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Changes of structure and functional properties of rice protein in the fresh edible rice during the seed development 被引量:2
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作者 Dan Li Mingjing Yao +3 位作者 Yang Yang Bing Wang Dongjie Zhang Na Zhang 《Food Science and Human Wellness》 SCIE CSCD 2023年第5期1850-1860,共11页
It has been reported that fresh edible rice has more bioactive compounds and its protein is easier to digest and has lower hypoallergenic than mature rice. In this paper, the changes in structure and functional proper... It has been reported that fresh edible rice has more bioactive compounds and its protein is easier to digest and has lower hypoallergenic than mature rice. In this paper, the changes in structure and functional properties of proteins at five different stages, including early milky stage(EMS), middle milky stage(MMS), late milky stage(LMS), waxy ripe stage(WS)and ripening stage(RS), during the seed development were investigated. It was found that with the seed developing, the molecular weight of fresh rice protein gradually become larger while the secondary structure changed from the highest content of disordered structure at MMS to the highest content of ordered structure at RS, which affect the surface hydrophobicity and then the functional properties of proteins, including foaming properties, emulsifying properties and oil holding capacity. Fresh rice protein at MMS has the strongest surface hydrophobicity while fresh edible rice protein at RS has the strongest oil holding capability. The results of our study can provide a theoretical basis for the application of fresh rice protein in the food industry and help to develop new fresh edible rice food. 展开更多
关键词 Fresh edible rice rice protein protein structure Functional properties
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Comparative Study of the Protein Contents of Local and Imported Rice Consumed in Senegal
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作者 Amadou Bouye Seydi Nadina Zuleika Leite +2 位作者 Serigne Omar Sarr Yérim Mbagnick Diop Amadou Diop 《Open Journal of Applied Sciences》 2024年第2期561-571,共11页
Protein is essential for the growth and maintenance of the body. They play a crucial role in different biological processes. This study focuses on comparing the protein contents of local rice grown in the Senegal Rive... Protein is essential for the growth and maintenance of the body. They play a crucial role in different biological processes. This study focuses on comparing the protein contents of local rice grown in the Senegal River valley and rice imported from Asia. The objective is to evaluate the importance of the protein nutritional value of local rice compared to imported rice. Protein contents were determined using the Kjeldahl method. The results of the protein assays show that local rice varieties such as Sahel 108 and Sahel 134 grown in the Thilène basins had protein percentages comparable to those of imported rice. The protein percentages were 15.19% ± 0.91% for the Sahel 108 variety and 16.62% ± 0.01% for the Sahel 134 variety compared to 15.8% ± 0.01% on average for imported rice. Thus from the point of view of protein content, local rice has a nutritional value identical to that of imported rice which it can validly replace. It is important in Senegal to encourage local production, which would make it possible to reduce imports on the one hand and to make quality rice available to the local Senegalese market on the other. Sahel varieties with high protein contents deserve large-scale development to meet the country’s protein needs. 展开更多
关键词 proteinS rice Nutritional Value Kjeldahl Method River Valley Senegal
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Rice Storage Proteins:Focus on Composition,Distribution,Genetic Improvement and Effects on Rice Quality
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作者 LONG Xinkang GUAN Chunmin +5 位作者 WANG Lin JIA Liting FU Xiangjin LIN Qinlu HUANG Zhengyu LIU Chun 《Rice science》 SCIE CSCD 2023年第3期207-221,I0035-I0037,共18页
Rice storage proteins(RSPs)are plant proteins with high nutritional quality.As the second largest type of storage substance in rice,it is the main source of protein intake for people who consume rice as a staple food.... Rice storage proteins(RSPs)are plant proteins with high nutritional quality.As the second largest type of storage substance in rice,it is the main source of protein intake for people who consume rice as a staple food.The content and type of RSPs affect the appearance,processing quality and eating quality of rice.These effects involve the distribution of RSPs in rice grains as well as the interactions of RSPs with other components such as starch in rice grains.In the past two decades,some progress has been made in the genetic improvement of RSPs.However,the determination mechanism of protein content and composition in rice is still unclear,and the mechanism of the effect of RSPs on rice quality has not been elucidated.In this review,the composition,biosynthesis and distribution of RSPs,and quantitative trait loci mapping and cloning of RSP genes are summarized,the research progress of the influence of RSPs and their components on rice quality are reviewed,and the research directions in the future are proposed. 展开更多
关键词 rice storage protein COMPOSITION DISTRIBUTION genetic improvement rice quality
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PREPARATION AND PROPERTIES OF WHEAT GLUTEN/RICE PROTEIN COMPOSITES PLASTICIZED WITH GLYCEROL 被引量:1
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作者 宋义虎 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2011年第1期87-92,共6页
Environment friendly thermosetting composites were prepared by blending wheat gluten (WG) and rice protein (RP) at different weight ratios with glycerol as plasticizer followed by compression molding the mixture a... Environment friendly thermosetting composites were prepared by blending wheat gluten (WG) and rice protein (RP) at different weight ratios with glycerol as plasticizer followed by compression molding the mixture at 120℃ to crosslink the proteins. Reducing agent of sodium bisulfate and sodium sulfite and crosslinking agent formaldehyde were used to adjust the properties of the composites. Morphology, moisture absorption and tensile properties were evaluated. The results showed that formaldehyde could increase tensile strength of the composites without significant influence on Young's modulus and elongation at break. On the other hand, reducing agents could improve tensile strength and extensibility simultaneously, which was much marked at WG/RP ratios from 7/3 to 3/7. 展开更多
关键词 Wheat gluten rice protein COMPOSITES Mechanical properties
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Charactering protein fraction concentrations as influenced by nitrogen application in low-glutelin rice cultivars 被引量:11
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作者 LI Gang-hua CHEN Yi-lu +5 位作者 DING Yan-feng GENG Chun-miao LI Quan LIU Zheng-hui WANG Shao-hua TANG She 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2016年第3期537-544,共8页
To optimize both grain yield and quality of low-glutelin rice cultivars under N-fertilizer strategies, two-year field experiments involving three low-glutelin rice cultivars(W1240, W1721, W025) and an ordinary rice ... To optimize both grain yield and quality of low-glutelin rice cultivars under N-fertilizer strategies, two-year field experiments involving three low-glutelin rice cultivars(W1240, W1721, W025) and an ordinary rice cultivar(H9405) with five N treatments were carried out to determine the effects of N application rate and genotype on protein fractions contents and Glutelin/Prolamin ratio(Glu/Pro). The difference of protein fraction concentrations affected by N application rate existed in genotypes. Ordinary rice cultivar had a larger increase in glutlein concentration affected by N application rate than low-glutelin rice cultivars did. Glutelin in H9405 had a increase of 30.6 and 41.0% under the N4 treatment(360 kg N ha^(–1)) when compared with N0 treatment(no fertilizer N) in 2010 and 2011 respectively, while all the low-glutelin rice cultivars showed relatively smaller increases for two years. Variance analysis showed no significant effect of N application rate on glutelin in W1240 and W025 while the effects on albumin, globulin and prolamin were significant in low-glutelin rice. What's more, N treatment had no significant i nfluence on Glu/Pro ratios in low-glutelin rice cultivars while a significant increase in Glu/Pro ratio was observed in ordinary rice cultivar. So low-gultelin rice cultivars showed a different pattern from ordinary rice cultivars when influenced by N application rate. 展开更多
关键词 low-glutelin rice nitrogen protein fractions Glu/Pro
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Western blot detection of PMI protein in transgenic rice 被引量:5
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作者 RONG Rui-juan WU Peng-cheng +12 位作者 LAN Jin-ping WEI Han-fu WEI Jian CHEN Hao SHI Jia-nan HAO Yu-jie LIU Li-juan DOU Shi-juan LI Li-yun WU Lin LIU Si-qi YIN Chang-cheng LIU Guo-zhen 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2016年第4期726-734,共9页
Phosphomannose isomerase (PMI) encoding gene manA is a desirable selective marker in transgenic research. Under- standing of its expression patterns in transgenic plant and establishing highly sensitive detection me... Phosphomannose isomerase (PMI) encoding gene manA is a desirable selective marker in transgenic research. Under- standing of its expression patterns in transgenic plant and establishing highly sensitive detection method based on immunoassay have great impacts on the application of PMI. In this study, PMI-specific monoclonal antibodies were generated using recombinant protein as immunogen, and could be used in Western blot to detect as little as 0.5 ng His-tagged PMI protein or rice expressed PMI protein in sample accounted for 0.4% of single rice grain (about 0.08 mg). PMI protein driven by CaMV-35S promoter was detected in dozens of tested tissues, including root, stem, leaf, panicle, and seed at all developmental stages during rice growing, and PMI protein accounted for about 0.036% of total protein in the leaves at seedling stage. The established method potentially can be used to monitor PMI protein in rice grains. 展开更多
关键词 transgenic rice protein expression CaMV-35S promoter phosphomannose isomerase (PMI) Western blot
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Rice leaf inclination2, a VIN3-1ike protein, regulates leaf angle through modulating cell division of the collar 被引量:35
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作者 Shu-Qing Zhao Jiang Hu +2 位作者 Long-Biao Guo Qian Qian Hong-Wei Xue 《Cell Research》 SCIE CAS CSCD 2010年第8期935-947,共13页
作为一个重要农学的特点,叶子的倾斜为庄稼建筑学和谷物收益是关键的。理解控制米饭叶角度的分子的机制,一米饭叶 inclination2 (lc2,三等位基因) 异种被识别并且机能上地描绘了。比作野类型的植物, lc2 异种在薄板的近轴的外皮由... 作为一个重要农学的特点,叶子的倾斜为庄稼建筑学和谷物收益是关键的。理解控制米饭叶角度的分子的机制,一米饭叶 inclination2 (lc2,三等位基因) 异种被识别并且机能上地描绘了。比作野类型的植物, lc2 异种在薄板的近轴的外皮由于增加的细胞分割扩大了叶角度关节。LC2 基因通过位置的克隆被孤立,并且编码开花结实促进法感觉迟钝的 3-like 蛋白质。LC2 的互补表示颠倒了 lc2 植物的扩大的叶角度,证实它在控制叶倾斜的角色。LC2 主要在叶开发期间在薄板关节被表示,并且特别地,被植物激素 abscisic 酸, gibberellic 酸,植物生长素,和 brassinosteroids 导致。LC2 在原子核是局部性的, LC2 的缺点导致房间分割和荷尔蒙应答的基因的改变的表示,显示在调整叶倾斜和调停的荷尔蒙效果的 LC2 的一个重要角色。 展开更多
关键词 水稻叶片 细胞分裂 E蛋白 叶角 突变体鉴定 植物激素 衣领 基因表达
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Water relations and an expression analysis of plasma membrane intrinsic proteins in sensitive and tolerant rice during chilling and recovery 被引量:11
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作者 Xin Yu Yan Hui Peng +3 位作者 Min Hua Zhang Yan Jun Shao Wei Ai Su Zhang Cheng Tang 《Cell Research》 SCIE CAS CSCD 2006年第6期599-608,共10页
寒心的损害的症状是在射击的水赤字的开发,源于水运输和蒸发的不平衡。在这个工作,二个米饭变化(Oryza sativa L。var。Wasetoitsu 和 Somewake ) 幼苗是在 7 度 C 的 chilled,在 28 度 C 由恢复列在后面。基于生长显型和电解质漏测... 寒心的损害的症状是在射击的水赤字的开发,源于水运输和蒸发的不平衡。在这个工作,二个米饭变化(Oryza sativa L。var。Wasetoitsu 和 Somewake ) 幼苗是在 7 度 C 的 chilled,在 28 度 C 由恢复列在后面。基于生长显型和电解质漏测试, Somewake 被显示是一个寒心容忍的变化,和 Wasetoitsu 寒心敏感的。寒心的压力显著地减少了叶子,积聚的蒸发和渗透的根的相对的水内容(RWC ) 在两个变化的水力的电导率(Lp ) 。但是当回到了 28 度 C 时, Somewake 的水关系平衡更好恢复了。所有 11 血浆膜的 mRNA 表示侧面内在的蛋白质(果仁) , aquaporins 的亚群,被有 TaqMan 次要的林子文件夹(MGB ) 的 -PCR 探查的即时反向的抄写(RT ) 随后决定源于米饭 var。Nipponbare 在寒心的处理和恢复期间。大多数 PIP 基因在低温度是下面调整的,并且在温暖的温度恢复了。在 Somewake 和 Wasetoitsu 的一些果仁的相对表示在平行减少了在期间寒心。然而在恢复期间, OsPIP1 的相对表示; 1, OsPIP2; 1, OsPIP2; 7 在射击和 OsPIP1; 1, OsPIP2; 1 比 Wasetoitsu 在 Somewake 在根是显著地更高的。这在在寒心的条件以后重建水平衡支持果仁的角色。我们讨论 aquaporin 果仁亚科的成员在植物起的多样化的作用寒心的忍耐取决于 aquaporin isoforms,植物织物和寒心的持续时间的阶段。 展开更多
关键词 等离子体 膜蛋白 冷却方法 基因表达
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Effects of Uniconazole on Nitrogen Metabolism and Grain Protein Content of Rice 被引量:6
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作者 XIANG Zu-fen YANG Wen-yu +1 位作者 REN Wan-jun WANG Xiao-chun 《Rice science》 SCIE 2005年第2期107-113,共7页
The effects of uniconazole by soaking seeds and spraying leaves at booting stage with different concentrations (0, 20 and 40 mg/kg) on the nitrogen metabolism of flag leaf and grains after flowering, and rice grain ... The effects of uniconazole by soaking seeds and spraying leaves at booting stage with different concentrations (0, 20 and 40 mg/kg) on the nitrogen metabolism of flag leaf and grains after flowering, and rice grain protein content and yield were studied with hybrid rice combination Shanyou 63. Under uniconazole treatment, the soluble protein content in flag leaf was increased in early and middle period of grain filling, but this content was nearly the same as or even lower than that of control at maturity; Glutamine synthetase activity in superior and inferior grains and non-protein nitrogen content in superior grains at early stage of grain development were promoted, and moreover, the transforming speed from non-protein nitrogen to protein nitrogen was accelerated; Non-protein nitrogen content was lower than that of control at maturity, but protein nitrogen content at each stage was higher than those of control; Protein nitrogen content in superior and inferior grains and protein nitrogen absolutely accumulative content in a grain both were enhanced and protein content and yield in rice grain were raised. The application of uniconazole by soaking seeds and spraying leaves raised crude protein content by an average of 7.2% and 8.3%, and protein yield by an average of 13.1% and 13.4%, respectively. 展开更多
关键词 rice UNICONAZOLE nitrogen metabolism protein
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Effects of Different Nitrogen Fertilizer Levels and Native Soil Properties on Rice Grain Fe, Zn and Protein Contents 被引量:4
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作者 G. CHANDEL S.BANERJEE +3 位作者 S.SEE R.MEENA D.J.SHARMA S.B.VERULKAR 《Rice science》 SCIE 2010年第3期213-227,共15页
Deposition of protein and metal ions (Fe, Zn) in rice grains is a complex polygenic trait showing considerable environmental effect. To analyze the effect of nitrogen application levels and native soil properties on... Deposition of protein and metal ions (Fe, Zn) in rice grains is a complex polygenic trait showing considerable environmental effect. To analyze the effect of nitrogen application levels and native soil properties on rice grain protein, iron (Fe) and zinc (Zn) contents, 32 rice genotypes were grown at three different locations each under 80 and 120 kg/hm2 nitrogen fertilizer applications. In treatments with nitrogen fertilizer application, the brown rice grain protein content (GPC) increased significantly (1.1% to 7.0%) under higher nitrogen fertilizer application (120 kg/hm2) whereas grain Fe/Zn contents showed non-significant effect of nitrogen application level, thus suggesting that the rate of uptake and translocation of macro-elements does not influence the uptake and translocation of micro-elements. The pH, organic matter content and inherent Fe/Zn levels of native soil showed significant effects on grain Fe and Zn contents of all the rice genotypes. Grain Zn content of almost all the tested rice genotypes was found to increase at Location III having loamy soil texture, neutral pH value (pH 6.83) and higher organic matter content than the other two locations (Locations I and II), indicating significant influence of native soil properties on brown rice grain Zn content while grain Fe content showed significant genotype × environment interaction effect. Genotypic difference was found to be the most significant factor to affect grain Fe/Zn contents in all the tested rice genotypes, indicating that although native soil properties influence phyto-availability of micronutrients and consequently influencing absorption, translocation and grain deposition of Fe/Zn ions, yet genetic makeup of a plant determines its response to varied soil conditions and other external factors. Two indica rice genotypes R-RF-31 (27.62 μg/g grain Zn content and 7.80% GPC) and R1033-968-2-1 (30.05 μg/g grain Zn content and 8.47% GPC) were identified as high grain Zn and moderate GPC rice genotypes. These results indicate that soil property and organic matter content increase the availability of Fe and Zn in rhizosphere, which in turn enhances the uptake, translocation and redistribution of Fe/Zn into rice grains. 展开更多
关键词 rice iron ZINC protein content nitrogen fertilizer soil property
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Genetic Diversity of Seed Storage Proteins in Different Ecotype Varieties of japonica Rice and Its Application 被引量:3
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作者 JIN Wei-dong LI Na HONG De-lin 《Rice science》 SCIE 2006年第2期85-92,共8页
One hundred and fifteen varieties (including cultivars and lines) with different ecotypes in japonica rice (Oryza sativa L.) were analyzed for endosperm storage proteins by sodium dodecyl sulfate polyacrylamide ge... One hundred and fifteen varieties (including cultivars and lines) with different ecotypes in japonica rice (Oryza sativa L.) were analyzed for endosperm storage proteins by sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE) to estimate their genetic diversity for the purpose of genetic improving and variety identification. Nineteen types of profile were identified according to 1) presence/absence of 65 kDa bands, 2) staining intensity of 70, 60, 57, 37-39, 22-23, 13 and 10 kDa bands, 3) migration velocity of 35 kDa (α-4) and 4) band number at 57 kDa location. An unweighted-pair group average method with arithmetic mean (UPGMA) dendregram based on the cluster analysis of genetic similarity of the protein bands showed a small genetic variation among the tested materials, with the similarity coefficients varying between 0.75 and 1.00. Three distinct groups were identified from the cluster analysis of the rice varieties studied at the similarity coefficient level of 0.894. The first group included eight varieties with high amylose content, the second group contained fifteen varieties with high protein content, and the third group had the remaining ninety-two varieties, which accounted for 80% of the total materials. Clear relationship between ecotypes distinguished by maturity and groups revealed by cluster analysis was not found in this study. Only the group of high amylose linked with medium-maturity medium japonica ecotype. The bands of 70 kDa and 65 kDa can be used as protein markers to identify F1 seed purity of japonica hybrid rice Liuyanyou 422. 展开更多
关键词 genetic diversity japonica rice ECOTYPE storage protein ELECTROPHORESIS
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Transformation of Sucrose to Starch and Protein in Rice Leaves and Grains under Two Establishment Methods 被引量:2
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作者 Manisha KUMARI Bavita ASTHIR 《Rice science》 SCIE CSCD 2016年第5期255-265,共11页
Six rice varieties, PR120, PR116, Feng Ai Zan, PR115, PAU201 and Punjab Mehak 1 were raised under aerobic and transplanting conditions to assess the effects of planting conditions on sucrose metabolising enzymes in re... Six rice varieties, PR120, PR116, Feng Ai Zan, PR115, PAU201 and Punjab Mehak 1 were raised under aerobic and transplanting conditions to assess the effects of planting conditions on sucrose metabolising enzymes in relation to the transformation of free sugars to starch and protein in flag leaves and grains. Activities of sucrose synthase, sucrose phosphate synthase and acid invertase increased till flowering stage in leaves and mid-milky stage(14 d after flowering) in grains and thereafter declined in concomitant with the contents of reducing sugar. Under aerobic conditions, the activities of acid invertase and sucrose synthase(cleavage) significantly decreased in conjunction with the decrease in non-reducing sugars and starch content in all the varieties. Disruption of starch biosynthesis under the influence of aerobic conditions in both leaves and grains and the higher build up of sugars possibly resulted in their favoured utilization in nitrogen metabolism. Feng Ai Zan, PR115 and PR120 maintained higher levels of sucrose synthase enzymes in grains and leaves and contents of metabolites(amino acid, protein and non-reducing sugar) under aerobic conditions, while PR116, Punjab Mehak 1 and PAU201 performed better under transplanting conditions, thus showing their adaptation to environmental stress. Yield gap between aerobic and transplanting rice is attributed primarily to the difference in sink activity and strength. Overall, it appear that up-regulation of sucrose synthase(synthesis) and sucrose phosphate synthase under aerobic conditions might be responsible in enhancing growth and productivity of rice varieties. 展开更多
关键词 aerobic rice acid invertase protein amino acid starch sucrose synthase sucrose phosphate synthase water soluble carbohydrate sugar
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Effects and Mechanisms of P and K Nutrients on Yield and Protein Content of Fodder Rice 被引量:1
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作者 TANG Xiang-ru and YU Tie-qiao( Department of Agronomy, South China Agricultural University, Guangzhou 510642 , P.R. China College of Plant Science and Technology, Hunan Agricultural University, Changsha 410128 , P.R. China) 《Agricultural Sciences in China》 CAS CSCD 2002年第4期432-437,共6页
Effects and mechanisms of P and K nutrients on yield and protein content of Weiyou 56, a fodder hybrid rice combination,were studied through pot experiment and biochemical analysis. The results showed that the increas... Effects and mechanisms of P and K nutrients on yield and protein content of Weiyou 56, a fodder hybrid rice combination,were studied through pot experiment and biochemical analysis. The results showed that the increase of P and K nutrients enhanced the activities of PEP carboxylase (PEPC), glutamine synthase (GS) and sucrose phosphate synthase (SPS) in leaves, sucrose synthase (SS), ADP glucose pyrophosphorylase (ADPGP) and GS in grains, and the chlorophyll content in leaves, soluble sugar and starch content in grains, protein N and total N content in leaves and grains. Howerer, they decreased soluble sugar content in leaves and led to an increase of protein content in brown rice, biomass, grain yield and harvest index. Excessive P nutrients slightly reduced SPS and ADPG activity in leaves and grains respectively. 展开更多
关键词 SUPERPHOSPHATE Potassium chloride Fodder rice YIELD protein content Enzyme activity
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Impacts of Environmental Factors on Degradation of CrylAb Insecticidal Protein in Leaf-Blade Powders of Transgenic Bt Rice 被引量:3
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作者 BAI Yao-yu JIANG Ming-xing CHENG Jia-an 《Agricultural Sciences in China》 CAS CSCD 2007年第2期167-174,共8页
The determination of the environmental fate of Bt insecticidal protein released by Bt rice plants in paddy soils is a key issue in its ecological risk assessment. In this study, the impacts of soil water content, pH, ... The determination of the environmental fate of Bt insecticidal protein released by Bt rice plants in paddy soils is a key issue in its ecological risk assessment. In this study, the impacts of soil water content, pH, and temperature on the degradation of CrylAb protein expressed in the leaves of Bt rice KMD2 were studied in the laboratory. Three types of paddy soils were used, i.e., blue clayey paddy soil, pale paddy soil on quaternary red soil, and marine-fluvigenic yellow loamy paddy soil. Ground powders of KMD2 leaf blades were mixed with each type of soil, and degradation dynamics of Cry lAb were measured using enzyme-linked immunosorbent assay (ELISA). The degradation rate of CrylAb was high at the early experimental stage, but slowed down steadily at middle and later stages, which could be described by exponential equations, with the half-life period of degradation determined as 1.8-4.0 d. The soil water content, pH, and temperature could affect the degradation of CrylAb, but the effects of soil pH and temperature were relatively greater. In general, CrylAb degradations were slower under lower soil pH and temperature conditions, especially for marine-fluvigenic yellow loamy paddy soil. 展开更多
关键词 transgenic Bt rice CrylAb insecticidal protein paddy soil DEGRADATION environmental factors
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Differences in the Content of Protein and Essential Amino Acids between Different Rice Varieties 被引量:3
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作者 Zhiyuan ZHANG Jianzhou TANG +1 位作者 Ling ZHOU Xinghai LIU 《Asian Agricultural Research》 2016年第3期74-78,共5页
Evaluation of the protein content is a major indicator of the nutritional quality of rice,and the protein quality of rice is the best among cereal crops. Essential amino acids play an irreplaceable role in human growt... Evaluation of the protein content is a major indicator of the nutritional quality of rice,and the protein quality of rice is the best among cereal crops. Essential amino acids play an irreplaceable role in human growth,development and health care. Essential amino acid is a key ingredient to measure the nutritional value of rice. Using the experimental rice processed from the rice variety " Yuzhenxiang" sprayed with plant nutrients( patent number: ZL201110103910. 9),namely high essential amino acid nutritional rice,combined with five kinds of high quality rice imported by COFCO and homegrown " Wuchang rice",we send the samples of the seven kinds of rice to Hunan Food Testing Center,and adopt HPLC method to test the content of protein and eight kinds of essential amino acids. Three bags of rice are randomly selected for each kind of rice,and each bag is a replication. The test results show that there are highly significant differences in the content of essential amino acids between different kinds of rice( F = 246. 29**,P =5 ×10- 71),and there are also highly significant differences in the content between different kinds of essential amino acids( F = 3937. 09**,P = 4 × 10- 146). The test results of protein content indicate that there are highly significant differences in the content of protein between different kinds of rice( F = 3937. 0973. 29**,P =5. 81 ×10- 11),and the test results of lysine content show that there are highly significant differences in the content of lysine between different kinds of rice( F =3937. 0973. 29**,P =5. 81 ×10- 11). 展开更多
关键词 rice ESSENTIAL AMINO ACIDS protein High ESSENTIAL AMINO ACIDS NUTRITIONAL rice
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Genetic Analysis and Improvement Strategies of Protein Content in Rice Seeds 被引量:1
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作者 Bo PENG Yanfang SUN +13 位作者 Dongyan KONG Ruihua PANG Xiaohua SONG Huilong LI Lin LIU Xian-wen LI Jintao LI Qiying ZHOU Bin DUAN Huihui LIU Yuhan ZUO Yanlin HAO Shizhi SONG Hongyu YUAN 《Agricultural Biotechnology》 CAS 2017年第4期10-14,共5页
Enhancing the nutritional quality of food crops is a way to improve human nutrition and health. Grain protein content ( GPC ) is an important nutritional quality trait for rice and many other crops. Therefore, it wi... Enhancing the nutritional quality of food crops is a way to improve human nutrition and health. Grain protein content ( GPC ) is an important nutritional quality trait for rice and many other crops. Therefore, it will be very significant to increase GPC and improve rice quality. This paper mainly reviewed the genetic studies GPC in rice, mapping and cloning of QTLs and genes associated with GPC. However, little is known about the molecular mechanism and gene function related to GPC in rice. Thus, here we put forward the genetic strategy by gene pyramiding or molecular marker assisted selection to improve GPC and nutritional quality in rice. This review could provide important information for genetic improvement of grain nutritional quality of rice. 展开更多
关键词 rice Grain protein content Improvement strategy QTL mapping Gene cloning
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Identification of a novel gain-of-function mutant allele,slr1-d5,of rice DELLA protein 被引量:1
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作者 ZHANG Yun-hui BIAN Xiao-feng +4 位作者 ZHANG Suo-bing LING Jing WANG Ying-jie WEI Xiao-ying FANG Xian-wen 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2016年第7期1441-1448,共8页
Controling the height of crops plays a crucial role for their yields. The large scale utilization of semi-dwarf varieties has greatly improved crop yield, providing an effective support for world food security. In ric... Controling the height of crops plays a crucial role for their yields. The large scale utilization of semi-dwarf varieties has greatly improved crop yield, providing an effective support for world food security. In rice, a main food for over half of the world’s population, a number of dwarf loci have been identiifed. However, most of them are recessive, such as the ‘green revolution’ genesd1. To gain more beneifcial loci for rice breeding programs, exploring new mutations is needed, especialy the dominant loci which can be used broadly for hybrid breeding. Here, we isolated a novel dominant dwarf rice mutant, slr1-d5. Al of the internodes ofslr1-d5are reduced. We ifnd that the responsiveness ofslr1-d5to gibberelin (GA), GA3, was signiifcantly reduced. Map-based cloning revealed that the dominant dwarifsm ofslr1-d5was caused by an amino acid substitution in the N-terminal TVHYNP domain of rice DELLA protein, SLR1, where the conserved amino acid Pro (P) was substituted to His (H). Our ifndings not only further prove the pivotal role of TVHYNP motif in regulating SLR1 stability, but also provide a new dwarf source for improvement of rice germplasms. 展开更多
关键词 rice dominant dwarf DELLA protein gibberelin
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Analysis of Male Sterility-Related Proteins of Young Panicle in Rice (Oryza sativa L.) by Two-Dimensional Electrophoresis 被引量:1
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作者 HUYao-jun WEILei +2 位作者 LIUShu-nan YUJin-hong DINGYi 《Wuhan University Journal of Natural Sciences》 EI CAS 2005年第3期597-601,共5页
For searching out male sterility-related proteins (polypeptides) in rice(Oryza sativa L. ), we examined the difference of panicle protein (polypeptides) between hybrid rice( Wujin2A/R168, Wujin5A/R988) and their paren... For searching out male sterility-related proteins (polypeptides) in rice(Oryza sativa L. ), we examined the difference of panicle protein (polypeptides) between hybrid rice( Wujin2A/R168, Wujin5A/R988) and their parents (male-sterile line Wujin2A, Wujin5A, and restorerline R168, R988) at the formation stage of pollen mother cell by two-dimensional electrophoresis(2-DE). The results revealed that the 2-DE polypeptide maps were similar among these experimentalmaterials. A small group of polypeptides were disappeared in 2-DE polypeptide maps of male-sterileline (Wu-jin2A, WujinSA) by comparing to restorer line (R168, R988) and the first filial (F, )generation (Wujin2A/R168, Wujin5A/R988). The isoelectric points of these polypeptides were pl5.8-6.5, molecular weight 42. 7 X 10~3-66. 2 X 10~3. 展开更多
关键词 hybrid rice MALE-STERILE protein two-dimensional polyacrylamide gelelectrophoresis
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Characterization of Agro-diversity by Seed Storage Protein Electrophoresis:Focus on Rice Germplasm from Uttarakhand Himalaya,India 被引量:2
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作者 Arun JUGRAN Indra D.BHATT Ranbeer S.RAWAL 《Rice science》 SCIE 2010年第2期122-128,共7页
The characteristics of 48 rice varieties from Uttarakhand Himalaya, India were detected by morphological and biochemical markers. The grains of the selected rice varieties varied in their morphological (grain length,... The characteristics of 48 rice varieties from Uttarakhand Himalaya, India were detected by morphological and biochemical markers. The grains of the selected rice varieties varied in their morphological (grain length, grain width and grain weight) and biochemical characters (sodium dodecyl sulfate polyacrylamide gel electrophoresis, SDS-PAGE). Based on the presence of 70, 65, 60, 57, 37-39, 22-23, 13 and 10 kDa protein bands in the 48 rice varieties, seven types of profiles were identified. An unweighted pair group average method with arithmetic mean (UPGMA) dendrogram based on cluster analysis of genetic similarity of the protein bands showed two distinct groups with 1%-78% similarity coefficients. The presence of characteristic bands in selected varieties is a useful parameter for identification of rice germplasm. 展开更多
关键词 rice seed storage protein sodium dodecyl sulfate polyacrylamide gel electrophoresis genetic diversity POLYMORPHISM varietal identification
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Cloning and Expression Analysis of a Mitogen-Activated Protein Kinase Gene OsMPK14 in Rice 被引量:1
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作者 LIANG Wei-hong BI Jia-jia PENG Wei-feng ZHANG Fan SHI Hong-hao LI Li 《Rice science》 SCIE 2010年第4期269-275,共7页
Mitogen activated-protein kinases (MAPKs) are important components in signal transduction pathways responding to various biotic and abiotic stresses. An MAPK gene, OsMPK14 (GenBank Accession No. GQ265780) from ri... Mitogen activated-protein kinases (MAPKs) are important components in signal transduction pathways responding to various biotic and abiotic stresses. An MAPK gene, OsMPK14 (GenBank Accession No. GQ265780) from rice (Oryza sativa L.), was cloned by RT-PCR. The full-length cDNA of OsMPK14 consists of 1660 bp in size, containing an open reading frame of 1629 bp, which encodes a 542-amino-acid polypeptide and has a typical protein kinase domain and a phosphorylation activation motif TDY. Sequence alignment and analysis revealed that OsMPK14 was located on rice chromosome 5, and composed of nine exons and eight introns in the coding region. Semi-quantitative RT-PCR was performed to detect the expression patterns of OsMPK14 in rice shoots and roots under darkness, drought, high salinity, low temperature and abscisic acid treatments. The OsMPK14 mRNA was induced by abscisic acid, low temperature and high salinity, but weakly inhibited by drought. In addition, the expression of OsMPK14 was up-regulated in roots, but down-regulated in shoots by light. The results indicate that OsMPK14 could be implicated in diverse rice stimuli-responsive signaling cascades, and its expression might be regulated by multiple factors. 展开更多
关键词 rice mitogen-activated protein kinase gene gene clone abiotic stress expression analysis
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