Division of Biological Sciences, Bond Life Sciences Center, Interdisciplinary Plant Group, and Missouri Maize Center, University of Missouri, LSC, Columbia, MO, USA.
J Exp Bot. 2020 Mar 12;71(5):1681-1693. doi: 10.1093/jxb/eraa042.
Deficiency of the essential nutrient boron (B) in the soil is one of the most widespread micronutrient deficiencies worldwide, leading to developmental defects in root and shoot tissues of plants, and severe yield reductions in many crops. Despite this agricultural importance, the underlying mechanisms of how B shapes plant developmental and morphological processes are still not unequivocally understood in detail. This review evaluates experimental approaches that address our current understanding of how B influences plant morphological processes by focusing on developmental defects observed under B deficiency. We assess what is known about mechanisms that control B homeostasis and specifically highlight: (i) limitations in the methodology that is used to induce B deficiency; (ii) differences between mutant phenotypes and normal plants grown under B deficiency; and (iii) recent research on analyzing interactions between B and phytohormones. Our analysis highlights the need for standardized methodology to evaluate the roles of B in the cell wall versus other parts of the cell.
土壤中必需营养元素硼(B)的缺乏是全球范围内最广泛的微量营养元素缺乏症之一,导致植物根和茎组织的发育缺陷,并使许多作物的产量严重减少。尽管具有这种农业重要性,但 B 如何塑造植物发育和形态过程的基本机制在细节上仍未得到明确理解。本综述评估了通过关注 B 缺乏下观察到的发育缺陷来解决我们当前对 B 如何影响植物形态过程的理解的实验方法。我们评估了控制 B 动态平衡的机制的已知内容,并特别强调:(i)用于诱导 B 缺乏的方法学的局限性;(ii)在 B 缺乏下生长的突变体表型与正常植物之间的差异;和(iii)最近关于分析 B 与植物激素之间相互作用的研究。我们的分析强调需要标准化的方法来评估 B 在细胞壁与细胞其他部分中的作用。