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Transcriptomics of different tissues of blueberry and diversity analysis of rhizosphere fungi under cadmium stress

机译:镉胁迫下蓝莓不同组织的转录组织与根际真菌的分析分析

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摘要

Blueberry (Vaccinium ssp.) is a perennial shrub belonging to the family Ericaceae, which is highly tolerant of acid soils and heavy metal pollution. In the present study, blueberry was subjected to cadmium (Cd) stress in simulated pot culture. The transcriptomics and rhizosphere fungal diversity of blueberry were analyzed, and the iron (Fe), manganese (Mn), copper (Cu), zinc (Zn) and cadmium (Cd) content of blueberry tissues, soil and DGT was determined. A correlation analysis was also performed. A total of 84 374 annotated genes were identified in the root, stem, leaf and fruit tissue of blueberry, of which 3370 were DEGs, and in stem tissue, of which 2521 were DEGs. The annotation data showed that these DEGs were mainly concentrated in a series of metabolic pathways related to signal transduction, defense and the plant–pathogen response. Blueberry transferred excess Cd from the root to the stem for storage, and the highest levels of Cd were found in stem tissue, consistent with the results of transcriptome analysis, while the lowest Cd concentration occurred in the fruit, Cd also inhibited the absorption of other metal elements by blueberry. A series of genes related to Cd regulation were screened by analyzing the correlation between heavy metal content and transcriptome results. The roots of blueberry rely on mycorrhiza to absorb nutrients from the soil. The presence of Cd has a significant effect on the microbial community composition of the blueberry rhizosphere. The fungal family Coniochaetaceae, which is extremely extremelytolerant, has gradually become the dominant population. The results of this study increase our understanding of the plant regulation mechanism for heavy metals, and suggest potential methods of soil remediation using blueberry.
机译:蓝莓(SSP疫苗。)是属于家族的常年灌木,其是酸土壤和重金属污染的高度耐受性。在本研究中,蓝莓在模拟罐培养中进行镉(CD)胁迫。分析了蓝莓的转录组和根际真菌多样性,并测定了蓝莓组织,土壤和DGT的铁(Fe),锰(Mn),锰(CD),锌(Zn)和镉(CD)含量。还进行了相关分析。在蓝莓的根部,茎,叶和果组织中鉴定了总共84,374个注释基因,其中3370℃,在茎组织中,其中2521℃。注释数据表明,这些DEG主要集中在与信号转导,防御和植物病原体应答相关的一系列代谢途径中。蓝莓将多余的CD转移到根部到茎上储存,并且在茎组织中发现了最高水平的Cd,与转录组分析的结果一致,而在水果中发生的最低CD浓度也抑制了其他吸收由蓝莓的金属元素。通过分析重金属含量与转录组结果之间的相关性,筛选与CD调节相关的一系列基因。蓝莓的根源依赖于菌根菌吸收土壤中的营养素。 CD的存在对蓝莓根际的微生物群落组成具有显着影响。真菌家族共同志科学,极其极其极其极其极其嗜好,逐渐成为占主导地位的人口。本研究的结果增加了我们对重金属植物调节机制的理解,并建议使用蓝莓进行土壤修复的潜在方法。

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