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The Multifaceted Roles of HY5 in Plant Growth anc Development 被引量:62
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作者 Sreeramaiah N. Gangappa Javier F. Botto 《Molecular Plant》 SCIE CAS CSCD 2016年第10期1353-1365,共13页
ELONGATED HYPOCOTYL5 (HY5), a member of the bZlP transcription factor family, inhibits hypocotyl growth and lateral root development, and promotes pigment accumulation in a light-dependent manner in Arabidopsis. Rec... ELONGATED HYPOCOTYL5 (HY5), a member of the bZlP transcription factor family, inhibits hypocotyl growth and lateral root development, and promotes pigment accumulation in a light-dependent manner in Arabidopsis. Recent research on its role in different processes such as hormone, nutrient, abiotlc stress (abscisic acid, salt, cold), and reactive oxygen species signaling pathways clearly places HY5 at the center of a transcriptional network hub. HY5 regulates the transcription of a large number of genes by directly binding to cis-regulatory elements. Recently, HY5 has also been shown to activate its own expression under beth visible and UV-B light. Moreover, HY5 acts as a signal that moves from shoot to root to promote nitrate uptake and root growth. Here, we review recent advances on HY5 research in diverse aspects of plant development and highlight still open questions that need to be addressed in the near future for a complete understanding of its function in plant signaling and beyond. 展开更多
关键词 HY5 HY5-ort hologs transcriptional regulation hormonal cross-talk PHOTOMORPHOGENESIS growth and development
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Auxin Biosynthesis: A Simple Two-Step Pathway Converts Tryptophan to Indole-3-Acetic Acid in Plants 被引量:49
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作者 Yunde Zhao 《Molecular Plant》 SCIE CAS CSCD 2012年第2期334-338,共5页
Indole-3-acetic acid (IAA), the main naturally occurring auxin, is essential for almost every aspect of plant growth and development. However, only recently have studies finally established the first complete auxin ... Indole-3-acetic acid (IAA), the main naturally occurring auxin, is essential for almost every aspect of plant growth and development. However, only recently have studies finally established the first complete auxin biosynthesis pathway that converts tryptophan (Trp) to IAA in plants. Trp is first converted to indole-3-pyruvate (IPA) by the TAA family of amino transferases and subsequently IAA is produced from IPA by the YUC family of flavin monooxygenases. The two- step conversion of Trp to IAA is the main auxin biosynthesis pathway that plays an essential role in many developmental processes. 展开更多
关键词 hormonal regulation hormone biology GENETICS development auxin.
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Plasma Membrane H^+-ATPase Regulation in the Center of Plant Physiology 被引量:32
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作者 Janus Falhof Jesper Torbol Pedersen +1 位作者 Anja Thoe Fuglsang Michael Palmgren 《Molecular Plant》 SCIE CAS CSCD 2016年第3期323-337,共15页
The plasma membrane (PM) H^+-ATPase is an important ion pump in the plant cell membrane. By extruding protons from the cell and generating a membrane potential, this pump energizes the PM, which is a prerequisite f... The plasma membrane (PM) H^+-ATPase is an important ion pump in the plant cell membrane. By extruding protons from the cell and generating a membrane potential, this pump energizes the PM, which is a prerequisite for growth. Modification of the autoinhibitory terminal domains activates PM H^+-ATPase activity, and on this basis it has been hypothesized that these regulatory termini are targets for physiological factors that activate or inhibit proton pumping. In this review, we focus on the posttranslational regulation of the PM H+-ATPase and place regulation of the pump in an evolutionary and physiological context. The emerging picture is that multiple signals regulating plant growth interfere with the posttranslational regulation of the PM H^+-ATPase. 展开更多
关键词 blue light PATHOGENS hormonal regulation protein phosphorylation/dephosphorylation proton pump stomata
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两系杂交稻籽粒充实不良的成因及其与激素含量的关系 被引量:25
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作者 赵步洪 张洪熙 +1 位作者 朱庆森 杨建昌 《中国农业科学》 CAS CSCD 北大核心 2006年第3期477-486,共10页
【目的】阐明两系杂交稻籽粒充实特征及籽粒充实不良的成因与激素机理。【方法】采用结实特性差异明显的两系杂交稻为材料,测定籽粒中蔗糖和淀粉含量、玉米素+玉米素核苷(Z+ZR)、吲哚-3-乙酸(IAA)和脱落酸(ABA)含量、乙烯释放速率、蔗... 【目的】阐明两系杂交稻籽粒充实特征及籽粒充实不良的成因与激素机理。【方法】采用结实特性差异明显的两系杂交稻为材料,测定籽粒中蔗糖和淀粉含量、玉米素+玉米素核苷(Z+ZR)、吲哚-3-乙酸(IAA)和脱落酸(ABA)含量、乙烯释放速率、蔗糖合成酶(SuSase)和淀粉合成酶(StSase)活性以及籽粒灌浆充实指标,并进行相关分析。【结果】表明两系杂交稻结实率低,主要归咎于弱势粒的秕粒率高、充实度差。籽粒充实度差的组合,灌浆前、中期弱势粒中蔗糖含量高于强势粒,表明基质浓度不是两系杂交稻弱势粒灌浆速率慢和籽粒充实度差的主要限制因子。灌浆前期强势粒中的Z+ZR、IAA和ABA含量明显高于弱势粒,Z+ZR、IAA和ABA的最高含量和平均含量与籽粒最大灌浆速率、平均灌浆速率、谷粒充实度和粒重均呈极显著的正相关。灌浆前、中期弱势粒中的乙烯释放速率明显高于强势粒,籽粒充实度差的组合高于籽粒充实度好的组合,乙烯的释放速率与灌浆速率、谷粒充实度和粒重均呈极显著的负相关。在灌浆初期喷施乙烯合成促进剂(乙烯利),弱势粒的乙烯释放速率增加,ABA含量减少,SuSase和StSase活性降低,谷粒充实度和粒重下降;喷施乙烯合成的抑制剂(硝酸钴),结果则相反。表明籽粒中激素含量及其平衡对籽粒灌浆和酶的活性起调控作用,部分两系杂交稻籽粒充实不良与其弱势粒中Z+ZR、IAA和ABA含量低、乙烯浓度高有密切关系。【结论】激素对两系杂交稻籽粒充实起重要作用,通过调控激素含量,可以提高籽粒充实。 展开更多
关键词 两系杂交稻 籽粒充实 激素调节 生理机制
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苹果果实糖代谢过程及其调控研究进展 被引量:27
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作者 邓丽莉 生吉萍 《保鲜与加工》 CAS 2012年第1期1-5,11,共6页
苹果果实的糖代谢对果实风味和色泽的形成以及其他营养成分的代谢具有重要的影响,是决定果实品质和商品价值的主要因素。本文综述了苹果果实生长和贮藏过程中糖的种类、数量和代谢途径的变化,以及激素、底物和蛋白磷酸化等对苹果果实糖... 苹果果实的糖代谢对果实风味和色泽的形成以及其他营养成分的代谢具有重要的影响,是决定果实品质和商品价值的主要因素。本文综述了苹果果实生长和贮藏过程中糖的种类、数量和代谢途径的变化,以及激素、底物和蛋白磷酸化等对苹果果实糖代谢过程的调控等方面的研究,为苹果果实品质的改善提供一定的理论参考。 展开更多
关键词 苹果 糖代谢 糖转运子 激素调控 蛋白磷酸化
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生长素对拟南芥叶片发育调控的研究进展 被引量:21
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作者 李林川 瞿礼嘉 《植物学通报》 CSCD 北大核心 2006年第5期459-465,共7页
叶片(包括子叶)是茎端分生组织产生的第一类侧生器官,在植物发育中具有重要地位。早期叶片发育包括三个主要过程:叶原基的起始,叶片腹背性的建立和叶片的延展。大量证据表明叶片发育受到体内遗传机制和体外环境因子的双重调节。植物激素... 叶片(包括子叶)是茎端分生组织产生的第一类侧生器官,在植物发育中具有重要地位。早期叶片发育包括三个主要过程:叶原基的起始,叶片腹背性的建立和叶片的延展。大量证据表明叶片发育受到体内遗传机制和体外环境因子的双重调节。植物激素,尤其是生长素在协调体内外调节机制中起着不可或缺的作用。生长素的稳态调控、极性运输和信号转导影响叶片发育的全过程。本文着重介绍生长素在叶片生长发育和形态建成中的调控作用,试图了解复杂叶片发育调控网络。 展开更多
关键词 叶片发育 形态建成 生长素 激素调控
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6-BA、GA_3调控春石斛花芽分化的效应 被引量:19
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作者 李振坚 王雁 +3 位作者 彭镇华 王彩云 缪崑 于耀 《亚热带植物科学》 2009年第1期15-18,共4页
调查了春石斛假鳞茎封顶和增粗的生长情况,并以不同浓度6-BA、GA3溶液进行灌根处理,观测其对花芽分化的效应。结果表明,假鳞茎的增粗阶段在9月15日至10月10日,经过约50 d增粗生长,假鳞茎粗度迅速增加。其间,6-BA、6-BA+GA3处理对春石斛... 调查了春石斛假鳞茎封顶和增粗的生长情况,并以不同浓度6-BA、GA3溶液进行灌根处理,观测其对花芽分化的效应。结果表明,假鳞茎的增粗阶段在9月15日至10月10日,经过约50 d增粗生长,假鳞茎粗度迅速增加。其间,6-BA、6-BA+GA3处理对春石斛花芽分化有促进作用。3种6-BA浓度作用效果明显,最佳为400 mg/L;6-BA添加低浓度GA3,对花芽分化有增效作用,其中以6-BA 200 mg/L添加GA3 50 mg/L效果最佳。GA3作用效果不稳定,浓度为25 mg/L时叶片脱落不明显,高于50 mg/L则叶片大量脱落。 展开更多
关键词 春石斛 生长调节剂调控 6-BA GA3 花芽分化
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甘薯储藏根形成及其调控机制研究进展 被引量:20
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作者 吴银亮 王红霞 +4 位作者 杨俊 范维娟 杨楠 殷旻昊 张鹏 《植物生理学报》 CAS CSCD 北大核心 2017年第5期749-757,共9页
甘薯是世界上重要的粮食作物和经济作物,在食品、饲料、工业原料等方面有着重要的作用。甘薯储藏根作为最重要的能量储藏器官,其启始和膨大过程受多方面因素的调控。本文介绍了甘薯根系统的组成和发育过程,阐述了外界自然环境对甘薯根... 甘薯是世界上重要的粮食作物和经济作物,在食品、饲料、工业原料等方面有着重要的作用。甘薯储藏根作为最重要的能量储藏器官,其启始和膨大过程受多方面因素的调控。本文介绍了甘薯根系统的组成和发育过程,阐述了外界自然环境对甘薯根发育的影响,从内源性激素及基因表达调控角度分析了甘薯储藏根发育过程中的一系列变化,归纳总结了影响甘薯储藏根膨大的因素及其可能的内在调控机制,并展望了今后的研究热点及主要研究方向。 展开更多
关键词 储藏根 形态发生 生长发育 环境影响 激素调控 基因调控
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植物器官脱落的机制及其研究进展 被引量:15
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作者 韩静 王幼群 王晓理 《植物学通报》 CSCD 1999年第4期405-410,共6页
对植物器官脱落的机制及研究进展情况进行了综述,其中包括脱落的几种研究方法,脱落时离区的解剖学和细胞学特征,离层细胞的生理生化特征。
关键词 脱落 离层 激素调节 植物器官
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Cell Wall, Cytoskeleton, and Cell Expansion in Higher Plants 被引量:14
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作者 Logan Bashline Lei Lei Shundai Li Ying Gu 《Molecular Plant》 SCIE CAS CSCD 2014年第4期586-600,共15页
To accommodate two seemingly contradictory biological roles in plant physiology, providing both the rigid structural support of plant cells and the adjustable elasticity needed for cell expansion, the composition of t... To accommodate two seemingly contradictory biological roles in plant physiology, providing both the rigid structural support of plant cells and the adjustable elasticity needed for cell expansion, the composition of the plant cell wall has evolved to become an intricate network of cellulosic, hemicellulosic, and pectic polysaccharides and protein. Due to its complexity, many aspects of the cell wall influence plant cell expansion, and many new and insightful observations and technologies are forthcoming. The biosynthesis of cell wall polymers and the roles of the variety of proteins involved in polysaccharide synthesis continue to be characterized. The interactions within the cell wall polymer network and the modification of these interactions provide insight into how the plant cell wall provides its dual function. The complex cell wall architecture is controlled and organized in part by the dynamic intracellular cytoskeleton and by diverse trafficking pathways of the cell wall polymers and cell wall-related machinery. Meanwhile, the cell wall is continually influenced by hormonal and integrity sensing stimuli that are perceived by the cell. These many processes cooperate to construct, maintain, and manipulate the intricate plant cell wall--an essential structure for the sustaining of the plant stature, growth, and life. 展开更多
关键词 cell wall cellulose HEMICELLULOSE PECTIN biosynthesis cellulose synthase MICROTUBULES actin CYTOSKELETON TRAFFICKING hormonal regulation cell wall integrity sensing.
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Dynamics of Strigolactone Function and Shoot Branching Responses in Pisum sativum 被引量:12
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作者 Elizabeth A. Dun Alexandre de Saint Germain +1 位作者 Catherine Rameau Christine A. Beveridge 《Molecular Plant》 SCIE CAS CSCD 2013年第1期128-140,共13页
Strigolactones (SLs), or their metabolites, were recently identified as endogenous inhibitors of shoot branch- ing. However, certain key features and dynamics of SL action remained to be physiologically characterize... Strigolactones (SLs), or their metabolites, were recently identified as endogenous inhibitors of shoot branch- ing. However, certain key features and dynamics of SL action remained to be physiologically characterized. Here we show that successive direct application of SL to axillary buds at every node along the stem can fully inhibit branching. The SL inhibition of early outgrowth did not require inhibitory signals from other growing buds or the shoot tip. In add- ition to this very early or initial suppression of outgrowth, we also found SL to be effective, up to a point, at moderating the continuing growth of axillary branches. The effectiveness of SL at affecting bud and branch growth correlated with the ability of SL to regulate expression of PsBRC1. PsBRC1 is a transcription factor that is expressed strongly in axillary buds and is required for SL inhibition of shoot branching. Consistent with a dynamic role of the hormone, SL inhibition of bud growth did not prevent buds from later responding to a decapitation treatment, even though SL treatment immediately after decapitation inhibits the outgrowth response. Also, as expected from the hypothesized branching control network in plants, treatment of exogenous SL caused feedback down-regulation of SL biosynthesis genes within 2 h. Altogether, these results reveal new insights into the dynamics of SL function and support the premise that SLs or SL-derived metabolites function dynamically as a shoot branching hormone and that they act directly in axillary buds. 展开更多
关键词 hormonal regulation DORMANCY shoot branching.
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南方鲇两种生长激素受体的结构分析及其组织分布和激素调节 被引量:12
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作者 章力 黄希贵 +2 位作者 焦保卫 吴风瑞 王德寿 《动物学报》 SCIE CAS CSCD 北大核心 2006年第6期1096-1106,共11页
采用生物信息学方法,从东方(Fugurubripes)基因组中分离出两种不同基因编码的GHR1(fGHR1)和GHR2(fGHR2)。随后设计引物,采用RT-PCR和SmartTMRace相结合的方法从南方鲇(Silurusmeridionalis)肝脏中克隆出两种不同基因编码的生长激素受体,... 采用生物信息学方法,从东方(Fugurubripes)基因组中分离出两种不同基因编码的GHR1(fGHR1)和GHR2(fGHR2)。随后设计引物,采用RT-PCR和SmartTMRace相结合的方法从南方鲇(Silurusmeridionalis)肝脏中克隆出两种不同基因编码的生长激素受体,即GHR1(scGHR1)和GHR2(scGHR2)cD-NA,其全长分别为1985bp(编码602个氨基酸)和2300bp(编码553个氨基酸)。这两种受体都含有生长激素受体典型的标志性基序FGDFS,以及细胞内属于细胞因子受体家族共有的Box1和Box2序列框。同时两者又存在差异,表现在胞外半胱氨酸残基和胞内酪氨酸残基数目的不同。采用半定量RT-PCR方法研究了scGHR1和scGHR2在南方鲇各组织中表达量的差异,结果表明:scGHR1和scGHR2有广泛的组织分布,在肝脏中两者的表达量最高。用17β-雌二醇(E2)、17α-甲基睾酮(MT)和可的松(cortisol)对南方鲇进行药物处理,结果表明E2能够下调肝脏scGHR1和scGHR2mRNA水平,而MT上调scGHR1和scGHR2mRNA水平。同时,经cortisol处理后scGHR1mRNA表达水平上升,而scGHR2mRNA表达水平不变。 展开更多
关键词 南方鲇 生长激素受体 结构分析 组织分布 激素调节
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Is ABP1 an Auxin Receptor Yet? 被引量:11
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作者 Jing-Hua Shi Zhen-Biao Yang 《Molecular Plant》 SCIE CAS CSCD 2011年第4期635-640,共6页
AUXIN BINDING PROTEIN 1 (ABP1) has long been proposed as an auxin receptor to regulate cell expansion. The embryo lethality of ABP1-null mutants demonstrates its fundamental role in plant development, but also hinde... AUXIN BINDING PROTEIN 1 (ABP1) has long been proposed as an auxin receptor to regulate cell expansion. The embryo lethality of ABP1-null mutants demonstrates its fundamental role in plant development, but also hinders investigation of its involvement in post-embryonic processes and its mode of action. By taking advantage of weak alleles and inducible systems, several recent studies have revealed a role for ABP1 in organ development, cell polarization, and shape formation. In addition to its role in the regulation of auxin-induced gene expression, ABP1 has now been shown to modulate non-transcriptional auxin responses. ABP1 is required for activating two antagonizing ROP GTPase signaling pathways involved in cytoskeletal reorganization and cell shape formation, and participates in the regulation of clathrinmediated endocytosis to subsequently affect PIN protein distribution. These exciting discoveries provide indisputable evidence for the auxin-induced signaling pathways that are downstream of ABP1 function, and suggest intriguing mechanisms for ABPl-mediated polar cell expansion and spatial coordination in response to auxin. 展开更多
关键词 hormonal regulation hormone biology RECEPTORS signal transduction cell signaling.
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甲哌鎓对棉花幼苗侧根发生的诱导效应和机理研究 被引量:11
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作者 段留生 张一 +2 位作者 唐祚舜 何钟佩 翟志席 《西北植物学报》 CAS CSCD 2002年第4期877-882,共6页
以陆地棉 (Gossypium hirsutum L.)中棉所 1 6和中棉所 2 9号为试验材料 ,用垂直板培养法试验结果表明 :40 0 mg· L-1 甲哌钅翁 (DPC)浸种处理显著促进棉花侧根发生 ,侧根原基发生量、发育速度和发生区长度都显著增加。去除侧根后 ... 以陆地棉 (Gossypium hirsutum L.)中棉所 1 6和中棉所 2 9号为试验材料 ,用垂直板培养法试验结果表明 :40 0 mg· L-1 甲哌钅翁 (DPC)浸种处理显著促进棉花侧根发生 ,侧根原基发生量、发育速度和发生区长度都显著增加。去除侧根后 ,DPC增加侧根原基发生量和发育速度。在低温逆境情况下 ,DPC显著促进侧根发生 ,对增加抗低温能力有利。DPC处理提高了幼苗主根中部生长素、玉米素及其核苷含量 ,可能是诱导侧根发生的内在原因。 展开更多
关键词 甲哌Weng 棉花 幼苗 侧根发生 诱导效应 机理
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STUDY ON REPRODUCTIVE ENDOCRINOLOGY OF HUMAN PLACENTA--CULTURE OF HIGHLY PURIFIED CYTOTROPHOBLAST CELL IN SERUM-FREE HORMONE SUPPLEMENTED MEDIUM 被引量:9
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作者 李荣皓 庄临之 《Science China Chemistry》 SCIE EI CAS 1991年第8期938-946,共9页
A new method of long-term culture of cytotrophoblast cells in serum-free medium has been developed. Cytotrophoblast cells were isolated with cold trypsin and purified by unit gravity sedimentation through BSA density ... A new method of long-term culture of cytotrophoblast cells in serum-free medium has been developed. Cytotrophoblast cells were isolated with cold trypsin and purified by unit gravity sedimentation through BSA density gradients. The cells were cultured in the FD medium with supplement of EGF, insulin, transferrin and sodium selenite. They could survive over three weeks. The results showed that both EGF and insulin stimulated hCG and progesterone secretion and that sodium selenite elevated hCG output but not progesterone secretion. Transferrin produced synergistic effect with EGF and insulin on hCG and progesterone secretion but it was ineffective when used alone. This study demonstrates that the four growth factors mentioned above are essential for the survival of cytotrophoblast cells in vitro. It is therefore suggested that EGF, insulin and selenium may possibly be involved in the regulation of hCG and progesterone secretion in the human placenta. 展开更多
关键词 CYTOTROPHOBLAST cell hormonal regulation SERUM-FREE MEDIUM growth factors.
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Roles of Arabidopsis Patatin-Related Phospholipases A in Root Development Are Related to Auxin Responses and Phosphate Deficiency 被引量:7
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作者 Steffen Rietz Georgi Dermendjiev +6 位作者 Esther Oppermann Fikadu Getah Tafesse Yunus Effendi Andre Holk Jane E. Parker Markus Teige Gunther F.E. Scherer 《Molecular Plant》 SCIE CAS CSCD 2010年第3期524-538,共15页
Phospholipase A enzymes cleave phospho- and galactolipids to generate free fatty acids and lysolipids that function in animal and plant hormone signaling. Here, we describe three Arabidopsis patatin-related phospholip... Phospholipase A enzymes cleave phospho- and galactolipids to generate free fatty acids and lysolipids that function in animal and plant hormone signaling. Here, we describe three Arabidopsis patatin-related phospholipase A (pPLA) genes AtPLAIVA, AtPLAIVB, and AtPLAIVC and their corresponding proteins. Loss-of-function mutants reveal roles for these pPLAs in roots during normal development and under phosphate deprivation. AtPLAIVA is expressed strongly and exclusively in roots and AtplalVA-null mutants have reduced lateral root development, characteristic of an impaired auxin response. By contrast, AtPLAIVB is expressed weakly in roots, cotyledons, and leaves but is transcriptionally induced by auxin, although AtplalVB mutants develop normally. AtPLAIVC is expressed in the floral gynaecium and is induced by abscisic acid (ABA) or phosphate deficiency in roots. While an AtplalVC-1 loss-of-function mutant displays ABA respon- siveness, it exhibits an impaired response to phosphate deficiency during root development. Recombinant AtPLA proteins hydrolyze preferentially galactolipids and, less efficiently, phospholipids, although these enzymes are not localized in chloroplasts. We find that AtPLAIVA and AtPLAIVB are phosphorylated by calcium-dependent protein kinases in vitro and this enhances their activities on phosphatidylcholine but not on phosphatidylglycerol. Taken together, the data reveal novel functions of pPLAs in root development with individual roles at the interface between phosphate deficiency and auxin signaling. 展开更多
关键词 Abiotic/environmental stress hormonal regulation protein phosphorylation/dephosphorylation SIGNALTRANSDUCTION gene regulation Arabidopsis.
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Hormonal Regulation of Leaf Morphogenesis in Arabidopsis 被引量:8
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作者 Lin-Chuan Li Ding-Ming Kang +1 位作者 Zhang-Liang Chen Li-Jia Qu 《Journal of Integrative Plant Biology》 SCIE CAS CSCD 2007年第1期75-80,共6页
Leaf morphogenesis is strictly controlled not only by intrinsic genetic factors, such as transcriptional factors, but also by environmental cues, such as light, water and pathogens. Nevertheless, the molecular mechani... Leaf morphogenesis is strictly controlled not only by intrinsic genetic factors, such as transcriptional factors, but also by environmental cues, such as light, water and pathogens. Nevertheless, the molecular mechanism of how leaf morphogenesis is regulated by genetic programs and environmental cues is far from clear. Numerous series of events demonstrate that plant hormones, mostly small and simple molecules, play crucial roles in plant growth and development, and in responses of plants to environmental cues such as light. With more and more genetics and molecular evidence obtained from the model plant Arabidopsis, several fundamental aspects of leaf morphogenesis including the initiation of leaf primordia, the determination of leaf axes, the regulation of cell division and expansion in leaves have been gradually unveiled. Among these phytohormones, auxin is found to be essential in the regulation of leaf morphogenesis. 展开更多
关键词 AUXIN curly leaf hormonal regulation leaf morphogenesis leaf shape
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昆虫变态发育的激素和营养调控研究进展与展望 被引量:9
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作者 刘素宁 任充华 李胜 《应用昆虫学报》 CAS CSCD 北大核心 2019年第4期639-651,共13页
变态发育是促进昆虫进化和多样性形成的重要因素之一。昆虫变态发育主要受到蜕皮激素和保幼激素的协同调控,通过信号通路诱导下游基因表达,保证蜕皮、组织重塑等生理过程的正确发生。除内在激素外,外在营养物质亦可通过营养信号影响激... 变态发育是促进昆虫进化和多样性形成的重要因素之一。昆虫变态发育主要受到蜕皮激素和保幼激素的协同调控,通过信号通路诱导下游基因表达,保证蜕皮、组织重塑等生理过程的正确发生。除内在激素外,外在营养物质亦可通过营养信号影响激素信号进而控制变态发育进程。本文主要综述了近十年来我国科研工作者在昆虫变态发育的激素和营养调控机制研究方面所取得的突出成果,并对未来潜在的研究方向进行了展望,以期对我国的害虫防治和益虫利用研究提供理论指导。 展开更多
关键词 变态发育 激素调控 营养调控
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Arabidopsis Protein Phosphatase 2C ABI1 Interacts with Type I ACC Synthases and Is Involved in the Regulation of Ozone-Induced Ethylene Biosynthesis 被引量:7
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作者 Agnieszka Ludwikow Agata Ciesla +12 位作者 Anna Kasprowicz-Malusk Filip Mitula Malgorzata Tajdel lukasz Gaigarnski Piotr A. Ziolkowski Piotr Kubiak Arleta Malecka Aneta Piechalak Marta Szabat Alicja Gorska Maciej Dabrowskia Izabela Ibragimow Jan Sadowski 《Molecular Plant》 SCIE CAS CSCD 2014年第6期960-976,共17页
Ethylene plays a crucial role in various biological processes and therefore its biosynthesis is strictly regu- lated by multiple mechanisms. Posttranslational regulation, which is pivotal in controlling ethylene biosy... Ethylene plays a crucial role in various biological processes and therefore its biosynthesis is strictly regu- lated by multiple mechanisms. Posttranslational regulation, which is pivotal in controlling ethylene biosynthesis, impacts 1-aminocyclopropane 1-carboxylate synthase (ACS) protein stability via the complex interplay of specific factors. Here, we show that the Arabidopsis thaliana protein phosphatase type 2C, ABI1, a negative regulator of abscisic acid signaling, is involved in the regulation of ethylene biosynthesis under oxidative stress conditions. We found that ABI1 interacts with ACS6 and dephosphorylates its C-terminal fragment, a target of the stress-responsive mitogen-activated protein kinase, MPK6. In addition, ABI1 controls MPK6 activity directly and by this means also affects the ACS6 phosphorylation level. Consistently with this, ozone-induced ethylene production was significantly higher in an ABI1 knockout strain (abiltd) than in wild-type plants. Importantly, an increase in stress-induced ethylene production in the abiltd mutant was compen- sated by a higher ascorbate redox state and elevated antioxidant activities. Overall, the results of this study provide evi- dence that ABI1 restricts ethylene synthesis by affecting the activity of ACS6. The ABI1 contribution to stress phenotype underpins its role in the interplay between the abscisic acid (ABA) and ethylene signaling pathways. 展开更多
关键词 hormonal regulation protein phosphorylation/dephosphorylation signal transduction Arabidopsis.
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反刍动物泌乳期的营养分配及其调控机制 被引量:8
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作者 吴慧慧 刘建新 张才乔 《中国畜牧杂志》 CAS 北大核心 2005年第5期64-66,共3页
泌乳期是哺乳动物的一个重要生理时期。随泌乳期开始,动物整体的营养分配和新陈代谢发生显著变化,以满足乳腺的需要。其净影响是乳腺新陈代谢速度和养分利用增加,非乳腺组织养分利用减少。泌乳期动物通过提高采食量或调用体贮来保证养... 泌乳期是哺乳动物的一个重要生理时期。随泌乳期开始,动物整体的营养分配和新陈代谢发生显著变化,以满足乳腺的需要。其净影响是乳腺新陈代谢速度和养分利用增加,非乳腺组织养分利用减少。泌乳期动物通过提高采食量或调用体贮来保证养分供给。随着泌乳期开始,肝脏糖异生速度显著提高,肝糖原被动员,葡萄糖氧化减少;脂质代谢速度增快,而脂肪组织中脂质合成速度下降。泌乳期营养分配的主要调节因子是激素。本文最后讨论了泌乳期各生理过程的协调作用,并举例说明了其重要性。 展开更多
关键词 畜牧学 泌乳期 综述 营养分配 激素调节 反刍动物
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