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减氮对半冬性中筋小麦产量、NUE及氮代谢关键酶活性的影响 被引量:29
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作者 易媛 董召娣 +2 位作者 张明伟 蔡宝宾 朱新开 《核农学报》 CAS CSCD 北大核心 2015年第2期365-374,共10页
为了研究半冬性中筋小麦在减氮条件下籽粒产量、氮效率(NUE)及氮代谢关键酶活性的差异与调控效应,于2012年-2013年以半冬性中筋小麦徐麦30、保麦1号为供试品种进行池栽试验。研究表明,施用氮肥增加了穗数和粒数,扩大了小麦库容(公顷粒... 为了研究半冬性中筋小麦在减氮条件下籽粒产量、氮效率(NUE)及氮代谢关键酶活性的差异与调控效应,于2012年-2013年以半冬性中筋小麦徐麦30、保麦1号为供试品种进行池栽试验。研究表明,施用氮肥增加了穗数和粒数,扩大了小麦库容(公顷粒数),而粒重却有所下降,但穗数和粒数的增加幅度大于粒重的降低幅度,从而提高了单位面积籽粒产量。施氮量从270 kg·hm-2降至225kg·hm-2,籽粒谷丙转氨酶(GPT)活性略有提升,而单株氮素积累量、花后剑叶硝酸还原酶(NR)和谷氨酰胺合成酶(GS)、籽粒GS活性均呈下降趋势,籽粒产量有所降低,但差异未达显著水平。减氮影响了植株对氮素的吸收,对氮肥表观利用率(RE)有降低效应,但增强了氮肥偏生产力(PFP)和氮素生理效率(PE),对NHI影响较小。在兼顾生产成本、生态和效益的条件下,将氮肥用量从270 kg·hm-2减少至225 kg·hm-2,更有利于半冬性中筋小麦的可持续高效生产。本研究为小麦合理施氮及提高氮肥利用效率提供科学依据。 展开更多
关键词 中筋小麦 氮肥用量 籽粒产量 NUE 氮代谢代谢酶活性
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Metabolomic Screening Applied to Rice FOX Arabidopsis Lines Leads to the Identification of a Gene-Changing Nitrogen Metabolism 被引量:15
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作者 Doris Albinsky Miyako Kusano +13 位作者 Mieko Higuchi Naomi Hayashi Makoto Kobayashi Atsushi Fukushima Masaki Mori Takanari Ichikawa Keiko Matsui Hirofumi Kuroda Yoko Horii Yuko Tsumoto Hitoshi Sakakibara Hirohiko Hirochika Minami Matsui Kazuki Saito 《Molecular Plant》 SCIE CAS CSCD 2010年第1期125-142,共18页
Plant metabolomics developed as a powerful tool to examine gene functions and to gain deeper insight into the physiology of the plant cell. In this study, we screened Arabidopsis lines overexpressing rice full-length ... Plant metabolomics developed as a powerful tool to examine gene functions and to gain deeper insight into the physiology of the plant cell. In this study, we screened Arabidopsis lines overexpressing rice full-length (FL) cDNAs (rice FOX Arabidopsis lines) using a gas chromatography-time-of-flight mass spectrometry (GC-TOF/MS)-based technique to identify rice genes that caused metabolic changes. This screening system allows fast and reliable identification of candi- date lines showing altered metabolite profiles. We performed metabolomic and transcriptomic analysis of a rice FOX Ara- bidopsis line that harbored the FL cDNA of the rice ortholog of the Lateral Organ Boundaries (LOB) Domain (LBD)/ Asymmetric Leaves2-1ike (ASL) gene of Arabidopsis, At-LBD37/ASL39. The investigated rice FOX Arabidopsis line showed prominent changes in the levels of metabolites related to nitrogen metabolism. The transcriptomic data as well as the results from the metabolite analysis of the Arabidopsis At-LBD37/ASL39-overexpressor plants were consistent with these findings. Furthermore, the metabolomic and transcriptomic analysis of the Os-LBD37/ASL39-overexpressing rice plants indicated that Os-LBD37/ASL39 is associated with processes related to nitrogen metabolism in rice. Thus, the combination of a metabolomics-based screening method and a gain-of-function approach is useful for rapid characterization of novel genes in both Arabidopsis and rice. 展开更多
关键词 Metabolite profiling GC-TOF/MS rice FOX Arabidopsis lines transcript profiling LBD37/ASL39 nitrogenmetabolism.
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