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13篇 您的检索式:作者名="Yepuri"
    题名 作者 年代 出处 被引量
1Hyperactive S6K 1 Mediates Oxidative Stress and Endothelial Dysfunction in Aging: Inhibition by Resveratrol 显示文摘Rajapakse AG Yepuri G Carvas JM 2011PLoS ONE2011,6,19:1
2ARG2 impairs endothelial autophagy through regulation of MTOR and PRKAA/AMPK signaling in advanced atherosclerosis 显示文摘XIONG Y YEPURI G FORBITEH M 2014Autophagy2014,10,12:1
3Hypera- ctive S6K1 mediates oxidative Stress and endo-thelial dysfunction in aging: inhibition by resveratrol 显示文摘Rajapakse AG Yepuri G Carvas JM 2011PLoS One2011,6,4:1
4Arginase II promotes macrophage inflammatory responses through mitochondrial reactive oxygen species, contributing to insulin resistance and atherogenesis显示文摘Ming XF Rajapakse AG Yepuri G 2012Journal of the American Heart Association2012,1,00:1
5Assessment of genetic diversity in sesame ( Sesamum indicum L.) genotypes, using EST-derived SSR markers显示文摘Vijay Yepuri Malathi Surapaneni Vijaya Sudhakar Rao Kola L. R. Vemireddy B. Jyothi V. Dineshkumar G. Anuradha E. A. Siddiq 2013Journal of Crop Science and Biotechnology2013,,2:1
6ARG2 impairs endothelial autophagy through regulation of MTOR and PRKAA/ AMPK signaling in advanced atherosclerosis 显示文摘Xiong Y Yepuri G Forbiteh M 2014Autophagy2014,10,12:1
7Hyperactive S6K1 mediates oxidative stress and endothelial dysfunction in aging: inhibition by resveratrol 显示文摘Rajapakse AG Yepuri G Carvas JM 2011PLoS One2011,6,19:1
8ARG2 impairs endothelial auto-phagy through regulation of MTOR and PRKAA/AMPK signaling in ad-vanced atherosclerosis显示文摘Xiong Y Yepuri G Forbiteh M 2014Autophagy2014,10,12:1
9Hyperactive S6KI mediates oxidative stress and endothelial dysfunction in aging:inhibition by resveratrol显示文摘Rajapakse A G Yepuri G Carvas J M 0,,04:1
10Fructose ingestion acutely elevates blood pressure in healthy young humans 显示文摘Brown CM Dulloo AG Yepuri G 2008Am J Physiol Regul Integr Comp Physiol2008,294,3:1
11Dietary modulation of body composition and insulin sensitivity during catch-up growth in rats:effects of oils rich in n-6 or n-3 PUFA 显示文摘Yepuri G Marcelino H Shahkhalili Y 2011Br J Nutr2011,105,12:1
12Hyperactive SrK1 medi- ates oxidative stress and endothelial dysfunction in aging: inhibition by resveratrol显示文摘Rajapakse A G Yepuri G Carvas J M 2011PLoS One2011,6,19:1
13Breeding and biotechnological efforts in Jatropha curcas L.for sustainable yields显示文摘Jatropha is a non-edible,important bioenergy plant,which can grow in marginalized land.The seeds possess about 36%oil and this would be converted into biodiesel or biojet-fuel.Jatropha provides an option for sustainable feed and fuel production due to its inherent qualities including hardy nature,drought tolerance and surviving with limited amount of water,tolerance to unfavorable conditions and excessive moisture.However,heterozygosity,low productivity and poor understanding of its genome are the major impediments to elite line development.Further,classical breeding and advanced technological investments remain limited owing to long juvenile phase and breeding cycles.Scientific technologies that lead to identification of elite genotypes and development of high yielding elite Jatropha lines and effective methods of detoxification of seeds needs immediate priority.Efficient tissue culture system,doubled haploids(DH)and genomic tools are increasingly made available to improve the seed yield and its oil quantity through the development of geminivirus disease resistant lines.The application of advanced,sequencing technologies has presented a repertoire of genomic information for this important yet orphan crop.In the present investigation,we highlight the achievements made in Jatropha towards development of high yielding,virus resistant elite lines and hybrids with yield potential ranging from 3 to 5 tons per hectare in a year,which is a first ever report in the world.We also developed potential biotechnological tools such as genetic transformation,genome editing and next generation genomics tools including linkage maps and QTLs for accelerating breeding efforts through marker assisted selection.Because of our concerted and continuous efforts during the past 15 years,we have overcome all the obstacles and developed high yielding,disease resistant hybrids/lines,advanced cultivation technologies with thorough knowledge on Agronomy of the Jatropha crop.The Jatropha cultivation technology developed for the first time in the world,could open up new avenues for higher yield productivity of commercial viability.S.Arockiasamy Jyothirmayi Kumpatla Sainath Hadole Vijay Yepuri Manoj Patil Vineeta Shrivastava Chandrasekhara Rao Nagesh Kancharla Saakshi Jalali Alok Varshney Neeta Madan Sai Pothakani Vinod Nair Sridhar Peyyala Vishwnadharaju Mudunuri Ananthan Gopal Niranjan S.Kumar Jawahar Pachiyannan Satyanarayana Seelamanthula J.V.Narasimham Makarand Phadke Anindya B Ajit Sapre Santanu Dasgupta 2021Oil Crop Science2021,6,4:0
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