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129篇 您的检索式:作者名="Bacic"
    题名 作者 年代 出处 被引量
1Drought Responses of Leaf Tissues from Wheat Cultivars of Differing Drought Tolerance at the Metabolite Level显示文摘干旱在谷物庄稼的生理学上有严肃的效果。在细胞并且明确地代谢物水平,许多单个混合物被增加提供 osmoprotective 功能,并且减少,阻止酶的分离在房间在场的反应的氧种类的数字。我们使用了一条指向的 GCMS 途径识别在忍耐的不同层次在干旱应力下面描绘到干旱的面包小麦的三不同栽培变种不同的混合物(反曲刀的一种,偏狭;Excalibur 和 RAC875,容忍) 。氨基酸,最尤其是脯氨酸,色氨酸,和分叉的链氨基酸白氨酸,异白氨酸,和缬氨酸的层次在所有栽培变种在干旱应力下面被增加。在二容忍的栽培变种,在很多器官的酸的小减少也是明显的。Excalibur,栽培变种 genotypically 与反曲刀的一种有关,显示出更类似于在浇得好的条件下面的反曲刀的一种的反应的一个模式。在干旱应力下面, Excalibur 和 RAC875 有类似的回答;然而, Excalibur 没有象 RAC875 的反应的一样的大小。这里,结果在以前的工作的上下文被讨论在生理并且在干旱应力下面的这些栽培变种的 proteomic 分析。Jairus B. Bowne Tim A. Erwin Juan Juttner Thorsten Schnurbusch Peter Langridge Antony Bacic Ute Roessner 2012Molecular Plant2012,5,2:25
2Characterization of Ion Contents and Metabolic Responses to Salt Stress of Different Arabidopsis AtHKT1;1 Genotypes and Their Parental Strains显示文摘植物采用几策略在咸度应力下面维持细胞的离子动态平衡,包括由 transmembrane 运输蛋白质的调停的离子流动并且调整由积累 osmolytes 的渗透的压力。HKT (高亲密关系的钾 transporter ) 基因家庭在多样的植物种类包括 Na+ 和 Na+/K+ transporters,与 HKT1;在 Arabidopsis thaliana 的 1 个同样唯一的成员。AtHKT1 的 Cell-type-specific overexpression; 1 被显示了在咸度应力下面阻止射击 Na+ overaccumulation。这里,我们在不同 AtHKT1 的射击和根分析了大量代谢物和元素;在咸度应力前后的 1 遗传型和他们的父母紧张,揭示 AtHKT1 之间的代谢物差别的一种相互的关系; 1 根猛烈的线( hkt1 ; 1 )并且 AtHKT1 ; 1 根 overexpressing 线( E2586 UAS GAL4 : HKT1 ; 1 并且 J2731 *UAS GAL4 : HKT1 ; 1 )。尽管根糖的层次在两 AtHKT1 在盐应力以后被增加; 1 overexpressing 排队, E2586 UAS GAL4 : HKT1 ; osmoprotectants trehalose , gentiobiose ,和 melibiose 的 1 显示出的更高的累积,而 J2731 *UAS GAL4 : HKT1 ;蔗糖和棉白糖的 1 显示出的高水平,与他们的父母线相比,分别地。相反,猛烈的线 hkt1; tricarboxylic 酸(TCA ) 的层次的 1 显示出的猛烈增加骑车在在盐处理以后的射击的中介。这与糖的重要弄空与一致,建议有进以从周期的 C 流出的经常的率的 TCA 周期的碳流入的增加的率,它可能被需要在盐应力期间支持植物幸存。用关联分析,我们识别了在 Na+ 内容和几糖之间的协会,建议糖新陈代谢的那条规定在对咸度应力的植物回答是重要的。Camilla B. Hill Deepa Jha Antony Bacic Mark Tester Ute Roessner 2013Molecular Plant2013,6,2:8
3KNAT7 positively regulates xylan biosynthesis by directly activating IRX9 expression in Arabidopsis显示文摘Xylan is the major plant hemicellulosic polysaccharide in the secondary cell wall.The transcription factor KNOTTED-LIKE HOMEOBOX OF ARABIDOPSIS THALIANA 7(KNAT7) regulates secondary cell wall biosynthesis, but its exact role in regulating xylan biosynthesis remains unclear.Using transactivation analyses, we demonstrate that KNAT7 activates the promoters of the xylan biosynthetic genes, IRREGULAR XYLEM 9(IRX9), IRX10, IRREGULAR XYLEM 14-LIKE(IRX14 L),and FRAGILE FIBER 8(FRA8).The knat7 T-DNA insertion mutants have thinner vessel element walls and xylary fibers, and thicker interfascicular fiber walls in inflorescence stems, relative to wild-type(WT).KNAT7 overexpression plants exhibited opposite effects.Glycosyl linkage and sugar composition analyses revealed lower xylan levels in knat7 inflorescence stems, relative to WT; a finding supported by labeling of inflorescence walls with xylan-specific antibodies.The knat7 loss-of-function mutants had lower transcript levels of the xylan biosynthetic genes IRX9, IRX10, and FRA8, whereas KNAT7 overexpression plants had higher m RNA levels for IRX9, IRX10, IRX14 L, and FRA8.Electrophoretic mobility shift assays indicated that KNAT7 binds to the IRX9 promoter.These results support the hypothesis that KNAT7 positively regulates xylan biosynthesis.Jun-Bo He Xian-Hai Zhao Ping-Zhou Du Wei Zeng Cherie T.Beahan Yu-qi Wang Hui-Ling Li Antony Bacic Ai-Min Wu 2018Journal of Integrative Plant Biology2018,60,6:3
4Plant glycosylphosphatidylinositol anchored proteins at the plasma membrane-cell wall nexus显示文摘Approximately 1% of plant proteins are predicted to be post-translationally modified with a glycosylphosphatidylinositol(GPI) anchor that tethers the polypeptide to the outer leaflet of the plasma membrane. Whereas the synthesis and structure of GPI anchors is largely conserved across eukaryotes, the repertoire of functional domains present in the GPI-anchored proteome has diverged substantially. In plants, this includes a large fraction of the GPI-anchored proteome being further modified with plant-specific arabinogalactan(AG) O-glycans. The impor tance of the GPI-anchored proteome to plant development is underscored by the fact that GPI biosynthetic null mutants exhibit embryo lethality. Mutations in genes encoding specific GPI-anchored proteins(GAPs) further supports their contribution to diverse biological processes, occurring at the interface of the plasma membrane and cell wall including signaling, cell wall metabolism, cell wall polymer cross-linking, and plasmodesmatal transport. Here, we review the literature concerning plant GPI-anchored proteins, in the context of their potential to act as molecular hubs that mediate interactions between the plasma membrane and the cell wall, and their potential to transduce the signal into the protoplast and, thereby, activate signa transduction pathways.Trevor H.Yeats Antony Bacic Kim L.Johnson 2018Journal of Integrative Plant Biology2018,60,8:3
5The Cellulose Synthases Are Cargo of the TPLATE Adaptor Complex显示文摘Clara Sanchez-Rodriguez Yanyun Shi Christopher Kesten Dongmei Zhang Gloria Sancho-Andres Alexander Ivakov Edwin R. Lampugnani Kamil Sklodowski Masaru Fujimoto Akihiko Nakano Antony Bacic Ian S. Wallace Takashi Ueda Daniel Van Damme Yihua Zhou Staffan Persson 2018Molecular Plant2018,11,2:3
6The CELLULOSE-SYNTHASE LIKE C (CSLC) Family of Barley Includes Members that Are Integral Membrane Proteins Targeted to the Plasma Membrane显示文摘纤维素象 SYNTHASE 一样 C (CSLC ) 家庭是在被认为在苔藓和脉管的植物的分叉前产生了的 CELLULOSE SYNTHASE/CELLULOSE 象 SYNTHASE 一样(CESA/CSL ) 多糖 synthase 总科以内的一个古老的系。作为在 flowering 植物的研究, Arabidopsis 建议了合成( 1,4 )-- xyloglucan ( XyG )的 glucan 脊梁,,拴住邻近的纤维素 microfibrils 到对方的墙多糖为 CSLC 的可能的功能, CSLC 功能在大麦( Hordeum vulgare L.)被调查,有在它的墙中的 XyG 的低数量的种。四大麦 CSLC 基因被识别(指明的 HvCSLC14 ) 。种系发生的分析在 flowering 植物揭示 CSLC 的三很好支持的 clades,与有在二这些 clades 的代表的大麦。四大麦 CSLC 在各种各样的纸巾被表示,与,包括有主要、第二等的房间墙的房间在在所有房间检测抄本的 situ PCR coleoptile 和根打字。合作表示分析证明 HvCSLC3 并列地与通常认为的 XyG xylosyltransferase 基因被表示。两免疫 -- 他们和膜分别证明 HvCSLC2 位于大麦的血浆膜暂停有教养的房间并且不在象 endoplasmic 那样的内部膜蜂窝胃或 Golgi 仪器。基于我们多糖合成的亚 cellular 地点的当前的知识,我们断定 CSLC 家庭可能包含多糖 synthase 的超过一种类型。Fenny M. Dwivany Dina Yulia Rachel A, Burton Neil J. Shirley Sarah M. Wilson Geoffrey B, Fincher Antony Bacic Ed Newbigin Monika S. Doblin 2009Molecular Plant2009,2,5:2
7The observation of the non-cova-lent interactions in solution by electrospray ionization massspectrometry: promise, pitfalls and prognosis显示文摘Read S M Currier G Bacic A 1996Carbohydr Res1996,281,:1
8Changes in cell wall composition during ripening of grape berries显示文摘NUNAN K J SIMS IM BACIC A ROBINSON S P F1NCHER G B 1998Plant Physiology1998,118,3:1
9Evidence for the dissociation of the hepatobiliary MRI contrast agent Mn-DPDP 显示文摘Gallez B Bacic G Swartz HM 1996Magn Reson Med1996,35,1:1
10Use of a novel histone deacetylase inhibitor to induce apoptosis in cell lines of acute lymphoblastic leukemia显示文摘Romanski A Bacic B Bug G 2004Haematologica2004,89,4:1
11Quantitative proteomic analysis of wheat cuhivars with differing drought stress toler- ance显示文摘FORD K L CASSIN A BACIC A 2011Frontiers in Plant Science2011,2,:1
12从细菌、酵母及植物多糖合成酶的调控看花粉管胼胝质酶的调控(英文)显示文摘多糖作为结构和能量贮存分子是植物重要的组成成分。植物细胞壁主要成分为多糖。细胞壁在确定细胞生长、形状方面起重要作用,细胞壁还参与细胞的营养吸收、信息传递,也是防止外源对细胞不良影响的第一道防线。不同植物细胞壁的多糖成分可作为食品、建筑及造纸的原料,具有广泛的工业价值。通过描述细菌、酵母及植物多糖合成酶的机制,推断花粉管胼胝质合成酶的可能调控机制。李惠娟 Antony BACIC Steve M.READ 2000Acta Botanica Sinica2000,42,8:1
13显示文摘Read S M Clarke A E Bacic A et aL Requirements for division of generative nucleus in cultured pollen tubes of Nicotiana 1993Protoplasma1993,174,:1
14Vasoconstrictive pep-tides induce endothelin-1 and prostanoids in human cerebromicro-vascular endothelium显示文摘Spatz M Stanimirovic D Bacic F 1994Am J Physiol1994,266,3:1
15Cross - talk be- tween NKT and regulatory T cells (Tregs) in modulation of im- mune response in patients with colorectal cancer following different pain management techniques 显示文摘Mrakovcic- Sutie I Bacic D Golubovic S 2011Coll Antropal2011,35,2:1
16Lipophosphoglycan of Leishmania major that vaccinates against cutaneous leishmaniasis contains an alkylglycerophosphoinositol lipid anchor显示文摘McConville MJ Bacic A Mitchell GF 1987Proc Natl Acad Sci USA1987,84,24:1
17Quantitative proteomic a- nalysis of wheat cultivars with differing drought stress toler- ance 显示文摘FORD K L CASSIN A BACIC A 2011Frontiers in Plant Sciences2011,2,:1
18Social, political and economic factors responsible for the reemergence of trichinellosis in Serbia: a case study显示文摘Djordjevic M Bacic M Petricevic M 2003J Parasitol2003,89,2:1
19Virusinduced Silencing of a plant cellulose synthase gene显示文摘BURTON R A Gibeaut D M Bacic A 2000Plant Cell2000,12,:1
20Identification of a Golgi-localised GRIP domain protein from Arabidopsis thaliana显示文摘Paul R. Gilson Claudia E. Vergara Lars Kjer-Nielsen Rohan D. Teasdale Antony Bacic Paul A. Gleeson 2004Planta2004,,6:1
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