Cao Fangbin, Fu Manman, Wang Runfeng, Cheng Wangda, Zhang Guoping, Wu Feibo
Department of Agronomy, College of Agriculture and Biotechnology, Zijingang Campus, Zhejiang University, Hangzhou, 310058, People's Republic of China.
Jiaxing Academy of Agricultural Sciences, Jiaxing, 314016, People's Republic of China.
Funct Integr Genomics. 2017 Jul;17(4):387-397. doi: 10.1007/s10142-016-0540-x. Epub 2016 Dec 20.
Soil heavy metal (HM) contamination has posed a serious problem for safe food production. For restricting the translocation of HM into grain, many proteins were regulated to involve in the process. To identify these proteins, 2D-based proteomic analysis was carried out using different rice genotypes with distinct Cd accumulation in grains and as affected by an alleviating regulator (AR) in field experiments. AR application improved grain quality, with increased contents in Glu, Cys, His, Pro, and protein. Twenty-six low-grain HM accumulation-associated protein species were identified and categorized as physiological functions via two-dimensional gel electrophoresis (2DE) and mass spectrometry. Among these proteins, 8, 9, and 9 proteins exhibited higher accumulation, lower accumulation, and unchanged accumulation, respectively, in Xiushui817 (low accumulator) vs R8097 (high accumulator) under control conditions but showed differential accumulation patterns after AR application. These proteins included sucrose synthase 3, alanine aminotransferase, glutelin, cupin family protein, and zinc finger CCCH domain-containing protein 32. The differential expression of these protein species might contribute to decreased HM accumulation in grain via decreasing the protein accumulation which had high affinity to HM or regulating energy metabolism and signal transduction. Our findings provide valuable insights into the mechanisms of low-grain HM accumulation in rice and possible utilization of candidate protein species in developing low-grain HM accumulation genotypes.
土壤重金属(HM)污染已对安全食品生产构成严重问题。为限制重金属向谷物中的转运,许多蛋白质被调控参与这一过程。为鉴定这些蛋白质,在田间试验中,利用在谷粒中镉积累情况不同的不同水稻基因型,并受一种缓解调节剂(AR)影响,进行了基于二维电泳的蛋白质组学分析。施用AR改善了谷物品质,谷粒中Glu、Cys、His、Pro和蛋白质的含量增加。通过二维凝胶电泳(2DE)和质谱鉴定了26种与低谷粒重金属积累相关的蛋白质种类,并根据生理功能进行了分类。在这些蛋白质中,在对照条件下,秀水817(低积累品种)与R8097(高积累品种)相比,分别有8种、9种和9种蛋白质表现出较高积累、较低积累和积累不变,但在施用AR后呈现出不同的积累模式。这些蛋白质包括蔗糖合酶3、丙氨酸转氨酶、谷蛋白、cupin家族蛋白和含锌指CCCH结构域蛋白32。这些蛋白质种类的差异表达可能通过减少对重金属具有高亲和力的蛋白质积累或调节能量代谢和信号转导,从而有助于降低谷物中的重金属积累。我们的研究结果为水稻低谷粒重金属积累的机制以及候选蛋白质种类在培育低谷粒重金属积累基因型中的可能利用提供了有价值的见解。