|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | The WRKY Gene Family in Rice (Oryza sativa)显示文摘WRKY 基因编码涉及各种各样的生物学过程的规定的抄写因素。这些锌手指蛋白质,特别调停的那些成员强调回答,特别地在植物被扩展。便于进化历史的学习和这个超级基因家庭的功能,我们用 HMMER 和明确地为米饭被训练的一个隐藏的 Markov 模型为 WRKY 基因执行了彻底的搜索。这个工作在 Oryza sativa L 导致了 WRKY 基因模型的一张全面的表。ssp。indica 和 L。ssp。装饰用的梨树。这些基因印射,导致 98 的鉴定单个染色体便于消除在装饰用的梨树的冗余的 WRKY 基因并且 102 在 indica 米饭。这些基因进一步根据他们的锌手指领域的数字和结构被分类。在相应 indica 和装饰用的梨树染色体上基于保存 WRKY 领域的一棵系统树和 WRKY loci 的图形的显示,我们识别了可能的 WRKY 在内的基因复制,和在二密切相关的米饭亚种之间的损失。另外考察了在到水杨酸和 jasmonic 酸,种子发展和萌芽的抗病性和回答的 WRKYgenes 的角色被赤霉素,包括老朽的另外的发展过程,和对不能生活的压力和 abscisic 酸的回答在大米和另外的工厂调停。发信号小径调停 WRKY 基因表示也被讨论…… | Christian A. Ross Yue Liu Qingxi J. Shen | 2007 | Journal of Integrative Plant Biology2007,49,6: | 97 |
| 2 | Hydrogen Sulfide Promotes Wheat Seed Germination and Alleviates Oxidative Damage against Copper Stress显示文摘With the enhancement of copper(Cu) stress,the germination percentage of wheat seeds decreased gradually. Pretreatment with sodium hydrosulfide(NaHS),hydrogen sulfide(H2S) donor alleviated the inhibitory effect of Cu stress in a dose-dependent manner; whereas little visible symptom was observed in germinating seeds and radicle tips cultured in NaHS solutions. It was verified that H2S or HS-rather than other sulfur-containing components derived from NaHS attribute to the potential role in promoting seed germination against Cu stress. Further studies showed that NaHS could promote amylase and esterase activities,reduce Cu-induced disturbance of plasma membrane integrity in the radicle tips,and sustain lower levels of malondialdehyde and H2O2 in germinating seeds. Furthermore,NaHS pretreatment increased activities of superoxide dismutase and catalase and decreased that of lipoxygenase,but showed no significant effect on ascorbate peroxidase. Alternatively,NaHS prevented uptake of Cu and promoted the accumulation of free amino acids in seeds exposed to Cu. In addition,a rapid accumulation of endogenous H2S in seeds was observed at the early stage of germination,and higher level of H2S in NaHS-pretreated seeds. These data indicated that H2S was involved in the mechanism of germinating seeds' responses to Cu stress. | Hua Zhang Lan-Ying Hu Kang-Di Hu Yun-Dong He Song-Hua Wang Jian-Ping Luo | 2008 | Journal of Integrative Plant Biology2008,50,12: | 93 |
| 3 | Functions and Application of the AP2/ERF Transcription Factor Family in Crop Improvement显示文摘马友志(相应作者) | Zhao-Shi Xu Ming Chen Lian-Cheng Li You-Zhi Ma | 2011 | Journal of Integrative Plant Biology2011,53,7: | 84 |
| 4 | Three advantages of using traditional Chinese medicine to prevent and treat tumor显示文摘Traditional Chinese medicine(TCM), an important component of complementary and alternative medicine, has evolved over thousands of years with its own unique system of theories, diagnostics and therapies. TCM has been increasingly used in the last decades and become well known for its significant role in preventing and treating cancer. We believe that TCM possesses advantages over Western medicine in specific aspects at a certain stage of cancer treatment. Here we summarize the advantages of TCM from three aspects: preventing tumorigenesis; attenuating toxicity and enhancing the treatment effect; and reducing tumor recurrence and metastasis. | Chang-quan Ling Xiao-qiang Yue Chen Ling | 2014 | Journal of Integrative Medicine2014,12,4: | 83 |
| 5 | Network Pharmacology in Research of Chinese Medicine Formula: Methodology, Application and Prospective显示文摘Chinese medicine(CM) is usually prescribed as CM formula to treat disease. The lack of effective research approach makes it difficult to elucidate the molecular mechanisms of CM formula owing to its complicated chemical compounds. Network pharmacology is increasingly applied in CM formula research in recent years, which is identified suitable for the study of CM formula. In this review, we summarized the methodology of network pharmacology, including network construction, network analysis and network verification. The aim of constructing a network is to achieve the interaction between the bioactive compounds and targets and the interaction between various targets, and then find out and validate the key nodes via network analysis and network verification. Besides, we reviewed the application in CM formula research, mainly including targets discovery, bioactive compounds screening, toxicity evaluation, mechanism research and quality control research. Finally, we proposed prospective in the future and limitations of network pharmacology, expecting to provide new strategy and thinking on study for CM formula. | LUO Ting-ting LU Yuan YAN Shi-kai XIAO Xue RONG Xiang-lu GUO Jiao | 2020 | Chinese Journal of Integrative Medicine2020,26,1: | 186 |
| 6 | Species Concepts as Applied to the Whitefly Bemisia tabaci Systematics:How Many Species Are There?显示文摘The worldwide distribution and extensive genetic diversity of the whitefly,Bemisia tabaci,has long been recognized.However,the levels of separation within B.tabaci and the nomenclature of the various genetic groups have been a subject of debate.Recent phylogenetic analyses indicate that B.tabaci is a complex composed of 28 morphologically indistinguishable species.In this article,we first review the debate and difficulties associated with B.tabaci's taxonomy and systematics,and argue for the need to apply the biological species concept in order to elucidate B.tabaci's systematics.We summarize the accumulated genetic and behavioural data on reproductive incompatibilities evident amongst phylogenetic mtCOI groups of B.tabaci.Crossing studies have been conducted with 14 of the 28 putative species covering 54 reciprocal inter-species pairs,and observations on mating behaviour have been conducted for seven species pairs.Data from both crossing trials and behavioural observations indicate a consistent pattern of reproductive isolation among the putative species.We then discuss the technical and conceptual complexities associated with crossing experiments and behavioural observations designed to reveal reproductive incompatibility.Finally,we elaborate on a strategy for further clarifying the pattern of reproductive isolation between B.tabaci groups and propose future research directions on the systematics of this complex. | LIU Shu-sheng John Colvin Paul J De Barro | 2012 | Journal of Integrative Agriculture2012,11,2: | 76 |
| 7 | WRKY transcription factors in plant responses to stresses显示文摘The WRKY gene family is among the largest families of transcription factors(TFs) in higher plants.By regulating the plant hormone signal transduction pathway,these TFs play critical roles in some plant processes in response to biotic and abiotic stress.Various bodies of research have demonstrated the important biological functions of WRKY TFs in plant response to different kinds of biotic and abiotic stresses and working mechanisms.However,very little summarization has been done to review their research progress.Not just important TFs function in plant response to biotic and abiotic stresses,WRKY also participates in carbohydrate synthesis,senescence,development,and secondary metabolites synthesis.WRKY proteins can bind to W-box(TGACC(A/T)) in the promoter of its target genes and activate or repress the expression of downstream genes to regulate their stress response.Moreover,WRKY proteins can interact with other TFs to regulate plant defensive responses.In the present review,we focus on the structural characteristics of WRKY TFs and the research progress on their functions in plant responses to a variety of stresses. | Jingjing Jiang Shenghui Ma Nenghui Ye Ming Jiang Jiashu Cao Jianhua Zhang | 2017 | Journal of Integrative Plant Biology2017,59,2: | 75 |
| 8 | Impacts of chemical fertilizer reduction and organic amendments supplementation on soil nutrient,enzyme activity and heavy metal content显示文摘Excessive use of agro-chemicals(such as mineral fertilizers) poses potential risks to soil quality. Application of organic amendments and reduction of inorganic fertilizer are economically feasible and environmentally sound approaches to develop sustainable agriculture. This study investigated and evaluated the effects of mineral fertilizer reduction and partial substitution of organic amendment on soil fertility and heavy metal content in a 10-season continually planted vegetable field during 2009–2012. The experiment included four treatments: 100% chemical fertilizer(CF100), 80% chemical fertilizer(CF80), 60% chemical fertilizer and 20% organic fertilizer(CF60+OM20), and 40% chemical fertilizer and 40% organic fertilizer(CF40+OM40). Soil nutrients, enzyme activity and heavy metal content were determined. The results showed that single chemical fertilizer reduction(CF80) had no significant effect on soil organic matter content, soil catalase activity and soil heavy metal content, but slightly reduced soil available N, P, K, and soil urease activity, and significantly reduced soil acid phosphatase activity. Compared with CF100, 40 or 60% reduction of chemical fertilizer supplemented with organic fertilizer(CF60+OM20, CF40+OM40) significantly increased soil organic matter, soil catalase activity and urease activity especially in last several seasons, but reduced soil available P, K, and soil acid phosphatase activity. In addition, continuous application of organic fertilizer resulted in higher accumulation of Zn, Cd, and Cr in soil in the late stage of experiment, which may induce adverse effects on soil health and food safety. | NING Chuan-chuan GAO Peng-dong WANG Bing-qing LIN Wei-peng JIANG Ni-hao CAI Kun-zheng | 2017 | Journal of Integrative Agriculture2017,16,8: | 64 |
| 9 | Unraveling salt stress signaling in plants显示文摘Salt stress is a major environmental factor limiting plant growth and productivity. A better understanding of the mechanisms mediating salt resistance will help researchers design ways to improve crop performance under adverse environmental conditions. Salt stress can lead to ionic stress, osmotic stress and secondary stresses, particularly oxidative stress, in plants. Therefore,to adapt to salt stress, plants rely on signals and pathways that re-establish cellular ionic, osmotic, and reactive oxygen species(ROS) homeostasis. Over the past two decades, genetic and biochemical analyses have revealed several core stress signaling pathways that participate in salt resistance. The Salt Overly Sensitive signaling pathway plays a key role in maintaining ionic homeostasis,via extruding sodium ions into the apoplast. Mitogenactivated protein kinase cascades mediate ionic, osmotic,and ROS homeostasis. SnR K2(sucrose nonfermenting1-related protein kinase 2) proteins are involved in maintaining osmotic homeostasis. In this review, we discuss recent progress in identifying the components and pathways involved in the plant's response to salt stress and their regulatory mechanisms. We also review progress in identifying sensors involved in salt-induced stress signaling in plants. | Yongqing Yang Yan Guo | 2018 | Journal of Integrative Plant Biology2018,60,9: | 66 |
| 10 | Can Chinese Medicine Be Used for Prevention of Corona Virus Disease 2019 (COVID-19)? A Review of Historical Classics, Research Evidence and Current Prevention Programs显示文摘Objective:Since December 2019,an outbreak of corona virus disease 2019(COVID-19)occurred in Wuhan,and rapidly spread to almost all parts of China.This was followed by prevention programs recommending Chinese medicine(CM)for the prevention.In order to provide evidenee for CM recommendations,we reviewed ancient classics and human studies.Methods:Historical records on prevention and treatment of infections in CM classics,clinical evidence of CM on the prevention of severe acute respiratory syndrome(SARS)and H1N1 in flue nza,and CM preve ntion programs issued by health authorities in China since the COVID-19 outbreak were retrieved from differe nt databases and websites till 12 February,2020.Research evide nee in eluded data from clinical trials,cohort or other population studies using CM for preventing contagious respiratory virus diseases.Results:The use of CM to prevent epidemics of infectious diseases was traced back to ancient Chinese practice cited in Huangdi's Internal Classic(Huang Di Nei Jing)where preventive effects were recorded.There were 3 studies using CM for prevention of SARS and 4 studies for H1N1 influenza.None of the participants who took CM contracted SARS in the 3 studies.The infection rate of H1N1 in flue nza in the CM group was significantly lower than the non-CM group(relative risk 0.36,95%confidence interval 0.24-0.52;n=4).For prevention of COVID-19,23 provinces in China issued CM programs.The main principles of CM use were to tonify qi to protect from external pathoge ns,disperse wind and discharge heat,and resolve damp ness.The most frequently used herbs in eluded Radix astragali(Huangqi),Radix glycyrrhizae(Gancao),Radix saposhnikoviae(Fangfeng),Rhizoma Atractylodis Macrocephalae(Baizhu),Lonicerae Japonicae Flos(Jinyinhua),and Fructus forsythia(Lianqiao).Conclusions:Based on historical records and human evidenee of SARS and H1N1 influenza prevention,Chinese herbal formula could be an alternative approach for prevention of COVID-19 in high-risk population.Prospective,rigorous population studies are warranted to confirm the potential preventive effect of CM. | LUO Hui TANG Qiao-ling SHANG Ya-xi LIANG Shi-bing YANG Ming Nicola Robinson LIU Jian-ping | 2020 | Chinese Journal of Integrative Medicine2020,26,4: | 61 |
| 11 | Case study on the first immigration of fall armyworm,Spodoptera frugiperda invading into China显示文摘The fall armyworm(FAW),Spodoptera frugiperda is one of the most damaging crop pests,and it has become major threat to the food security of many countries.In order to monitor possible invasion of this pest into China,a searchlight trap was established in March 2018 in western Yunnan Province,China,where it has served as the'first station'for many pests that have migrated from Myanmar to China.A number of suspected FAW moths were captured and identified by DNA sequencing.The results showed that the FAW moth was first captured on December 11 and formed its first immigration peak in mid-December 2018.DNA detection revealed that the early invading FAW population was the'corn-strain'.The field survey indicated that the pest mainly colonized corn in Pu’er,Dehong and Baoshan areas.Migration trajectory simulation implied that the moths might have mainly come from the eastern area in the mid-latitude region of Myanmar(20-25°N,94-100°E).This case study confirmed the first immigration of FAW into China,and will be helpful for guiding monitoring and management work to control this pest. | SUN Xiao-xu HU Chao-xing JIA Hui-ru WU Qiu-lin SHEN Xiu-jing ZHAO Sheng-yuan JIANG Yu-ying WU Kong-ming | 2021 | Journal of Integrative Agriculture2021,20,3: | 66 |
| 12 | Volatile Organic Compounds and Their Roles in Bacteriostasis in Five Conifer Species显示文摘In order to make clear the functions of plant volatile organic compounds (VOCs) on bacteriostasis and air decontamination, we analyzed the composition and content of VOCs in Pinus tabulaeformis Carr., P. bungeana Zucc., Sabina chinensis Antoine, Picea koraiensis Nakai, and Cedrus deodara G. Don under near-natural conditions using the thermal-desorption cold trap gas chromatography/mass spectrometer technique. The effects of the VOCs on airborne microorganisms were investigated using the method of natural sedimentation. Results showed that the major VOCs were as follows: limonene, β-pinene, α-pinene,and α-caryophyllene in Pinus tabulaeformis and P. bungeana; limonene, borneol acetate, β-pinene, myrcene,and tricylene in S. chinensis; limonene, α-pinene, myrcene, camphene, and β-pinene in Picea koraiensis;and limonene, 2, (10)-pinene, α-pinene, and myrcene in C. deodara. These VOCs and the corresponding foliar extracts inhibited the growth of bacteria and stimulated the growth of fungi. Experimental data using monomers of the VOCs demonstrated that limonene, β-pinene, and three aldehydes could significantly inhibit bacterial growth, suggesting an inhibitory effect of VOCs on the growth of airborne microorganisms in the five conifer species. The bacteriostasis and air-decontaminating effects of plant VOCs are further discussed in terms of their chemical composition. | YanGAO You-JuJIN Hai-DongLI Hua-JunCHEN | 2005 | Journal of Integrative Plant Biology2005,47,4: | 52 |
| 13 | Promotion by 5-Aminolevulinic Acid of Germination of Pakchoi (Brassica campestris ssp. chinensis var. communis Tsen et Lee) Seeds Under Salt Stress显示文摘The seed germination and seedling growth of pakchoi (Brassica campestris ssp. chinensis var.communis Tsen et Lee cv. Hanxiao) were not significantly inhibited until the concentration of NaCl was increased to150 mmol/L. Treatment of pakchoi seeds with exogenous 5-aminolevulinic acid (ALA), at concentrations ranging from 0.01 to 10.00 mg/L, promoted seed germination when seeds were stressed by salinity, whereas levulinic acid (LA), an inhibitor of ALA dehydrase, significantly inhibited seed germination and seedling growth, suggesting that metabolism of ALA into porphyrin compounds was necessary for seed germination and seedling growth. Determination of respiratory rate during seed germination showed that ALA increased seed respiration under both normal conditions and salt stress. Furthermore, salt stress decreased levels of endogenous ALA, as well as heme, in etiolated seedlings. More salt-tolerant cultivars of pakchoi contained higher relative levels of endogenous ALA and heme under conditions of salt stress.These results indicate that salt stress may inhibit the biosynthesis of endogenous ALA and then heme,which is necessary for seed germination, and treatment of seeds with exogenous ALA prior to germination may be associated with the biosynthesis of heme. | Liang-Ju WANG Wei-Bing JIANG Hui LIU Wei-Qin LIU Lang KANG Xi-Lin HOU | 2005 | Journal of Integrative Plant Biology2005,47,9: | 54 |
| 14 | Comparative Analysis of Codon Usage Patterns Among Mitochondrion, Chloroplast and Nuclear Genes显示文摘 | Wen-Juan Zhang Jie Zhou Zuo-Feng Li Li Wang Xun Gu Yang Zhong | 2007 | Journal of Integrative Plant Biology2007,49,2: | 55 |
| 15 | Hydrogen Peroxide in Plants:a Versatile Molecule of the Reactive Oxygen Species Network显示文摘Plants often face the challenge of severe environmental conditions,which include various biotic and abiotic stresses that exert adverse effects on plant growth and development. During evolution,plants have evolved complex regulatory mechanisms to adapt to various environmental stressors. One of the consequences of stress is an increase in the cellular concentration of reactive oxygen species(ROS),which are subsequently converted to hydrogen peroxide(H2O2). Even under normal conditions,higher plants produce ROS during metabolic processes. Excess concentrations of ROS result in oxidative damage to or the apoptotic death of cells. Development of an antioxidant defense system in plants protects them against oxidative stress damage. These ROS and,more particularly,H2O2,play versatile roles in normal plant physiological processes and in resistance to stresses. Recently,H2O2 has been regarded as a signaling molecule and regulator of the expression of some genes in cells. This review describes various aspects of H2O2 function,generation and scavenging,gene regulation and cross-links with other physiological molecules during plant growth,development and resistance responses. | Li-Juan Quan Bo Zhang Wei-Wei Shi Hong-Yu Li | 2008 | Journal of Integrative Plant Biology2008,50,1: | 52 |
| 16 | How Plants Cope with Cadmium: Staking All on Metabolism and Gene Expression显示文摘Environmental pollution is one of the major problems for human health. Toxic heavy metals are normally present as soil constituents or can also be spread out in the environment by human activity and agricultural techniques. Soil contamination by heavy metals as cadmium, highlights two main aspects: on one side they interfere with the life cycle of plants and therefore reduce crop yields, and on the other hand, once adsorbed and accumulated into the plant tissues, they enter the food chain poisoning animals and humans. Considering this point of view, understanding the mechanism by which plants handle heavy metal exposure, in particular cadmium stress, is a primary goal of plant-biotechnology research or plant breeders whose aim is to create plants that are able to recover high amounts of heavy metals, which can be used for phytoremediation, or identify crop varieties that do not accumulate toxic metal in grains or fruits. In this review we focus on the main symptoms of cadmium toxicity both on root apparatus and shoots. We elucidate the mechanisms that plants activate to prevent absorption or to detoxify toxic metal ions, such as synthesis of phytochelatins, metallothioneins and enzymes involved in stress response. Finally we consider new plant-biotechnology applications that can be applied for phytoremediation. | Giovanni DalCorso Silvia Farinati Silvia Maistri Antonella Furini | 2008 | Journal of Integrative Plant Biology2008,50,10: | 60 |
| 17 | Hydrogen Sulfide Promotes Root Organogenesis in Ipomoea batatas, Salix matsudana and Glycine max显示文摘In this report, we demonstrate that sodium hydrosulfide (NaHS), a hydrogen sulfide (H2S) donor, promoted adventitious root formation mediated by auxin and nitric oxide (NO). Application of the H2S donor to seedling cuttings of sweet potato (Ipomoea batatas L.) promoted the number and length of adventitious roots in a dose-dependent manner. It was also verified that H2S or HS- rather than other sulfur-containing components derived from NaHS could be attributed to the stimulation of adventitious root formation. A rapid increase in endogenous H2S, indole acetic acid (IAA) and NO were sequentially observed in shoot tips of sweet potato seedlings treated with HaHS. Further investigation showed that H2S-mediated root formation was alleviated by N-1-naphthylphthalamic acid (NPA), an IAA transport inhibitor, and 2-(4-carboxyphenyl)- 4,4,5,5-tetramethylimidazoline-1-oxyl-3-oxide (cPTIO), an NO scavenger. Similar phenomena in H2S donor-dependent root organogenesis were observed in both excised willow (Salix matsudana var. tortuosa Vilm) shoots and soybean (Glycine max L.) seedlings. These results indicated that the process of H2S-induced adventitious root formation was likely mediated by IAA and NO, and that H2S acts upstream of IAA and NO signal transduction pathways. | Hua Zhang Jun Tang Xiao-Ping Liu Yun Wang Wei Yu Wei-Yan Peng Fang Fang Dai-Fu Ma Zhao-Jun Wei Lan-Ying Hu | 2009 | Journal of Integrative Plant Biology2009,51,12: | 58 |
| 18 | Salicylic Acid and its Function in Plant Immunity显示文摘The small phenolic compound salicylic acid(SA) plays an important regulatory role in multiple physiological processes including plant im-mune response.Significant progress has been made during the past two decades in understanding the SA-mediated defense signaling network.Characterization of a number of genes functioning in SA biosynthesis,conjugation,accumulation,signaling,and crosstalk with other hormones such as jasmonic acid,ethylene,abscisic acid,auxin,gibberellic acid,cytokinin,brassinosteroid,and peptide hormones has sketched the finely tuned immune response network.Full understanding of the mech-anism of plant immunity will need to take advantage of fast developing genomics tools and bioinformatics techniques.However,elucidating genetic components involved in these pathways by conventional ge-netics,biochemistry,and molecular biology approaches will continue to be a major task of the community.High-throughput method for SA quantification holds the potential for isolating additional mutants related to SA-mediated defense signaling. | Chuanfu An Zhonglin Mou | 2011 | Journal of Integrative Plant Biology2011,53,6: | 53 |
| 19 | Randomized Double-Blind Clinical Trial of Moluodan(摩罗丹)for the Treatment of Chronic Atrophic Gastritis with Dysplasia显示文摘Objective:To assess the efficacy and safety of Moluodan(摩罗丹) in treating dysplasia in chronic atrophic gastritis(CAG) patients.Methods:This was a multi-centered,double-blind,randomized controlled trial.The total of 196 subjects were assigned to receive either Moluodan or folic acid in a 2:1ratio by blocked randomization.Mucosa marking targeting biopsy(MTB) was used to insure the accuracy and consistency between baseline and after 6-month treatment.Primary outcomes were histological score,response rate of pathological lesions and dysplasia disappearance rate.Secondary endpoints included gastroscopic findings,clinical symptom and patient reported outcome(PRO) instrument.Results:Dysplasia score decreased in Moluodan group(P=0.002),significance was found between groups(P=0.045).Dysplasia disappearance rates were 24.6%and 15.2%in Moluodan and folic acid groups respectively,no significant differences were found(P=0.127).The response rate of atrophy and intestinal metaplasia were 34.6%and23.0%in Moluodan group,24.3%and 13.6%in folic acid group.Moluodan could improve erythema(P=0.044),and bile reflux(P=0.059),no significance between groups.Moluodan was better than folic acid in improving epigastric pain,epigastric suffocation,belching and decreased appetite(P<0.05),with symptom disappearance rates of 37%to 83%.Conclusions:Moluodan improved dysplasia score in histopathology,and erythema and bile reflux score in endoscopy,and superior to folic acid in improving epigastric pain,epigastric suffocation,belching and decreased appetite. | 唐旭东 周丽雅 张澍田 徐有青 崔全才 李理 陆京京 李鹏 陆芳 王凤云 王萍 卞立群 卞兆祥 | 2016 | Chinese Journal of Integrative Medicine2016,22,1: | 60 |
| 20 | Influence of potato flour on dough rheological properties and quality of steamed bread显示文摘It is a novel idea to make steamed bread by adding potato flour into wheat flour considering the production and nutritional factors of potato. In this study, the influence of potato flour(0–35%) on dough rheology and quality of steamed bread were investigated. Potato flour addition significantly influenced the dough rheological properties and steamed bread quality, such as increased water absorption, the maximum gaseous release height, total volume of CO_2 and hardness, while decreased dough stability and specific volume of steamed bread. Moreover, correlation analysis suggested that dough height at the maximum development time, dough stability, water absorption and the phase tangent can be used for predicting the technological quality of steamed bread. Potato-wheat steamed bread had higher dietary fibre, ash content and antioxidant activity than those of wheat steamed bread. The estimated glycemic index decreased from 73.63(0%) to 60.01(35%). Considering the sensory evaluation, the steamed bread with 20% potato flour is acceptable. In conclusion, adding appropriate quantity of potato flour to wheat flour for steamed bread production will not only maintain the technological quality, but also can improve the nutritional value of the steamed bread. | LIU Xing-li MU Tai-hua SUN Hong-nan ZHANG Miao CHEN Jing-wang | 2016 | Journal of Integrative Agriculture2016,15,11: | 51 |