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Crop Pollen Development under Drought: From the Phenotype to the Mechanism

机译:干旱条件下农作物花粉发育:从表型到机理

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摘要

Drought stress induced pollen sterility is a harmful factor that reduces crop yield worldwide. During the reproductive process, the meiotic stage and the mitotic stage in anthers are both highly vulnerable to water deficiency. Drought at these stages causes pollen sterility by affecting the nature and structure of the anthers, including the degeneration of some meiocytes, disorientated microspores, an expanded middle layer and abnormal vacuolizated tapeta. The homeostasis of the internal environment is imbalanced in drought-treated anthers, involving the decreases of gibberellic acid (GA) and auxin, and the increases of abscisic acid (ABA), jasmonic acid (JA) and reactive oxygen species (ROS). Changes in carbohydrate availability, metabolism and distribution may be involved in the effects of drought stress at the reproductive stages. Here, we summarize the molecular regulatory mechanism of crop pollen development under drought stresses. The meiosis-related genes, sugar transporter genes, GA and ABA pathway genes and ROS-related genes may be altered in their expression in anthers to repair the drought-induced injures. It could also be that some drought-responsive genes, mainly expressed in the anther, regulate the expression of anther-related genes to improve both drought tolerance and anther development. A deepened understanding of the molecular regulatory mechanism of pollen development under stress will be beneficial for breeding drought-tolerant crops with high and stable yield under drought conditions.
机译:干旱胁迫导致的花粉不育是有害的因素,其降低了全世界的农作物产量。在生殖过程中,花药的减数分裂期和有丝分裂期都极易缺水。在这些阶段的干旱会影响花药的性质和结构,从而导致花粉不育,其中包括某些减数分裂细胞的退化,微孢子的方向失调,中间层的扩大和液泡的绒毡膜的异常。在干旱处理过的花药中,内部环境的动态平衡不平衡,其中赤霉素(GA)和生长素的减少,脱落酸(ABA),茉莉酸(JA)和活性氧(ROS)的增加。碳水化合物供应,代谢和分布的变化可能与生殖阶段干旱胁迫的影响有关。在此,我们总结了干旱胁迫下农作物花粉发育的分子调控机制。减数分裂相关基因,糖转运蛋白基因,GA和ABA途径基因以及ROS相关基因在花药中的表达可能会发生改变,以修复干旱引起的伤害。也可能是一些主要在花药中表达的干旱反应基因调节了与花药有关的基因的表达,从而提高了耐旱性和花药发育。深入了解胁迫下花粉发育的分子调控机制,将有利于在干旱条件下培育高产稳定的耐旱作物。

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