Verticillium wilt,caused by the infamous pathogen Verticillium dahliae,presents a primary constraint on cotton cul-tivation worldwide.The complexity of disease resistance in cotton and the largely unexplored interacti...Verticillium wilt,caused by the infamous pathogen Verticillium dahliae,presents a primary constraint on cotton cul-tivation worldwide.The complexity of disease resistance in cotton and the largely unexplored interaction dynamics between the cotton plant host and V.dahliae pathogen pose a crucial predicament for effectively managing cotton Verticillium wilt.Nevertheless,the most cost-effective approach to controlling this disease involves breeding and cul-tivating resistant cotton varieties,demanding a meticulous analysis of the mechanisms underlying cotton’s resistance to Verticillium wilt and the identification of pivotal genes.These aspects constitute focal points in disease-resistance breeding programs.In this review,we comprehensively discuss genetic inheritance associated with Verticillium wilt resistance in cotton,the advancements in molecular markers for disease resistance,the functional investiga-tion of resistance genes in cotton,the analysis of pathogenicity genes in V.dahliae,as well as the intricate interplay between cotton and this fungus.Moreover,we delve into the future prospects of cutting-edge research on cotton Verticillium wilt,aiming to proffer valuable insights for the effective management of this devastating fungus.展开更多
研究添加L-组氨酸和不添加L-组氨酸两种不同氮源水平情况下,汉逊德巴利酵母(Debaryomyces hansenii)氮代谢阻遏效应调控机制。以添加L-组氨酸为实验组,不添加组为对照,利用Illumina高通量测序平台对两组进行转录组测序,通过多种生物信...研究添加L-组氨酸和不添加L-组氨酸两种不同氮源水平情况下,汉逊德巴利酵母(Debaryomyces hansenii)氮代谢阻遏效应调控机制。以添加L-组氨酸为实验组,不添加组为对照,利用Illumina高通量测序平台对两组进行转录组测序,通过多种生物信息学方法对数据进行分析处理。对照组测序结果共得到42.921 6 M clean reads;实验组测序结果共得到41.415 4 M clean reads。两组样品分析显示共有133个显著差异表达基因,78个基因表达上调,50个基因表达下调,基因本体论(Gene Ontology,GO)和京都基因与基因组百科全书(Kyoto Encyclopedia of Genes and Genomes,KEGG)富集分析表明,差异表达基因参与了组胺代谢相关酶系代谢。本研究为汉逊德巴利酵母组胺代谢进一步研究提供了参考。展开更多
基金supported by National Natural Science Foundation of China(32201752)Xinjiang Tianchi Talents Program (TCYC2023TP02)Key Project of the Natural Science Foundation of Xinjiang Production and Construction Corps (2024DA001)
文摘Verticillium wilt,caused by the infamous pathogen Verticillium dahliae,presents a primary constraint on cotton cul-tivation worldwide.The complexity of disease resistance in cotton and the largely unexplored interaction dynamics between the cotton plant host and V.dahliae pathogen pose a crucial predicament for effectively managing cotton Verticillium wilt.Nevertheless,the most cost-effective approach to controlling this disease involves breeding and cul-tivating resistant cotton varieties,demanding a meticulous analysis of the mechanisms underlying cotton’s resistance to Verticillium wilt and the identification of pivotal genes.These aspects constitute focal points in disease-resistance breeding programs.In this review,we comprehensively discuss genetic inheritance associated with Verticillium wilt resistance in cotton,the advancements in molecular markers for disease resistance,the functional investiga-tion of resistance genes in cotton,the analysis of pathogenicity genes in V.dahliae,as well as the intricate interplay between cotton and this fungus.Moreover,we delve into the future prospects of cutting-edge research on cotton Verticillium wilt,aiming to proffer valuable insights for the effective management of this devastating fungus.
文摘研究添加L-组氨酸和不添加L-组氨酸两种不同氮源水平情况下,汉逊德巴利酵母(Debaryomyces hansenii)氮代谢阻遏效应调控机制。以添加L-组氨酸为实验组,不添加组为对照,利用Illumina高通量测序平台对两组进行转录组测序,通过多种生物信息学方法对数据进行分析处理。对照组测序结果共得到42.921 6 M clean reads;实验组测序结果共得到41.415 4 M clean reads。两组样品分析显示共有133个显著差异表达基因,78个基因表达上调,50个基因表达下调,基因本体论(Gene Ontology,GO)和京都基因与基因组百科全书(Kyoto Encyclopedia of Genes and Genomes,KEGG)富集分析表明,差异表达基因参与了组胺代谢相关酶系代谢。本研究为汉逊德巴利酵母组胺代谢进一步研究提供了参考。