如果对您有价值,感谢您的“点赞”、“在看”和“转发”让更多人了解和关注植物生理生态。
相关阅读:
Two PhD Fully Funded Positions in Plant Biology at Neuchâtel University in Switzerland
瑞士纳沙泰尔大学植物生物学领域的两个全额资助博士生职位
Located at the Lac de Neuchâtel and with spectacular views over the Alps, the plant sciences at UniNE offer a collaborative and dynamic environment. We are part of the Institute of Biology, which covers further disciplines such as microbiology, ecology, and evolutionary biology. Western Switzerland provides a fantastic environment for plant research. Its collegial and diverse research community combined with easy and efficient national and international travel provide exceptional possibilities for collaborations and access to state-of-the-art technical platforms. For further information, please contact Joop Vermeer via email (joop.vermeer@unine.ch ).
UniNE 的植物科学位于纳沙泰尔湖,享有阿尔卑斯山的壮丽景色,提供协作和动态的环境。我们是生物学研究所的一部分,该研究所涵盖微生物学、生态学和进化生物学等其他学科。瑞士西部为植物研究提供了绝佳的环境。其学院和多元化的研究社区与轻松高效的国内和国际旅行相结合,为合作和使用最先进的技术平台提供了绝佳的可能性。如需了解更多信息,请通过电子邮件联系。
Joop Vermeer ( joop.vermeer@unine.ch )
Two PhD Funded Positions in Plant Biology at Neuchâtel University in Switzerland; If you are interested in roots, cellular communication, microscopy and a sprinkle of auxin, please apply: The Laboratory of Plant Molecular and Cell Biology headed by Prof. Joop Vermeer is recruiting two PhD students. The first position is available from August, 2024 and the second position is available from February, 2025.瑞士纳沙泰尔大学植物生物学两个博士生资助职位;如果您对根系、细胞通讯、显微镜和生长素感兴趣,请申请由 Joop Vermeer 教授领导的植物分子和细胞生物学实验室正在招募两名博士生。第一个职位从 2024 年 8 月开始提供,第二个职位从 2025 年 2 月开始提供。The Vermeerlab investigates how intercellular communication accommodates the formation of new organs, using lateral root formation as a model. We are using Arabidopsis thaliana, Cardamine hirsuta as well as Brachypodium distachyon as experimental systems. We have previously shown that communication between the pericycle and the endodermis is essential for lateral root formation in Arabidopsis. We are using the pericycle / endodermis communication to better understand how biochemical and mechanical signals are integrated during three dimensional differential growth. The goal is to better understand the networks that regulate root branching to eventually link these to environmental signals.维米尔实验室以侧根形成为模型,研究细胞间通讯如何适应新器官的形成。我们使用拟南芥以及二穗短柄草等作为实验系统。我们之前已经表明,中柱鞘和内皮层之间的通讯对于拟南芥侧根的形成至关重要。我们正在利用中柱鞘/内皮层通信来更好地了解生化和机械信号在三维差异生长过程中如何整合。目标是更好地了解调节根分枝的网络,最终将它们与环境信号联系起来。We use and develop genetic and molecular tools to manipulate signaling is specific cell layers, high-resolution- and live-imaging at multiple scales, transcriptomics, proteomics, histology and plant physiology to understand the regulation of root branching in diverse plant species.我们使用和开发遗传和分子工具来操纵特定细胞层的信号传导、多尺度高分辨率实时成像、转录组学、蛋白质组学、组织学和植物生理学,以了解不同植物物种根分枝的调节。From August 2024: Project 1: Fast phosphoproteomics to better understand pericycle/endodermis communication during LR formation. In collaboration with the lab of Prof. Dolf Weijers (WUR, NL) we have obtained a set of candidates that are differentially phosphorylated between wild type and spatial accommodation mutants. The goal of the project is to characterize these candidates.
从 2024 年 8 月开始:项目 1:快速磷酸蛋白质组学,以更好地了解 LR 形成过程中的中柱鞘/内皮层通讯。通过与 Dolf Weijers 教授(WUR,NL)的实验室合作,我们获得了一组在野生型和空间适应突变体之间差异磷酸化的候选者。该项目的目标是描述这些候选者的特征。From February 2025: Project 2: Understanding endodermis dedifferentiation during lateral root formation. We recently have generated an atlas of lateral root development in Brachypodium in which we showed that the endodermis dedifferentiates during lateral root formation. The goal of the project is to investigate how this works. In addition, the projects aims at understanding the role of local auxin signaling in the exodermis during lateral root formation.
从 2025 年 2 月开始:项目 2:了解侧根形成过程中的内皮层去分化。我们最近制作了短柄草侧根发育图谱,其中我们表明内皮层在侧根形成过程中去分化。该项目的目标是研究其工作原理。此外,该项目旨在了解侧根形成过程中外皮中局部生长素信号的作用。Master’s degree in biology
– 生物学硕士学位Proficiency in English (oral and written)
– 英语熟练程度(口语和书面)
Willing to assist with practical courses
– 愿意协助实践课程
Previous experience in one or several of the following fields:
– 以前在以下一个或多个领域的经验:
• (Molecular) genetics -(分子)遗传学
• Cytoskeleton -细胞骨架
• Confocal microscopy and/or histology -共焦显微镜和/或组织学
• Plant physiology -植物生理学
• Statistical analyses and computational approaches (e.g. using R, Python, Alphafold) is advantageous.
-统计分析和计算方法(例如使用 R、Python、Alphafold)是有利的。
To apply, please send your letter of motivation, CV, and names and contact details of two referees to joop.vermeer@unine.ch . Positions will remain opened until filled. Starting dates:negotiable but preferably August 2024 for project 1 and February 2025 for project 2.
如需申请,请将您的动机信、简历以及两名推荐人的姓名和联系方式发送至 joop.vermeer@unine.ch。职位将保持开放状态直至满额。开始日期:可协商,但项目 1 最好为 2024 年 8 月,项目 2 最好为 2025 年 2 月。一起关注植物科学,
促进学术研究与科普宣传!
-- 植物生理生态
公众号ID:yanli19-
投稿及转载:li.yan@uwa.edu.au;
guangruwang77@163.com