Yamamoto Mai, Takahashi Taku
a Graduate School of Natural Science and Technology, Okayama University , Tsushimanaka, Okayama , Japan.
Plant Signal Behav. 2017 Jan 2;12(1):e1276685. doi: 10.1080/15592324.2016.1276685.
The excessive xylem phenotype of acaulis5 (acl5), an Arabidopsis mutant defective in the synthesis of thermospermine, indicates that thermospermine is required for negative regulation of xylem differentiation. SAC51 was identified from a dominant suppressor of acl5, sac51-d, and encodes a basic helix-loop-helix (bHLH) protein. sac51-d has a premature termination codon in one of upstream open-reading frames (uORFs) of the SAC51 mRNA that is conserved among the SAC51 family members. Thermospermine may act to bypass the inhibitory effect of the uORF on main ORF translation. Another suppressor, sac57-d, also has a mutation in the conserved uORF of SACL3, a member of the SAC51 family. On the other hand, the double knockout of SAC51 and SACL3 is insensitive to thermospermine, suggesting their key role in the response to thermospermine. However, we found that thermospermine enhances mRNA translation of SAC51 and SACL1 but not of SACL2 and SACL3. Taken together with recent findings from other groups, we propose a mechanism by which thermospermine diffused from xylem precursor cells acts non-cell-autonomously to restrict their proliferation.
拟南芥突变体acaulis5(acl5)在热精胺合成方面存在缺陷,其木质部过度发育的表型表明,热精胺是木质部分化负调控所必需的。SAC51是从acl5的显性抑制子sac51-d中鉴定出来的,它编码一种碱性螺旋-环-螺旋(bHLH)蛋白。sac51-d在SAC51 mRNA的一个上游开放阅读框(uORF)中存在一个提前终止密码子,该uORF在SAC51家族成员中是保守的。热精胺可能通过某种作用绕过uORF对主要开放阅读框翻译的抑制作用。另一个抑制子sac57-d在SACL3(SAC51家族的一个成员)的保守uORF中也存在突变。另一方面,SAC5I和SACL3的双敲除对热精胺不敏感,这表明它们在对热精胺的响应中起关键作用。然而,我们发现热精胺增强了SAC51和SACL1的mRNA翻译,但没有增强SACL2和SACL3的mRNA翻译。结合其他研究小组最近的发现,我们提出了一种机制,即从木质部前体细胞扩散出来的热精胺通过非细胞自主作用来限制其增殖。