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Herbicide resistance in Convolvulus and Calystegia- a matter of GST activity?

机译:除草剂抗逆变度和压力睾丸 - 一种GST活性的问题?

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Bindweeds are known to be problematic in agriculture with a certain ability to survive stress caused by electrophilic compounds which may function as herbicides. Glutathione S-transferases are enzymes involved in the detoxification of such organic xenobiotics. Thus, the activity of glutathione-S-transferases (GST) in stems, petals, rhizomes and leaves of hedge bindweed (Calystegia sepium) and field bindweed (Convolvulus arvensis) was investigated and compared by means of enzyme and inhibition assaysin order to examine GST contribution to detoxification of xenobiotics and herbicide tolerance. GST activity was high in both C. sepium and C. arvensis using model substrates CDNB and NBC, whilst DCNB and NBOC tests revealed significantly lower substrateaffinities. Glutathione reductase (GR) was active in both species, and high peroxidase (POX) activities were measured in perennial rhizomes with particularly high rates in C. arvensis, indicating that rhizomes are well equipped to withstand oxygen radical stress. Inhibition assays proved that except for one compound all the herbicidal substrates chosen were competitive to CDNB for GST affinity to various extents. Amongst the strategies C. arvensis and C. sepium plants employ to deal with xenobiotic stress, detoxifying GSTs as well as peroxidase and glutathione reductase were shown to belong to the most important ones.
机译:Bindweeds已知是在农业问题具有一定生存引起其可作为除草剂的作用电子化合物应力的能力。谷胱甘肽S-转移酶是参与这种有机异生素的解毒酶。因此,谷胱甘肽-S-转移酶(GST)在活动茎,花瓣,根茎和对冲旋花(旋花)和田旋花(田旋花)的叶进行了研究并比较由酶和抑制手段assaysin为了检测GST到外源物和抗除草剂的解毒作用。 GST活性在两种C.柳高和C.荬使用模型基板CDNB和NBC,同时DCNB和NBOC试验揭示显著下substrateaffinities。谷胱甘肽还原酶(GR)是活跃的在这两个物种,并且与在C.荬特别高的速率多年生根茎测定高过氧化物酶(POX)的活动,这表明根茎能经得住氧自由基应力。抑制测定法证明了除了一个化合物的所有所选择的除草底物是有竞争力的,以用于CDNB GST亲和到各种程度。当中的策略C.荬和C.柳植物采用对付异生的压力,解毒的GST以及过氧化物酶和谷胱甘肽还原酶被证明属于最重要的。

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