Pelletreau Karen N, Weber Andreas P M, Weber Katrin L, Rumpho Mary E
Department of Molecular and Cell Biology, University of Connecticut, Storrs, Connecticut, United States of America.
Institute of Plant Biochemistry, Cluster of Excellence on Plant Sciences (CEPLAS), Heinrich-Heine University, Dusseldorf, Germany.
PLoS One. 2014 May 14;9(5):e97477. doi: 10.1371/journal.pone.0097477. eCollection 2014.
The establishment of kleptoplasty (retention of "stolen plastids") in the digestive tissue of the sacoglossan Elysia chlorotica Gould was investigated using transmission electron microscopy. Cellular processes occurring during the initial exposure to plastids were observed in laboratory raised animals ranging from 1-14 days post metamorphosis (dpm). These observations revealed an abundance of lipid droplets (LDs) correlating to plastid abundance. Starvation of animals resulted in LD and plastid decay in animals <5 dpm that had not yet achieved permanent kleptoplasty. Animals allowed to feed on algal prey (Vaucheria litorea C. Agardh) for 7 d or greater retained stable plastids resistant to cellular breakdown. Lipid analysis of algal and animal samples supports that these accumulating LDs may be of plastid origin, as the often algal-derived 20∶5 eicosapentaenoic acid was found in high abundance in the animal tissue. Subsequent culturing of animals in dark conditions revealed a reduced ability to establish permanent kleptoplasty in the absence of photosynthetic processes, coupled with increased mortality. Together, these data support an important role of photosynthetic lipid production in establishing and stabilizing this unique animal kleptoplasty.
利用透射电子显微镜研究了绿叶海天牛(Elysia chlorotica Gould)消化组织中盗食质体(保留“窃取的质体”)的建立情况。在变态后1至14天(dpm)的实验室饲养动物中,观察了最初接触质体期间发生的细胞过程。这些观察结果显示,大量脂滴(LDs)与质体丰度相关。对动物进行饥饿处理导致5 dpm以下尚未实现永久性盗食质体的动物中脂滴和质体衰退。以藻类猎物(Vaucheria litorea C. Agardh)为食7天或更长时间的动物保留了对细胞分解具有抗性的稳定质体。对藻类和动物样本的脂质分析支持这些积累的脂滴可能源自质体,因为在动物组织中经常发现大量藻类来源的20∶5二十碳五烯酸。随后在黑暗条件下对动物进行培养,结果显示在没有光合作用过程的情况下建立永久性盗食质体的能力降低,同时死亡率增加。这些数据共同支持了光合脂质产生在建立和稳定这种独特的动物盗食质体中的重要作用。