Sheng Huachun, Lei Yuyan, Wei Jing, Yang Zhengming, Peng Lianxin, Li Wenbing, Liu Yuan
Sichuan Provincial Qiang-Yi Medicinal Resources Protection and Utilization Technology and Engineering Laboratory, Southwest Minzu University, Chengdu, Sichuan, China.
Tibetan Plateau Ethnic Medicinal Resources Protection and Utilization Key Laboratory of National Ethnic Affairs Commission of the People's Republic of China, Southwest Minzu University, Chengdu, Sichuan, China.
Front Plant Sci. 2024 Feb 6;15:1353706. doi: 10.3389/fpls.2024.1353706. eCollection 2024.
Silicon (Si) and boron (B) are a class of elements called metalloids, which have properties like metals and non-metals. Si is classified as a quasi-essential element, while B is a micronutrient element for plants. Nowadays, numerous discoveries have shown the analogy of silicon and boron in plant nutrition. In this minireview, the molecular mechanisms for the transport of these two metalloids are compared. We also discussed the chemical forms of Si and B and their functional similarity in response to environmental stresses in plants. In conclusion, it can be proposed that cell wall-bound silicon rather than silica might partially replace boron for plant growth, development, and stress responses, and the underlying mechanism is the Si contribution to B in its structural function.
硅(Si)和硼(B)属于一类被称为类金属的元素,它们具有类似金属和非金属的性质。硅被归类为准必需元素,而硼是植物的一种微量营养元素。如今,大量研究发现表明了硅和硼在植物营养方面的相似性。在这篇微型综述中,我们比较了这两种类金属元素的运输分子机制。我们还讨论了硅和硼的化学形态以及它们在植物应对环境胁迫时的功能相似性。总之,可以提出与二氧化硅相比,细胞壁结合态硅可能会部分替代硼来促进植物生长、发育以及应对胁迫,其潜在机制是硅在结构功能上对硼的补充作用。