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极度耐硼植物星星草与中度耐硼植物霞草的比较转录组分析

A comparative transcriptomic analysis of the extremely boron tolerant plant Puccinellia distans with the moderately boron tolerant Gypsophila arrostil.

机构信息

Department of Plant and Microbial Biology, University of California, Berkeley, CA 94720-3102, USA.

出版信息

Plant Cell Rep. 2012 Aug;31(8):1407-13. doi: 10.1007/s00299-012-1256-6. Epub 2012 Apr 7.

Abstract

UNLABELLED

The Turkish ecotype of Puccinellia distans displays exceptional boron (B) tolerance, >1,250 mg B L⁻¹, compared to <50 mg B L⁻¹ for Gypsophila arrostil. In the present study, we compare the molecular basis for the difference in B tolerance between the two species by constructing high B-responsive suppression subtractive hybridization libraries to identify the upregulated genes. A total of 219 and 113 unique non-redundant expressed sequence tags (ESTs) were identified and functionally classified in P. distans and G. arrostil, respectively. In addition, 63 ESTs were down-regulated in P. distans in response to high B. The majority of the high B upregulated genes belong to four categories: metabolism, protein synthesis, cellular organization, and stress/defense. We hypothesize that the superior B tolerance exhibited by P. distans may be due to its ability to restrict the accumulation of B in plant tissues through the upregulated expression of efflux transporters comparable to the Bot1 transporter of barley. In addition, our results are consistent with the view that other molecular mechanisms involved in stress/defense, such as detoxification, anti-oxidative, and signaling pathways, are needed to tolerate B-toxicity stress.

KEY MESSAGE

The molecular basis of boron tolerance of two plant species (Puccinellia distans and Gypsophila arrostil) that differ greatly in their boron tolerance was studied in this manuscript.

摘要

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与对硼的耐受值小于 50mg/L 的攀援满天星(Gypsophila arrostil)相比,土耳其生态型大穗滨藜(Puccinellia distans)对硼具有极高的耐受性,超过 1250mg/L。在本研究中,我们通过构建高硼响应抑制消减杂交文库,比较了这两个物种对硼耐受性差异的分子基础,以鉴定上调基因。分别在大穗滨藜和攀援满天星中鉴定并功能分类了 219 个和 113 个独特的非冗余表达序列标签(EST)。此外,大穗滨藜中有 63 个 EST 对高硼表现为下调。大多数高硼上调基因属于四大类:代谢、蛋白质合成、细胞组织和应激/防御。我们假设,大穗滨藜表现出的优异硼耐受性可能归因于其通过上调与大麦 Bot1 转运体可比的外排转运蛋白,限制植物组织中硼的积累。此外,我们的结果与以下观点一致,即涉及应激/防御的其他分子机制,如解毒、抗氧化和信号通路,是耐受硼毒性应激所必需的。

关键信息

本文研究了两种植物(大穗滨藜和攀援满天星)硼耐受性差异的分子基础,这两种植物对硼的耐受性差异很大。

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