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The contribution of N remobilization is crucial for new shoots growth and quality formation during spring tea shoots development. However, the translocation mechanism of N from source leaves to sink young shoots is not well understood. In the present study, 15N urea was applied to mature tea leaves one week before bud break to track N remobilization in a field experiment. The dynamic changes in plant 15N abundance, contents of amino acids, and the expression levels of genes related to N metabolism and translocation were followed during the 18‐d development of new spring shoots until three expanding young leaves. The results showed that during the growth of new shoots the amount of 15N in the shoots increased, whereas the Ndff (N derived from 15N‐urea) in mature leaves decreased, showing that the foliar‐applied N in mature leaves was readily exported to new shoots. This process was found to be accompanied by decline of chlorophylls. In the mature leaves, expression CsATG18a and CsSAG12 involved in autophagy was dramatically induced (> 4‐fold) at approximately nine days after the bud breaking. The genes involved in the transformation of amino acids, including primarily CsGDH2, CsGDH4, CsGLT3, CsGS1;3, and CsASN2 were upregulated by > 3‐fold after bud breaking. The expression levels of CsATG8A, CsATG9, CsSAG12, CsGS1;1, CsGDH1, and CsAAP6 correlated negatively with the Ndff in mature leaves, but positively with 15N amount and total N amount in new shoots, suggesting these genes played important roles in N export from mature leaves. In the new shoots, the expression of most genes showed two defined peaks, one on six days and one on 12 days after bud breaking. The expression of CsGS2, CsASN3, CsGLT1, and CsAAP4 positively correlated with the 15N amount and total N amount in new shoots. These genes might be involved in the transport and re‐assimilation of N from mature leaves. The overall results demonstrated that the translocation of 15N from mature leaves to new spring shoots was regulated by the genes involved in autophagy, protein degradation, amino acid transformation and transport.  相似文献   
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AIM: To explore the effects of chlorogenic acid (CGA) on endothelial dysfunction in db/db mice and the possible mechanism. METHODS: Male db/db mice (n=12) were divided into control group and CGA group, with 6 mice in each group. The mice in CGA group were treated with diet containing 0.02% CGA, while the mice in control group were given normal diet only. The observation period was 12 weeks. Fasting blood glucose level, tail blood pressure and the body weight were analyzed each week. At the end of the 12th week, the mice were anesthetized and blood was taken from carotid artery. The plasma levels of heme oxygenase-1 (HO-1), catalase (CAT), NAD(P)H dehydrogenase quinone 1 (NQO1) and glutathione peroxidase-1 (GPx-1) were measured by ELISA. The mouse aortas were isolated, and the superoxide anion and nitric oxide (NO) levels were measured by DHE and DAF-2 DA staining, respectively. Wire Myograph System was used to detect the vasorelaxation of db/db mouse aorta. The protein levels of peroxisome proliferator-activated receptor α (PPARα), nuclear factor E2-related factor 2 (Nrf2), phosphorylated AMP-activated protein kinase (p-AMPK), phosphorylated endothelial NO synthase (p-eNOS), P22phox and P47phox were determined by Western blot. RESULTS: Dietary CGA decreased fasting blood glucose and body weight in db/db mice as compared with control group (P<0.01 or P<0.05). The plasma levels of HO-1, CAT, NQO1 and GPx-1 in CGA group were higher than those in control group (P<0.01 or P<0.05). Administration of CGA for 12 weeks attenuated superoxide anion level, increased NO level in the mouse endothelium and improved endothelium-dependent relaxation of the db/db mouse aorta. CGA also increased the protein levels of PPARα, Nrf2, p-AMPK and p-eNOS, and decreased P22phox and P47phox levels (P<0.01). CONCLUSION: Dietary CGA improves db/db mouse endothelium-dependent relaxation. This effect may be related to the increases in the levels of antioxidant molecules PPARα, Nrf2 and p-AMPK, and the up-regulation of antioxidant capacity, thus decreasing the oxidative stress, promoting eNOS phosphorylation, and increasing NO level.  相似文献   
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为了开发利用棉籽壳中的除草活性物质,分别以无水乙醇、正丁醇、石油醚和乙酸乙酯为溶剂,采用索氏提取法对棉籽壳中的活性物质进行了提取,并对各溶剂粗提物进行了除草活性测定。结果发现:用无水乙醇提取的粗提物对稗草生长的抑制活性最高,经气相色谱-质谱(GC-MS)联用分析,发现该粗提物中主要含有甘油、三环己基3-烯-6-辛酮、4-乙烯基-2-甲氧基苯酚、(邻甲基苯酚)-2-溴-2氯-乙酰酯、十四酸、十四酸乙酯、十六烷酸、辛酸异戊酯和亚油酸9种化合物。进一步的除草活性测定结果表明,亚油酸、辛酸异戊酯、4-乙烯基-2-甲氧基苯酚和(邻甲基苯酚)-2-溴-2氯-乙酰酯4种化合物对稗草表现出一定的除草活性,其中亚油酸活性最强,其IC50值为14.5 mg/L。  相似文献   
36.
唐杂6 号是以雌性系S16 为母本,以自交系S26 为父本配制的强雌型黄瓜一代杂种。生长势强,商品瓜短棒状, 瓜长12~14 cm,横径4.0~4.3 cm,非特异性环境下雌花率95% 以上,瓜皮嫩绿有光泽,白刺,刺瘤稀小,平均单瓜质量 131.8 g 左右,高抗霜霉病,抗细菌性角斑病,耐白粉病;春保护地栽培平均产量可达8 000 kg·(667 m2-1,秋冬保护地栽 培产量可达6 500 kg·(667 m2-1;适合河北、北京、天津及东北地区春、秋保护地种植。  相似文献   
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为建立‘哈伯’南天竹组织培养和种苗繁育技术体系,以半木质化带芽茎段为外植体材料开展植株再生研究。通过观察对比试验法、L9(34)正交试验设计完全随机法、极差分析、显著性检验、LSD多重比较,探讨了‘哈伯’南天竹组培的最适培养基配方。试验结果表明:最佳诱导培养基为MS + 6-BA 2.0 mg/L + IBA 0.1 mg/L +蔗糖30 g/L,诱导萌动率71.77%,成活率85.51%;最佳增殖培养基为WPM +6-BA 1.5 mg/L + IBA 0.01 mg/L + 蔗糖30 g/L,增殖系数6.3;最佳生根培养基为1/2 MS+ IBA 0.5 mg/L + NAA 1.0 mg/L + 蔗糖20 g/L + AC 0.2 g/L,生根率97.63%;试管苗移入泥炭土:珍珠岩=3:2(V/V)混合基质中,移栽成活率96.67%。该试验建立了高效稳定的组培快繁技术体系,得到的组培苗后代能够稳定的保持母本优良性状,为工厂化育苗提供了技术支撑。  相似文献   
39.
吕丹  江朦朦 《农学学报》2021,11(8):110-115
文章首先对家庭农场(专业大户)、农民专业合作社以及农业产业化龙头企业等新型农业经营主体开展农产品电子商务现状进行梳理,归纳总结了各类主体开展农产品电子商务的特点以及采用的电子商务模式。其次,从客观条件和主观意识2个方面,分析了制约新型农业经营主体开展农产品电子商务的关键因素。最后,从政府管理层面和新型农业经营主体层面分别提出了促进农产品电子商务采纳的对策建议,即在政府管理层面,要从人才培养、智慧物流、精准施政、第三方服务等方面扫清障碍;在新型农业经营主体层面,提倡品牌定位精准化、生产流程标准化、生产过程可视化、营销模式多元化、产品包装规格化,充分发挥新型农业经营主体在推动农产品电子商务发展和农业现代化建设中的示范引领作用。  相似文献   
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抗逆优质丰产棉花新品种的培育及应用是当前棉花生产节水提质增效的关键。‘衡棉1670’是河北省农林科学院旱作农业研究所以中早熟陆地棉品种资源材料‘衡棉210’为母本,以‘衡棉4号’为父本杂交,后代多年南繁北育,经旱棚盐池鉴定选择,在枯黄萎病混生重病地、不防治棉铃虫的高压胁迫下,经过多年连续定向选择育成。其突出表现为抗枯黄萎病、丰产优质、耐盐抗旱节水,适宜在河北省及黄河流域同类生态春播棉区推广种植,2019年8月通过河北省农作物品种审定委员会审定(审定编号为冀审棉20190013)。  相似文献   
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