grown training sets(n=169 plots including 124 genotypes)in 2019 and 2020.Xiaoyu Zhi Sean Reynolds Massey-Reed Alex Wu Andries Potgieter Andrew Borrell Colleen Hunt David Jordan Yan Zhao Scott Chapman Graeme Hammer Barbara George-Jaeggli 2022Plant Phenomics2022,4,1:0
返回顶部 每页显示:
共1页 首页 上一页 第1页 下一页 末页 /1 跳转

网站首页 | 关于我们 | 联系我们 | 产品服务 | 客服中心 | 广告服务 | 版权声明 | 网站联盟 | 友情链接 | 售卡网点

版权所有© 渝B2-20050021-1 渝公网安备 50019002500403号 违法和不良信息举报中心

互联网出版许可证 新出网证(渝)字10号 全国400电话 - 免长途话费