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根际中腐胺摄取量的增加抑制了荧光假单胞菌菌株WCS365对根系的竞争性定殖。

Increased uptake of putrescine in the rhizosphere inhibits competitive root colonization by Pseudomonas fluorescens strain WCS365.

作者信息

Kuiper I, Bloemberg G V, Noreen S, Thomas-Oates J E, Lugtenberg B J

机构信息

Leiden University, Institute of Molecular Plant Sciences, Clusius Laboratory, The Netherlands.

出版信息

Mol Plant Microbe Interact. 2001 Sep;14(9):1096-104. doi: 10.1094/MPMI.2001.14.9.1096.

Abstract

Sequence analysis of the chromosomal Tn5lacZ flanking regions of the Pseudomonas fluorescens WCS365 competitive root colonization mutant PCL1206 showed that the Tn5lacZ is inserted between genes homologous to bioA and potF. The latter gene is the first gene of the potF1F2GHI operon, which codes for a putrescine transport system in Escherichia coli. The position of the Tn5lacZ suggests an effect on the expression of the pot operon. A mutation in the potF1 gene as constructed in PCL1270, however, had no effect on competitive root colonization. The rate of uptake of [1,4-14C]putrescine by cells of mutant PCL1206 appeared to be increased, whereas cells of strain PCL1270 were strongly impaired in the uptake of putrescine. Dansylation of tomato root exudate and subsequent thin-layer chromatography showed the presence of a component with the same Rf value as dansyl-putrescine, which was identified as dansyl-putrescine by mass spectrometric analyses. Other polyamines such as spermine and spermidine were not detected in the root exudate. Growth of mutant strains, either alone or in competition with the wild type, was tested in media containing putrescine, spermine, or spermidine as the sole nitrogen source. The results show that mutant PCL1206 is strongly impaired in growth on putrescine and slightly impaired on spermine and spermidine. The presence of the polyamines had a similar effect on the growth rate of strain PCL1270 in the presence of putrescine but a less severe effect in the presence of spermine and spermidine. We conclude that an increased rate of putrescine uptake has a bacteriostatic effect on Pseudomonas spp. cells. We have shown that putrescine is an important tomato root exudate component and that root-colonizing pseudomonads must carefully regulate their rate of uptake because increased uptake causes a decreased growth rate and, therefore, a decreased competitive colonization ability.

摘要

荧光假单胞菌WCS365竞争性定殖于根部的突变体PCL1206的染色体Tn5lacZ侧翼区域的序列分析表明,Tn5lacZ插入到与bioA和potF同源的基因之间。后一个基因是potF1F2GHI操纵子的第一个基因,该操纵子在大肠杆菌中编码一个腐胺转运系统。Tn5lacZ的位置表明其对pot操纵子的表达有影响。然而,在PCL1270中构建的potF1基因突变对竞争性定殖于根部没有影响。突变体PCL1206细胞对[1,4-14C]腐胺的摄取速率似乎增加了,而PCL1270菌株的细胞对腐胺的摄取则受到严重损害。对番茄根分泌物进行丹磺酰化处理,随后进行薄层色谱分析,结果显示存在一种与丹磺酰腐胺具有相同Rf值的成分,通过质谱分析将其鉴定为丹磺酰腐胺。在根分泌物中未检测到其他多胺,如精胺和亚精胺。在以腐胺、精胺或亚精胺作为唯一氮源的培养基中,测试了突变菌株单独生长或与野生型竞争生长的情况。结果表明,突变体PCL1206在以腐胺为氮源时生长受到严重损害,在以精胺和亚精胺为氮源时生长略有受损。多胺的存在对PCL1270菌株在有腐胺存在时的生长速率有类似影响,但在有精胺和亚精胺存在时影响较小。我们得出结论,腐胺摄取速率的增加对假单胞菌属细胞具有抑菌作用。我们已经表明,腐胺是番茄根分泌物的一种重要成分,并且定殖于根部的假单胞菌必须仔细调节其摄取速率,因为摄取速率增加会导致生长速率下降,从而导致竞争性定殖能力下降。

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