Ueda Nobuo, Boettcher Anne
Department of Biological Sciences, Auburn University, Auburn, AL, USA.
Cell Stress Chaperones. 2009 Jul;14(4):439-43. doi: 10.1007/s12192-008-0096-3. Epub 2009 Jan 8.
For a variety of species, changes in the expression of heat shock proteins (HSP) have been linked to key developmental changes, i.e., gametogenesis, embryogenesis, and metamorphosis. Many marine invertebrates are known to have a biphasic life cycle where pelagic larvae go through settlement and metamorphosis as they transition to the benthic life stage. A series of experiments were run to examine the expression of heat shock protein 70 (HSP 70) during larval and early spat (initial benthic phase) development in the Eastern oyster, Crassostrea virginica. In addition, the impact of thermal stress on HSP 70 expression during these early stages was studied. C. virginica larvae and spat expressed three HSP 70 isoforms, two constitutive, HSC 77 and HSC 72, and one inducible, HSP 69. We found differences in the expression of both the constitutive and inducible forms of HSP 70 among larval and early juvenile stages and in response to thermal stress. Low expression of HSP 69 during early larval and spat development may be associated with the susceptibility of these stages to environmental stress. Although developmental regulation of HSP 70 expression has been widely recognized, changes in its expression during settlement and metamorphosis of marine invertebrates are still unknown. The results of the current study demonstrated a reduction of HSP 70 expression during settlement and metamorphosis in the Eastern oyster, C. virginica.
对于多种物种而言,热休克蛋白(HSP)表达的变化与关键的发育变化相关联,即配子发生、胚胎发生和变态发育。许多海洋无脊椎动物具有双相生命周期,其中浮游幼虫在过渡到底栖生活阶段时会经历附着和变态发育。开展了一系列实验来检测美国东海岸牡蛎(Crassostrea virginica)幼虫和早期稚贝(初始底栖阶段)发育过程中热休克蛋白70(HSP 70)的表达情况。此外,还研究了热应激对这些早期阶段HSP 70表达的影响。美国东海岸牡蛎幼虫和稚贝表达三种HSP 70亚型,两种为组成型,即HSC 77和HSC 72,一种为诱导型,即HSP 69。我们发现,在幼虫和早期幼体阶段以及对热应激的反应中,HSP 70组成型和诱导型的表达均存在差异。在幼虫和稚贝早期发育过程中HSP 69的低表达可能与这些阶段对环境应激的易感性有关。尽管HSP 70表达的发育调控已得到广泛认可,但在海洋无脊椎动物附着和变态发育过程中其表达的变化仍不清楚。当前研究结果表明,美国东海岸牡蛎在附着和变态发育过程中HSP 70表达降低。