Departamento de Nutrición Vegetal, Centro de Edafología y Biología Aplicada del Segura-CSIC, Murcia, Spain.
Instituto Tecnológico Chascomús (INTECH), Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET) and Universidad Nacional de San Martín (UNSAM), Chascomús, Argentina.
Plant Cell Environ. 2020 Jul;43(7):1707-1721. doi: 10.1111/pce.13769. Epub 2020 Apr 26.
Root K acquisition is a key process for plant growth and development, extensively studied in the model plant Arabidopsis thaliana. Because important differences may exist among species, translational research supported by specific studies is needed in crops such as tomato. Here we present a reverse genetics study to demonstrate the role of the SlHAK5 K transporter in tomato K nutrition, Cs accumulation and its fertility. slhak5 KO lines, generated by CRISPR-Cas edition, were characterized in growth experiments, Rb and Cs uptake tests and root cells K -induced plasma membrane depolarizations. Pollen viability and its K accumulation capacity were estimated by using the K -sensitive dye Ion Potassium Green 4. SlHAK5 is the major system for high-affinity root K uptake required for plant growth at low K , even in the presence of salinity. It also constitutes a pathway for Cs entry in tomato plants with a strong impact on fruit Cs accumulation. SlHAK5 also contributes to pollen K uptake and viability and its absence produces almost seedless fruits. Knowledge gained into SlHAK5 can serve as a model for other crops with fleshy fruits and it can help to generate tools to develop low Cs or seedless fruits crops.
根系钾的获取是植物生长和发育的关键过程,在模式植物拟南芥中得到了广泛研究。由于物种间可能存在重要差异,因此需要在番茄等作物中进行基于具体研究的转化研究。在这里,我们进行了一项反向遗传学研究,以证明 SlHAK5 钾转运体在番茄钾营养、Cs 积累及其育性中的作用。通过 CRISPR-Cas 编辑生成的 slhak5 KO 系在生长实验、Rb 和 Cs 摄取测试以及根细胞钾诱导的质膜去极化中进行了表征。通过使用钾敏感染料 Ion Potassium Green 4 来估计花粉活力及其钾积累能力。SlHAK5 是在低钾条件下植物生长所需的高亲和力根钾摄取的主要系统,即使存在盐度也是如此。它也是番茄植物中 Cs 进入的途径,对果实 Cs 积累有强烈影响。SlHAK5 还有助于花粉摄取钾和活力,其缺失会导致几乎无籽果实。对 SlHAK5 的了解可以作为其他肉质果实作物的模型,并有助于开发低 Cs 或无籽果实作物的工具。