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The Receptor-Like Cytoplasmic Kinase (OsRLCK) Gene Family in Rice: Organization, Phylogenetic Relationship, and Expression during Development and Stress

机译:水稻样受体胞质激酶(OsRLCK)基因家族:组织,系统发生关系和发育和压力期间的表达。

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摘要

Receptor-like cytoplasmic kinases (RLCKs) in plants belong to the super family of receptor-like kinases (RLKs). These proteins show homology to RLKs in kinase domain but lack the transmembrane domain. Some of the functionally characterized RLCKs fromplants have been shown to play roles in development and stress responses. Previously, 149 and 187 RLCK encoding genes were identified from Arabidopsis and rice, respectively. By using HMM-based domain structure and phylogenetic relationships, we have identified 379 OsRLCKs from rice. OsRLCKs are distributed on all 12 chromosomes of rice and some members are located on duplicated chromosomal segments. Several OsRLCKs probably also undergo alternative splicing, some having evidence only in the form of gene models. To understand their possible functions, expression patterns during landmark stages of vegetative and reproductive development as well as abiotic and biotic stress using microarray and MPSS-based data were analyzed. Real-time PCR-based expression profiling for a selected few genes confirmed the outcome of microarray analysis. Differential expression patterns observed for majority of OsRLCKs during development and stress suggest their involvement in diverse functions in rice. Majority of the stress-responsive OsRLCKs were also found to be localized within mapped regions of abiotic stress QTLs. Outcome of this study would help in selecting organ/development stage specific OsRLCK genes/targets for functional validation studies.
机译:植物中的受体样胞质激酶(RLCKs)属于受体样激酶(RLKs)的超家族。这些蛋白质在激酶结构域中显示与RLK的同源性,但缺乏跨膜结构域。已显示一些来自植物的功能表征的RLCK在发育和胁迫响应中发挥作用。以前,分别从拟南芥和水稻中鉴定出149和187个RLCK编码基因。通过使用基于HMM的域结构和系统发育关系,我们从水稻中鉴定出379个OsRLCKs。 OsRLCKs分布在水稻的所有12条染色体上,一些成员位于重复的染色体片段上。一些OsRLCKs可能也经历了选择性剪接,其中一些仅以基因模型的形式提供了证据。为了了解它们的可能功能,使用微阵列和基于MPSS的数据分析了营养和生殖发育的标志性阶段以及非生物和生物胁迫的表达模式。对选定的几个基因进行基于实时PCR的表达谱分析,证实了微阵列分析的结果。在发育和胁迫过程中观察到的大多数OsRLCKs的差异表达模式表明它们参与了水稻的多种功能。还发现大多数胁迫响应性OsRLCKs位于非生物胁迫QTL的定位区域内。这项研究的结果将有助于选择器官/发育阶段特异的OsRLCK基因/靶标进行功能验证研究。

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