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ALMT 型阴离子通道在番茄和拟南芥中苹果酸诱导的气孔关闭中的功能作用。

Functional roles of ALMT-type anion channels in malate-induced stomatal closure in tomato and Arabidopsis.

机构信息

Institute of Plant Science and Resources, Okayama University, Kurashiki, Okayama, Japan.

出版信息

Plant Cell Environ. 2022 Aug;45(8):2337-2350. doi: 10.1111/pce.14373. Epub 2022 Jun 16.

DOI:10.1111/pce.14373
PMID:35672880
Abstract

Guard-cell-type aluminium-activated malate transporters (ALMTs) are involved in stomatal closure by exporting anions from guard cells. However, their physiological and electrophysiological functions are yet to be explored. Here, we analysed the physiological and electrophysiological properties of the ALMT channels in Arabidopsis and tomato (Solanum lycopersicum). SlALMT11 was specifically expressed in tomato guard cells. External malate-induced stomatal closure was impaired in ALMT-suppressed lines of tomato and Arabidopsis, although abscisic acid did not influence the stomatal response in SlALMT11-knock-down tomato lines. Electrophysiological analyses in Xenopus oocytes showed that SlALMT11 and AtALMT12/QUAC1 exhibited characteristic bell-shaped current-voltage patterns dependent on extracellular malate, fumarate, and citrate. Both ALMTs could transport malate, fumarate, and succinate, but not citrate, suggesting that the guard-cell-type ALMTs are dicarboxylic anion channels activated by extracellular organic acids. The truncation of acidic amino acids, Asp or Glu, from the C-terminal end of SlALMT11 or AtALMT12/QUAC1 led to the disappearance of the bell-shaped current-voltage patterns. Our findings establish that malate-activated stomatal closure is mediated by guard-cell-type ALMT channels that require an acidic amino acid in the C-terminus as a candidate voltage sensor in both tomato and Arabidopsis.

摘要

保卫细胞型铝激活苹果酸转运体(ALMTs)通过将阴离子从保卫细胞中输出而参与气孔关闭。然而,它们的生理和电生理功能仍有待探索。在这里,我们分析了拟南芥和番茄(Solanum lycopersicum)中 ALMT 通道的生理和电生理特性。SlALMT11 在番茄保卫细胞中特异性表达。尽管脱落酸不会影响 SlALMT11 敲低番茄系的气孔反应,但番茄和拟南芥 ALMT 抑制系中外源苹果酸诱导的气孔关闭受损。在非洲爪蟾卵母细胞中的电生理分析表明,SlALMT11 和 AtALMT12/QUAC1 表现出依赖于细胞外苹果酸、富马酸和柠檬酸的特征钟形电流-电压模式。两种 ALMT 都可以转运苹果酸、富马酸和琥珀酸,但不能转运柠檬酸,表明保卫细胞型 ALMT 是由细胞外有机酸激活的二羧酸阴离子通道。从 SlALMT11 或 AtALMT12/QUAC1 的 C 末端截断酸性氨基酸 Asp 或 Glu 导致钟形电流-电压模式消失。我们的研究结果表明,苹果酸激活的气孔关闭是由保卫细胞型 ALMT 通道介导的,该通道在番茄和拟南芥中都需要 C 末端的酸性氨基酸作为候选电压传感器。

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