Identification of differentially expressed genes in cucumber (Cucumis sativus L.) root under waterlogging stress by digital gene expression profile.
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Identifying the candidate genes involved in the calyx abscission process of 'Kuerlexiangli' (Pyrus sinkiangensis Yu) by digital transcript abundance measurements.Transcriptome profiling identifies ABA mediated regulatory changes towards storage filling in developing seeds of castor bean (Ricinus communis L.).Transcriptome profile analysis of young floral buds of fertile and sterile plants from the self-pollinated offspring of the hybrid between novel restorer line NR1 and Nsa CMS line in Brassica napusIdentification of differentially expressed genes relevant to corm formation in Sagittaria trifolia.Genome-Wide Analysis of Differentially Expressed Genes Relevant to Rhizome Formation in Lotus Root (Nelumbo nucifera Gaertn).Genome-wide transcriptional analysis of two soybean genotypes under dehydration and rehydration conditions.De novo characterization of the Anthurium transcriptome and analysis of its digital gene expression under cold stress.Transcriptome analysis of the Bombyx mori fat body after constant high temperature treatment shows differences between the sexes.De novo sequencing, assembly, and analysis of the Taxodium 'Zhongshansa' roots and shoots transcriptome in response to short-term waterlogging.Differential gene expression in foxtail millet during incompatible interaction with Uromyces setariae-italicae.Identification of differentially expressed genes related to aphid resistance in cucumber (Cucumis sativus L.).Transcriptional response to sulfide in the Echiuran Worm Urechis unicinctus by digital gene expression analysisA Co-Opted Hormonal Cascade Activates Dormant Adventitious Root Primordia upon Flooding in Solanum dulcamara.Transcriptome Analysis of Gene Expression during Chinese Water Chestnut Storage Organ Formation.The Transcriptome of Brassica napus L. Roots under Waterlogging at the Seedling Stage.The Alcohol Dehydrogenase Gene Family in Melon (Cucumis melo L.): Bioinformatic Analysis and Expression Patterns.Comparative Proteomic Analysis Provides Insight into the Key Proteins Involved in Cucumber (Cucumis sativus L.) Adventitious Root Emergence under Waterlogging Stress.De novo transcriptome sequencing and gene expression profiling of spinach (Spinacia oleracea L.) leaves under heat stress.Physiological and de novo transcriptome analysis of the fermentation mechanism of Cerasus sachalinensis roots in response to short-term waterlogging.Comparative RNA-seq based transcriptome profiling of waterlogging response in cucumber hypocotyls reveals novel insights into the de novo adventitious root primordia initiation.Meta-analysis of major QTL for abiotic stress tolerance in barley and implications for barley breeding.Inheritance and quantitative trail loci mapping of adventitious root numbers in cucumber seedlings under waterlogging conditions.Tuberculate fruit gene Tu encodes a C2 H2 zinc finger protein that is required for the warty fruit phenotype in cucumber (Cucumis sativus L.).Flowering time and transcriptome variation in Capsella bursa-pastoris (Brassicaceae).Transcriptome-based gene expression profiling identifies differentially expressed genes critical for salt stress response in radish (Raphanus sativus L.).Next-generation sequencing-based transcriptome profiling analysis of Pohlia nutans reveals insight into the stress-relevant genes in Antarctic moss.Polymorphisms in the AOX2 gene are associated with the rooting ability of olive cuttings.MaRAP2-4, a waterlogging-responsive ERF from Mentha, regulates bidirectional sugar transporter AtSWEET10 to modulate stress response in Arabidopsis.Dynamic and epistatic QTL mapping reveals the complex genetic architecture of waterlogging tolerance in chrysanthemum.Molecular and physiological responses in roots of two full-sib poplars uncover mechanisms that contribute to differences in partial submergence tolerance
P2860
Q33715615-58BBD350-EFC0-49B3-AAF0-A45E66D7A164Q33943534-955B23E2-9B66-4752-A6BA-EF9768616F34Q34550174-6599BF05-A011-4715-A7E4-67438F43AA09Q34566287-AB520976-EEB2-4B0A-ADE1-CAF473C37A53Q34806485-8DD6DCCD-CB94-4326-B48D-9C2FE1AE59AAQ35007837-2B8298A2-62A1-4503-935D-B8C9BD191D5BQ35051446-268142CD-7057-4F67-B811-A49775D6922BQ35196618-74149953-F047-404F-A700-B6C5C77CE97EQ35211944-BA85E9E3-F4D2-4343-B90C-093E8DF4F402Q35464012-4846DAFE-3FBB-44EE-96B3-3E986C4852EFQ35599616-BE558D05-ACD2-4E83-8A97-074BFDC4991CQ35815509-7B3A6F14-28E7-4211-B2D9-101470E8EA8DQ35916246-C49602AB-8586-4674-ACE7-8CE9B62509E2Q36157583-1D6E6403-BAFB-4CB3-8E4D-D27116E8B7FDQ36655982-020335C1-F661-4849-99F5-C7AF60E7E23EQ36909694-BBCB3E2A-E294-4604-B6B2-F410B3CACC41Q37335447-A174596C-FD1F-48AF-A0E3-7DBFF0D40BBDQ38299097-0A15ED67-1BA8-4A95-B61B-C0770BCE65BEQ38429538-6E33BE2A-3A0C-4121-BF03-6F9E980428A3Q38659653-A0FE10E6-F201-4DCE-8849-82E85DBD0E8DQ38812547-1CAD46AA-BD86-4EB0-A78C-2DB2CEEF3E58Q39091806-FFA0B407-1FB6-459E-93A3-0A64792BF494Q39214511-15563D4E-EF74-4664-80B3-5FFDAC742A04Q40025826-A25F4109-A41B-41FE-93A4-C0D2ACE75877Q42777888-A08644C5-286A-46B5-B140-FD3269FEE4ABQ43017993-C8FB051A-5E45-48EC-8930-138FABF196BBQ46762778-8057CAF6-A583-46D8-89D3-16824C8482FEQ49194259-3195201E-CCDE-4895-942A-B031BBA5D95EQ49605439-E41BE5D7-9CD7-4DBB-959D-9C6B7F859FE6Q57093123-1E001619-51EC-47A4-B390-4EC5F8B27047
P2860
Identification of differentially expressed genes in cucumber (Cucumis sativus L.) root under waterlogging stress by digital gene expression profile.
description
2012 nî lūn-bûn
@nan
2012 թուականի Յունուարին հրատարակուած գիտական յօդուած
@hyw
2012 թվականի հունվարին հրատարակված գիտական հոդված
@hy
2012年の論文
@ja
2012年論文
@yue
2012年論文
@zh-hant
2012年論文
@zh-hk
2012年論文
@zh-mo
2012年論文
@zh-tw
2012年论文
@wuu
name
Identification of differential ...... gital gene expression profile.
@ast
Identification of differential ...... gital gene expression profile.
@en
Identification of differentially expressed genes in cucumber
@nl
type
label
Identification of differential ...... gital gene expression profile.
@ast
Identification of differential ...... gital gene expression profile.
@en
Identification of differentially expressed genes in cucumber
@nl
prefLabel
Identification of differential ...... gital gene expression profile.
@ast
Identification of differential ...... gital gene expression profile.
@en
Identification of differentially expressed genes in cucumber
@nl
P2093
P1433
P1476
Identification of differential ...... gital gene expression profile.
@en
P2093
Wen-Jie Zhang
Xiao-Hua Qi
Xiao-Jian Lin
Xue-Hao Chen
Xue-Wen Xu
P304
P356
10.1016/J.YGENO.2011.12.008
P577
2012-01-04T00:00:00Z