首页> 外文OA文献 >Potassium transport in developing fleshy fruits: The grapevine inward K+ channel VvK1.2 is activated by CIPK-CBL complexes and induced in ripening berry flesh cells
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Potassium transport in developing fleshy fruits: The grapevine inward K+ channel VvK1.2 is activated by CIPK-CBL complexes and induced in ripening berry flesh cells

机译:发育中的果肉果实中的钾转运:CIPK-CBL复合物激活葡萄的内向K +通道VvK1.2,并在成熟的果肉细胞中诱导

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摘要

The grape berry provides a model for investigating the physiology of non-climacteric fruits. Increased K+ accumulation in the berry has a strong negative impact on fruit acidity (and quality). In maturing berries, we identified a K+ channel from the Shaker family, VvK1.2, and two CBL-interacting protein kinase (CIPK)/calcineurin B-like calcium sensor (CBL) pairs, VvCIPK04-VvCBL01 and VvCIPK03-VvCBL02, that may control the activity of this channel. VvCBL01 and VvCIPK04 are homologues of Arabidopsis AtCBL1 and AtCIPK23, respectively, which form a complex that controls the activity of the Shaker K+ channel AKT1 in Arabidopsis roots. VvK1.2 remained electrically silent when expressed alone in Xenopus oocytes, but gave rise to K+ currents when co-expressed with the pairs VvCIPK03-VvCBL02 or VvCIPK04-VvCBL01, the second pair inducing much larger currents than the first one. Other tested CIPK-CBL pairs expressed in maturing berries were found to be unable to activate VvK1.2. When activated by its CIPK-CBL partners, VvK1.2 acts as a voltagegated inwardly rectifying K+ channel that is activated at voltages more negative than -100 mV and is stimulated upon external acidification. This channel is specifically expressed in the berry, where it displays a very strong induction at veraison (the inception of ripening) in flesh cells, phloem tissues and perivascular cells surrounding vascular bundles. Its expression in these tissues is further greatly increased upon mild drought stress. VvK1.2 is thus likely to mediate rapid K+ transport in the berry and to contribute to the extensive reorganization of the translocation pathways and transport mechanisms that occurs at veraison. (Résumé d'auteur)
机译:葡萄浆果为研究非更年期水果的生理提供了一个模型。浆果中K +积累的增加对果实的酸度(和品质)产生强烈的负面影响。在成熟的浆果中,我们确定了来自Shaker家族VvK1.2的K +通道,以及两个CBL相互作用蛋白激酶(CIPK)/钙调神经磷酸酶B样钙传感器(CBL)对,即VvCIPK04-VvCBL01和VvCIPK03-VvCBL02。控制此渠道的活动。 VvCBL01和VvCIPK04分别是拟南芥AtCBL1和AtCIPK23的同源物,它们形成控制拟南芥根中摇床K +通道AKT1活性的复合物。 VvK1.2在非洲爪蟾卵母细胞中单独表达时仍保持电沉默,但与VvCIPK03-VvCBL02或VvCIPK04-VvCBL01对共表达时会产生K +电流,第二对产生的电流要比第一个大得多。发现在成熟浆果中表达的其他经过测试的CIPK-CBL对不能激活VvK1.2。当由其CIPK-CBL合作伙伴激活时,VvK1.2充当电压门控的内部整流K +通道,该通道在高于-100 mV的负电压下激活,并在外部酸化时被刺激。该通道在浆果中特别表达,在浆果中,在维管束周围的肉细胞,韧皮部组织和血管周细胞的变态(成熟开始)中显示出非常强的诱导作用。在轻度干旱胁迫下,其在这些组织中的表达进一步增加。因此,VvK1.2可能会介导浆果中的快速K +转运,并有助于确证发生的转运途径和转运机制的广泛重组。 (Résuméd'auteur)

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