首页> 美国卫生研究院文献>Plant Physiology >Localization of Nonspecific Lipid Transfer Proteins Correlate with Programmed Cell Death Responses during Endosperm Degradation in Euphorbia lagascae Seedlings
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Localization of Nonspecific Lipid Transfer Proteins Correlate with Programmed Cell Death Responses during Endosperm Degradation in Euphorbia lagascae Seedlings

机译:非特异性脂质转移蛋白的定位与 大戟胚乳降解过程中的程序性细胞死亡反应。 lagascae幼苗

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摘要

When the storage materials have been depleted, the endosperm cells undergo programmed cell death. Very little is known about how the components of the dying cells are recycled and used by the growing seedling. To learn more about endosperm degradation and nutrient recycling, we isolated soluble proteins from the endosperm of Euphorbia lagascae seedlings collected 2, 4, and 6 d after sowing. The protein extracts were subjected to two-dimensional gel electrophoresis. Proteins that increased in amount in the endosperm with time were selected for further analysis with mass spectrometry. We successfully identified 17 proteins, which became more abundant by time during germination. Among these proteins were three E. lagascae lipid transfer proteins (ElLTPs), ElLTP1, ElLTP2, and ElLTP3. Detailed expressional studies were performed on ElLTP1 and ElLTP2. ElLTP1 transcripts were detected in endosperm and cotyledons, whereas ElLTP2 transcripts were only detected in endosperm. Western blots confirmed that ElLTP1 and ElLTP2 accumulate during germination. Immunolocalization experiments showed that ElLTP1 was present in the vessels of the developing cotyledons, and also in the alloplastic space in the endosperm. ElLTP2 formed a concentration gradient in the endosperm, with higher amounts in the inner regions close to the cotyledons, and lesser amounts in the outer regions of the endosperm. On the basis of these data, we propose that ElLTP1 and ElLTP2 are involved in recycling of endosperm lipids, or that they act as protease inhibitors protecting the growing cotyledons from proteases released during programmed cell death.
机译:当存储材料耗尽时,胚乳细胞将经历程序性细胞死亡。对于正在死亡的细胞的成分如何被正在生长的幼苗回收和使用的了解甚少。要了解有关胚乳降解和养分循环利用的更多信息,我们从播种后第2、4和6 d收集的大戟大戟幼苗的胚乳中分离了可溶性蛋白。对蛋白质提取物进行二维凝胶电泳。选择胚乳中随时间增加数量的蛋白质,以进行质谱分析。我们成功鉴定出17种蛋白质,这些蛋白质在发芽过程中随着时间的推移变得越来越丰富。在这些蛋白中,有三种大肠杆菌Lagascae脂质转移蛋白(ElLTPs),ElLTP1,ElLTP2和ElLTP3。对ElLTP1和ElLTP2进行了详细的表达研究。在胚乳和子叶中检测到ElLTP1转录本,而仅在胚乳中检测到ElLTP2转录本。 Western印迹证实,ElLTP1和ElLTP2在发芽过程中积累。免疫定位实验表明,ElLTP1存在于发育中的子叶的血管中,也存在于胚乳的同种异体空间中。 ElLTP2在胚乳中形成浓度梯度, 靠近子叶的内部区域的含量较高,而较少 在胚乳的外部区域。根据这些数据,我们 提出ElLTP1和ElLTP2参与胚乳脂质的回收, 或它们充当蛋白酶抑制剂来保护正在生长的子叶免受 在程序性细胞死亡过程中释放的蛋白酶。

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