Institute of Plant Genetics Polish Academy of Sciences, 34 Strzeszynska Street, 60-479 Poznan, Poland.
Department of General Botany, Institute of Experimental Biology, Faculty of Biology, Adam Mickiewicz University, 1 Wieniawskiego Street, 60-479 Poznan, Poland.
Cells. 2023 Jun 18;12(12):1656. doi: 10.3390/cells12121656.
Drought stress inducing pollen sterility can reduce crop yield worldwide. The regulatory crosstalk associated with the effects of drought on pollen formation at the cellular level has not been explored in detail so far. In this study, we performed morphological and cytoembryological analysis of anther perturbations and examined pollen development in two spring barley genotypes that differ in earliness and drought tolerance. The Syrian breeding line CamB (drought-tolerant) and the European cultivar Lubuski (drought-sensitive) were used as experimental materials to analyze the drought-induced changes in yield performance, chlorophyll fluorescence kinetics, the pollen grain micromorphology and ultrastructure during critical stages of plant development. In addition, fluctuations in expression were studied, as this transcription factor is closely associated with the development of the anther. In the experiments, the studied plants were affected by drought, as was confirmed by the analyses of yield performance and chlorophyll fluorescence kinetics. However, contrary to our expectations, the pollen development of plants grown under specific conditions was not severely affected. The results also suggest that growth modification, as well as the perturbation in light distribution, can affect the expression. This study demonstrated that the duration of the vegetation period can influence plant drought responses and, as a consequence, the processes associated with pollen development as every growth modification changes the dynamics of drought effects as well as the duration of plant exposition to drought.
干旱胁迫导致花粉不育会降低全球作物产量。迄今为止,尚未详细探讨与干旱对花粉形成的细胞水平影响相关的调控串扰。在这项研究中,我们对花药扰动进行了形态学和细胞胚胎学分析,并研究了在 earliness 和耐旱性方面存在差异的两个春大麦基因型中的花粉发育。叙利亚育成系 CamB(耐旱)和欧洲品种 Lubuski(耐旱)被用作实验材料,以分析在植物发育的关键阶段产量性能、叶绿素荧光动力学、花粉粒微观形态和超微结构的干旱诱导变化。此外,还研究了 的表达波动,因为该转录因子与花药发育密切相关。在实验中,受干旱影响的研究植物,这一点得到了产量性能和叶绿素荧光动力学分析的证实。然而,与我们的预期相反,在特定条件下生长的植物的花粉发育并没有受到严重影响。研究结果还表明,生长修饰以及光分布的扰动会影响 的表达。本研究表明,植被期的持续时间会影响植物的干旱响应,因此,与花粉发育相关的过程会随着每个生长修饰的变化而改变干旱影响的动态以及植物暴露于干旱的持续时间。