Ariani Andrea, Gepts Paul
Department of Plant Sciences/MS1, University of California, 1 Shields Avenue, Davis, CA, 95616-8780, USA.
Mol Genet Genomics. 2015 Oct;290(5):1771-85. doi: 10.1007/s00438-015-1038-2. Epub 2015 Apr 7.
Plant aquaporins are a large and diverse family of water channel proteins that are essential for several physiological processes in living organisms. Numerous studies have linked plant aquaporins with a plethora of processes, such as nutrient acquisition, CO2 transport, plant growth and development, and response to abiotic stresses. However, little is known about this protein family in common bean. Here, we present a genome-wide identification of the aquaporin gene family in common bean (Phaseolus vulgaris L.), a legume crop essential for human nutrition. We identified 41 full-length coding aquaporin sequences in the common bean genome, divided by phylogenetic analysis into five sub-families (PIPs, TIPs, NIPs, SIPs and XIPs). Residues determining substrate specificity of aquaporins (i.e., NPA motifs and ar/R selectivity filter) seem conserved between common bean and other plant species, allowing inference of substrate specificity for these proteins. Thanks to the availability of RNA-sequencing datasets, expression levels in different organs and in leaves of wild and domesticated bean accessions were evaluated. Three aquaporins (PvTIP1;1, PvPIP2;4 and PvPIP1;2) have the overall highest mean expressions, with PvTIP1;1 having the highest expression among all aquaporins. We performed an EST database mining to identify drought-responsive aquaporins in common bean. This analysis showed a significant increase in expression for PvTIP1;1 in drought stress conditions compared to well-watered environments. The pivotal role suggested for PvTIP1;1 in regulating water homeostasis and drought stress response in the common bean should be verified by further field experimentation under drought stress.
植物水通道蛋白是一个庞大且多样的水通道蛋白家族,对生物体的多种生理过程至关重要。众多研究已将植物水通道蛋白与大量过程联系起来,如养分获取、二氧化碳运输、植物生长发育以及对非生物胁迫的响应。然而,对于菜豆中这个蛋白质家族我们知之甚少。在此,我们对菜豆(Phaseolus vulgaris L.)——一种对人类营养至关重要的豆类作物——的水通道蛋白基因家族进行了全基因组鉴定。我们在菜豆基因组中鉴定出41个全长编码水通道蛋白序列,通过系统发育分析将其分为五个亚家族(PIPs、TIPs、NIPs、SIPs和XIPs)。决定水通道蛋白底物特异性的残基(即NPA基序和ar/R选择性过滤器)在菜豆和其他植物物种之间似乎是保守的,这使得可以推断这些蛋白质的底物特异性。由于有RNA测序数据集,我们评估了野生和驯化菜豆种质不同器官及叶片中的表达水平。三个水通道蛋白(PvTIP1;1、PvPIP2;4和PvPIP1;2)总体平均表达水平最高,其中PvTIP1;1在所有水通道蛋白中表达最高。我们进行了EST数据库挖掘以鉴定菜豆中对干旱有响应的水通道蛋白。该分析表明,与水分充足的环境相比,干旱胁迫条件下PvTIP1;1的表达显著增加。PvTIP1;1在调节菜豆水分稳态和干旱胁迫响应中所起的关键作用应通过在干旱胁迫下进一步的田间试验来验证。