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Long-term feeding of sand rice(Agriophyllum squarrosum seed)can improve the antioxidant capacity of mice
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作者 PengShu Zhao Liang Shi +9 位作者 Xia Yan chaoju qian WeiJia Zhao Yan Chang XiaoYue Yin XingKe Fan TingZhou Fang YuQiu Liao ShanShan Zhou XiaoFei Ma 《Research in Cold and Arid Regions》 CSCD 2023年第2期105-112,共8页
Unhealthy eating habits with sugar-rich and high-fat foods can bring nutritional imbalance and other chronic diseases. At present, there is an increasing demand in regulating human sub-health through functional foods.... Unhealthy eating habits with sugar-rich and high-fat foods can bring nutritional imbalance and other chronic diseases. At present, there is an increasing demand in regulating human sub-health through functional foods. Agriophyllum squarrosum(L.) Moq., a pioneer plant native to sand dunes with ecological restoration function, is a traditional food plant of sand regions and Mongolian folk medicine. Numerous studies have confirmed that A. squarrosum seed, also called sand rice, has high nutritional value. However, the long-term health effects of eating sand rice remain unclear. To better explore and evaluate its long-term effects, hereby, ICR mice were fed with sand rice flour at different ratios(control, 60% and 95%) for 100 days. Results show that the growth and blood glucose level curve of these experimental mice were lower and more stable than that of the control. In addition, mice fed pure sand rice ingredient(95%) gained more stable body weight and blood glucose after 28 days, which revealed that sand rice is a food with comprehensive nutritional value and rarely negatively impacts the body growth performance. Our data also demonstrates that, the content of triglyceride(TG), total cholesterol(TC), low-density lipoprotein cholesterol(LDL-C) and high-density lipoprotein cholesterol(HDL-C) provided the lowest level in the blood of mice with a diet of pure sand rice ingredient, 0.48, 4.14, 0.91, 3.03 mmol/L, respectively. Also, T-SOD and GSH-PX activity provided a high level in mice with pure sand rice gradient, which significantly increased by 36%(T-SOD)and 19%(GSH-PX) compared to the control. These results suggest that long term intake of the pure sand rice ingredients is more helpful for stabilizing blood lipid and improve antioxidant capacity and beneficial to people suffering from chronic disease. This study supplies the first animal evidence to support the claim that sand rice is a promising functional food with comprehensive nutrition in the future. We are confident that, with increasing demands of daily sand rice usage, planting A. squarrosum in the vast desert regions will further increase the local economy and ecological restoration when coping with global warming. 展开更多
关键词 Sand rice Functional food Long-term effects Health evaluation Antioxidant capacity
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Adaptive evolution of rbcL in Reaumuria soon garica(Tamaricaceae) 被引量:1
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作者 chaoju qian MengHe Gu +4 位作者 HengXia Yin Yong Shi ChengLiang Yin Xia Yan XiaoFei Ma 《Research in Cold and Arid Regions》 CSCD 2017年第1期78-88,共11页
In the field of phylogenetic analyses, the rbcL gene encoded large subunit Ribulose-1,5-biphosphate carboxylase/oxygenase (Rubisco, EC4.1.1.39), which plays a crucial role in the process of photosynthesis for most ... In the field of phylogenetic analyses, the rbcL gene encoded large subunit Ribulose-1,5-biphosphate carboxylase/oxygenase (Rubisco, EC4.1.1.39), which plays a crucial role in the process of photosynthesis for most terrestrial plants, has been considered to be conserved; however, recent controversy regarding rbcL conservation has appeared since it was proposed to be under natural selection within all principal lineages of land plants. In this study, by examining the variation of DNA and protein sequences among 17 species in the family Tamaricaceae, three nonsynonymous mutations were identified to be under positive selection. The favored sites were located in the alph-helix domains of Rubisco, with decreased hydrophobicity and increased entropy, which could facilitate C〇 2 penetration into the active site of Rubisco. We also found that the expression level of rbcL in different genotypes of Reaumuria soongarica shifted in response to various stresses such as drought, temperature, salt, and light. This study not only sheds light on the functional/structural features of Rubisco in the evolution scenarios from 〇 3-like into C4 in Tamaricaceae but also provides useful information on directing genetic performance to enhance photosynthesis efficiency of desert plants for sustaining fragile desert ecosystems; fur-thermore, it promotes the ability to cope with desert aridification and global warming. 展开更多
关键词 rbcL gene Reaumuria soongarica] Tamaricaceae adaptive evolution
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红砂基因组大小变异及物种分化 被引量:1
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作者 范兴科 燕霞 +6 位作者 冯媛媛 冉进华 钱朝菊 尹晓月 周姗姗 房庭舟 马小飞 《生物多样性》 CAS CSCD 北大核心 2021年第10期1308-1320,共13页
红砂(Reaurnuria soongarica,柽柳科)是广泛分布于亚洲内陆干旱区温带荒漠的建群灌木,该物种内部经历过分化和杂交事件,是研究荒漠植物多样性发生和杂交物种形成的理想模型。然而,红砂不同群体的倍性水平尚不清楚,制约了对其物种形成机... 红砂(Reaurnuria soongarica,柽柳科)是广泛分布于亚洲内陆干旱区温带荒漠的建群灌木,该物种内部经历过分化和杂交事件,是研究荒漠植物多样性发生和杂交物种形成的理想模型。然而,红砂不同群体的倍性水平尚不清楚,制约了对其物种形成机制的深入研究。为了确定红砂不同支系的倍性及基因组大小变异模式,本研究以红砂幼苗根尖为实验材料,以野生番茄(Solanum pimpine llifolium)作为内标物种,利用流式细胞术对分别来自北疆支系及其可能的亲本支系(东部和西部支系)的共8个红砂群体进行了DNA 1C-值测定和分析。结果显示:红砂东部支系的DNA 1C-值(1.149±0.012 pg)略小于西部支系的1C-值(1.195±0.031 pg)。北疆支系中阜康(FK)和沙湾(SW)群体的DNA 1C-值处于东、西支系的1C-值之间,而火烧山(HSS)和五彩城(WCC)群体的1C-值接近东、西支系1C-值的2倍。结合之前的分子标记结果,我们推测北疆支系中阜康和沙湾群体为东、西部支系的同倍体杂交种群,而火烧山和五彩城群体属于异源四倍体杂交种群。不同倍性的北疆群体起源于不同的杂交事件,可以划归为不同的物种。 展开更多
关键词 Reaumuria soongarica DNA C-值 同倍体杂交物种形成 异源多倍化杂交物种形成 物种多样性
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