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34篇 您的检索式:作者名="Jinxing Tu"
    题名 作者 年代 出处 被引量
1Tribenuron-Methyl Induces Male Sterility through Anther-Specific Inhibition of Acetolactate Synthase Leading to Autophagic Cell Death显示文摘Tribenuron 甲基(TM ) 是禁止分支链的强大的 sulfonylurea 除草剂由指向 acetolactate synthase (ALS ) 的催化子单元(CSR1 ) 的氨基酸(BCAA ) 生合成。由在低剂量的 TM 的叶的喷洒的男绝育的选择正式就职广泛地在油菜籽(Brassica 马来麝) 为混合种子生产被使用了;然而,内在的机制仍然保持未知。这里,我们 reportgreater TM 累积和在花药的 BCAA 饥饿比在在 TM 申请以后的叶子和茎。csr1-1D (aCSR1 异种) 的组成或花药特定的表示消除了花药选择的 ALS 抑制并且在油菜籽和 Arabidopsis 颠倒了导致 TM 的男无菌的显型。TM 涂抹茎实验的结果,在叶肉或韧皮部由 TM 新陈代谢基因 Bel 的指向的表示在导致 TM 的男绝育的花药和回复与很少 TM 累积的观察结合了,建议叶水花的 TM 通过叶肉和韧皮部主要对花药极运输。显微镜学和 immunoblotting 揭示了那 autophagy,在房间死亡期间导致的一个体积降级过程,在导致 TM 的男无菌的花药并且由被提高花药特定 ALS 击倒。而且,导致 TM 的花粉流产被 autophagy 禁止者 3 麻省显著地禁止。这些数据最终建议 TM 对花药极运输,导致经由花药特定的 ALS 抑制的 BCAA 饥饿并且,,在花药的 autophagic 房间死亡。Lun Zhao Xue Jing Li Chen Yingjun Liu Yanan Su Tingting Liu Changbin Gao Bin Yi Jing Wen Chaozhi Ma Jinxing Tu Jitao Zou Tingdong Fu Jinxiong Shen 2015Molecular Plant2015,8,12:7
2The Brassica napus GATA transcription factor BnA5.ZML1 is a stigma compatibility factor显示文摘Self-incompatibility(SI)is a genetic mechanism that rejects self-pollen and thus prevents inbreeding in some hermaphroditic angiosperms.In the Brassicaceae,SI involves a pollen-stigma recognition system controlled by a single locus known as the S locus,which consists of two highly polymorphic genes that encode S-locus cysteine-rich protein(SCR)and S-receptor kinase(SRK).When self-pollen lands on the stigma,the S-haplotype-specific interaction between SCR and SRK triggers SI.Here,we show that the GATA transcription factor BnA5.ZML1 suppresses SI responses in Brassica napus and is induced after compatible pollination.The loss-of-function mutant bna5.zml1 displays reduced self-compatibility.In contrast,overexpression of BnA5.ZML1 in self-incompatible stigmas leads to a partial breakdown of SI responses,suggesting that BnA5.ZML1 is a stigmatic compatibility factor.Furthermore,the expression levels of SRK and ARC1 are up-regulated in bna5.zml1 mutants,and they are down-regulated in BnA5.ZML1 overexpressing lines.SRK affects the cellular localization of BnA5.ZML1 through direct protein–protein interaction.Overall,our findings highlight the fundamental role of BnA5.ZML1 in SI responses in B.napus,establishing a direct interaction between BnA5.ZML1 and SRK in this process.Zhiqiang Duan Yatao Zhang Jinxing Tu Jinxiong Shen Bin Yi Tingdong Fu Cheng Dai Chaozhi Ma 2020Journal of Integrative Plant Biology2020,62,8:2
3An in planta haploid induction system in Brassica napus显示文摘Doubled haploid technology is widely used to accelerate plant breeding,but its use in the important oilseed crop Brassica napus L.is limited because B.napus haploids could only be obtained through in vitro anther or microspore cultures.Recently,maize(Zea mays)lines containing mutations in Domain of unknown function 679 membrane protein(DMP)were used as haploid inducer lines.This new haploid induction mechanism has been extended to several other plants,including the dicots Arabidopsis thaliana,tomato(Solanum lycopersicum),and tobacco(Nicotiana tabacum).Here,we knocked out four BnaDMP genes in the B.napus cultivar Westar using a clustered regularly interspaced short palindromic repeats(CRISPR)/CRISPR-associated protein 9 vector with an enhanced green fluorescent protein expression cassette.Plants with DMP mutations in B.napus in the T_(0),T_(1),and T_(2) generations exhibited a haploid induction rate up to 2.53%.These results suggest that targeting BnaDMP could be useful for haploid induction in B.napus.Yifan Li Dan Li Qing Xiao Huadong Wang Jing Wen Jinxing Tu Jinxiong Shen Tingdong Fu Bin Yi 2022Journal of Integrative Plant Biology2022,64,6:2
4Sustainable chemical upcycling of waste polyolefins by heterogeneous catalysis显示文摘The mass production of disposable polyolefin products has led to serious plastic pollution and an imbalance between manufacturing and recycling.Given these challenges,the chemical upcycling of waste polyolefins has attracted extensive attention due to its high efficiency and economic benefits.Herein,we review the development of polyolefin chemical upcycling in heterogeneous catalysis.The status quo of polyolefin recycling is first discussed.We then introduce the advanced strategies for chemical upcycling in the view of different value-added products and discuss their challenges and prospects.Our in-depth analysis centers on the catalytic mechanism and the design principle of heterogeneous catalysts.Finally,we outlook the promising directions to facilitate the degradation process via polymer and catalyst design and optimized catalytic engineering.Innovative strategies are expected to promote the chemical upcycling of polyolefins,bringing great promise for the sustainable development of society.Mingyu Chu Weilin Tu Shuangqiao Yang Congyang Zhang Qingye Li Qiao Zhang Jinxing Chen 2022SusMat2022,2,2:2
5An uhradense genetic recombination map for Brassica napus, consisting of 13551 SRAP markers 显示文摘Zudong Sun Zining Wang Jinxing Tu 2007Theor Appl Genet2007,114,:1
6Bn.YCO affects chloroplast development in Brassica napus L.显示文摘Mature chloroplasts,as the main sites of photosynthesis,are essential for seedling growth in higher plants.Loss of function of genes involved in chloroplast development changes plant phenotype.We obtained a YELLOW COTYLEDON (YCO) mutant in rapeseed (Brassica napus L.) using CRISPR-Cas9.Bn.YCO,a gene of unknown function,has two homologous copies (Bna A01.YCO and Bna C01.YCO) in B.napus.Homozygous mutation of these two homologs resulted in yellow cotyledons and chlorotic true leaves.Transmission electron microscopy revealed that the formation of thylakoid membranes was inhibited in yellow cotyledons.Sequence similarity search revealed that YCO was conserved in different species,and a subcellular location assay verified that Bn.YCO was located in the chloroplast.Bn.YCO was expressed in multiple tissues,most highly in cotyledons.Knockout of Bn.YCO blocked the transcription of plastid genes,especially those of photosystem genes transcribed by plastid-encoded polymerase.Transcriptome sequencing showed that the majority of genes involved in ribosome assembly and photosynthesis were down-regulated in Bn.yco mutants.These results suggested that loss of function of Bn.YCO affected plastid gene transcription,which influenced chloroplast biogenesis in rapeseed seedlings.Tingting Liu Baolong Tao Hanfei Wu Jing Wen Bin Yi Chaozhi Ma Jinxing Tu Tingdong Fu Lixia Zhu Jinxiong Shen 2021The Crop Journal2021,9,5:1
7Detection of QTL for six yield-related traits in oilseed rape (Brassica napus) using DH and immortalized F2 populations显示文摘Wei Chen Yan Zhang Xueping Liu Baoyuan Chen Jinxing Tu Fu Tingdong 2007Theoretical and Applied Genetics2007,,6:1
8An ultradense genetic recombination map for Brassica napus, consisting of 13551 SRAP markers显示文摘Zudong Sun Zining Wang Jinxing Tu Jiefu Zhang Fengqun Yu Peter B. E. McVetty Genyi Li 2007Theoretical and Applied Genetics2007,,8:1
9Molecular markers linked to Bn;rf: a recessive epistatic inhibitor gene of recessive genic male sterility in Brassica napus L.显示文摘Lu Xiao Bin Yi Yufeng Chen Zhen Huang Wei Chen Chaozhi Ma Jinxing Tu Tingdong Fu 2008Euphytica2008,,2:1
10An ultradense genetic reconbination map for Brassica napus,consisting of 13551 SRAP markers显示文摘Sun Zudong Wang Zining Tu Jinxing 2007Theoretical and Applied Genetics2007,114,:1
11An ultradense genetic recombination map for Brassica napus, consisting of 13551 SRAP markers 显示文摘Sun Zudong Wang Zining Tu Jinxing 2007Theor Appl Genet2007,114,:1
12Detection of QTL for six yield-related traits in oilseed rape (Brassica napus) using DH and immortalized F2 populations显示文摘Wei Chen Yan Zhang Xueping Liu Baoyuan Chen Jinxing Tu Fu Tingdong 2007Theoretical and Applied Genetics2007,,6:1
13Towards map-based cloning: fine mapping of a recessive genic male-sterile gene (BnMs2) in Brassica napus L. and syntenic region identification based on the Arabidopsis thaliana genome sequences显示文摘Shaolin Lei Xueqin Yao Bin Yi Wei Chen Chaozhi Ma Jinxing Tu Tingdong Fu 2007Theoretical and Applied Genetics2007,,5:1
14Fine mapping of the recessive genic male sterility gene (Bnms3) in Brassica napus L.显示文摘Zhen Huang Yufeng Chen Bin Yi Lu Xiao Chaozhi Ma Jinxing Tu Tingdong Fu 2007Theoretical and Applied Genetics2007,,1:1
15An ultradense genetic recombination map for Brassica napus, consisting of 13551 SRAP markers显示文摘Zudong Sun Zining Wang Jinxing Tu Jiefu Zhang Fengqun Yu Peter B. E. McVetty Genyi Li 2007Theoretical and Applied Genetics2007,,8:1
16Fine mapping of the recessive genic male-sterile gene (Bnms1) in Brassica napus L.显示文摘Bin Yi Yuning Chen Shaolin Lei Jinxing Tu Tingdong Fu 2006Theoretical and Applied Genetics2006,,4:1
17Mapping of BnMs4 and BnRf to a common microsyntenic region of Arabidopsis thaliana chromosome 3 using intron polymorphism markers显示文摘Shengqian Xia Ling Cheng Feng Zu Xiaoling Dun Zhengfu Zhou Bin Yi Jing Wen Chaozhi Ma Jinxiong Shen Jinxing Tu Tingdong Fu 2012Theoretical and Applied Genetics2012,,7:1
18A separation defect of tapetum cells and microspore mother cells results in male sterility in Brassica napus: the role of abscisic acid in early anther development显示文摘Yun Zhu Xiaoling Dun Zhengfu Zhou Shengqian Xia Bin Yi Jing Wen Jinxiong Shen Chaozhi Ma Jinxing Tu Tingdong Fu 2010Plant Molecular Biology (-)2010,,1:1
19Genetic characterization of a new cytoplasmic male sterility system (hau) in Brassica juncea and its transfer to B. napus显示文摘Zhengjie Wan Bing Jing Jinxing Tu Caozhi Ma Jinxiong Shen Bin Yi Jing Wen Tao Huang Xianjun Wang Tingdong Fu 2008Theoretical and Applied Genetics2008,,3:1
20Towards map-based cloning: fine mapping of a recessive genic male-sterile gene (BnMs2) in Brassica napus L. and syntenic region identification based on the Arabidopsis thaliana genome sequences显示文摘Shaolin Lei Xueqin Yao Bin Yi Wei Chen Chaozhi Ma Jinxing Tu Tingdong Fu 2007Theoretical and Applied Genetics2007,,5:1
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