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| 1 | The Plant Vascular System: Evolution, Development and Functions显示文摘The emergence of the tracheophyte-based vascular system of land plantshad major impacts on the evolution of terrestrial biology, in general,through its role in facilitating the development of plants with increasedstature, photosynthetic output, and ability to colonize a greatly expandedrange of environmental habitats. Recently, considerable progress hasbeen made in terms of our understanding of the developmental andphysiological programs involved in the formation and function of theplant vascular system. In this review, we first examine the evolutionaryevents that gave rise to the tracheophytes, followed by analysis of thegenetic and hormonal networks that cooperate to orchestrate vasculardevelopment in the gymnosperms and angiosperms. The two essentialfunctions performed by the vascular system, namely the delivery of resources (water, essential mineralnutrients, sugars and amino acids) to the various plant organs and provision of mechanical support arenext discussed. Here, we focus on critical questions relating to structural and physiological propertiescontrolling the delivery of material through the xylem and phloem. Recent discoveries into the role ofthe vascular system as an effective long-distance communication system are next assessed in termsof the coordination of developmental, physiological and defense-related processes, at the whole-plantlevel. A concerted effort has been made to integrate all these new findings into a comprehensive pictureof the state-of-the-art in the area of plant vascular biology. Finally, areas important for future researchare highlighted in terms of their likely contribution both to basic knowledge and applications to primaryindustry. | William J. Lucas Andrew Groover Raffael Lichtenberger Kaori Furuta Shri-Ram Yadav Yk Helariutta Xin-Qiang He Hiroo Fukuda Julie Kang Siobhan M. Brady John W. Patrick John Sperry Akiko Yoshida Ana-Flor López-Millan Michael A. Grusak Pradeep Kachroo | 2013 | Journal of Integrative Plant Biology2013,55,4: | 30 |
| 2 | Transport of chemical signals in systemic acquired resistance显示文摘Systemic acquired resistance(SAR) is a form of broad-spectrum resistance induced in response to local infections that protects uninfected parts against subsequent secondary infections by related or unrelated pathogens. SAR signaling requires two parallel branches,one regulated by salicylic acid(SA),and the other by azelaic acid(AzA) and glycerol-3-phosphate(G3P). Az A and G3P function downstream of the free radicals nitric oxide(NO) and reactive oxygen species(ROS). During SAR,SA,Az A and G3P accumulate in the infected leaves,but only a small portion of these is transported to distal uninfected leaves. SA is preferentially transported via the apoplast,whereas phloem loading of Az A and G3P occurs via the symplast. The symplastic transport of Az A and G3P is regulated by gating of the plasmodesmata(PD). The PD localizing proteins,PDLP1 and PDLP5,regulate SAR by regulating PD gating as well as the subcellular partitioning of a SAR-associated protein. | Archana Singh Gah-Hyun Lim Pradeep Kachroo | 2017 | Journal of Integrative Plant Biology2017,59,5: | 2 |
| 3 | A gain - of - function mutation in an Arabidopsis toll interleukinl receptor - nucleotide binding site - leucine - rich repeat type R gene triggers defense responses and results in enhanced disease resistance显示文摘 | Shirano Y Kachroo P ShahJ | 2002 | Plant Cell2002,14,12: | 1 |
| 4 | Soloution to the user equilibrium dynamic traffic routing program using feedback linearization 显示文摘 | KACHROO P OZBAY K | 1998 | Transportation Research ( Part B)1998,32,5: | 1 |
| 5 | A fatty acid desaturase modulates the activation of defense signaling pathways in plants显示文摘 | KACHROO P SHANKLIN J SHAH J | 2001 | Proc Natl Acad Sci USA2001,98,: | 1 |
| 6 | A fatty acid desaturase modulates the activation of defense signaling pathways in plants显示文摘 | Kachroo P Shanklin J Shah J | 2001 | Proceedings of the National Academy of Sciences2001,98,16: | 1 |
| 7 | Self-incompatibility in the Brassicaceae显示文摘 | Kachroo A Mikhail E Nasrallah | 2002 | Plant Cell2002,14,: | 1 |
| 8 | Plastidial fatty acid signaling modulates salicylic acid-and Jasmonic acid-mediated defense pathways in the Arabidopsis ssi2 mutant显示文摘 | Aardra Kachroo Ludmila Lapchyk Hirotada Fukushige | 2003 | Plant Cell2003,15,: | 1 |
| 9 | A gain-of-function mutation in an Arabidopsis Toll Interleukin 1 receptor-nucleotide binding site-leucine-rich repeat type R gene triggers defense responses and results in enhanced disease resistance显示文摘 | Shirano Y Kachroo P Shah J | 2002 | The Plant Cell2002,14,12: | 1 |
| 10 | Chattering reduction and error convergence in the sliding mode control of a class of nonlinear systems显示文摘 | Kachroo P Tomizuka M | 1996 | IEEE Tansactions on Automatic control1996,41,7: | 1 |
| 11 | Plastidial fatty acidsignaling modulates salic ylic acid-and jasmonin acid-mediated de-fense pathways in the Arabidopsis ssi2 mutant 显示文摘 | Kachroo A Lapchyk L Fukushige H | 2003 | Plant Cell2003,15,12: | 1 |
| 12 | Pot2, an inverted repeat transposon from the rice blast fungus Magnaporthe grisea显示文摘 | Kachroo P Leong S A Chattoo B B | 1994 | Mol Gen Genet1994,245,: | 1 |
| 13 | Report on an investigation into the teaching of vocabulary in the first year of English 显示文摘 | KACHROO J N | 1962 | Bulletin of the Central Institute of English1962,,2: | 1 |
| 14 | RPG1 B Derived Resistance to AvrB-Expressing Pseudomonas Syringae Requires RIN4- Like Proteins in Soybean 显示文摘 | SELOTE D KACHROO A | 2010 | Plant Physiology2010,153,3: | 1 |
| 15 | Virus-induced gene silencing in soybean显示文摘 | Kachroo A Ghabrial S | 2012 | Methods in Molecular Biology2012,894,: | 1 |
| 16 | Opportunity cost-based models for traffic incident response problem 显示文摘 | Sherali H D Subramanian S Kachroo P | 1999 | Journal of Transportation Engineering1999,125,3: | 1 |
| 17 | Pot 2,an inverted repeat transposon from the rice fungus Magnaporthe grisea 显示文摘 | Kachroo P Leong S A Chattoo B B | 1994 | Molecular and General Genetics1994,,245: | 1 |
| 18 | Self-incompatibility in the Brassicaceae 显示文摘 | Kachroo A Mikhail E and Nasrallah J B | 2002 | Plant Cell2002,14,: | 1 |
| 19 | The arabidopsis ssil mutation restores pathogenesis-relaed gene expression in nprl plants and renders defensin gene expression salicylic acid dependent显示文摘 | J Shah P Kachroo DF Klessig | 1999 | Plant Cell1999,,11: | 1 |
| 20 | Investigationthe used of Kalman filtering approaches for dynamicorigin-destination trip table estimation显示文摘 | Kachroo P Ozbay K Narayanan A | 1997 | Electrical&Computer Engineering1997,,1: | 1 |