Noble Research Institute, 2510 Sam Noble Parkway, Ardmore, Oklahoma, 73401, USA.
Ministry of Education Key Laboratory of Cell Activities and Stress Adaptations, School of Life Sciences, Lanzhou University, Lanzhou, Gansu Province, 730000, China.
Sci Rep. 2017 Aug 24;7(1):9327. doi: 10.1038/s41598-017-09297-9.
Brassinosteroids are phytohormones involved in plant development and physiological processes. Brassinosteroids Insensitive 1 (BRI1) is required for BR perception and initiation of subsequent signal transduction in Arabidopsis. In this study, the orthologue of BRI1 in the model legume species Medicago truncatula, MtBRI1, was identified and characterised. Three allelic Tnt1 insertion mutants, mtbri1-1, mtbri1-2, and mtbri1-3, were obtained from the M. truncatula Tnt1 insertion population. mtbri1 mutants displayed characteristic bri1 mutant phenotypes: extreme dwarfness, dark green curled leaves, short primary roots, less lateral roots, and insensitive to exogenous brassinolide (BL). Moreover, mtbri1 mutants show decreased total nodule number and defects in nitrogen fixation. MtBRI1 is able to complement an Arabidopsis BRI1 mutant, bri1-5. Similar to the interaction of BRI1 and BAK1 in Arabidopsis, MtBRI1 interacts with MtSERK1 in vivo. Global gene expression profiling revealed that the expression of BR biosynthesis genes and SAUR genes are significantly altered in mtbri1 mutants. MapMan analysis indicated that genes involved in signaling, hormone, cell wall, and biotic stress responses are over-represented in differentially expressed genes. Taken together, the results indicate that MtBRI1 is the BR receptor in M. truncatula and that BR signaling may play a conserved role in balancing plant growth and defenses.
油菜素甾醇是参与植物发育和生理过程的植物激素。油菜素甾醇不敏感 1(BRI1)是拟南芥油菜素内酯感知和后续信号转导启动所必需的。在这项研究中,鉴定并表征了模式豆科植物蒺藜苜蓿中 BRI1 的同源物 MtBRI1。从蒺藜苜蓿 Tnt1 插入群体中获得了三个等位基因 Tnt1 插入突变体 mtbri1-1、mtbri1-2 和 mtbri1-3。mtbri1 突变体表现出典型的 bri1 突变体表型:极度矮小、深绿色卷曲叶片、短主根、较少的侧根,并且对外源油菜素内酯(BL)不敏感。此外,mtbri1 突变体的总根瘤数减少,固氮能力受损。MtBRI1 能够互补拟南芥 BRI1 突变体 bri1-5。与拟南芥中 BRI1 和 BAK1 的相互作用相似,MtBRI1 在体内与 MtSERK1 相互作用。全基因表达谱分析表明,mtbri1 突变体中 BR 生物合成基因和 SAUR 基因的表达显著改变。MapMan 分析表明,信号转导、激素、细胞壁和生物胁迫反应相关基因在差异表达基因中过度表达。综上所述,结果表明 MtBRI1 是蒺藜苜蓿中的 BR 受体,BR 信号转导可能在平衡植物生长和防御方面发挥保守作用。