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6篇 您的检索式:作者名="Satwinder"
    题名 作者 年代 出处 被引量
1Differential Sensitivity of Macrocarpa and Microcarpa Types of Chickpea (Cicer arietinum L.) to Water Stress: Association of Contrasting Stress Response with Oxidative Injury显示文摘Chickpea (Cicer arietinum L.) 是特别地敏感的在它的繁殖阶段浇应力并且在水应力的条件下面,将放弃花和豆荚,因此减少收益潜力。有 chickpea 的二种类型:(i) Macrocarpa (Kabuli ) 它有大,击打塑造头的、轻棕色的种子;并且(ii ) Microcarpa (Desi ) 它有小、尖、黑暗褐的种子。相对说, Kabuli 被报导了更敏感比 Desi 浇应力。与对比敏感流水联系的内在的机制在新陈代谢的水平强调井没被理解。我们假设了一个原因因为在 chickpea 的二种类型的形成对照的水压力敏感可以是在氧化损害的一个变化。在现在的学习,两种类型的植物是为 14 d 在繁殖舞台强调的水。由于压力, Kabuli 类型与为 Desi 类型观察的 64% 减小相比在控制上在种子产量展出了 80% 减小。在叶水潜力(w) 的减少与 Desi 类型相比在 Kabuli 是更快的。在水压力时期的结束, w 被归结为 ? 2.9 并且 ? 分别地,没有他们之间的任何重要差别,在 Desi 和 Kabuli 的 3.1 MPa 打字。在应力的最后一天, Kabuli 比 Desi 经历了 20% 更多的膜损害。叶绿素内容和光合的率与 Kabuli 相比在 Desi 是显著地更大的。malondialdehyde 和 H2O2 内容与 Desi 相比在在 Kabuli 的水压力的结束是显著地更高的,显示在前者的更大的氧化应力。抗氧化剂的层次例如维生素酸和谷胱甘肽,比 Kabuli 在 Desi 是显著地更高的。, Superoxide dismutase 和过氧化氢酶活动没在第 10 天, ascorbate peroxidase 的活动, dehydroascorbate reductase,和谷胱甘肽 reductase 在 chickpea 的二种类型之间显著地不同在 Desi 是更高的。这些调查结果显示在 Desi 类型的更大的应力公差可以被归功于到它维持更好的水地位的优异能力,它导致更少的氧化损坏。另外,实验室研究由使 chickpea 的两种类型遭到到聚乙烯的类似的层次进行了导致乙二醇的水应力并且到 10 .mol/L abscisic,酸显示了 Desi 类型的一个更大的能力比 Kabuli 类型处理氧化应力。Harsh Nayyar Smita Singh Satwinder Kaur Sanjeev Kumar Hari D. Upadhyaya 2006Journal of Integrative Plant Biology2006,48,11:6
2Effect of salicylic and abscisic acid administered through detached tillers on antioxidant system in developing wheat grains under heat stress显示文摘Bavita Asthir Satvir Kaur Satwinder K. Mann 2009Acta Physiologiae Plantarum2009,,5:1
3Vascular cell ad- hesion molecule-1 (VCAM-1) and intercellular adhesion mol ecule-1 (ICAM-1) provide co-stimulation in positive selection along with survival of selected thymocytes显示文摘Lutz CP Satwinder KS Rosette JF etal 2008Mol Immu- nol2008,45,:1
4Nonintrusive measurement of contact forces during vibration dominated impacts 显示文摘Satwinder J S Anindya C 2004Journal of Dynamic Systems Measurement and Control2004,126,3:1
5Insight into the liver dysfunction in COVID-19 patients: Molecular mechanisms and possible therapeutic strategies显示文摘As of June 2022,more than 530 million people worldwide have become ill with coronavirus disease 2019(COVID-19).Although COVID-19 is most commonly associated with respiratory distress(severe acute respiratory syndrome),metaanalysis have indicated that liver dysfunction also occurs in patients with severe symptoms.Current studies revealed distinctive patterning in the receptors on the hepatic cells that helps in viral invasion through the expression of angiotensinconverting enzyme receptors.It has also been reported that in some patients with COVID-19,therapeutic strategies,including repurposed drugs(mitifovir,lopinavir/ritonavir,tocilizumab,etc.)triggered liver injury and cholestatic toxicity.Several proven indicators support cytokine storm-induced hepatic damage.Because there are 1.5 billion patients with chronic liver disease worldwide,it becomes imperative to critically evaluate the molecular mechanisms concerning hepatotropism of COVID-19 and identify new potential therapeutics.This review also designated a comprehensive outlook of comorbidities and the impact of lifestyle and genetics in managing patients with COVID-19.Naina Khullar Jasvinder Singh Bhatti Satwinder Singh Bhawana Thukral P Hemachandra Reddy Gurjit Kaur Bhatti 2023World Journal of Gastroenterology2023,29,14:1
6Extended Balanced Scheduler with Clustering and Replication for Data Intensive Scientific Workflow Applications in Cloud Computing显示文摘Cloud computing is an advance computing model using which several applications,data and countless IT services are provided over the Internet.Task scheduling plays a crucial role in cloud computing systems.The issue of task scheduling can be viewed as the finding or searching an optimal mapping/assignment of set of subtasks of different tasks over the available set of resources so that we can achieve the desired goals for tasks.With the enlargement of users of cloud the tasks need to be scheduled.Cloud’s performance depends on the task scheduling algorithms used.Numerous algorithms have been submitted in the past to solve the task scheduling problem for heterogeneous network of computers.The existing research work proposes different methods for data intensive applications which are energy and deadline aware task scheduling method.As scientific workflow is combination of fine grain and coarse grain task.Every task scheduled to VM has system overhead.If multiple fine grain task are executing in scientific workflow,it increase the scheduling overhead.To overcome the scheduling overhead,multiple small tasks has been combined to large task,which decrease the scheduling overhead and improve the execution time of the workflow.Horizontal clustering has been used to cluster the fine grained task further replication technique has been combined.The proposed scheduling algorithm improves the performance metrics such as execution time and cost.Further this research can be extended with improved clustering technique and replication methods.Satwinder Kaur Mehak Aggarwal 2018Journal of Electronic Research and Application2018,2,3:0
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