首页> 外文期刊>Ecotoxicology and Environmental Safety >Identification and comprehensive analysis of the characteristics and roles of leucine-rich repeat receptor-like protein kinase (LRR-RLK) genes in Sedum alfredii Hance responding to cadmium stress
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Identification and comprehensive analysis of the characteristics and roles of leucine-rich repeat receptor-like protein kinase (LRR-RLK) genes in Sedum alfredii Hance responding to cadmium stress

机译:鉴定和全面分析Sedum alfredii Hance中富含亮氨酸的重复受体样蛋白激酶(LRR-RLK)基因对镉胁迫的响应

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Sedum alfredii Hance is a Zn/Cd co-hyperaccumulator and its underlying molecular mechanism of Cd tolerance is worthy to be elucidated. Although numerous studies have reported the uptake, sequestration and detoxification of Cd in S. alfredii Hance, how it senses Cd-stress stimuli and transfers signals within tissues remains unclear. Leucine-rich repeat receptor-like protein kinases (LRR-RLKs) are vital for plant growth, development, immunity and signal transduction. Till now, there is lack of comprehensive studies addressing their functions in S. alfredii Hance responding to Cd stress. In the present study, we identified 60 LRR-RLK genes in S. alfredii Hance based on transcriptome analysis under Cd stress. They were categorized into 11 subfamilies and most of them had highly conserved protein structures and motif compositions. The inter-family diversity provided evidence for their functional divergence, supported by their expression level and profile in tissues under Cd stress. Co-expression network analysis revealed that the most highly connected hubs, Sa0F.522, Sa0F.1036, Sa28F.115 and Sa1F.472, were closely related with other genes involved in metal transport, stimulus response and transcription regulations. Of the ten hub genes exhibiting differential expression dynamics under the short-term Cd stress (Sa0F.522, Sa0F.1036 and Sa28F.115) were dramatically induced in the whole plant. Among them, Sa0F.522 gene was heterologously expressed in a Cd-sensitive yeast cell line and its function in Cd signal perception was confirmed. For the first time, our findings performed a comprehensive analysis of LRR-RLKs in S. alfredii Hance, mapped their expression patterns under Cd stress, and identified the key roles of Sa0F.522, Sa0F.1036 and Sa28F.115 in Cd signal transduction.
机译:Sedum alfredii Hance是一种Zn / Cd协同富集剂,其潜在的Cd耐受性分子机制值得阐明。尽管有大量研究报告了苜蓿链球菌中Cd的吸收,螯合和解毒,但如何感知Cd应激刺激并在组织内传递信号仍不清楚。富含亮氨酸的重复受体样蛋白激酶(LRR-RLK)对于植物生长,发育,免疫力和信号转导至关重要。迄今为止,还缺乏针对其在镉对镉胁迫的响应中的功能的综合研究。在本研究中,我们基于Cd胁迫下的转录组分析确定了S. alfredii Hance中的60个LRR-RLK基因。它们被分为11个亚家族,并且大多数具有高度保守的蛋白质结构和基序组成。家族间的多样性为它们的功能差异提供了证据,其在镉胁迫下在组织中的表达水平和分布支持。共表达网络分析表明,连接最紧密的集线器Sa0F.522,Sa0F.1036,Sa28F.115和Sa1F.472与涉及金属转运,刺激反应和转录调控的其他基因密切相关。在短期Cd胁迫下表现出差异表达动态的十个毂基因中(Sa0F.522,Sa0F.1036和Sa28F.115)在整个植物中均被显着诱导。其中,Sa0F.522基因在Cd敏感的酵母细胞系中异源表达,并证实了其在Cd信号感知中的功能。我们的发现首次对苜蓿链球菌中的LRR-RLKs进行了全面分析,绘制了其在Cd胁迫下的表达模式,并确定了Sa0F.522,Sa0F.1036和Sa28F.115在Cd信号转导中的关键作用。 。

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