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首页> 外文期刊>Plant, Cell & Environment >Involvement of the xyloglucan endotransglycosylase/hydrolases encoded by celery XTH1 and Arabidopsis XTH33 in the phloem response to aphids
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Involvement of the xyloglucan endotransglycosylase/hydrolases encoded by celery XTH1 and Arabidopsis XTH33 in the phloem response to aphids

机译:芹菜XTH1和拟南芥属XTH33编码的木葡聚糖内切糖基化酶/水解酶参与对蚜虫的韧皮部响应

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摘要

During infestation, phloem-feeding insects induce transcriptional reprogramming in plants that may lead to protection. Transcripts of the celery XTH1 gene, encoding a xyloglucan endotransglycosylase/hydrolase (XTH), were previously found to accumulate systemically in celery (Apium graveolens) phloem, following infestation with the generalist aphid Myzus persicae. XTH1 induction was specific to the phloem but was not correlated with an increase in xyloglucan endotransglycosylase (XET) activity in the phloem. XTH1 is homologous to the Arabidopsis thaliana XTH33 gene. XTH33 expression was investigated following M. persicae infestation. The pattern of XTH33 expression is tightly controlled during development and indicates a possible role in cell expansion. An xth33 mutant was assayed for preference assay with M. persicae. Aphids settled preferentially on the mutant rather than on the wild type. This suggests that XTH33 is involved in protecting plants against aphids; therefore, that cell wall modification can alter the preference of aphids for a particular plant. Nevertheless, the ectopic expression of XTH33 in phloem tissue was not sufficient to confer protection, demonstrating that modifying the expression of this single gene does not readily alter plant-aphid interactions.
机译:在侵扰期间,食生韧皮部的昆虫在植物中诱导转录重编程,这可能导致保护。先前发现,在泛用蚜虫Myzus persicae侵染后,芹菜XTH1基因的转录本编码木糖葡聚糖内切糖基化酶/水解酶(XTH),在芹菜(Apiumgravolens)韧皮部中全身积累。 XTH1诱导特异于韧皮部,但与韧皮部中木葡聚糖内转糖基化酶(XET)活性的增加无关。 XTH1与拟南芥XTH33基因同源。在桃蚜分枝杆菌感染后研究了XTH33的表达。 XTH33表达的模式在发育过程中受到严格控制,并表明可能在细胞扩增中发挥作用。用波斯分枝杆菌对xth33突变体进行偏好分析。蚜虫优先于突变体而不是野生型。这表明XTH33参与了植物的蚜虫保护。因此,细胞壁修饰可以改变蚜虫对特定植物的偏好。但是,韧皮部组织中XTH33的异位表达不足以提供保护,这表明修饰该单一基因的表达不会轻易改变植物与蚜虫的相互作用。

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