Salicylic Acid Hydroxylases regulate SA homeostasis in Leaf Senescence and Pathogen Responses of Ara

来源 :2015全国植物细胞生物学大会 | 被引量 : 0次 | 上传用户:tianzhizui
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
  The plant hormone salicylic acid (SA) plays critical roles in plant defense, stress responses, and senescence.Although SA signaling is well understood, the puzzles of its biosynthesis pathways remain to be investigated.Previously, we have characterized an SA 3-hydroxylase (S3H) involved in SA catabolism during leaf senescence and pathogen response.
其他文献
  As lead (Pb2+) toxicity may cause physiological and biochemical dysfunctions in plants, while magnesium (Mg2+) has been proved to be able to ameliorate the
会议
  Actin is a major component of the cytoskeleton of plant cells, and is involved in many important physiological processes.To understand the molecular mechani
会议
会议
  木质素合成是植物应对胁迫的典型防御反应,但在镉胁迫下,植物木质素合成响应的机理知之甚少.本研究以筛选获得的两个镉耐性差异较大的箭舌豌豆(Vicia sativa L.)品种L3(
会议
  水稻生殖期干旱胁迫直接导致巨幅减产甚至绝收,因此挖掘生殖期相关抗旱基因以此提高水稻抗旱能力迫在眉睫. OsCBSCBSPB1基因属于胱硫醚β合成酶(cystathionine beta synt
会议
  CEP1 is a cysteine endopeptidases (CysEP) with a C-terminal KDEL ER retention signal.It is involved in the regulation of programmed cell death (PCD) in plan
  生长素和一氧化氮均为调节植物生长发育的重要激素,且能够相互作用调控植物的生长发育.近期研究结果表明,NO可通过亚硝基化(S-nitrosylation)分别促进生长素的信号转导和
会议
  Cl通道蛋白(CLCs)是植物细胞膜上的一类主要的阴离子通道,参与了植物多种生理过程,包括营养元素吸收、胞间运输、植物胞内pH调节、信号转导以及阴离子(包括Cl-、NO3-)吸收