Laboratory of Cell Dynamics, Graduate School of Bioagricultural Sciences, Nagoya University, Nagoya, 464-8601, Japan.
Plant Mol Biol. 2019 Jun;100(3):335-349. doi: 10.1007/s11103-019-00865-3. Epub 2019 Apr 8.
The ER membrane localized aquaporin SIP2;1 is involved in adaptation to ER stresses during pollen tube elongation. Aquaporins play multifaceted roles through selective transport of water and small neutral substrates. Here, we focused on the physiological roles of Arabidopsis thaliana aquaporins, namely SIP1;1, SIP1;2 and SIP2;1, which are localized to the endoplasmic reticulum (ER). While their loss-of-function mutants displayed normal vegetative growth. We identified defects in pollen of sip2;1. Whereas the germination rate of sip2;1 pollen was ~ 60% that of the wild type (WT), in vitro germinated sip2;1 pollen tube length was reduced up to 82% compared to the WT. Importantly, most pollen tubes on pistils from sip2;1 stopped elongation in the mid-region of pistils, and the bottom region of sip2;1 siliques lacked seeds. Consistently, silique of sip2;1 were short, whereby the average seed number per silique was nearly the half of the WT. The above phenotypes recovered in SIP2;1 complementation lines. We detected mRNA of SIP2;1 and protein in pollen, and further revealed that the GFP-linked SIP2;1 localization in the ER of growing pollen tubes. The basal mRNA level of BINDING PROTEIN 3 (BiP3), a key gene induced by ER stress, in pollen was markedly higher than that in roots, suggesting that the pollen underwent ER stress under normal growth conditions. BiP3 mRNA was dramatically increased in sip2;1 pollen. Altogether, our findings suggest that the aquaporin SIP2;1 is probably involved in the alleviation of ER stress and that the lack of SIP2;1 reduces both pollen germination and pollen tube elongation.
内质网定位水通道蛋白 SIP2;1 在花粉管伸长过程中参与内质网应激适应。水通道蛋白通过选择性运输水和小的中性底物发挥多方面的作用。在这里,我们专注于拟南芥水通道蛋白 SIP1;1、SIP1;2 和 SIP2;1 的生理作用,它们定位于内质网(ER)。虽然它们的功能丧失突变体显示出正常的营养生长。我们鉴定了 sip2;1 花粉的缺陷。虽然 sip2;1 花粉的萌发率约为野生型(WT)的 60%,但与 WT 相比,体外萌发的 sip2;1 花粉管长度减少了高达 82%。重要的是,sip2;1 雌蕊上的大多数花粉管在雌蕊中部停止伸长,并且 sip2;1 果荚的底部区域缺乏种子。一致地,sip2;1 的果荚较短,因此每个果荚的种子数几乎是 WT 的一半。这些表型在 SIP2;1 互补系中得到恢复。我们在花粉中检测到 SIP2;1 的 mRNA 和蛋白质,并进一步揭示 GFP 连接的 SIP2;1 在生长花粉管的内质网中的定位。花粉中 ER 应激关键基因 BINDING PROTEIN 3 (BiP3) 的基础 mRNA 水平明显高于根中的水平,表明在正常生长条件下花粉经历 ER 应激。sip2;1 花粉中的 BiP3 mRNA 显著增加。总之,我们的研究结果表明,水通道蛋白 SIP2;1 可能参与缓解内质网应激,并且 SIP2;1 的缺乏会降低花粉萌发和花粉管伸长。