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Collection and Analysis of Arabidopsis Phloem Exudates Using the EDTA-facilitated Method

机译:EDTA促进方法收集和分析拟南芥韧皮分泌液

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摘要

The plant phloem is essential for the long-distance transport of (photo-) assimilates as well as of signals conveying biotic or abiotic stress. It contains sugars, amino acids, proteins, RNA, lipids and other metabolites. While there is a large interest in understanding the composition and function of the phloem, the role of many of these molecules and thus, their importance in plant development and stress response has yet to be determined. One barrier to phloem analysis lies in the fact that the phloem seals itself upon wounding. As a result, the number of plants from which phloem sap can be obtained is limited. One method that allows collection of phloem exudates from several plant species without added equipment is the EDTA-facilitated phloem exudate collection described here. While it is easy to use, it does lead to the wounding of cells and care has to be taken to remove contents of damaged cells. In addition, several controls to prove purity of the exudate are necessary. Because it is an exudation rather than a direct collection of the phloem sap (not possible in many species) only relative quantification of its contents can occur. The advantage of this method over others is that it can be used in many herbaceous or woody plant species (Perilla, Arabidopsis, poplar, etc.) and requires minimal equipment and training. It leads to reasonably large amounts of exudates that can be used for subsequent analysis of proteins, sugars, lipids, RNA, viruses and metabolites. It is simple enough that it can be used in both a research as well as in a teaching laboratory.
机译:植物韧皮部对于(光)同化物的长距离运输以及传递生物或非生物胁迫的信号至关重要。它包含糖,氨基酸,蛋白质,RNA,脂质和其他代谢产物。尽管人们对理解韧皮部的组成和功能有极大的兴趣,但许多这些分子的作用以及因此在植物发育和胁迫响应中的重要性尚待确定。韧皮部分析的一个障碍在于,韧皮部在受伤时会自行密封。结果,可以从中获得韧皮部汁液的植物的数量受到限制。一种无需添加设备即可从几种植物中收集韧皮部分泌物的方法是此处所述的EDTA促进韧皮部分泌物的收集。尽管易于使用,但确实会导致细胞受伤,必须小心清除受损细胞的内容物。另外,必须有几个控制措施来证明渗出液的纯度。因为它是韧皮部汁液的渗出而不是直接收集(在许多物种中不可能),所以只能对其含量进行相对定量。该方法相对于其他方法的优势在于,它可以用于许多草本或木本植物物种(紫苏,拟南芥,杨树等),并且所需的设备和培训最少。它会导致大量渗出液,可用于蛋白质,糖,脂质,RNA,病毒和代谢产物的后续分析。它非常简单,可以在研究和教学实验室中使用。

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