Singh Pallavi, Mohanta Tapan Kumar, Sinha Alok Krishna
National Institute of Plant Genome Research, Aruna Asaf Ali Marg, New Delhi, 110067, India.
PLoS One. 2015 Apr 9;10(4):e0123620. doi: 10.1371/journal.pone.0123620. eCollection 2015.
The root system is an imperative component of a plant, involved in water and nutrient acquisition from the soil. Any subtle change in the root system may lead to drastic changes in plant productivity. Both auxin and cytokinin are implicated in regulating various root developmental aspects. One of the major signaling cascades facilitating various hormonal and developmental allocations is the Mitogen Activated Protein Kinase (MAPK) cascade. Innumerable efforts have been made to unravel the complex nexus involved in rice root development. In spite of a plethora of studies, a comprehensive study aiming to decipher the plausible cross-talk of MAPK signaling module with auxin and cytokinin signaling components in rice is missing. In the present study, extensive phenomics analysis of different stages of rice roots; transcript profiling by qRT-PCR of entire gene family of MAPK, MAPKK and PIN genes; as well as protein level and activity of potential MAPKs was investigated using western and immuno kinase assays both on auxin and cytokinin treatment. The above study led to the identification of various novel rice root specific phenotypic traits by using GiA roots software framework. High expression profile of OsMPK3/6, OsMKK4/5 and OsPIN 1b/9 and their marked transcript level modulation in response to both auxin and cytokinin was observed. Finally, the protein levels and activity assay further substantiated our present findings. Thus, OsMPK3/6-OsMKK4/5 module is elucidated as the putative, key player in auxin-cytokinin interaction augmenting their role by differentially regulating the expression patterns of OsPIN 1b/9 in root development in rice.
根系是植物的一个重要组成部分,参与从土壤中获取水分和养分。根系的任何细微变化都可能导致植物生产力的巨大变化。生长素和细胞分裂素都参与调节根系发育的各个方面。促进各种激素和发育分配的主要信号级联之一是丝裂原活化蛋白激酶(MAPK)级联。人们已经做出了无数努力来揭示水稻根系发育中涉及的复杂关系。尽管有大量研究,但仍缺乏一项旨在破译水稻中MAPK信号模块与生长素和细胞分裂素信号成分之间可能存在的相互作用的综合研究。在本研究中,对水稻根系不同阶段进行了广泛的表型组学分析;通过qRT-PCR对MAPK、MAPKK和PIN基因的整个基因家族进行转录谱分析;以及在生长素和细胞分裂素处理下,使用蛋白质免疫印迹法和免疫激酶测定法研究了潜在MAPK的蛋白质水平和活性。上述研究通过使用GiA根系软件框架鉴定了各种新的水稻根系特异性表型特征。观察到OsMPK3/6、OsMKK4/5和OsPIN 1b/9的高表达谱及其在生长素和细胞分裂素作用下显著的转录水平调节。最后,蛋白质水平和活性测定进一步证实了我们目前的发现。因此,OsMPK3/6-OsMKK4/5模块被阐明为生长素-细胞分裂素相互作用中的假定关键参与者,通过差异调节水稻根系发育中OsPIN 1b/9的表达模式来增强它们的作用。