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12篇 您的检索式:作者名="Shan Libo"
    题名 作者 年代 出处 被引量
1Cotton GhBAK1 Mediates Verticillium Wilt Resistance and Cell Death显示文摘导致病毒的基因 silencing (VIGS ) 由将他们的表示击倒为单个基因的功能的分析提供一条强大的途径。我们采用了这条途径把在对 Verticillium 抵抗的棉花的基因功能枯萎,世界范围的大多数破坏疾病之一。我们这里证明高度有效的 VIGS 在与部分抵抗引起线(CA4002 ) 到 Verticillium 的一朵棉花被获得枯萎,并且 GhMKK2 和 GhVe1 为它的抵抗被要求到 Verticillium 枯萎。Arabidopsis AtBAK1/SERK3,在工厂疾病抵抗的一个中央管理者,与五个成员,一起属于体的 embryogenesis 受体 kinases (SERK ) 的一个亚科 AtSERK1 到 AtSERK5。二 BAK1 orthologs 和一 SERK1 ortholog 在棉花染色体被识别。重要地, GhBAK1 为 CA4002 抵抗被要求到 Verticillium 枯萎。令人惊讶地, GhBAK1 的 silencing 是足够的触发在棉花伴有反应的氧种类的生产的房间死亡。这结果从 AtBAK1 和 AtSERK4 在房间死亡控制在玩冗余的函数的 Arabidopsis 是不同的。显然,而 AtSERK4/5 是在 Arabidopsis 的最新发展的基因,棉花仅仅发展了 SERK1 和 BAK1。我们的研究在 Verticillium 显示 BAK1 的功能的重要性枯萎抵抗并且在不同植物种类建议 SERK 家庭成员的动态进化。Xiquan Gao Fangjun Li Maoying Li Ali S.Kianinejad Jane K.Dever Terry A.Wheeler Zhaohu Li Ping He Libo Shan 2013Journal of Integrative Plant Biology2013,55,7:13
2Big Roles of Small Kinases:The Complex Functions of Receptor-Like Cytoplasmic Kinases in Plant Immunity and Development显示文摘Plants have evolved a large number of receptor-like cytoplasmic kinases(RLCKs)that often functionally and physically associate with receptor-like kinases(RLKs)to modulate plant growth,development and immune responses.Without any apparent extracellular domain,RLCKs relay intracellular signaling often via RLK complex-mediated transphosphorylation events.Recent advances have suggested essential roles of diverse RLCKs in concert with RLKs in regulating various cellular and physiological responses.We summarize here the complex roles of RLCKs in mediating plant immune responses and growth regulation,and discuss specifc and overlapping functions of RLCKs in transducing diverse signaling pathways.Wenwei Lin Xiyu Ma Libo Shan Ping He 2013Journal of Integrative Plant Biology2013,55,12:6
3Plant plasma membrane-resident receptors:Surveillance for infections and coordination for growth and development显示文摘As sessile organisms, plants are exposed to pathogen invasions and environmental fluctuations. To overcome the challenges of their surroundings, plants acquire the potential to sense endogenous and exogenous cues, resulting in their adaptability. Hence, plants have evolved a large collection of plasma membrane-resident receptors, including RECEPTOR-LIKE KINASEs(RLKs) and RECEPTOR-LIKE PROTEINs(RLPs) to perceive those signals and regulate plant growth,development, and immunity. The ability of RLKs and RLPs to recognize distinct ligands relies on diverse categories of extracellular domains evolved. Co-regulatory receptors are often required to associate with RLKs and RLPs to facilitate cellular signal transduction. RECEPTOR-LIKE CYTOPLASMIC KINASEs(RLCKs) also associate with the complex, bifurcating the signal to key signaling hubs, such as MITOGEN-ACTIVATED PROTEIN KINASE(MAPK) cascades, to regulate diverse biological processes. Here, we discuss recent knowledge advances in understanding the roles of RLKs and RLPs in plant growth, development, and immunity, and their connection with co-regulatory receptors, leading to activation of diverse intracellular signaling pathways.Ana Marcia Escocard de Azevedo Manhaes Fausto Andres Ortiz-Morea Ping He Libo Shan 2021Journal of Integrative Plant Biology2021,63,1:3
4Cotton Gh BAK 1 Mediates Verticillium Wilt Resistance and Cell Death显示文摘Xiquan Gao Fangjun Li Maoying Li Ali S. Kianinejad Jane K. Dever Terry A. Wheeler Zhaohu Li Ping He Libo Shan 2013J Integr Plant Biol2013,,7:2
5Hybrid Dirac semimetal-based photodetector with efficient low-energy photon harvesting显示文摘Despite the considerable effort,fast and highly sensitive photodetection is not widely available at the low-photon-energy range(~meV)of the electromagnetic spectrum,owing to the challenging light funneling into small active areas with efficient conversion into an electrical signal.Here,we provide an alternative strategy by efficiently integrating and manipulating at the nanoscale the optoelectronic properties of topological Dirac semimetal PtSe_(2)and its van der Waals heterostructures.Explicitly,we realize strong plasmonic antenna coupling to semimetal states near the skin-depth regime(λ/10^(4)),featuring colossal photoresponse by in-plane symmetry breaking.The observed spontaneous and polarization-sensitive photocurrent are correlated to strong coupling with the nonequilibrium states in PtSe_(2)Dirac semimetal,yielding efficient light absorption in the photon range below 1.24 meV with responsivity exceeding∼0.2 A/W and noise-equivalent power(NEP)less than~38 pW/Hz^(0.5),as well as superb ambient stability.Present results pave the way to efficient engineering of a topological semimetal for high-speed and low-energy photon harvesting in areas such as biomedical imaging,remote sensing or security applications.Lin Wang Li Han Wanlong Guo Libo Zhang Chenyu Yao Zhiqingzi Chen Yulu Chen Cheng Guo Kaixuan Zhang Chia-Nung Kuo Chin Shan Lue Antonio Politano Huaizhong Xing Mengjie Jiang Xianbin Yu Xiaoshuang Chen Wei Lu 2022Light(Science & Applications)2022,11,3:2
6Endless Hide-and-Seek: Dynamic Co-evolution in Plant-Bacterium Warfare显示文摘植物拥有天生的免疫系统阻止很潜在的感染。古老、保存的天生的免疫反应被联系微生物的分子的模式(MAMP ) 触发并且在用途广泛的防卫起重要作用。然而,成功的细菌的病原体发展了类型 III 毒力受动器压制调停 MAMP 的免疫。幸存,植物进一步开发了高度特定的抵抗(R) 基因触发 gene-for-gene-mediatedimmunity 并且把剧毒的病原体变成无毒害的。我们这里在植物细菌相互作用的这动态 coevolution 总结最近的进展。Libo Shan Ping He Jen Sheen 2007Journal of Integrative Plant Biology2007,49,1:2
7One for all: the receptor-associated kinase BAK1 显示文摘Chinchilla D Shan Libo He Ping 2009Trends in Plant Science2009,14,10:1
8Notes in accordions-organized MXene equipped with CeO_(2) for synergistically adsorbing and catalyzing polysulfides for high-performance lithium-sulfur batteries显示文摘Limited by the shuttle effect, the application of lithium-sulfur batteries is not impressive. As an organ layered two-dimensional(2D) material, MXene has a great electrical conductivity and high specific surface area. Meanwhile, the introduction of metal oxides can restrain the shuttle effect. Hence, this paper prepared CeO_(2)/MXene as a cathode material of Li-S batteries. Ce and Ti can chemically adsorb S, and the interlayer structure of MXene can limit S while the interlayer space can alleviate volume expansion.The discharge capacity at 0.5 C is as high as 1051.1 m Ah g^(-1), and 921.9 m Ah g^(-1) after 200 cycles. The average coulombic efficiency is 97.75%. The organized MXene with CeO_(2) like notes in accordions are new efficient materials for lithium-sulfur batteries.Xiaochuan Chen Libo Li Yuhang Shan Da Zhou Wenjun Cui Yangmingyue Zhao 2022Journal of Energy Chemistry2022,31,7:1
9Preparation and Characterization of Novel Ce-doped Nonstoichiometric Nanosilica/Polysulfone Composite Membranes显示文摘Yuqing Zhang Libo Shan Zhengyu Tu Yahui Zhang 2008Separation Purification and Technology2008,63,:1
10A novel bat coronavirus with a polybasic furin-like cleavage site显示文摘The current pandemic of COVID-19 caused by a novel coronavirus,severe acute respiratory syndrome coronavirus-2(SARS-CoV-2),threatens human health around the world.Of particular concern is that bats are recognized as one of the most potential natural hosts of SARS-CoV-2;however,coronavirus ecology in bats is still nascent.Here,we performed a degenerate primer screening and next-generation sequencing analysis of 112 bats,collected from Hainan Province,China.Three coronaviruses,namely bat betacoronavirus(Bat CoV)CD35,Bat CoV CD36 and bat alpha-coronavirus CD30 were identified.Bat CoV CD35 genome had 99.5%identity with Bat CoV CD36,both sharing the highest nucleotide identity with Bat Hp-betacoronavirus Zhejiang2013(71.4%),followed by SARS-CoV-2(54.0%).Phylogenetic analysis indicated that Bat CoV CD35 formed a distinct clade,and together with Bat Hp-betacoronavirus Zhejiang2013,was basal to the lineage of SARS-CoV-1 and SARS-CoV-2.Notably,Bat CoV CD35 harbored a canonical furin-like S1/S2 cleavage site that resembles the corresponding sites of SARS-CoV-2.The furin cleavage sites between CD35 and CD36 are identical.In addition,the receptor-binding domain of Bat CoV CD35 showed a highly similar structure to that of SARS-CoV-1 and SARS-CoV-2,especially in one binding loop.In conclusion,this study deepens our understanding of the diversity of coronaviruses and provides clues about the natural origin of the furin cleavage site of SARS-CoV-2.Wentao Zhu Yuyuan Huang Jian Gong Lingzhi Dong Xiaojie Yu Haiyun Chen Dandan Li Libo Zhou Jing Yang Shan Lu 2023Virologica Sinica2023,38,3:0
11Small holes,big impact:Stomata in plant–pathogen–climate epic trifecta显示文摘The regulation of stomatal aperture opening and closure represents an evolutionary battle between plants and pathogens,characterized by adaptive strategies that influence both plant resistance and pathogen virulence.The ongoing climate change introduces further complexity,affecting pathogen invasion and host immunity.This review delves into recent advances on our understanding of the mechanisms governing immunity-related stomatal movement and patterning with an emphasis on the regulation of stomatal opening and closure dynamics by pathogen patterns and host phytocytokines.In addition,the review explores how climate changes impact plant–pathogen interactions by modulating stomatal behavior.In light of the pressing challenges associated with food security and the unpredictable nature of climate changes,future research in this field,which includes the investigation of spatiotemporal regulation and engineering of stomatal immunity,emerges as a promising avenue for enhancing crop resilience and contributing to climate control strategies.Shuguo Hou Olivier Rodrigues Zunyong Liu Libo Shan Ping He 2024Molecular Plant2024,17,1:0
12Arabidopsis RNA polymerase Ⅱ C-terminal domain phosphatase-like 1 targets mitogen-activated protein kinase cascades to suppress plant immunity显示文摘Mitogen-activated protein kinase(MAPK) cascades play pivotal roles in plant defense against phytopathogens downstream of immune receptor complexes. The amplitude and duration of MAPK activation must be strictly controlled, but the underlying mechanism remains unclear. Here, we identified Arabidopsis CPL1(C-terminal domain phosphatase-like 1)as a negative regulator of microbe-associated molecular pattern(MAMP)-triggered immunity via a forward-genetic screen. Disruption of CPL1 significantly enhanced plant resistance to Pseudomonas pathogens induced by the bacterial peptide fg22. Furthermore, fg22-induced MPK3/MPK4/MPK6 phosphorylation was dramatically elevated in cpl1 mutants but severely impaired in CPL1 overexpression lines, suggesting that CPL1 might interfere with fg22-induced MAPK activation. Indeed, CPL1 directly interacted with MPK3 and MPK6, as well as the upstream MKK4 and MKK5. A firefy luciferase-based complementation assay indicated that the interaction between MKK4/MKK5 and MPK3/MPK6 was significantly reduced in the presence of CPL1. These results suggest that CPL1 plays a novel regulatory role in suppressing MAMP-induced MAPK cascade activation and MAMP-triggered immunity to bacterial pathogens.Junjun Wei Wei Sun Xinhang Zheng Shanshan Qiu Shuangyu Jiao Kevin Babilonia Hisashi Koiwa Ping He Libo Shan Wenxian Sun Fuhao Cui 2023Journal of Integrative Plant Biology2023,65,10:0
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