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附生植物的食欲:叶际细菌糖消耗的定量监测。

Appetite of an epiphyte: quantitative monitoring of bacterial sugar consumption in the phyllosphere.

作者信息

Leveau J H, Lindow S E

机构信息

Department of Plant and Microbial Biology, University of California, Berkeley, CA 94720, USA.

出版信息

Proc Natl Acad Sci U S A. 2001 Mar 13;98(6):3446-53. doi: 10.1073/pnas.061629598.

Abstract

We report here the construction, characterization, and application of a bacterial bioreporter for fructose and sucrose that was designed to monitor the availability of these sugars to microbial colonizers of the phyllosphere. Plasmid pP(fruB)-gfp[AAV] carries the Escherichia coli fruB promoter upstream from the gfp[AAV] allele that codes for an unstable variant of green fluorescent protein (GFP). In Erwinia herbicola, this plasmid brings about the accumulation of GFP fluorescence in response to both fructose and sucrose. Cells of E. herbicola (pP(fruB)-gfp[AAV]) were sprayed onto bean plants, recovered from leaves at various time intervals after inoculation, and analyzed individually for GFP content by quantitative analysis of digital microscope images. We observed a positive correlation between single-cell GFP accumulation and ribosomal content as determined by fluorescence in situ hybridization, indicating that foliar growth of E. herbicola occurred at the expense of fructose and/or sucrose. One hour after inoculation, nearly all bioreporter cells appeared to be actively engaged in fructose consumption. This fraction dropped to approximately 11% after 7 h and to approximately 1% a day after inoculation. This pattern suggests a highly heterogeneous availability of fructose to individual E. herbicola cells as they colonize the phyllosphere. We estimated that individual cells were exposed to local initial fructose abundances ranging from less than 0.15 pg fructose to more than 4.6 pg.

摘要

我们在此报告一种用于果糖和蔗糖的细菌生物报告器的构建、表征及应用,该生物报告器旨在监测叶际微生物定殖者可利用的这些糖类的情况。质粒pP(fruB)-gfp[AAV]在编码绿色荧光蛋白(GFP)不稳定变体的gfp[AAV]等位基因上游携带大肠杆菌fruB启动子。在草生欧文氏菌中,该质粒在果糖和蔗糖存在时都会导致GFP荧光积累。将草生欧文氏菌(pP(fruB)-gfp[AAV])细胞喷洒到菜豆植株上,在接种后的不同时间间隔从叶片上回收,并通过对数字显微镜图像的定量分析单独分析GFP含量。我们观察到单细胞GFP积累与通过荧光原位杂交测定的核糖体含量之间呈正相关,这表明草生欧文氏菌在叶面上的生长是以消耗果糖和/或蔗糖为代价的。接种后1小时,几乎所有生物报告器细胞似乎都在积极消耗果糖。接种7小时后,这一比例降至约11%,接种一天后降至约1%。这种模式表明,在草生欧文氏菌细胞定殖叶际时,果糖对单个细胞的可利用性存在高度异质性。我们估计单个细胞接触到的局部初始果糖丰度范围从小于0.15 pg果糖到大于4.6 pg。

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