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国家重点基础研究发展计划(2011CB100304)

作品数:5 被引量:39H指数:2
相关作者:罗凤练兴明杨猛卢永恩宋智勇更多>>
相关机构:华中农业大学更多>>
发文基金:国家重点基础研究发展计划国家高技术研究发展计划更多>>
相关领域:农业科学更多>>

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Wheat PROTON GRADIENT REGULATION 5 is Involved in Tolerance to Photoinhibition
2014年
Wheat(Triticum aestivum L.) often experiences photoinhibition due to strong light during the grain filling stage. As such, increasing the tolerance of wheat to photoinhibition is very desirable in breeding efforts focused on increasing grain yields. Previous reports have suggested that PROTON GRADIENT REGULATION 5(PGR5) plays a central role in the generation of a proton gradient across the thylakoid membrane(?pH) and in acclimation to high light intensity conditions. Three PGR5 homoeologues were isolated from wheat, and mapped onto chromosomes 7A, 7B and 7D, respectively. The TaPGR5s shared highly similar genomic sequences and gene structures. The transcripts of TaPGR5s were found to be abundantly expressed in the flag leaves, and were transiently up-regulated by treatment with high light. High light treatment inhibited the net photosynthetic rate(Pn) and the maximal quantum yield of photosystem II( Fv/Fm). Further, these inhibitions were more evident in the leaves with reduced expression of TaPGR5s achieved using virus-induced gene silencing methods. Moreover, reducing TaPGR5 expression impai red the induction of non-photochemical quenching(NPQ), which caused more severe cell membrane damage and lipid peroxidation in high light. Additionally, we observed that TaPGR5s transcripts were more abundantly expressed in the wheat genotypes with higher ms-delayed light emission(ms-DLE), a value reflecting transthylakoid ?pH. These results suggested that TaPGR5s play important roles in the tolerance of wheat to photoinhibition.
WANG Yuan-geHE XueMA Wen-yingZHAO Xue-qiangLI BinTONG Yi-ping
关键词:光抑制脂质过氧化作用毫秒延迟发光病毒诱导基因组序列
Novel Natural Allelic Variations at the Rht-1 Loci in Wheat被引量:1
2013年
Plant height is an important agronomic trait.Dramatic increase in wheat yield during the"green revolution"is mainly due to the widespread utilization of the Reduced height(Rht)-1 gene.We analyzed the natural allelic variations of three homoeologous loci Rht-A1,Rht-B1,and Rht-D1 in Chinese wheat(Triticum aestivum L.)micro-core collections and the Rht-B1/D1 genotypes in over 1,500 bred cultivars and germplasms using a modifed EcoTILLING.We identifed six new Rht-A1 allelic variations(Rht-A1b–g),eight new Rht-B1 allelic variations(Rht-B1h–o),and six new Rht-D1 allelic variations(Rht-D1e–j).These allelic variations contain single nucleotide polymorphisms(SNPs)or small insertions and deletions in the coding or uncoding regions,involving two frame-shift mutations and 15 missenses.Of which,Rht-D1e and Rht-D1h resulted in the loss of interactions of GID1-DELLA-GID2,Rht-B1i could increase plant height.We found that the Rht-B1h contains the same SNPs and 197 bp fragment insertion as reported in Rht-B1c.Further detection of Rht-B1h in Tibet wheat germplasms and wheat relatives indicated that Rht-B1c may originate from Rht-B1h.These results suggest rich genetic diversity at the Rht-1 loci and provide new resources for wheat breeding.
Aixia LiWenlong YangXueyuan LouDongcheng LiuJiazhu SunXiaoli GuoJing WangYiwen LiKehui ZhanHong-Qing LingAimin Zhang
关键词:小麦产量等位变异矮秆基因非编码区
Sequence Diversity and Enzyme Activity of Ferric-Chelate Reductase LeFRO1 in Tomato被引量:2
2013年
Ferric-chelate reductase which functions in the reduction of ferric to ferrous iron on root surface is a critical protein for iron homeostasis in strategy I plants.LeFRO1 is a major ferric-chelate reductase involved in iron uptake in tomato.To identify the natural variations of LeFRO1 and to assess their effect on the ferric-chelate reductase activity,we cloned the coding sequences of LeFRO1 from 16 tomato varieties collected from different regions,and detected three types of LeFRO1(LeFR01^(MM),LeFRO1^(Ailsa) and LeFRO1^(Monita)) with five amino acid variations at the positions 21,24,112,195 and 582.Enzyme activity assay revealed that the three types of LeFRO1 possessed different ferric-chelate reductase activity(LeFRO1^(Ailsa)>LeFRO1^(MM)>LeFRO1^(Monita)).The 112th amino acid residue Ala of LeFRO1 is critical for maintaining the high activity of ferric-chelate reductase,because modification of this amino acid resulted in a significant reduction of enzyme activity.Further,we showed that the combination of the amino acid residue Ile at the site 24 with Lys at the site 582 played a positive role in the enzyme activity of LeFRO1.In conclusion,the findings are helpful to understand the natural adaptation mechanisms of plants to iron-limiting stress,and may provide new knowledge to select and manipulate LeFRO1 for improving the iron deficiency tolerance in tomato.
Danyu KongChunlin ChenHuilan WuYe LiJunming LiHong-Qing Ling
关键词:番茄品种多样性氨基酸残基自然变化酶活性测定
施氮量对不同基因型水稻品种氮素吸收利用的影响被引量:16
2012年
以10份干物质生产效率不同的水稻品种为材料,用土培盆栽试验研究4种不同施氮水平对水稻植株干物质积累量、氮素积累量和干物质生产效率的影响。结果表明:施氮提高了水稻干物质和氮素的积累,但不同基因型水稻品种对施氮的响应程度不同。随施氮水平的提高,不同基因型水稻植株氮含量、氮素积累量以及干物质积累量显著上升,但氮素干物质生产效率明显下降。植株氮素积累量与植株氮含量、干物质积累量呈极显著正相关,植株氮素干物质生产效率与植株氮含量、氮素积累量呈极显著负相关。种植不同基因型水稻品种的土壤氮素表观平衡间存在显著差异,此差异随施氮水平提高而更加明显。
宋智勇吕凯罗凤练兴明
关键词:水稻施氮量
氮胁迫对水稻营养生长期氮代谢及相关基因表达量的影响被引量:21
2012年
通过对水稻品种日本晴进行0、1h和1、3、7d的缺氮胁迫,以及缺氮7d后,恢复供氮生长2h和1d,研究氮素同化相关酶的基因表达及其活性的动态变化情况。结果表明:缺氮胁迫下,根部NH4+、NO3-含量显著下降。短期缺氮胁迫下,地上部NR1、NR2、NiR2、GS2、Fd-GOGAT、GDH2、GDH3以及根部NR1、NR2、GDH4的表达量均有增加;随着缺氮胁迫时间延长,上述基因的表达量均大幅下降。缺氮胁迫下,植株GS、Fd-GOGAT、地上部NR和根部NADH-GOGAT的活性下降,地上部NADPH-GDH活性增加,根部NR、GDH活性先增加后下降,地上部NiR活性先下降后增加。植株缺氮7d后,恢复供氮生长1d时,NR、NiR、GS、GOGAT、GDH的基因表达量及活性基本趋于恢复正常水平,部分基因表达量有所增加。
罗凤卢永恩杨猛练兴明
关键词:水稻氮胁迫氮代谢营养生长期
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