Somatic embryogenesis is an asexual reproduction process that occurs in many plant species,including rice.This process contains several totipotency markers such as Somatic Embryogenesis Receptor-like Kinase(SERK),Leaf...Somatic embryogenesis is an asexual reproduction process that occurs in many plant species,including rice.This process contains several totipotency markers such as Somatic Embryogenesis Receptor-like Kinase(SERK),Leafy Cotyledon1(LEC1)and WUSCHEL-Related Homeobox4(WOX4)and also a helpful model for embryo development and clones and transformations.Here,we report the gene expression during somatic embryo development correlates with regeneration frequency in 14 Javanica rice(pigmented and non-pigmented)using modified N6 media supplemented with Kinetin(2.0 mg/L)and NAA(1.0 mg/L).Although there have been advances in understanding the genetic basis of somatic embryogenesis in other varieties,rice is still unexplored,especially during somatic embryo development.Moreover,for the formation of callus induction from immature embryos,2,4-D(2.0 mg/L,3.0 mg/L)was used.This study analysed the gene expression of OsSERK,OsWOX4 and OsLEC1 genes through RT-PCR analysis.Higher expression of the OsLEC1 gene indicates that their function may correlate in the in vitro with the high response of rice after transfer to regeneration media.This study found that rice varieties of pigmented rice(MS Pendek and Gogoniti II)and non-pigmented rice(Pandan Ungu)showed high regeneration frequency,showing higher OsLEC1 expression than other varieties because OsLEC1 promotes the maturation of somatic embryos in plant regeneration on day 14.However,the contrast with Genjah nganjuk may be effective because of other regulatory genes.RT-PCR analysis showed OsSERK had less expression level than OsLEC1 and OsWOX4 in the varieties,which correlate with the percentage of plant regeneration,but not for Gogoniti II.In conclusion,the higher percentage of plant regeneration correlates with the higher expression level of OsLEC1 at day 14 of media regeneration of rice.展开更多
Somatic embryogenesis receptor kinase(SERK)proteins play pivotal roles in regulation of plant development and immunity. The rice genome contains two SERK genes,OsSerk1 and OsSerk2. We previously demonstrated that Os...Somatic embryogenesis receptor kinase(SERK)proteins play pivotal roles in regulation of plant development and immunity. The rice genome contains two SERK genes,OsSerk1 and OsSerk2. We previously demonstrated that OsSerk2 is required for rice Xa21-mediated resistance to Xanthomonas oryzae pv. oryzae(Xoo) and for normal development. Here we report the molecular characterization of OsSerk1. Overexpression of OsSerk1 results in a semi-dwarf phenotype whereas silencing of OsSerk1 results in a reduced angle of the lamina joint. OsSerk1 is not required for rice resistance to Xoo or Magnaporthe oryzae. Overexpression of Os Serk1 in OsSerk2-silenced lines complements phenotypes associated with brassinosteroid(BR) signaling defects, but not the disease resistance phenotype mediated by Xa21. In yeast, OsSERK1 interacts with itself forming homodimers, and also interacts with the kinase domains of OsSERK2 and BRI1, respectively.OsSERK1 is a functional protein kinase capable of auto-phosphorylation in vitro. We conclude that, whereas OsSERK2 regulates both rice development and immunity, OsSERK1 functions in rice development but not immunity to Xoo and M. oryzae.展开更多
文摘Somatic embryogenesis is an asexual reproduction process that occurs in many plant species,including rice.This process contains several totipotency markers such as Somatic Embryogenesis Receptor-like Kinase(SERK),Leafy Cotyledon1(LEC1)and WUSCHEL-Related Homeobox4(WOX4)and also a helpful model for embryo development and clones and transformations.Here,we report the gene expression during somatic embryo development correlates with regeneration frequency in 14 Javanica rice(pigmented and non-pigmented)using modified N6 media supplemented with Kinetin(2.0 mg/L)and NAA(1.0 mg/L).Although there have been advances in understanding the genetic basis of somatic embryogenesis in other varieties,rice is still unexplored,especially during somatic embryo development.Moreover,for the formation of callus induction from immature embryos,2,4-D(2.0 mg/L,3.0 mg/L)was used.This study analysed the gene expression of OsSERK,OsWOX4 and OsLEC1 genes through RT-PCR analysis.Higher expression of the OsLEC1 gene indicates that their function may correlate in the in vitro with the high response of rice after transfer to regeneration media.This study found that rice varieties of pigmented rice(MS Pendek and Gogoniti II)and non-pigmented rice(Pandan Ungu)showed high regeneration frequency,showing higher OsLEC1 expression than other varieties because OsLEC1 promotes the maturation of somatic embryos in plant regeneration on day 14.However,the contrast with Genjah nganjuk may be effective because of other regulatory genes.RT-PCR analysis showed OsSERK had less expression level than OsLEC1 and OsWOX4 in the varieties,which correlate with the percentage of plant regeneration,but not for Gogoniti II.In conclusion,the higher percentage of plant regeneration correlates with the higher expression level of OsLEC1 at day 14 of media regeneration of rice.
基金supported by a National Institutes of Health grant (GM59962) to Pamela C. RonaldJiangsu Government scholarship for overseas study and the fund for short-term visit of foreign research fellows to Shimin Zuo+3 种基金National Science Fund of China (31171622 and 31371705)Sichuan ‘Hundred Talents Plan’ fund to Xuewei Chenan EMBO (European Molecular Biology Organization) long-term post-doctoral fellowship (ALTF 1290-2011)a Human Frontiers Science Program long-term post-doctoral fellowship (LT000674/2012) to Benjamin Schwessinger
文摘Somatic embryogenesis receptor kinase(SERK)proteins play pivotal roles in regulation of plant development and immunity. The rice genome contains two SERK genes,OsSerk1 and OsSerk2. We previously demonstrated that OsSerk2 is required for rice Xa21-mediated resistance to Xanthomonas oryzae pv. oryzae(Xoo) and for normal development. Here we report the molecular characterization of OsSerk1. Overexpression of OsSerk1 results in a semi-dwarf phenotype whereas silencing of OsSerk1 results in a reduced angle of the lamina joint. OsSerk1 is not required for rice resistance to Xoo or Magnaporthe oryzae. Overexpression of Os Serk1 in OsSerk2-silenced lines complements phenotypes associated with brassinosteroid(BR) signaling defects, but not the disease resistance phenotype mediated by Xa21. In yeast, OsSERK1 interacts with itself forming homodimers, and also interacts with the kinase domains of OsSERK2 and BRI1, respectively.OsSERK1 is a functional protein kinase capable of auto-phosphorylation in vitro. We conclude that, whereas OsSERK2 regulates both rice development and immunity, OsSERK1 functions in rice development but not immunity to Xoo and M. oryzae.