Drought is a major abiotic stress limiting agricultural crops production worldwide.In our study,we isolated a novel C2H2-type zinc finger protein gene ZF2 from chickpea.ZF2 consisted of 232 amino acids with two QALGGH...Drought is a major abiotic stress limiting agricultural crops production worldwide.In our study,we isolated a novel C2H2-type zinc finger protein gene ZF2 from chickpea.ZF2 consisted of 232 amino acids with two QALGGH motifs in Cys2/His2 zinc finger domain.Transient expression analysis of ZF2:GFP fusion protein showed that ZF2 was a nuclear localized protein.In the yeast assay system,the full-length of ZF2 did not show transcriptional activation.Expression of ZF2 gene was enhanced by treatments of several abiotic stresses and phytohormones.The promoter region of ZF2 contained multiple stress-and hormone-related cis-elements.Overexpression of ZF2 in Arabidopsis significantly improved the root length and fresh weight at seedling stage and enhanced the survival rates and proline content under drought treatment.These results indicated that ZF2 functioned as a positive regulator in drought response.展开更多
该研究将富硒能力较强的纳豆芽孢杆菌作为发酵菌种,鹰嘴豆为原料,以血管紧张素转化酶(angiotensin I converting enzyme,ACE)抑制率为指标,采用单因素试验和响应面优化法对纳豆芽孢杆菌富硒后产ACE抑制肽的最佳条件进行优化。同时采用...该研究将富硒能力较强的纳豆芽孢杆菌作为发酵菌种,鹰嘴豆为原料,以血管紧张素转化酶(angiotensin I converting enzyme,ACE)抑制率为指标,采用单因素试验和响应面优化法对纳豆芽孢杆菌富硒后产ACE抑制肽的最佳条件进行优化。同时采用超高效液相色谱-电喷雾电离-串联质谱(ultra performance liquid chromatography electrospray ionization tandem mass spectrometry,UPLC-ESI-MS/MS)法对鹰嘴豆纳豆富硒后硒代氨基酸进行定性定量分析。结果表明,L-硒代胱氨酸是鹰嘴豆纳豆富硒后主要的硒代氨基酸,纳豆芽孢杆菌富硒后产ACE抑制肽的最佳条件为接种量2%、液料比18∶1(mL/g)、发酵温度40℃,ACE抑制率可达89.24%。对比试验的结果显示,纳豆芽孢杆菌不富硒发酵鹰嘴豆产ACE抑制肽活性为66.35%,表明富硒纳豆芽孢杆菌发酵鹰嘴豆对ACE活性有良好的抑制作用。展开更多
探究鹰嘴豆对非油炸方便面品质及消化特性的影响,为低血糖生成指数(glycemic index predictive value,GI)的非油炸方便面的研发提供理论基础。通过添加不同含量的鹰嘴豆粉,分析其对非油炸方便面的混粉揉混特性、水分分布、糊化度、微观...探究鹰嘴豆对非油炸方便面品质及消化特性的影响,为低血糖生成指数(glycemic index predictive value,GI)的非油炸方便面的研发提供理论基础。通过添加不同含量的鹰嘴豆粉,分析其对非油炸方便面的混粉揉混特性、水分分布、糊化度、微观结构、质构特性、蛋白质二级结构及消化特性的影响。结果表明:当鹰嘴豆粉添加量为0%~30%时,面团耐揉性变差,蛋白质二级结构中α-螺旋和β-折叠结构含量增加,对方便面的微观结构无显著影响;当添加量超过30%时,揉混参数上升,蛋白质二级结构中无序结构增多,微观结构遭到明显破坏;鹰嘴豆粉的加入总体上会降低面团的弛豫时间,提高面团的持水能力,但会降低方便面的糊化度,蒸煮特性和质构特性变差;鹰嘴豆粉的添加会显著降低方便面的消化速率和GI。当鹰嘴豆粉添加量低于30%时可改善方便面的营养和加工特性,同时降低方便面的GI。展开更多
Chickpea is the third most important pulse crop as a source of dietary protein. Ever-increasing demand in Asian countries calls for breeding superior desi-type varieties, in turn necessitating the availability of char...Chickpea is the third most important pulse crop as a source of dietary protein. Ever-increasing demand in Asian countries calls for breeding superior desi-type varieties, in turn necessitating the availability of characterized germplasm to breeders. The Indian National Genebank,located at the National Bureau of Plant Genetic Resources, New Delhi, conserves 14,651 accessions of chickpea. The entire set was characterized in a single large-scale experiment.High variation was observed for eight quantitative and 12 qualitative agro-morphological traits. Allelic richness procedure was employed to assemble a core set comprising 1103 accessions, 70.0% of which were of Indian origin. Comparable values of total variation explained by the first three principal components in the entire collection(51.1%) and the core(52.4%)together with conservation of nine pairwise r values among quantitative traits in the core collection and a coincidence rate around 99.7% indicated that the chickpea core was indeed an excellent representation of the entire chickpea collection in the National Genebank. The chickpea core exhibited greater diversity than the entire collection in agro-morphological traits, as assessed by higher variance and Shannon–Weaver diversity indices, indicating that the chickpea core maximized the phenotypic diversity available in the Indian chickpea germplasm. The chickpea core, comprising mainly indigenous desi genotypes, is expected to be an excellent resource for chickpea breeders. Information on the chickpea core can be accessed at http://www.nbpgr.ernet.in/pgrportal.展开更多
基金sponsored by the National Natural Science Foundation of China(31160306 and 30860152)Natural Science Foundation of Zhejiang Province(LQ20C130003)+1 种基金Scientific Research Fund of Zhejiang Provincial Education Department(Y202145972 and Y202248468)Zhejiang Students’Technology and Innovation Program(Xinmiao Program)(2022R485A003).
文摘Drought is a major abiotic stress limiting agricultural crops production worldwide.In our study,we isolated a novel C2H2-type zinc finger protein gene ZF2 from chickpea.ZF2 consisted of 232 amino acids with two QALGGH motifs in Cys2/His2 zinc finger domain.Transient expression analysis of ZF2:GFP fusion protein showed that ZF2 was a nuclear localized protein.In the yeast assay system,the full-length of ZF2 did not show transcriptional activation.Expression of ZF2 gene was enhanced by treatments of several abiotic stresses and phytohormones.The promoter region of ZF2 contained multiple stress-and hormone-related cis-elements.Overexpression of ZF2 in Arabidopsis significantly improved the root length and fresh weight at seedling stage and enhanced the survival rates and proline content under drought treatment.These results indicated that ZF2 functioned as a positive regulator in drought response.
文摘该研究将富硒能力较强的纳豆芽孢杆菌作为发酵菌种,鹰嘴豆为原料,以血管紧张素转化酶(angiotensin I converting enzyme,ACE)抑制率为指标,采用单因素试验和响应面优化法对纳豆芽孢杆菌富硒后产ACE抑制肽的最佳条件进行优化。同时采用超高效液相色谱-电喷雾电离-串联质谱(ultra performance liquid chromatography electrospray ionization tandem mass spectrometry,UPLC-ESI-MS/MS)法对鹰嘴豆纳豆富硒后硒代氨基酸进行定性定量分析。结果表明,L-硒代胱氨酸是鹰嘴豆纳豆富硒后主要的硒代氨基酸,纳豆芽孢杆菌富硒后产ACE抑制肽的最佳条件为接种量2%、液料比18∶1(mL/g)、发酵温度40℃,ACE抑制率可达89.24%。对比试验的结果显示,纳豆芽孢杆菌不富硒发酵鹰嘴豆产ACE抑制肽活性为66.35%,表明富硒纳豆芽孢杆菌发酵鹰嘴豆对ACE活性有良好的抑制作用。
文摘探究鹰嘴豆对非油炸方便面品质及消化特性的影响,为低血糖生成指数(glycemic index predictive value,GI)的非油炸方便面的研发提供理论基础。通过添加不同含量的鹰嘴豆粉,分析其对非油炸方便面的混粉揉混特性、水分分布、糊化度、微观结构、质构特性、蛋白质二级结构及消化特性的影响。结果表明:当鹰嘴豆粉添加量为0%~30%时,面团耐揉性变差,蛋白质二级结构中α-螺旋和β-折叠结构含量增加,对方便面的微观结构无显著影响;当添加量超过30%时,揉混参数上升,蛋白质二级结构中无序结构增多,微观结构遭到明显破坏;鹰嘴豆粉的加入总体上会降低面团的弛豫时间,提高面团的持水能力,但会降低方便面的糊化度,蒸煮特性和质构特性变差;鹰嘴豆粉的添加会显著降低方便面的消化速率和GI。当鹰嘴豆粉添加量低于30%时可改善方便面的营养和加工特性,同时降低方便面的GI。
基金funded by the Indian Council of Agricultural Research
文摘Chickpea is the third most important pulse crop as a source of dietary protein. Ever-increasing demand in Asian countries calls for breeding superior desi-type varieties, in turn necessitating the availability of characterized germplasm to breeders. The Indian National Genebank,located at the National Bureau of Plant Genetic Resources, New Delhi, conserves 14,651 accessions of chickpea. The entire set was characterized in a single large-scale experiment.High variation was observed for eight quantitative and 12 qualitative agro-morphological traits. Allelic richness procedure was employed to assemble a core set comprising 1103 accessions, 70.0% of which were of Indian origin. Comparable values of total variation explained by the first three principal components in the entire collection(51.1%) and the core(52.4%)together with conservation of nine pairwise r values among quantitative traits in the core collection and a coincidence rate around 99.7% indicated that the chickpea core was indeed an excellent representation of the entire chickpea collection in the National Genebank. The chickpea core exhibited greater diversity than the entire collection in agro-morphological traits, as assessed by higher variance and Shannon–Weaver diversity indices, indicating that the chickpea core maximized the phenotypic diversity available in the Indian chickpea germplasm. The chickpea core, comprising mainly indigenous desi genotypes, is expected to be an excellent resource for chickpea breeders. Information on the chickpea core can be accessed at http://www.nbpgr.ernet.in/pgrportal.