Zhou Sa, Chen Qiuhong, Li Xinyue, Li Yingzhang
State Key Laboratory of Plant Physiology Biochemistry, College of Biological Sciences, China Agricultural University, Beijing, 100193, China.
State Key Laboratory of Plant Physiology Biochemistry, College of Biological Sciences, China Agricultural University, Beijing, 100193, China.
Plant Sci. 2017 Nov;264:112-121. doi: 10.1016/j.plantsci.2017.09.004. Epub 2017 Sep 12.
Microtubules (MTs) are highly dynamical structures that play crucial roles in plant development and in response to environmental signals and stress conditions. MT-associated proteins (MAPs) play important roles in regulating the organization of MT arrays. MAP65 is a family of plant MT-bundling proteins. Here, we determined the role of MAP65-1 in the response to salt stress. MAP65-1 is involved not only in regulating the depolymerization, but also in the following reorganization of cortical MTs in salt stress responses. In addition, the depolymerization of the cortical MTs affected the survival of seedlings during salt stress, and map65-1 mutants had enhanced salt hypersensitivity levels. MAP65-1 interacted with mitogen-activated protein kinase (MPK) 3 and 6; however, only the mpk6 mutant exhibited hypersensitivity to salt stress, and MPK6 was involved in regulating the salt stress-induced depolymerization of cortical MTs. Thus, MAP65-1 plays a critical role in the response to salt stress and is required for regulating the rapid depolymerization and reorganization of cortical MTs. MAP65-1 interacts with MPK6, not MPK3, affecting the MT's dynamic instability which is critical for plant salt-stress tolerance.
微管(MTs)是高度动态的结构,在植物发育以及对环境信号和胁迫条件的响应中发挥着关键作用。微管相关蛋白(MAPs)在调节微管阵列的组织中起重要作用。MAP65是一类植物微管束蛋白。在此,我们确定了MAP65-1在盐胁迫响应中的作用。MAP65-1不仅参与调节解聚,还参与盐胁迫响应中皮层微管的后续重组。此外,皮层微管的解聚影响了盐胁迫期间幼苗的存活,map65-1突变体具有更高的盐超敏水平。MAP65-1与丝裂原活化蛋白激酶(MPK)3和6相互作用;然而,只有mpk6突变体对盐胁迫表现出超敏性,并且MPK6参与调节盐胁迫诱导的皮层微管解聚。因此,MAP65-1在盐胁迫响应中起关键作用,是调节皮层微管快速解聚和重组所必需的。MAP65-1与MPK6而非MPK3相互作用,影响微管的动态不稳定性,这对植物耐盐胁迫至关重要。