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8篇 您的检索式:作者名="Jinye Mu"
    题名 作者 年代 出处 被引量
1Overexpression of PGA37/MYB118 and MYB115 promotes vegetative-to-embryonic transition in Arabidopsis显示文摘从 non-germline 房间的体的胚胎的形成对更高的植物唯一并且能被操作在许多种类。以前的研究表明包括 WUSCHEL (WUS )/PLANT 生长 ACTIVATOR6 (PGA6 ) ,几 Arabidopsis 基因的 overexpression 纵容繁荣,叶状的 COTYLEDON1 (LEC1 ) ,和 LEC2,能引起 vegetative-to-embryonic 转变或体的胚胎的形成。这里,我们报导那在 Arabidopsis PGA37 基因的一个 gain-of-function 变化,编码 MYB118 抄写因素,导致的 vegetative-to-embryonic 转变,从根将生物的活组织移植于培养基中培养的体的胚胎的形成,和提高的 LEC1 表示水平。两倍变异的分析证明 WUS 没被 PGA37/MYB118 为体的胚胎的正式就职要求。另外, MYB115 的 overexpression, PGA37/MYB118 的一个相当或相同的事物,引起了象 pga37 一样显型。两倍异种没显示出的 myb118 myb115 明显的发展畸形。一起,这些结果建议 PGA37/MYB118 和 MYB115 支持 vegetative-to-embryonic 转变,通过 WUS 的一个发信号的小径独立人士。Xingchun wang Qi-Wen Niu Chong Teng Chao Li Jinye Mu Nam-Hai Chua Jianru Zuo 2009Cell Research2009,19,2:30
2Arabidopsis Transcription Factor Genes NF-YA 1, 5, 6, and 9 Play Redundant Roles in Male Gametogenesis, Embryogenesis, and Seed Development显示文摘原子因素 Y (NF-Y ) 是在所有真核细胞的有机体介绍的一个高度保存的抄写因素,并且是由三个子单元组成的 heterotrimer:NF -- 你, NF-YB,和 NF-YC。在 Arabidopsis,这三个子单元被 multigene 家庭编码。NF-Y 抄写因素的学习最好的成员是叶状的 COTYLEDON1 (LEC1 ) ,一个 NF-YB 家庭成员,哪个戏在 embryogenesis 的一个关键角色和种子成熟。然而,大多数 NF-Y 基因的功能留下逃犯。这里,我们在 NF 报导四基因的描述 -- 你家庭。我们发现 NF-YA1 的 gain-of-function 异种在男 gametogenesis 和 embryogenesis 显示出缺点。一致地, NF-YA1 的 overexpression, 5, 6,和 9 影响男 gametogenesis, embryogenesis,种子形态学,和种子萌芽,与更强壮的显型什么时候 overexpressing NF-YA1 和 NF-YA9。而且,这些 NF 的 overexpression -- 你基因也在不同的度在种子萌芽,延迟的幼苗生长,和迟了的 flowering 期间引起超敏性到 abscisic 酸(骆驼毛的织物) 。有趣地, NF-YA1 的 overexpression, 5, 6,和 9 是足够的从植物的纸巾导致体的胚胎的形成。然而,挑选或加倍这些 NF 的异种 -- 你基因没有可检测的显型。一起,这些结果提供证据那 NF-YA1, 5, 6,和 9 在男配偶体开发, embryogenesis,种子发展,和 germinative 以后生长起冗余的作用。Jinye Mu Helin Tan Sulei Hong Yan Liang Jianru Zuo 2013Molecular Plant2013,6,1:24
3Involvement of sphingoid bases in mediating reactive oxygen intermediate production and programmed cell death in Arabidopsis显示文摘Sphingolipids 被建议了在植物房间为一连串的细胞的发信号活动充当第二个送信人,包括压力回答并且规划了房间死亡(PCD ) 。然而,这些过程不是的机制 underpinning 很好理解。这里,我们报导那 Arabidopsis 异种, fumonisin B1 抵抗 11-1 ( fbr 11-1 )没能产生反应的氧中介( ROI ),不能当异种被 fumonisin B ( 1 )( FB ( 1 ))质问时,开始 PCD , ceramide synthase 的一个特定的禁止者。显示的分子的分析 FBR11 编码一个长链的底 1 (LCB1 ) 丝氨酸 palmitoyltransferase (SPT ) 的子单元,它催化 de novo sphingolipid 的第一限制率的步合成。sphingolipid 集中的集体度谱的分析表明而 fbr 11-1 变化没影响 sphingoid 底的基础层次,异种响应 FB (1 ) 显示出 sphingoid 底的稀释形成。由一个直接的喂实验,我们证明免费 sphingoid 底 dihydrosphingosine, phytosphingosine 和鞘氨醇高效地导致产生由房间死亡跟随了的 ROI。相反地, dihydrosphingosine 导致的 ROI 产生和房间死亡被它的 phosphorylated 形式 dihydrosphingosine-1-phosphate 明确地以一种剂量依赖者方式堵住,建议在一个免费 sphingoid 底和它的 phosphorylated 衍生物之间的动态平衡的维护对决定房间命运批评。因为 sphingolipid 水平的改变发生在 ROI 生产以前,我们建议免费 sphingoid 库在 Arabidopsis 涉及 PCD 的控制,大概在收到不同发展或环境的暗示之上通过 ROI 的规定铺平。Lihua Shi Jacek Bielawski Jinye Mu Haili Dong Chong Teng Jian Zhang Xiaohui Yang Nario Tomishige Kentaro Hanada Yusuf A Hannun Jianru Zuo 2007Cell Research2007,17,12:12
4The Arabidopsis Spontaneous Cell Death1 gene, encoding a ζ-carotene desaturase essential for carotenoid biosynthesis, is involved in chloroplast development, photoprotection and retrograde signalling显示文摘Carotenoids, a class of natural pigments found in all photosynthetic organisms, are involved in a variety of physiologi-cal processes, including coloration, photoprotection, biosynthesis of abscisic acid (ABA) and chloroplast biogenesis.Although carotenoid biosynthesis has been well studied biochemically, the genetic basis of the pathway is not wellunderstood. Here, we report the characterization of two allelic Arabidopsis mutants, spontaneous cell death 1-1 (spcl-1)and spcl-2. The weak allele spcl-1 mutant showed characteristics of bleached leaves, accumulation of superoxide andmosaic cell death. The strong mutant allele spcl-2 caused a complete arrest of plant growth and development shortlyafter germination, leading to a seedling-lethal phenotype. Genetic and molecular analyses indicated that SPC1 encodesa putative ζ-carotene desaturase (ZDS) in the carotenoid biosynthesis pathway. Analysis of carotenoids revealed thatseveral major carotenoid compounds downstream of SPC1/ZDS were substantially reduced in spcl-1, suggesting thatSPC1 is a functional ZDS. Consistent with the downregulated expression of CAO and PORB, the chlorophyll contentwas decreased in spcl-1 plants. In addition, expression of Lhcb1.1, Lhcb1.4 and RbcS was absent in spcl-2, suggestingthe possible involvement of carotenoids in the plastid-to-nucleus retrograde signaling. The spcl-1 mutant also displaysan ABA-deficient phenotype that can be partially rescued by the externally supplied phytohormone. These results suggestthat SPC1/ZDS is essential for biosynthesis of carotenoids and plays a crucial role in plant growth and development.Haili Dong Yan Deng Jinye Mu Qingtao Lu Yiqin Wang Yunyuan Xu Chengcai Chu Kang Chong Congming Lu Jianru Zuo 2007Cell Research2007,17,5:8
5LEAFY COTYLEDON1 Is a Key Regulator of Fatty Acid Biosynthesis in Arabidopsis1[W][OA]显示文摘Mu Jinye Tan Helin Zheng Qi Fu Fuyou Liang Yan Zhang Jian Yang Xiaohui Wang Tai Chong Kang Wang Xiu-Jie Zuo Jianru 2008Plant Physiology2008,,2:1
6Enhanced Seed Oil Production in Canola by Conditional Expression of Brassica napus LEAFY COTYLEDON1 and LEC1-LIKE in Developing Seeds1[W][OA]显示文摘Tan Helin Yang Xiaohui Zhang Fengxia Zheng Xiu Qu Cunmin Mu Jinye Fu Fuyou Li Jiana Guan Rongzhan Zhang Hongsheng Wang Guodong Zuo Jianru 2011EN2011,,3:1
7Breeding of T.aestivum-Ag.intermedium translocation lines with T.timopheevii cytoplasm and characterization by GISH显示文摘A male-sterile T. aestivum-Ag. intermedium partial amphiploid with cytoplasm of T. timopheevii as a female parent was crossed to common wheat. The hybrid was backcrossed to the male parent several times continually and self-crossed at last. Two stable lines with common wheat phenotype, H96269-2 and H96278, have been obtained. The chromosome numbers of the two lines are all 2n = 42 in somatic cells. By inoculation test, the two lines show a high level of resistance to yellow rust. Through genomic in situ hybridization (GISH) with Ag. intermedium total genomic DNA as a probe, it is demonstrated that the two stable lines are all small segmental translocation lines, and the translocated chromosome segments from Ag. intermedium are located on the short arm terminals of wheat chromosomes. Genetics analysis suggests that the yellow rust resistance gene(s) are probably located on the translocated chromosome segments of Ag. intermedium.MU Jinye LI Jilin WANG Xianping JING Jiankang ZHANG Xiangqi 2000Chinese Science Bulletin2000,45,15:0
8一氧化氮通过调控蛋白质甲基化修饰介导植物胁迫反应显示文摘文章简介甲基化和一氧化氮(NO)依赖的S-亚硝基化是高度保守的两种蛋白质翻译后修饰,其参与调控众多生物学过程。在高等真核生物中,蛋白质精氨酸甲基转移酶5(PRMT5)催化蛋白质的精氨酸对称性双甲基化修饰,其底物包括pre-m RNA剪接复合体的多个核心组分。胡济梁 杨焕杰 Jinye Mu Tiancong Lu Juli Peng Xian Deng 孔照胜 鲍时来 曹晓风 左建儒 2018科学新闻2018,0,4:0
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