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国家重点基础研究发展计划(2011CB100305)

作品数:6 被引量:66H指数:4
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Arabidopsis Di 19 Functions as a Transcription Factor and Modulates PR1, PR2, and PR5 Expression in Response to Drought Stress被引量:14
2013年
Arabidopsis Di19 (导致干旱) 基因家庭编码七 Cys2/His2-type 锌手指蛋白质,有未知功能的大多数。这里,我们报导 Di19 作为一个 transcriptional 管理者工作了并且通过致病相关的 PR1, PR2,和 PR5 基因表情的起来规定涉及对干旱应力的 Arabidopsis 回答。Di19 T-DNA 插入异种 di19 对干旱应力更敏感,而 Di19-overexpressing 线与野类型的植物相比对干旱应力更容忍。Di19 在我们的酵母试金,和它的 transactivation 活动展出了 transactivation 活动进一步在 vivo 被证实。DNA 有约束力的分析表明 Di19 能绑在 TACA (A/G ) T 元素,染色质 immunoprecipitation (薄片) 试金证明 Di19 能在 PR1, PR2,和 PR5 倡导者以内绑在 TACA (A/G ) T 元素。qRTPCR 结果证明 Di19 支持了 PR1, PR2,和 PR5 的表情,并且这些提高的表情被 CPK11 提高,它在原子核与 Di19 交往了。同样,到 Di19-overexpressing 线, PR1- , PR2- ,和 PR5-overexpressing,线也显示出干旱容忍的显型。有水杨酸酸类似物 INA 的预告的处理能提高植物干旱忍耐。一起拿,这些数据表明那 Di19,抄写因素的一种新类型,直接,响应干旱的 PR1, PR2,和 PR5 的表情强调的起来调整,和它的 transactivation 活动被 CPK11 提高。
Wen-Xin Liu Fei-Cui Zhang Wen-Zheng Zhang Lian-Fen Song Wei-Hua Wu Yi-Fang Chen
关键词:定量RT-PCRT-DNA插入染色质免疫沉淀
Identification of Quantitative Trait Loci for Phytic Acid Concentration in Maize Grain Under Two Nitrogen Conditions被引量:3
2013年
Phytic acid(PA) is the main storage form of phosphorus(P) in seeds.It can form insoluble complexes with microelements,thereby reducing their bioavailability for animals.Identification of quantitative trait loci(QTLs) associated with grain PA concentration(PAC) is essential to improve this trait without affecting other aspects of grain nutrition such as protein content.Using a recombinant inbred line(RIL) population,we mapped QTL for grain PAC,as well as grain nitrogen concentration(NC) and P concentration(PC) in maize under two N conditions in 2 yr.We detected six QTLs for PAC.The QTL for PAC on chromosome 4(phi072-umc1276) was identified under both low-N and high-N treatments,and explained 13.2 and 15.4% of the phenotypic variance,respectively.We identified three QTLs for grain NC,none of which were in the same region as the QTLs for PAC.We identified two QTLs for PC in the low-N treatment,one of which(umc1710-umc2197) was in the same interval as the QTL for PAC under high-N conditions.These results suggested that grain PAC can be improved without affecting grain NC and inorganic PC.
LIU Jian-chaoHUANG Ya-qunMAWen-qiZHOU Jin-fengBIAN Fen-ruCHEN Fan-junMI Guo-hua
关键词:QTLS植酸含量玉米籽粒供氮数量性状座位
Use of genotype-environment interactions to elucidate the pattern of maize root plasticity to nitrogen deficiency被引量:8
2016年
Maize(Zea mays L.) root morphology exhibits a high degree of phenotypic plasticity to nitrogen(N) de ficiency,but the underlying genetic architecture remains to be investigated Using an advanced BC_4F_3 population,we investigated the root growth plasticity under two contrasted N levels and identi fied the quantitative trait loci(QTLs) with QTL-environment(Q×E)interaction effects. Principal components analysis(PCA) on changes of root traits to N de ficiency(D LN-HN) showed that root length and biomass contributed for 45.8% in the same magnitude and direction on the first PC,while root traits scattered highly on PC_2 and PC_3. Hierarchical cluster analysis on traits for D LN-HN further assigned the BC_4F_3 lines into six groups,in which the special phenotypic responses to N de ficiency was presented These results revealed the complicated root plasticity of maize in response to N de ficiency that can be caused by genotype environment(G×E) interactions. Furthermore,QTL mapping using a multi-environment analysis identi fied 35 QTLs for root traits. Nine of these QTLs exhibited signi ficant Q×E interaction effects. Taken together,our findings contribute to understanding the phenotypic and genotypic pattern of root plasticity to N de ficiency,which will be useful for developing maize tolerance cultivars to N de ficiency.
Pengcheng LiZhongjuan ZhuangHongguang CaiShuai ChengAyaz Ali SoomroZhigang LiuRiliang GuGuohua MiLixing YuanFanjun Chen
关键词:表型可塑性玉米根系QTL定位数量性状位点
Evaluation of the yield and nitrogen use efficiency of the dominant maize hybrids grown in North and Northeast China被引量:27
2013年
Breeding high-yielding and nutrient-efficient cultivars is one strategy to simultaneously resolve the problems of food security,resource shortage,and environmental pollution.However,the potential increased yield and reduction in fertilizer input achievable by using high-yielding and nutrient-efficient cultivars is unclear.In the present study,we evaluated the yield and nitrogen use efficiency(NUE) of 40 commercial maize hybrids at five locations in North and Northeast China in 2008 and 2009.The effect of interaction between genotype and nitrogen(N) input on maize yield was significant when the yield reduction under low-N treatment was 25%-60%.Based on the average yields achieved with high or low N application,the tested cultivars were classified into four types based on their NUE:efficient-efficient(EE) were efficient under both low and high N inputs,high-N efficient(HNE) under only high N input,low-N efficient(LNE) under only low N input,and nonefficient-nonefficient under neither low nor high N inputs.Under high N application,EE and HNE cultivars could potentially increase maize yield by 8%-10% and reduce N input by 16%-21%.Under low N application,LNE cultivars could potentially increase maize yield by 12%.We concluded that breeding for N-efficient cultivars is a feasible strategy to increase maize yield and/or reduce N input.
CHEN FanJunFANG ZenGuoGAO QiangYE YouLiangJIA LiangLiangYUAN LiXingMI GuoHuaZHANG FuSuo
关键词:氮肥利用效率玉米杂交种
中国东华北部分地区玉米主推品种高产氮高效潜力分析被引量:15
2013年
选育高产与养分高效的粮食品种(高产高效品种)是解决中国粮食安全和资源、环境问题的重要途径之一,但是利用氮高效品种实现玉米节氮增产的潜力并不清楚.本研究对中国东华北主栽玉米品种在8个环境下进行了产量及氮效率评价,以期为玉米高产氮高效育种提供依据.结果表明,在适宜的低氮胁迫下(减产幅度为25%~60%),玉米产量的基因型×氮互作效应显著,能够筛选到不同类型的氮效率品种.目前东华北玉米主推品种中,在高产栽培条件下,高产氮高效品种(包括双高效型和高氮高效型两种类型)的增产幅度为8%~10%,节氮潜力达到16%~21%.在低氮胁迫下,耐低氮品种具有增产12%的潜力.选育高产氮高效玉米品种是实现增产节氮的可行途径.
陈范骏房增国高强叶优良贾良良袁力行米国华张福锁
关键词:玉米氮效率
Transcriptional Regulation of Expression of the Maize Aldehyde Dehydrogenase 7 Gene (ZmALDH7B6) in Response to Abiotic Stresses被引量:2
2014年
Aldehyde dehydrogenases(ALDHs) represent a large protein family, which includes several members that catalyze the oxidation of an aldehyde to its corresponding carboxylic acid in plants. Genes encoding members of the ALDH7 subfamily have been suggested to play important roles in various stress adaptations in plants. In this study, quantitative RT-PCR analysis revealed that a maize ALDH7 subfamily member(ZmALDH7B6) was constitutively expressed in various organs, including roots, leaves, immature ears, tassels, and developing seeds. The abundance of ZmALDH7B6 mRNA transcripts in maize roots was increased by ammonium, NaCl, and mannitol treatments. To further analyze tissue-specific and stress-induced expression patterns, the 1.5-kb 5′-flanking ZmALDH7B6 promoter region was fused to the β-glucuronidase(GUS) reporter gene and introduced into maize plants. In roots of independent transgenic lines, there was significant induction of GUS activity in response to ammonium supply, confirming ammonium-dependent expression of ZmALDH7B6 at the transcript level. Histochemical staining showed that GUS activity driven by the ZmALDH7B6 promoter was mainly localized in the vascular tissues of maize roots. These results suggested that ZmALDH7B6 is induced by multiple environmental stresses in maize roots, and may play a role in detoxifying aldehydes, particularly in vascular tissue.
AN XiaDUAN Feng-yingGUO SongCHEN Fan-junYUAN Li-xingGU Ri-liang
关键词:醛脱氢酶玉米根RT-PCR分析GUS活性
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