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鉴定和分析盐胁迫相关的短链和长链非编码 RNA 在桐花树叶片中的表达。

Identification and analysis of short-term and long-term salt-associated lncRNAs in the leaf of Avicennia marina.

机构信息

Ministry of Education Key Laboratory for Ecology of Tropical Islands, Key Laboratory of Tropical Animal and Plant Ecology of Hainan Province, College of Life Sciences, Hainan Normal University, Haikou, 571158, China.

Hainan Observation and Research Station of Dongzhaigang Mangrove Wetland Ecosystem, Haikou, 571158, China.

出版信息

BMC Plant Biol. 2024 Jun 5;24(1):500. doi: 10.1186/s12870-024-05216-z.

Abstract

As a highly salt-resistant mangrove, Avicennia marina can thrive in the hypersaline water. The leaves of Avicennia marina play a crucial role in salinity stress adaptability by secreting salt. Although the functions of long non-coding RNAs (lncRNAs) in leaves remain unknown, they have emerged as regulators in leaf development, aging and salt response. In this study, we employed transcriptomic data of both short-term and long-term salt treated leaves to identify salt-associated lncRNAs of leaf tissue. As a result, 687 short-term and 797 long-term salt-associated lncRNAs were identified. Notably, both short-term and long-term salt-associated lncRNAs exhibited slightly longer lengths and larger exons, but smaller introns compared with salt-non-associated lncRNAs. Furthermore, salt-associated lncRNAs also displayed higher tissue-specificity than salt-non-associated lncRNAs. Most of the salt-associated lncRNAs were common to short- and long-term salt treatments. And about one fifth of the downregulated salt-associated lncRNAs identified both in two terms were leaf tissue-specific lncRNAs. Besides, these leaf-specific lncRNAs were found to be involved in the oxidation-reduction and photosynthesis processes, as well as several metabolic processes, suggesting the noticeable functions of salt-associated lncRNAs in regulating salt responses of Avicennia marina leaves.

摘要

作为一种高度耐盐的红树林植物,海桑能够在高盐水中茁壮成长。海桑的叶子通过分泌盐分来发挥关键作用,以适应盐胁迫。尽管长链非编码 RNA(lncRNA)在叶子中的功能尚不清楚,但它们已成为叶子发育、衰老和盐响应的调节因子。在这项研究中,我们利用短期和长期盐处理叶片的转录组数据,鉴定了叶片组织中与盐相关的 lncRNA。结果鉴定出 687 个短期和 797 个长期与盐相关的 lncRNA。值得注意的是,与非盐相关的 lncRNA 相比,短期和长期与盐相关的 lncRNA 长度略长,外显子更大,而内含子更小。此外,与盐非相关的 lncRNA 相比,盐相关的 lncRNA 具有更高的组织特异性。大多数与盐相关的 lncRNA 是短期和长期盐处理共有的。并且在两个术语中鉴定出的大约五分之一下调的与盐相关的 lncRNA 是叶片组织特异性 lncRNA。此外,这些组织特异性 lncRNA 被发现参与氧化还原和光合作用过程以及几个代谢过程,表明与盐相关的 lncRNA 在调节海桑叶片的盐响应中具有显著的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73cf/11151563/5954c6ec7e3f/12870_2024_5216_Fig1_HTML.jpg

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