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二色补血草叶片发育阶段的比较转录组分析为盐腺分化提供了见解。

Comparative transcriptome analysis of developmental stages of the Limonium bicolor leaf generates insights into salt gland differentiation.

作者信息

Yuan Fang, Lyu Ming-Ju Amy, Leng Bing-Ying, Zheng Guang-Yong, Feng Zhong-Tao, Li Ping-Hua, Zhu Xin-Guang, Wang Bao-Shan

机构信息

Key Lab of Plant Stress Research, College of Life Science, Shandong Normal University, Ji'nan, Shandong, 250014, China.

CAS Key Laboratory of Computational Biology, CAS-MPG Partner Institute of Computational Biology, Shanghai Institutes for Biological Sciences, Shanghai, 200031, China.

出版信息

Plant Cell Environ. 2015 Aug;38(8):1637-57. doi: 10.1111/pce.12514. Epub 2015 Apr 17.

Abstract

With the expansion of saline land worldwide, it is essential to establish a model halophyte to study the salt-tolerance mechanism. The salt glands in the epidermis of Limonium bicolor (a recretohalophyte) play a pivotal role in salt tolerance by secreting excess salts from tissues. Despite the importance of salt secretion, nothing is known about the molecular mechanisms of salt gland development. In this study, we applied RNA sequencing to profile early leaf development using five distinct developmental stages, which were quantified by successive collections of the first true leaves of L. bicolor with precise spatial and temporal resolution. Specific gene expression patterns were identified for each developmental stage. In particular, we found that genes controlling salt gland differentiation in L. bicolor may evolve in a trichome formation, which was also confirmed by mutants with increased salt gland densities. Genes involved in the special ultrastructure of salt glands were also elucidated. Twenty-six genes were proposed to participate in salt gland differentiation. Our dataset sheds light on the molecular processes underpinning salt gland development and thus represents a first step towards the bioengineering of active salt-secretion capacity in crops.

摘要

随着全球盐碱地面积的扩大,建立一种典型盐生植物来研究耐盐机制至关重要。二色补血草(一种泌盐盐生植物)表皮中的盐腺通过从组织中分泌过量盐分在耐盐性方面发挥着关键作用。尽管盐分泌很重要,但关于盐腺发育的分子机制却一无所知。在本研究中,我们应用RNA测序对五个不同发育阶段的早期叶片发育进行了分析,这些阶段通过连续收集具有精确时空分辨率的二色补血草第一片真叶进行量化。确定了每个发育阶段的特定基因表达模式。特别是,我们发现控制二色补血草盐腺分化的基因可能在毛状体形成过程中进化,盐腺密度增加的突变体也证实了这一点。还阐明了参与盐腺特殊超微结构的基因。提出了二十六个基因参与盐腺分化。我们的数据集揭示了盐腺发育的分子过程,因此代表了作物主动泌盐能力生物工程的第一步。

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