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68篇 您的检索式:作者名="Peevers"
    题名 作者 年代 出处 被引量
1Acetazolamide and respiratory chemosensitivity to CO2 in the neonatal rat transverse medullary slice显示文摘Necakov A Peever JH Shen LL 2002Respiratory Physiology & Neurobiology2002,132,:1
2Incidence and diversity of doublestranded RNAs occurring in the chestnut blight fungus,Cryphonectria parasitica,in China and Japan显示文摘PEEVER T L LIU Y C WANG K R 1998Phytopathology1998,88,8:1
3Electrolyte leakage, lipoxygenase, and lipid peroxidation induced in tomato leaf tissue by specific and nonspecific elicitors from cladosporium fulvum 显示文摘 Higgins V J 1989Plant physiol1989,90,:1
4Electrolyte leakage, lipoxygenase, and lipid peroxidation induced in tomato leaf tissue by specific and nonspecific elicitors from Cladosporium fulvumF 显示文摘Peever T L Higgins V J 1989Plant physiol1989,90,:1
5Inheritance of triadimenol resistance in Pyrenophorateres 显示文摘PEEVER T L MILGROOM M G 1992Phytopathology1992,82,8:1
6Electrolyte leakage,lipoxygenase,and lipid peroxidation induced in tomato leaf tissue by specific and non specific elicitors from Cladosporium fluvum显示文摘Peever T L Higgins V J 1989Plant Physiology1989,90,:1
7Maize Carbohydrate Partitioning Defective33 Encodes an MCTP Protein and Functions in Sucrose Export from Leaves显示文摘To sustain plant growth,development,and crop yield,sucrose must be transported from leaves to distant parts of the plant,such as seeds and roots.To identify genes that regulate sucrose accumulation and transport in maize(Zea mays),we isolated carbo/iydrafe part/f/ofi/ngf defecf/Ve33(cpd33),a recessive mutant that accumulated excess starch and soluble sugars in mature leaves.The cpd33 mutants also exhibited chlorosis in the leaf blades,greatly diminished plant growth,and reduced fertility.Cpd33 encodes a protein containing multiple C2 domains and transmembrane regions.Subcellular localization experiments showed the CPD33 protein localized to plasmodesmata(PD),the plasma membrane,and the endoplasmic reticulum.We also found that a loss-of-function mutant of the CPD33 homolog in Arabidopsis,QUIRKY,had a similar carbohydrate hyperaccumulation phenotype.Radioactively labeled sucrose transport assays showed that sucrose export was significantly lower in cpd33 mutant leaves relative to wild-type leaves.However,PD transport in the adaxial-abaxial direction was unaffected in cpd33 mutant leaves.Intriguingly,transmission electron microscopy revealed fewer PD at the companion cell-sieve element interface in mutant phloem tissue,providing a possible explanation for the reduced sucrose export in mutant leaves.Collectively,our results suggest that CPD33 functions to promote symplastic transport into sieve elements.Thu M.Tran Tyler J.McCubbin Saadia Bihmidine Benjamin T.Julius R.Frank Baker Martin Schauflinger Clifford Weil Nathan Springer Paul Chomet Ruth Wagner Jeff Woessner Karen Grote Jeanette Peevers Thomas L.Slewinski David M.Braun 2019Molecular Plant2019,12,9:1
8Alternaria diseases of citrus- novel pathosystems显示文摘Timmer L W Peever T L Solel Z 2003Phytopathologia Mediterranea2003,42,2:1
9A usability comparison of three alternative message formats for an SMS banking service显示文摘Peevers G D G J 0,,66:1
10First report of Spring black stem and leaf spot of Alfalfa in Washington state caused by Phoma medicaginis显示文摘Akamatsu H O Chilvers M I Peever T L 2008Plant Disease2008,92,5:1
11Molecular systematics of citrus-associated Alternaria species显示文摘Peever T Su G Carpenter-Boggs L 2004Mycologia2004,96,1:1
12Molecular,ecological and evolutionary approaches to understanding Alternaria diseases of citrus显示文摘Akirni{su K Peever T L Timmer L 2003Molecular Plant Pathology2003,4,6:1
13Molecular sys-tematics of citrus-associated Alternaria species显示文摘Peever T L Su G Carpenter-Boggs L 0,,01:1
14Worldwide phylogeography of the citrus brown spot pathogen,Alternaria altemata显示文摘Peever T Ibanez A Akimitsu K 2002Phytopathology2002,92,79:1
15Molecular systematics of citrus-associated Alternaria species显示文摘PEEVER T L SU G CARPENTER-BOGGS L TIMMER L W 2004Mycologia2004,96,1:1
16Postbloom fruitdrop of citrus and key lime anthracnose are caused by distinct phy-logenetic lineages of Colletotrichum acutatum显示文摘PERES N MACKENZIE S PEEVER T 2008Phytopathology2008,98,3:1
17Electrolyte leakage, lipoxygenase and lipid peroxidation induced in tomato leaf tissue by specfic and non-specific elicitor from Cladosporium fulvum显示文摘Peever T L Higgins V J 1989Plant Physiol1989,90,:1
18Alter?naria diseases of citrus:Novel-pathosystems显示文摘TIMMER L W PEEVER T L SOLEL Z AKIMITSU K 2003Phytopathologia Mediterranea2003,42,2:1
19Post-bloom Fruit Drop of Citrus and Key Lime Anthrac-nose Are Caused by Distinct Phylogenetic Lineages ofColletotrichum acutatum显示文摘Peres N A MacKenzie S J Peever T L 2008Phytopathology2008,98,3:1
20An isolate of Alternaria alternata that is pathogenic to both tangerines and rough lemon and produces two host-selective toxins, ACT-and ACR-toxins显示文摘Masunaka A Ohtani K Peever T 2005Phytopathology2005,95,3:1
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