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泌盐盐生植物二色补血草的叶鞘盐腺:分布、形态及诱导

Bracelet salt glands of the recretohalophyte Limonium bicolor: Distribution, morphology, and induction.

作者信息

Zhao Boqing, Zhou Yingli, Jiao Xiangmei, Wang Xi, Wang Baoshan, Yuan Fang

机构信息

Shandong Provincial Key Laboratory of Plant Stress, College of Life Sciences, Shandong Normal University, Ji'nan, 250014, China.

出版信息

J Integr Plant Biol. 2023 Apr;65(4):950-966. doi: 10.1111/jipb.13417. Epub 2023 Jan 13.

Abstract

Halophytes complete their life cycles in saline environments. The recretohalophyte Limonium bicolor has evolved a specialized salt secretory structure, the salt gland, which excretes Na to avoid salt damage. Typical L. bicolor salt glands consist of 16 cells with four fluorescent foci and four secretory pores. Here, we describe a special type of salt gland at the base of the L. bicolor leaf petiole named bracelet salt glands due to their beaded-bracelet-like shape of blue auto-fluorescence. Bracelet salt glands contain more than 16 cells and more than four secretory pores. Leaf disc secretion measurements and non-invasive micro-test techniques indicated that bracelet salt glands secrete more salt than normal salt glands, which helps maintain low Na levels at the leaf blade to protect the leaf. Cytokinin treatment induced bracelet salt gland differentiation, and the developed ones showed no further differentiation when traced with a living fluorescence microscopy imager, even though new salt gland development and leaf expansion were observed. Transcriptome revealed a NAC transcription factor gene that participates in bracelet salt gland development, as confirmed by its genome editing and overexpression in L. bicolor. These findings shed light on bracelet salt gland development and may facilitate the engineering of salt-tolerant crops.

摘要

盐生植物在盐碱环境中完成其生命周期。泌盐盐生植物二色补血草进化出了一种特殊的排盐结构——盐腺,可排出钠离子以避免盐害。典型的二色补血草盐腺由16个细胞组成,有四个荧光点和四个分泌孔。在此,我们描述了一种位于二色补血草叶柄基部的特殊类型的盐腺,因其呈串珠状蓝色自发荧光的手镯形状而被称为手镯盐腺。手镯盐腺包含16个以上的细胞和四个以上的分泌孔。叶盘分泌测量和非损伤微测技术表明,手镯盐腺比正常盐腺分泌更多的盐,这有助于维持叶片中较低的钠离子水平以保护叶片。细胞分裂素处理诱导了手镯盐腺的分化,并且在用活体荧光显微镜成像仪追踪时,已发育的手镯盐腺即使在观察到新的盐腺发育和叶片扩展时也没有进一步分化。转录组分析揭示了一个参与手镯盐腺发育的NAC转录因子基因,在二色补血草中通过基因组编辑和过表达证实了这一点。这些发现为手镯盐腺的发育提供了线索,并可能有助于耐盐作物的工程培育。

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