TY - JOUR A1 - Li, Shan A1 - Li, Xin A1 - Link, Roman A1 - Li, Ren A1 - Deng, Liping A1 - Schuldt, Bernhard A1 - Jiang, Xiaomei A1 - Zhao, Rongjun A1 - Zheng, Jingming A1 - Li, Shuang A1 - Yin, Yafang T1 - Influence of cambial age and axial height on the spatial patterns of xylem traits in Catalpa bungei, a ring-porous tree species native to China JF - Forests N2 - Studying how cambial age and axial height affects wood anatomical traits may improve our understanding of xylem hydraulics, heartwood formation and axial growth. Radial strips were collected from six different heights (0–11.3 m) along the main trunk of three Manchurian catalpa (Catalpa bungei) trees, yielding 88 samples. In total, thirteen wood anatomical vessel and fiber traits were observed usinglight microscopy (LM) and scanning electron microscopy (SEM), and linear models were used to analyse the combined effect of axial height, cambial age and their interaction. Vessel diameter differed by about one order of magnitude between early- and latewood, and increased significantly with both cambial age and axial height in latewood, while it was positively affected by cambial age and independent of height in earlywood. Vertical position further had a positive effect on earlywood vessel density, and negative effects on fibre wall thickness, wall thickness to diameter ratio and length. Cambial age had positive effects on the pit membrane diameter and vessel element length, while the annual diameter growth decreased with both cambial age and axial position. In contrast, early- and latewood fiber diameter were unaffected by both cambial age and axial height. We further observed an increasing amount of tyloses from sapwood to heartwood, accompanied by an increase of warty layers and amorphous deposits on cell walls, bordered pit membranes and pit apertures. This study highlights the significant effects of cambial age and vertical position on xylem anatomical traits, and confirms earlier work that cautions to take into account xylem spatial position when interpreting wood anatomical structures, and thus, xylem hydraulic functioning. KW - wood anatomy KW - vertical and radial variation KW - earlywood KW - latewood KW - growth ring width KW - tyloses KW - pit membrane diameter KW - vessel lumen diameter KW - fibre length Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-196297 SN - 1999-4907 VL - 10 IS - 8 ER - TY - JOUR A1 - Zhang, Xin A1 - Wu, Wei A1 - Li, Gang A1 - Wen, Lin A1 - Sun, Qing A1 - Ji, An-Chun T1 - Phase diagram of interacting Fermi gas in spin-orbit coupled square lattices JF - New Journal of Physics N2 - The spin-orbit (SO) coupled optical lattices have attracted considerable interest. In this paper, we investigate the phase diagram of the interacting Fermi gas with Rashba-type spin-orbit coupling (SOC) on a square optical lattice. The phase diagram is investigated in a wide range of atomic interactions and SOC strength within the framework of the cluster dynamical mean-field theory (CDMFT). We show that the interplay between the atomic interactions and SOC results in a rich phase diagram. In the deep Mott insulator regime, the SOC can induce diverse spin ordered phases. Whereas near the metal-insulator transition (MIT), the SOC tends to destroy the conventional antiferromagnetic fluctuations, giving rise to distinctive features of the MIT. Furthermore, the strong fluctuations arising from SOC may destroy the magnetic orders and trigger an order to disorder transition in close proximity of the MIT. KW - ultracold KW - hubbard-model KW - physics transition KW - metal-insulator transition KW - cluster dynamical mean-field theory KW - atomic gases KW - mean-field theory KW - mott insulator KW - optical lattice KW - weak ferromagnetism KW - quantum gases KW - superfluid KW - spin-orbit coupling Y1 - 2015 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-151475 VL - 17 IS - 073036 ER - TY - JOUR A1 - Kuai, Yue A1 - Gong, Xin A1 - Ding, Liya A1 - Li, Fang A1 - Lei, Lizhen A1 - Gong, Yuqi A1 - Liu, Qingmeng A1 - Tan, Huajiao A1 - Zhang, Xinxia A1 - Liu, Dongyu A1 - Ren, Guoping A1 - Pan, Hongyang A1 - Shi, Yaoyao A1 - Berberich-Siebelt, Friederike A1 - Ma, Zhengrong A1 - Zhou, Ren T1 - Wilms’ tumor 1-associating protein plays an aggressive role in diffuse large B-cell lymphoma and forms a complex with BCL6 via Hsp90 JF - Cell Communication and Signaling N2 - Background Wilms’ tumor 1-associating protein (WTAP) is a nuclear protein, which is ubiquitously expressed in many tissues. Furthermore, in various types of malignancies WTAP is overexpressed and plays a role as an oncogene. The function of WTAP in diffuse large B-cell lymphoma (DLBCL), however, remains unclear. Methods Immunohistochemistry was applied to evaluate the levels of WTAP expression in DLBCL tissues and normal lymphoid tissues. Overexpression and knock-down of WTAP in DLBCL cell lines, verified on mRNA and protein level served to analyze cell proliferation and apoptosis in DLBCL cell lines by flow cytometry. Finally, co-immunoprecipitation (Co-IP), IP, and GST-pull down assessed the interaction of WTAP with Heat shock protein 90 (Hsp90) and B-cell lymphoma 6 (BCL6) as well as determined the extend of its ubiquitinylation. Results WTAP protein levels were consistently upregulated in DLBCL tissues. WTAP promoted DLBCL cell proliferation and improved the ability to confront apoptosis, while knockdown of WTAP in DLBCL cell lines allowed a significant higher apoptosis rate after treatment with Etoposide, an anti-tumor drug. The stable expression of WTAP was depended on Hsp90. In line, we demonstrated that WTAP could form a complex with BCL6 via Hsp90 in vivo and in vitro. Conclusion WTAP is highly expressed in DLBCL, promoting growth and anti-apoptosis in DLBCL cell lines. WTAP is a client protein of Hsp90 and can appear in a complex with BCL6 and Hsp90 in DLBCL. Down-regulation of WTAP could improve the chemotherapeutic treatments in DLBCL. KW - WTAP KW - BCL6 KW - Hsp90 KW - complex KW - DLBCL Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-230168 VL - 16 ER -