首页> 美国卫生研究院文献>Plant Physiology >Cell Wall-Bound Invertase Limits Sucrose Export and Is Involved in Symptom Development and Inhibition of Photosynthesis during Compatible Interaction between Tomato and Xanthomonas campestris pv vesicatoria
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Cell Wall-Bound Invertase Limits Sucrose Export and Is Involved in Symptom Development and Inhibition of Photosynthesis during Compatible Interaction between Tomato and Xanthomonas campestris pv vesicatoria

机译:细胞壁结合的蔗糖酶限制了蔗糖的出口并参与番茄和油菜黄单胞菌PV vesicatoria之间的相容相互作用期间的症状发展和光合作用的抑制。

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摘要

Cell wall-bound invertase (cw-Inv) plays an important role in carbohydrate partitioning and regulation of sink-source interaction. There is increasing evidence that pathogens interfere with sink-source interaction, and induction of cw-Inv activity has frequently been shown in response to pathogen infection. To investigate the role of cw-Inv, transgenic tomato (Solanum lycopersicum) plants silenced for the major leaf cw-Inv isoforms were generated and analyzed during normal growth and during the compatible interaction with Xanthomonas campestris pv vesicatoria. Under normal growth conditions, activities of sucrolytic enzymes as well as photosynthesis and respiration were unaltered in the transgenic plants compared with wild-type plants. However, starch levels of source leaves were strongly reduced, which was most likely caused by an enhanced sucrose exudation rate. Following X. campestris pv vesicatoria infection, cw-Inv-silenced plants showed an increased sucrose to hexose ratio in the apoplast of leaves. Symptom development, inhibition of photosynthesis, and expression of photosynthetic genes were clearly delayed in transgenic plants compared with wild-type plants. In addition, induction of senescence-associated and pathogenesis-related genes observed in infected wild-type plants was abolished in cw-Inv-silenced tomato lines. These changes were not associated with decreased bacterial growth. In conclusion, cw-Inv restricts carbon export from source leaves and regulates the sucrose to hexose ratio in the apoplast. Furthermore, an increased apoplastic hexose to sucrose ratio can be linked to inhibition of photosynthesis and induction of pathogenesis-related gene expression but does not significantly influence bacterial growth. Indirectly, bacteria may benefit from low invertase activity, since the longevity of host cells is raised and basal defense might be dampened.
机译:细胞壁结合的转化酶(cw-Inv)在碳水化合物分配和调节水槽-源相互作用中起重要作用。越来越多的证据表明,病原体会干扰水槽-源之间的相互作用,并且对病原体感染的反应经常显示出cw-Inv活性的诱导。为了研究cw-Inv的作用,在正常生长过程中以及与野油菜黄单胞菌(Xanthomonas campestris pv vesicatoria)的相容性相互作用过程中,产生并分析了主要叶片cw-Inv亚型沉默的转基因番茄(Solanum lycopersicum)植物。在正常的生长条件下,与野生型植物相比,转基因植物中的糖酵解酶活性以及光合作用和呼吸作用没有改变。但是,源叶中的淀粉含量大大降低,这很可能是由于蔗糖渗出率提高所致。 X. campestris pv vesicatoria感染后,cw-Inv沉默的植物在叶片的质外体中显示出蔗糖与己糖之比增加。与野生型植物相比,转基因植物的症状发展,光合作用抑制和光合基因表达明显延迟。另外,在CW-Inv沉默的番茄系中废除了在感染的野生型植物中观察到的衰老相关基因和致病相关基因的诱导。这些变化与细菌生长减少无关。总之,cw-Inv限制了源叶的碳输出,并调节了质外体中的蔗糖与己糖之比。此外,增生的己糖与蔗糖的比率增加可以与光合作用的抑制和发病机理相关的基因表达的诱导联系在一起,但不会显着影响细菌的生长。间接地,细菌可能会受益于低转化酶活性,因为宿主细胞的寿命会延长,基础防御能力可能会受到削弱。

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