Department of Agri-Biotechnology, National Agri-Food Biotechnology Institute (NABI), SAS Nagar(Mohali), Punjab, India.
PLoS One. 2019 May 28;14(5):e0217360. doi: 10.1371/journal.pone.0217360. eCollection 2019.
Metal Tolerance Proteins (MTPs) are the class of membrane proteins involved in the transport of metals, mainly Zn, Mn, Fe, Cd, Co and Ni, and confer metal tolerance in plants. In the present study, a comprehensive molecular analysis of rice MTP genes was performed to understand the evolution, distribution and expression dynamics of MTP genes. Exploration of the whole genome re-sequencing information available for three thousand rice genotypes highlighted the evolution and allelic diversity of MTP genes. Based on the presence of non-synonymous single nucleotide polymorphism (SNP), MTP1, MTP6, MTP8 and MTP9 were found to be the most conserved genes. Furthermore, results showed localization of MTP1, MTP8.1 and MTP9, and MTP11, respectively with QTLs/m-QTLs for Zn and Cd accumulation, making these genes promising candidates to understand the QTL regulation. Expression profiling of the entire set of 10 MTP genes revealed root and shoot specific expressions of MTP9 and MTP8.1, respectively, under all tested vegetative stages. Expression of seed-specific MTPs increased as seed maturation progressed, which revealed their potential role in transporting metals during seed filling. Upon exposure to harmful heavy metals, expression of most MTP genes decreased in root and increased in shoot, suggests that different mechanisms are being employed by MTPs in different tissues. Contrastingly, only a few MTPs were found to be responsive to Fe and/or Zn starvation conditions. The extensive analysis of MTPs presented here will be helpful in identifying candidate MTP genes for crop biofortification and bioremediation purposes.
金属耐受蛋白(MTPs)是一类参与金属转运的膜蛋白,主要转运 Zn、Mn、Fe、Cd、Co 和 Ni 等金属,并赋予植物金属耐受能力。本研究对水稻 MTP 基因进行了全面的分子分析,以了解 MTP 基因的进化、分布和表达动态。利用三千个水稻基因型的全基因组重测序信息,探讨了 MTP 基因的进化和等位基因多样性。基于非同义单核苷酸多态性(SNP)的存在,发现 MTP1、MTP6、MTP8 和 MTP9 是最保守的基因。此外,结果显示 MTP1、MTP8.1 和 MTP9 分别与 Zn 和 Cd 积累的 QTLs/m-QTLs 定位,MTP11 分别与 QTLs/m-QTLs 定位,使这些基因成为了解 QTL 调控的有希望的候选基因。对 10 个 MTP 基因的全基因组表达谱分析显示,在所有测试的营养阶段,MTP9 和 MTP8.1 分别在根和地上部分具有特异性表达。种子特异性 MTPs 的表达随着种子成熟的进行而增加,这表明它们在种子填充过程中可能具有转运金属的作用。在暴露于有害重金属时,大多数 MTP 基因在根中的表达减少,在地上部分中的表达增加,这表明 MTPs 在不同组织中采用了不同的机制。相反,只有少数 MTPs 对 Fe 和/或 Zn 饥饿条件有反应。这里对 MTPs 的广泛分析将有助于鉴定候选 MTP 基因,用于作物生物强化和生物修复目的。