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比较生理和转录组分析揭示了构树硒积累及对硒酸盐毒性耐受性的潜在机制。

Comparative physiological and transcriptome analysis reveals the potential mechanism of selenium accumulation and tolerance to selenate toxicity of Broussonetia papyrifera.

作者信息

Chen Qiangwen, Yu Li, Chao Wei, Xiang Juan, Yang Xiaoyan, Ye Jiabao, Liao Xiaoli, Zhou Xian, Rao Shen, Cheng Shuiyuan, Cong Xin, Xiao Bo, Xu Feng

机构信息

College of Horticulture and Gardening, Yangtze University, Jingzhou 434025, Hubei, China.

National R&D Center for Se-rich Agricultural Products Processing, Wuhan Polytechnic University, Wuhan 430023, Hubei, China.

出版信息

Tree Physiol. 2022 Dec 12;42(12):2578-2595. doi: 10.1093/treephys/tpac095.

Abstract

Broussonetia papyrifera is an important fodder tree that is widely distributed in China. Enhancing the selenium (Se) content in B. papyrifera may help to improve the nutritional value of the feed. In this study, sodium selenite and selenate were foliar applied to investigate the mechanisms of Se tolerance and accumulation in B. papyrifera. The results showed that both Se forms significantly increased the total Se content, and the proportion of organic Se was significantly higher in the sodium selenite treatment than in the control. In addition, the soluble sugar, phenolic acid and flavonoid contents and antioxidant enzyme activities were increased by exogenous Se. The de novo RNA sequencing results showed that 644 and 1804 differentially expressed genes were identified in the selenite and selenate comparison groups, respectively. Pathway enrichment analysis demonstrated that 24 of the 108 pathways were significantly enriched, of which sulfur assimilation genes in the sodium selenite-treated groups were upregulated, whereas Se conjugation and transporter genes, such as SBP1, PCS, GSTs, ABCs and GPX, were significantly induced under selenate treatment. The hub genes identified by weighted-gene co-expression network analysis further confirmed that sulfur assimilation, conjugation and transporter genes might play a vital role in Se assimilation and tolerance. From this, a model of Se metabolism in B. papyrifera was proposed based on the above physiological and RNA sequencing data. This study is the first study to report that B. papyrifera has a strong ability to accumulate and tolerate exogenous Se, thereby providing a foundation for further characterization of the accumulation and tolerance mechanism of B. papyrifera. Our findings can provide technical support for producing Se-enriched fodder.

摘要

构树是一种重要的饲料树,在中国广泛分布。提高构树中的硒(Se)含量可能有助于提高饲料的营养价值。在本研究中,对构树进行叶面喷施亚硒酸钠和硒酸盐,以探究构树对硒的耐受和积累机制。结果表明,两种硒形态均显著提高了总硒含量,且亚硒酸钠处理组中有机硒的比例显著高于对照组。此外,外源硒提高了可溶性糖、酚酸和黄酮类化合物的含量以及抗氧化酶活性。从头RNA测序结果显示,在亚硒酸盐和硒酸盐比较组中分别鉴定出644个和1804个差异表达基因。通路富集分析表明,108条通路中有24条显著富集,其中亚硒酸钠处理组中的硫同化基因上调,而在硒酸盐处理下,硒结合和转运基因如SBP1、PCS、GSTs、ABCs和GPX被显著诱导。通过加权基因共表达网络分析鉴定的枢纽基因进一步证实,硫同化、结合和转运基因可能在硒同化和耐受中起重要作用。据此,基于上述生理和RNA测序数据,提出了构树中硒代谢的模型。本研究首次报道构树具有较强的积累和耐受外源硒的能力,从而为进一步阐明构树的积累和耐受机制奠定了基础。我们的研究结果可为生产富硒饲料提供技术支持。

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