Rietz Steffen, Holk André, Scherer Günther F E
Institut für Zierpflanzenbau, Baumschule und Pflanzenzüchtung, Universität Hannover, Herrenhäuser Str. 2, 30419, Hannover, Germany.
Planta. 2004 Sep;219(5):743-53. doi: 10.1007/s00425-004-1275-9. Epub 2004 Apr 29.
In Arabidopsis thaliana (L.) Heynh., the cytosolic, patatin-related phospholipase A enzymes comprise a family of ten genes designated AtPLAs thought to be involved in auxin and pathogen signalling [A. Holk et al. (2002) Plant Physiol 130:90-101]. One of these, AtPLA IIA, is investigated here by studying its transcriptional regulation through transgenic Arabidopsis plants containing the AtPLA IIA promoter (PIIA) fused to the beta-glucuronidase (GUS) gene. GUS activity appeared in leaves at 10-12 days and became increasingly stronger with age in all leaves. From the same age on, strong GUS activity was visible in the basal stipules of the rosette leaves. PIIA-dependent GUS activity was found in the older parts of the primary root (from 10 days on) and, later in development, in older parts of side roots, and the root cap. No GUS activity was detected in flower organs. PIIA-dependent GUS expression in 12-day-old plants was up-regulated after treatment by salicylic acid, Bion, wounding, 1-aminocyclopropane-1-carboxylic acid (ACC) and jasmonic acid. When transgenic PIIA:: uidA plants were grown devoid of iron, 9-day-old plants exhibited increased GUS activity in the leaves and, when devoid of phosphate, 11-day-old plants had increased GUS activity in the roots. In conclusion, this member of the patatin-related phospholipase A gene family showed properties of a defence and iron-stress and phosphate-stress gene, being transcriptionally up-regulated within hours or days.
在拟南芥中,胞质中与马铃薯块茎蛋白相关的磷脂酶A酶包含一个由十个基因组成的家族,命名为AtPLAs,被认为参与生长素和病原体信号传导[A. Holk等人(2002年),《植物生理学》130:90 - 101]。这里通过研究含有与β-葡萄糖醛酸酶(GUS)基因融合的AtPLA IIA启动子(PIIA)的转基因拟南芥植物对其转录调控来研究其中一个基因AtPLA IIA。GUS活性在10 - 12天时出现在叶片中,并随着叶片年龄的增长而越来越强。从相同年龄开始,莲座叶的基部托叶中可见强烈的GUS活性。在主根的较老部分(从10天开始)以及发育后期的侧根较老部分和根冠中发现了依赖PIIA的GUS活性。在花器官中未检测到GUS活性。水杨酸、Bion、创伤、1 - 氨基环丙烷 - 1 - 羧酸(ACC)和茉莉酸处理后,12日龄植物中依赖PIIA的GUS表达上调。当转基因PIIA::uidA植物在缺铁条件下生长时,9日龄植物叶片中的GUS活性增加,而在缺磷条件下生长时,11日龄植物根中的GUS活性增加。总之,这个与马铃薯块茎蛋白相关的磷脂酶A基因家族成员表现出防御、铁胁迫和磷胁迫基因的特性,在数小时或数天内转录上调。