查找文献绘制甲壳动物免疫系统网络,在转换成图的时候没有使用算法
盐胁迫pathway
KEGG里面和盐胁迫相关Pathway信息
https://www.genome.jp/kegg-bin/show_pathway?map=ath04016&show_description=show
关于盐胁迫的信号转导通路
小麦耐盐机制的总结与展望—《The Crop Journal》special issue
https://mp.weixin.qq.com/s/IWYBwnBuvcOY58qcOaXo1A
Fig. 7. The suggested model depicting ionic mechanisms contributing to K+ retention in leaf mesophyll in barley. Upon NaCl exposure, the plasma membrane is depolarized by the massive entry of external Na+ via non-selective cation channel (NSCC) and results in K+ loss mediated by depolarization-activated K+ outward rectifying channel (KOR) channels. Cytosolic K+ homeostasis is disrupted. The accompanied production of ROS has detrimental effects of leaf photochemistry in chloroplasts and, in severe cases, could trigger PCD or lead to necrosis. ROS also activate NSCC exacerbating K+ loss from cytosol. Compared with salt sensitive genotypes, higher vacuolar K+ pool in the leaf mesophyll in salt tolerant barley genotypes allows plants to maintain cytosolic K+ homeostasis by releasing vacuolar K+ into cytosol; this process is mediated by tonoplast K+- permeable channels (TPK in the model). It is also suggested that tolerant varieties may have higher Na+/H+ NHX exchanger activity and, thus, can replace vacuolar K+ by Na+ to maintain its osmotic pressure in vacuole. As K+ uptake by AKT1 into leaf mesophyll is inhibited by the membrane depolarization, plants should rely on high affinity K+ uptake to restore cytosolic K+ homeostasis (a HAK/KUP family K+/H+ co-transporter in the model). A concurrent K+ and H+ uptake through HAK/KUP exchanger results in a +2 net charge transfer and may further depolarise the plasma+ membrane, resulting in a futile cycle of K . This process is partially compensated by higher ATPase- driven H+-pumping activity in sensitive varieties.
信号转导分析在植物
致谢
时光荏苒,岁月如梭,一转眼间就到了毕业时刻,即将为研究生三年的学习生涯 画上句号。细细回想,本科四年,研究生三年,我在西电留下了七年的回忆。离校日 期已日趋渐进,纵观研究生的学业时光,所有的成长一直都离不开老师、同学、父母 给予的热情帮助,在这里请接受我诚挚的谢意!
首先,感谢我的导师高琳教授。从研究生刚一入学,您就帮助我树立了实事求是 的学习态度和严谨的科研作风。从您的言传身教中,我领会到了阅读文献的关键,从 事科学研究的方法,更重要的是为人处世的道理。另外,您对学术敏锐的洞察力和渊 博的专业知识,常能立足于高处给予我宏观上的指导,时常令我耳目一新,柳暗花明。 在这里,向高琳教授致以由衷的感谢!
其次,感谢实验室所有的师兄师弟师姐师妹们,尤其是感谢同一届的王宏达、李 玉峰、兰小明、夏明飞、张晨星、龚倩华、周丹丹。在科研学习中,通过与你们对各 自研究领域的探究和讨论,使我对自己研究的问题也有了更清晰的认知,另外也开阔 了我的视野甚至在自己研究卡壳的时候,给我供了一定的思路和方向。其次,在科 研之外的生活中,无论是出去聚餐还是平时的嬉闹,更添加了几分欢乐色彩,使我的 研究生生涯更加丰富多彩。感谢你们的陪伴。
然后,感谢我的父母家人,在漫长的人生旅途中,使我心灵有了虔敬的归依,让 我没有任何后顾之忧地更专注于学习。你们的支持和鼓励,尤其是来自女朋友徐小丹 (现妻子)的理解和关怀,是我不断学习,继续成长的原动力。在未来的日子里,我 会更加努力的学习和工作,不辜负你们对我的殷殷期望!
最后,向百忙之中参与审阅、评议本论文并出指导性意见的各位专家和老师表 示由衷的感谢!