首页> 外文期刊>Frontiers in Plant Science >Functional and RNA-Sequencing Analysis Revealed Expression of a Novel Stay-Green Gene from Zoysia japonica ( ZjSGR) Caused Chlorophyll Degradation and Accelerated Senescence in Arabidopsis
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Functional and RNA-Sequencing Analysis Revealed Expression of a Novel Stay-Green Gene from Zoysia japonica ( ZjSGR) Caused Chlorophyll Degradation and Accelerated Senescence in Arabidopsis

机译:功能和RNA序列分析揭示了日本结缕草 ZjSGR )的新型保持绿色基因引起拟南芥叶绿素降解和加速衰老的表达

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Senescence is not only an important developmental process, but also a responsive regulation to abiotic and biotic stress for plants. Stay-green protein plays crucial roles in plant senescence and chlorophyll degradation. However, the underlying mechanisms were not well-studied, particularly in non-model plants. In this study, a novel stay-green gene, ZjSGR , was isolated from Zoysia japonica . Subcellular localization result demonstrated that ZjSGR was localized in the chloroplasts. Quantitative real-time PCR results together with promoter activity determination using transgenic Arabidopsis confirmed that ZjSGR could be induced by darkness, ABA and MeJA. Its expression levels could also be up-regulated by natural senescence, but suppressed by SA treatments. Overexpression of ZjSGR in Arabidopsis resulted in a rapid yellowing phenotype; complementary experiments proved that ZjSGR was a functional homolog of AtNYE1 from Arabidopsis thaliana . Over expression of ZjSGR accelerated chlorophyll degradation and impaired photosynthesis in Arabidopsis. Transmission electron microscopy observation revealed that overexpression of ZjSGR decomposed the chloroplasts structure. RNA sequencing analysis showed that ZjSGR could play multiple roles in senescence and chlorophyll degradation by regulating hormone signal transduction and the expression of a large number of senescence and environmental stress related genes. Our study provides a better understanding of the roles of SGR s, and new insight into the senescence and chlorophyll degradation mechanisms in plants.
机译:衰老不仅是重要的发育过程,而且是植物对非生物和生物胁迫的响应性调节。保持绿色的蛋白质在植物衰老和叶绿素降解中起关键作用。但是,尚未深入研究其潜在机制,尤其是在非模型植物中。在这项研究中,从日本结缕草中分离出了一种新型的保持绿色基因ZjSGR。亚细胞定位结果表明ZjSGR定位在叶绿体中。实时定量PCR结果以及使用转基因拟南芥确定启动子活性的结果证实,ZjSGR可以被黑暗,ABA和MeJA诱导。它的表达水平也可以通过自然衰老而被上调,但是被SA处理抑制。 ZjSGR在拟南芥中的过表达导致快速的泛黄表型。补充实验证明ZjSGR是拟南芥AtNYE1的功能同源物。 ZjSGR的过度表达加速了拟南芥中的叶绿素降解并损害了光合作用。透射电子显微镜观察表明,ZjSGR的过表达分解了叶绿体结构。 RNA测序分析表明,ZjSGR可以通过调节激素信号转导以及大量衰老和环境胁迫相关基因的表达来在衰老和叶绿素降解中发挥多种作用。我们的研究提供了对SGR的作用的更好理解,并为植物的衰老和叶绿素降解机制提供了新的见识。

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