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首页> 外文期刊>Microbiology >The symbiotic phenotypes of exopolysaccharide-defective mutants of Rhizobium sp. strain TAL1145 do not differ on determinate- and indeterminate-nodulating tree legumes
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The symbiotic phenotypes of exopolysaccharide-defective mutants of Rhizobium sp. strain TAL1145 do not differ on determinate- and indeterminate-nodulating tree legumes

机译:Rhzobium SP的外偶糖缺陷突变体的共生表型。应变Tal1145在测定和不确定的环状树豆类上没有不同

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摘要

Three classes of exopolysaccharide (EPS) defective mutants were isolated by Tn3Hogus-insertion mutagenesis of Rhizobium sp. strain TAL1145, which nodulates tree legumes. The class I and class III mutants produced 10-22% of the EPS produced by TAL1145 and appeared partially mucoid while the class II mutants formed small, opaque and non-mucoid colonies. Size-fractionation of the soluble EPSs made by these mutants in the culture supernatant indicated that the class I and the class III mutants produced reduced levels of both highland low-molecular-mass EPSs while the class II mutants lacked both these EPSs but produced a small amount of a medium-molecular-mass anthrone-reactive EPS. The succinyl and acetyl substituents observed in the TAL1145 EPS were absent in the EPS of the class II mutants. When examined under UV, the class I and class III mutants grown on Calcofluor-containing YEM agar showed dim blue fluorescence, compared to the bright blue fluorescence of the wild-type strain, whereas the class II mutants did not fluoresce. While the dim blue fluorescence of the class III mutants changed to yellow-green after 10 d, the fluorescence of the class I mutants did not change after prolonged incubation. Unlike the EPS-defective mutants of other rhizobia, these mutants did not show different symbiotic phenotypes on determinate- and indeterminate-nodulating tree legumes. The class I and the class III mutants formed small ineffective nodules on both types of legumes whereas the class II mutants formed normal nitrogen-fixing nodules on both types. The genes disrupted in the class I and class III mutants form a single complementation group while those disrupted in the class II mutants constitute another. All the three classes of EPS-defective mutants were located within a 10.8 kb region and complemented by two overlapping cosmids.
机译:通过TN3Hogus插入Rhizobium SP的TN3Hogus插入诱变分离了三类的外偶糖(EPS)缺陷突变体。应变Tal1145,结论树豆类。 I类和III类突变体产生了由TAL1145产生的10-22%的EP,并且出现部分粘液,而II类突变体形成小,不透明和非粘液菌落。这些突变体在培养上清液中制备的可溶性EPS的尺寸分馏表明,I类和III类突变体产生了降低的高层低分子量EPS水平,而II类突变体缺少这些EPS,但产生了一个小的中分子量蒽酮反应性EPS的量。在II类突变体的EPS中不存在于TAL1145 EP中观察到的琥珀酰基和乙酰替代剂。当在紫外线下检查时,含有含钙氟的YEM琼脂上生长的I类和III类突变体显示暗蓝色荧光,与野生型菌株的亮蓝荧光相比,而II类突变体并未荧光。虽然在10天后,III类突变体的暗蓝荧光变为黄绿色,但在长时间孵化后,I类突变体的荧光不会改变。与其他根瘤菌的EPS缺陷突变体不同,这些突变体未显示不同的共生表型在测定和不确定的旋转树豆类上。 I类和III类突变体在两种类型的豆类上形成了小的无效结节,而II类突变体在两种类型上形成正常的氮固定结节。在I类和III类突变体中破坏的基因形成单个互补组,而II类突变体中断的那些突变构成另一个互补组。所有三类缺陷突变体都位于10.8kb区内,并互补两个重叠的粘性粘附物。

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