Graduate School of Integrated Arts and Science, Kochi University, 200 Otsu, Monobe, Nankoku, Kochi, 783-8502, Japan.
Kochi Agricultural Research Center, 1100, Hataeda, Nankoku, Kochi, 783-0023, Japan.
Planta. 2018 Jul;248(1):231-241. doi: 10.1007/s00425-018-2890-1. Epub 2018 Apr 26.
Rice MTP11 is the trans-Golgi-localized transporter that is involved in Mn tolerance with MTP8.1, and it is required for normal fertility. Rice (Oryza sativa L.) is one of the most manganese (Mn)-tolerant species, and it is able to accumulate high levels of this metal in the leaves without showing toxic symptoms. The metal tolerance protein 8.1 (MTP8.1), a member of the Mn-cation diffusion facilitator (CDF) family, has been shown to play a central role in high Mn tolerance by sequestering Mn into vacuoles. Recently, rice MTP11 was identified as an Mn transporter that is localized to Golgi-associated compartments, but its exact role in Mn tolerance in planta has not yet been understood. Here, we investigated the role of MTP11 in rice Mn tolerance using knockout lines. Old leaves presented higher levels of constitutively expressed MTP11 than other tissues and MTP11 expression was also found in reproductive organs. Fused MTP11:green fluorescent protein was co-localized to trans-Golgi markers and differentiated from other Golgi-associated markers. Knockout of MTP11 in wild-type rice did not affect tolerance and accumulation of Mn and other heavy metals, but knockout in the mtp8.1 mutant showed exacerbated Mn sensitivity at the vegetative growth stage. Knockout of MTP11 alone resulted in decreased grain yield and fertility at the reproductive stage. Thus, MTP11 is a trans-Golgi localized transporter for Mn, which plays a role in Mn tolerance through intracellular Mn compartmentalization. It is also required for maintaining high fertility in rice.
水稻 MTP11 是一种跨高尔基体定位的转运蛋白,与 MTP8.1 一起参与锰耐受,并且对于正常的育性是必需的。水稻(Oryza sativa L.)是最耐锰(Mn)的物种之一,它能够在叶片中积累高水平的这种金属而没有表现出毒性症状。金属耐受蛋白 8.1(MTP8.1),Mn 阳离子扩散促进剂(CDF)家族的一员,通过将 Mn 隔离到液泡中,在高 Mn 耐受中发挥核心作用。最近,水稻 MTP11 被鉴定为一种定位于高尔基体相关隔室的 Mn 转运蛋白,但它在植物体内 Mn 耐受中的确切作用尚未被理解。在这里,我们使用敲除系研究了 MTP11 在水稻 Mn 耐受中的作用。老叶比其他组织表现出更高水平的组成型表达 MTP11,并且在生殖器官中也发现了 MTP11 的表达。融合的 MTP11:绿色荧光蛋白与跨高尔基标记物共定位,并与其他高尔基体相关标记物区分开来。在野生型水稻中敲除 MTP11 并不影响 Mn 和其他重金属的耐受和积累,但在 mtp8.1 突变体中敲除则在营养生长阶段加剧了 Mn 敏感性。单独敲除 MTP11 会导致生殖阶段的籽粒产量和育性下降。因此,MTP11 是一种跨高尔基体定位的 Mn 转运蛋白,通过细胞内 Mn 区室化在 Mn 耐受中发挥作用。它也是维持水稻高育性所必需的。