College of Life Sciences, Nanjing Agricultural University, Nanjing, 210095, China.
Jiangsu Coastal Area Institute of Agricultural Sciences, Yancheng, 224002, Jiangsu, China.
Environ Sci Pollut Res Int. 2022 Feb;29(10):14430-14442. doi: 10.1007/s11356-021-16776-0. Epub 2021 Oct 6.
Metallothioneins (MTs) are small, cysteine-rich, heavy metal-binding proteins involved in metal homeostasis and detoxification. The increasing numbers of available genomic sequences of ectomycorrhizal (ECM) fungi enable deeper insights into the characteristics of MT genes in these fungi that form the most important symbiosis with the host trees in forest ecosystems. The aim of this study was to establish a comprehensive, genome-wide inventory of MT genes from the ECM fungus Laccaria bicolor. Eight MT genes in L. bicolor were cloned, and the expression patterns of their transcripts at various developmental stages based on expressed sequence tag (EST) counts were analyzed. The expression levels of four MTs were significantly increased during symbiosis stages. Quantitative real-time PCR (qRT-PCR) analysis revealed that transcripts of LbMT1 were dominant in free-living mycelia and strongly induced by excessive copper (Cu), cadmium (Cd), and hydrogen peroxide (HO). To determine whether these eight MTs functioned as metal chelators, we expressed them in the Cu- and Cd-sensitive yeast mutants, cup1∆ and yap1∆, respectively. All LbMT proteins provided similar levels of Cu(II) or Cd(II) tolerance, but did not affect by HO. Our findings provide novel data on the evolution and diversification of fungal MT gene duplicates, a valuable resource for understanding the vast array of biological processes in which these proteins are involved.
金属硫蛋白(MTs)是富含半胱氨酸的小分子重金属结合蛋白,参与金属稳态和解毒。外生菌根(ECM)真菌的基因组序列数量不断增加,使我们能够更深入地了解这些真菌中 MT 基因的特征,这些真菌与森林生态系统中的宿主树木形成了最重要的共生关系。本研究旨在从外生菌根真菌彩绒革盖菌(Laccaria bicolor)中建立一个全面的、全基因组的 MT 基因目录。从 L. bicolor 中克隆了 8 个 MT 基因,并根据表达序列标签(EST)计数分析了它们在不同发育阶段的转录本表达模式。在共生阶段,有 4 个 MT 的表达水平显著增加。定量实时 PCR(qRT-PCR)分析显示,LbMT1 的转录本在自由生活的菌丝体中占优势,并被过量的铜(Cu)、镉(Cd)和过氧化氢(HO)强烈诱导。为了确定这 8 个 MT 是否作为金属螯合剂发挥作用,我们将它们在 Cu 和 Cd 敏感的酵母突变体 cup1∆ 和 yap1∆ 中分别进行了表达。所有 LbMT 蛋白对 Cu(II)或 Cd(II)的耐受性提供了相似的水平,但不受 HO 的影响。我们的研究结果提供了关于真菌 MT 基因重复进化和多样化的新数据,这是理解这些蛋白参与的广泛生物学过程的宝贵资源。