Facultad de Ciencias Biológicas, Pontificia Universidad Católica de Chile, Santiago, Chile.
Facultad de Agronomía y Sistemas Naturales, Pontificia Universidad Católica de Chile, Santiago, Chile.
Biol Res. 2024 Aug 10;57(1):52. doi: 10.1186/s40659-024-00528-8.
Common bean (Phaseolus vulgaris) is one of the main nutritional resources in the world, and a low environmental impact source of protein. However, the majority of its cultivation areas are affected by drought and this scenario is only expected to worsen with climate change. Stomatal closure is one of the most important plant responses to drought and the MYB60 transcription factor is among the key elements regulating stomatal aperture. If targeting and mutating the MYB60 gene of common bean would be a valuable strategy to establish more drought-tolerant beans was therefore investigated.
The MYB60 gene of common bean, with orthology to the Arabidopsis AtMYB60 gene, was found to have conserved regions with MYB60 typical motifs and architecture. Stomata-specific expression of PvMYB60 was further confirmed by q-RT PCR on organs containing stomata, and stomata-enriched leaf fractions. Further, function of PvMYB60 in promoting stomata aperture was confirmed by complementing the defective phenotype of a previously described Arabidopsis myb60-1 mutant.
Our study finally points PvMYB60 as a potential target for obtaining more drought-tolerant common beans in the present context of climate change which would further greatly contribute to food security particularly in drought-prone countries.
普通菜豆(Phaseolus vulgaris)是世界上主要的营养资源之一,也是一种对环境影响较小的蛋白质来源。然而,其大部分种植区都受到干旱的影响,而且这种情况预计随着气候变化只会恶化。气孔关闭是植物对干旱的最重要反应之一,而 MYB60 转录因子是调节气孔开度的关键要素之一。因此,研究靶向和突变普通菜豆的 MYB60 基因是否是建立更耐旱豆类的有价值策略。
发现普通菜豆的 MYB60 基因与拟南芥 AtMYB60 基因具有同源性,具有 MYB60 典型基序和结构的保守区域。通过对含有气孔的器官和气孔富集的叶片部分进行 q-RT-PCR,进一步证实了 PvMYB60 在气孔中的特异性表达。此外,通过互补先前描述的拟南芥 myb60-1 突变体的缺陷表型,证实了 PvMYB60 在促进气孔开度方面的功能。
我们的研究最终指出 PvMYB60 是在当前气候变化背景下获得更耐旱普通菜豆的潜在目标,这将极大地促进粮食安全,特别是在干旱易发国家。