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| 1 | 我国黄精种质资源研究进展显示文摘黄精是我国传统名贵中药,也是传统药食同源药材,种植和药用历史悠久,不仅具有补气养阴、健润脾肺、益肾之功效,在食品、保健品、观赏、化妆品等方面也有应用价值。全国各地黄精资源品种繁多,容易混杂,2015年版《中华人民共和国药典》中记载药用黄精有3种。为可持续利用并充分开发黄精药材资源,通过考证相关资料,对黄精资源分布、种质鉴定、遗传多样性、育种研究等进行整理研究,可为黄精属植物良种选育、人工栽培及潜在黄精资源开发利用、解决黄精市场供需矛盾等提供参考依据。 | 崔阔澍 肖特 李慧萍 Aaqil Khan George Bawa 陈国鹏 彭腾 李斌 杨文钰 郑本川 吴茂力 詹志来 | 2021 | 江苏农业科学2021,49,11: | 16 |
| 2 | Thermal Degradation and Decomposition Kinetics of Freeze Dried Cow and Camel Milk as well as Their Constituents显示文摘 | K. V. Sunooj J. George V. A. Sajeev Kumar K. Radhakrishna A. S. Bawa | 2011 | Journal of Food Science and Engineering2011,1,2: | 2 |
| 3 | 种茎对多花黄精产量和药用品质的影响显示文摘针对目前国内多花黄精种茎无标准和用种不规范的现状,研究多花黄精种茎规格、年龄对产量及药用品质的影响,旨在为多花黄精科学选种用种提供理论依据。采用双因素随机区组设计,主因素为规格,副因素为年龄,以多花黄精种茎的芽头数、茎长、茎径和茎质量为指标,采用K-means聚类法将种茎分成3个规格、3个年龄,通过调查出苗率、单株产量、单位面积产量和块茎多糖含量变化情况,分析不同规格、年龄种茎处理下2年生多花黄精产量和药用品质的差异。种茎规格、年龄与出苗率相关;种茎规格与单株产量、单位面积产量极显著相关,种茎年龄与单株产量、单位面积产量显著相关;种茎规格与多糖含量极显著相关,种茎年龄与多糖含量显著相关。推测种茎规格与年龄存在交互作用,高规格、低龄多花黄精种茎适宜作种,能显著提高多花黄精药材产量和药用品质。 | 崔阔澍 Aftab Ahmed Aaqil Khan George Bawa 方清茂 李军 朱文涛 金福 时健祎 彭腾 吴茂力 肖特 杨文钰 | 2021 | 中国农学通报2021,37,19: | 2 |
| 4 | Bacterial cellulose nanocrystals exhibiting high thermal stability and their polymer uanocomposites 显示文摘 | GEORGE J RAMANA K V BAWA A S | 2011 | International Jo/lrnal of Biological Macromolecules2011,48,1: | 1 |
| 5 | Bacterial cellulose nanocrystals exhibiting high thermal stability and their poly- mer nanoeomposites 显示文摘 | George J Ramana K V Bawa A S | 2011 | Int J Biol Maeromol2011,48,1: | 1 |
| 6 | 显示文摘 | George J Ramana K V Bawa k S | 2011 | International Jour- nal of Biological Macromolecules2011,48,1: | 1 |
| 7 | 荫蔽处理对不同耐荫性大豆GmPIF4s编码基因表达的影响显示文摘光敏色素互作因子(PIFs)是光信号响应的关键负调控因子,其中PIF4作为该家族核心成员在响应外界光温变化,整合多种激素合成和信号转导中起着关键性作用。为了明确大豆GmPIF4s[phytochrome interaction factor 4s of Glycine max(L.)Merr.]的功能和编码基因对荫蔽诱导的表达响应,该研究以耐荫性大豆‘南豆25’(ND25)和不耐荫性大豆‘荣县冬豆’(RD)为材料,通过生物信息学和分子生物学等方法,比较分析了豆科植物PIF4s的生物信息学特点,并采用qRT-PCR方法分析大豆不同组织(根、茎、叶、茎尖分生组织)、全光照和12 h/12 h光周期下不同荫蔽时间诱导叶片GmPIF4s及其不同耐荫性大豆材料间GmPIF4s的表达特征,为培育高产、耐荫的大豆品种提供理论依据。结果表明:(1)在豆科植物中鉴定到53个同源PIF4s,其中大豆包含7个同源GmPIF4s,长度介于296~562氨基酸之间,分子量范围为41491.9~62228.39 Da,所有GmPIF4s均包含有bHLH结构域,无跨膜结构,为亲水性蛋白且定位于细胞核中;蛋白二级及三级结构预测显示,GmPIF4a、GmPIF4b与拟南芥AtPIF4结构最为相似。(2)qRT-PCR分析表明,GmPIF4s基因表达具有组织特异性;在耐荫性大豆品种ND25中,GmPIF4a、GmPIF4b、GmPIF4d相对表达量在根、叶、茎和茎尖分生组织中表达最高,除GmPIF4a、GmPIF4e、GmPIF4f外,其余GmPIF4s在地上部各组织中表达量均相对较高;不耐荫性大豆品种RD中,GmPIF4a、GmPIF4b、GmPIF4c、GmPIF4d在叶中相对表量较高,除GmPIF4f和GmPIF4g外,其余GmPIF4s在地上部各组织中表达量均相对较高。(3)全光照下荫蔽处理时间延长,大豆GmPIF4a、GmPIF4b、GmPIF4c、GmPIF4d基因均受荫蔽的强烈诱导,表达量显著上调;12 h/12 h光周期条件下无论是正常光还是荫蔽条件下,随着处理时间的延长,白天GmPIF4s表达量呈现下调趋势,夜晚却呈现上调表达趋势,推测GmPIF4s受昼夜节律调控。(4)荫蔽条件下GmPIF4s在不同耐荫性大豆的表达显示,随着荫蔽时间的延长,耐荫性大豆品种ND25与不耐荫性大豆品种RD的GmPIF4a、GmPIF4b、GmPIF4c、GmPIF4d均上调表达,但在不耐荫性大豆品种RD中表达量相对更高,并于荫蔽处理8 h后两材料的GmPIF4s表达差异达到极显著水平。 | 时健祎 冯铃洋 杨峰 陈吉玉 高静 George Bawa 杨文钰 | 2020 | 西北植物学报2020,40,9: | 1 |
| 8 | Preliminary Study into the Occurrence and Diversity of Arboreal Ants in Three Differently Aged Oil Palm Fields at Kusi显示文摘 | Selorm Ofori Stephen Owusu-Appiah Samuel Bawa George Yawson Kwame Afreh-Nuamah | 2012 | Journal of Agricultural Science and Technology(A)2012,2,6: | 0 |
| 9 | Research Progress of Polygonatum Germplasm Resources in China显示文摘Polygonatum is a traditional and precious Chinese medicine in China,as well as a traditional medicinal and food homologous material.It has a long history of cultivation and medicinal use.It not only has the effects of boosting qi and nourishing yin,nourishing the spleen and lungs,and tonifying the kidney,but also application value in food,health products,ornamental,cosmetics,etc.There are many varieties of Polygonatum resources all over China,which are easy to be mixed.There are three species of medicinal Polygonatum recorded in the 2015 edition of Pharmacopeia of the People s Republic of China.In order to sustainably use and fully develop Polygonatum medicinal resources,we conducted textual research on relevant data and research on the distribution of Polygonatum resources,germplasm identification,genetic diversity and breeding research,so as to provide a reference for the selection and breeding of polygonatum,artificial cultivation and the development and utilization of potential Polygonatum resources and for the solution of the contradiction between supply and demand in the Polygonatum market. | Kuoshu CUI Te XIAO Huiping LI Aaqil KHAN George BAWA Guopeng CHEN Teng PENG Bin LI Wenyu YANG Benchuan ZHENG Maoli WU Zhilai ZHAN | 2021 | Agricultural Biotechnology2021,10,5: | 0 |