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L-cysteine desulfhydrase-related H2S production is involved in OsSE5-promoted ammonium tolerance in roots of Oryza sativa

机译:L-半胱氨酸脱巯基酶相关的H2s产生参与OssE5促进的水稻根系耐铵性

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摘要

Previous studies revealed that rice heme oxygenase PHOTOPERIOD SENSITIVITY 5 (OsSE5) is involved in the regulation of tolerance to excess ammonium by enhancing antioxidant defence. In this study, the relationship between OsSE5 and hydrogen sulfide (H2S), a well-known signalling molecule was investigated. Results showed that NH4Cl triggered the induction of L-cysteine desulfhydrase (L-DES)-related H2S production in rice seedling roots. A H2S donor, not only alleviated the excess ammonium-triggered inhibition of root growth, but also reduced endogenous ammonium, both of which were aggravated by the hypotaurine (HT, a H2S scavenger) or DL-propargylglycine (PAG, a L-DES inhibitor). Nitrogen-metabolism related enzymes were activated by H2S, thus resulting in induction of amino acid synthesis and total nitrogen content. Interestingly, activity of L-DES, as well as the enzymes involved in nitrogen metabolism was significantly increased in OsSE5-overexpression line (35S:OsSE5), whereas impaired in OsSE5-knockdown mutant (OsSE5-RNAi). Application of HT/PAG or H2S donor could differentially block or rescue NH4Cl-hyposensitivity or hypersensitivity phenotypes in 35S:OsSE5-1 or OsSE5-RNAi-1 plants, with a concomitant modulation of nitrogen assimilation. Taken together, these results illustrated that H2S function as an indispensable positive regulator participated in OsSE5-promoted ammonium tolerance, in which nitrogen metabolism was facilitated.
机译:以前的研究表明,水稻血红素加氧酶的光致敏感性5(OsSE5)通过增强抗氧化剂的防御作用来调节对过量铵的耐受性。在这项研究中,研究了OsSE5与硫化氢(H2S)(一种著名的信号分子)之间的关系。结果表明,NH4Cl引发了水稻幼苗根中L-半胱氨酸脱硫酶(L-DES)相关H2S的产生。 H2S供体不仅减轻了铵触发的对根生长的抑制作用,而且减少了内源性铵,二者均被次牛磺酸(HT,H2S清除剂)或DL-炔丙基甘氨酸(PAG,L-DES抑制剂)加重。 )。氮代谢相关的酶被H2S激活,从而导致氨基酸合成和总氮含量的诱导。有趣的是,在OsSE5-过表达株系(35S:OsSE5)中L-DES的活性以及参与氮代谢的酶显着增加,而在OsSE5-nockdown突变体(OsSE5-RNAi)中受损。 HT / PAG或H2S供体的应用可以差异地阻断或挽救35S:OsSE5-1或OsSE5-RNAi-1植物中的NH4Cl-超敏性或超敏性表型,同时调节氮同化作用。综上所述,这些结果说明,H2S作为必不可少的正调节剂,参与了OsSE5促进的氨耐受性,从而促进了氮的代谢。

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