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12篇 您的检索式:作者名="Brendolise"
    题名 作者 年代 出处 被引量
1Multiple repeats of a promoter segment causes transcription factor autoregulation in red apples显示文摘ESPLEY R V BRENDOLISE C CHAGNE D KUTI'Y-AMMA S GREEN S VOLZ R PUTFERILL J SCHOUTEN H J GARDINER S E HELLENS R P ALLAN A C 2009Plant Cell2009,21,1:1
2Multiple repeats of a promoter segment causes transcription factor auto regulation in red apples显示文摘Espley R V Brendolise C ChagnéD 2009The Plant Cell2009,21,:1
3Multiple re- peats of a promoter segment causes transcription factor au- toregulation in red apples显示文摘ESPLEY R V BRENDOLISE C CHAGN D 2009The Plant Ce112009,21,1:1
4Multiple repeats of a promoter unent cauls transcription factor autoregulation in red apples显示文摘Espley R Brendolise c Chagne D 2009Plant Cell2009,10,:1
5Multiple repeats of a promoter segment causes transcription factor autoregulation in red apples显示文摘Espley R V Brendolise C ChagnéD 0,,01:1
6Red colouration in apple fruit is due to the activity of the MYB transcription factor MdMYB 10显示文摘ESPLEY R V BRENDOLISE C CHAGNE D 2007Plant Journal2007,11,:1
7Multiple repeats of a pro-moter segment causes transcription factor autoregulation in red ap-ples显示文摘ESPLEY R V BRENDOLISE C CHAGNfi D KUTTY-AMMA S GREEN S VOLZ R PUTTERILL J SCHOUTEN H J GARDIN-ER S E HELLENS R P ALLANA A C 2009Plant Cell2009,21,1:1
8Multiple repeats of a promoter segment causes transcription factor autoregulation in red apples 显示文摘ESPLEY R V BRENDOLISE C CHAGNE D KUTTY-AMMA S GREEN S VOLZ R PUTTERILL J SCHOUTEN H J GARDINER S E HELLENS R P ALLANA A C 2009The The Plant Cell2009,21,:1
9Multiple repeats of a promoter segment causes transcription factor autoregulation in red apples 显示文摘Espley R V Brendolise C Chagn D 2009The Plant Cell2009,21,:1
10Multiple repeats of a promoter segment causes transcription factor autoregulation in red apples显示文摘Espley R V Brendolise C Chagne D 2009Plant Cell2009,21,:1
11Multiple repeats of a promoter segment causes transcription factor autoregulation in red apples显示文摘ESPLEY RV BRENDOLISE C CHAGNE D 2009The Plant Cell2009,21,:1
12Multiple quantitative trait loci contribute to resistance to bacterial canker incited by Pseudomonas syringae pv.actinidiae in kiwifruit(Actinidia chinensis)显示文摘Pseudomonas syringae pv.actinidiae(Psa)biovar 3,a virulent,canker-inducing pathogen is an economic threat to the kiwifruit(Actinidia spp.)industry worldwide.The commercially grown diploid(2×)A.chinensis var.chinensis is more susceptible to Psa than tetraploid and hexaploid kiwifruit.However information on the genetic loci modulating Psa resistance in kiwifruit is not available.Here we report mapping of quantitative trait loci(QTLs)regulating resistance to Psa in a diploid kiwifruit population,derived from a cross between an elite Psa-susceptible‘Hort16A’and a resistant male breeding parent P1.Using high-density genetic maps and intensive phenotyping,we identified a single QTL for Psa resistance on Linkage Group(LG)27 of‘Hort16A’revealing 16–19%phenotypic variance and candidate alleles for susceptibility and resistance at this loci.In addition,six minor QTLs were identified in P1 on distinct LGs,exerting 4–9%variance.Resistance in the F1 population is improved by additive effects from‘Hort16A’and P1 QTLs providing evidence that divergent genetic pathways interact to combat the virulent Psa strain.Two different bioassays further identified new QTLs for tissue-specific responses to Psa.The genetic marker at LG27 QTL was further verified for association with Psa resistance in diploid Actinidia chinensis populations.Transcriptome analysis of Psa-resistant and susceptible genotypes in field revealed hallmarks of basal defense and provided candidate RNA-biomarkers for screening for Psa resistance in greenhouse conditions.Jibran Tahir Stephen Hoyte Heather Bassett Cyril Brendolise Abhishek Chatterjee Kerry Templeton Cecilia Deng Ross Crowhurst Mirco Montefiori Ed Morgan Andrew Wotton Keith Funnell Claudia Wiedow Mareike Knaebel Duncan Hedderley Joel Vanneste John McCallum Kirsten Hoeata Amardeep Nath David Chagné Luis Gea Susan E.Gardiner 2019Horticulture Research2019,6,1:0
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