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1Distribution of plant species and species-soil relationship in the east central Gurbantunggut Desert, China显示文摘在在东方的种类和土壤因素之间的植物种类和关系的分发 Gurbantunggut 沙漠的中央部分被学习提供更多的卓见进植物群并且越过沙漠的各种各样的部分在植被决定差别。双向簇分析证明在区域的植被能被划分成三个组,第一个组被灌木种类, Ephedra przewalskii 和草种类统治,主要在扁平的根据和轻轻的斜坡的区域的 Carex physodes;第二个组被 C 统治。physodes, Artemisia songorica 和 A。主要沙沙丘和第三个组的斜坡上的 xerophytica 被灌木种类统治,主要沙沙丘的顶上的 Haloxylon persicum。在植物密度在之间没有差别组织 1 和 2,但是在组 3 有重要减少。不到植被组 3 的土壤水比在其它,二个组根本玷污深度的低得多。EC,有机物,全部的 P 和可溶的 Na, Ca 和 Mg 与土壤水很同样变化了。正规通讯分析(CCA ) 令人满意地在区域估计了种类土壤关系。植物种类的分发强烈与水内容,有机物, EC 和营养素的土壤因素被相关。在三把 CCA 斧子解释的种类出现的变化是大约 70% ,显示一些解释地点变量可以在我们的学习参数外面存在。土壤质地被建议在未来研究被包括改进 CCA 的解释。AN Ping LI Xiangjun ZHENG Yuanrun ENEJI A. Egrinya QIMAN Yunus ZHENG Mingqing INANAGA Shinobu 2015Journal of Geographical Sciences2015,25,1:11
2Water and Nutrient Use Efficiency in Diploid, Tetraploid and Hexaploid Wheats显示文摘三双(Triticum boeotlcum, AA;Aegilops speltoides, BB 和 Ae.tauschii, DD ) ,二四倍体(T。dicoccoides, AABB 和 T。dicoccon, AABB ) 并且一六倍体(T.vulgare, AABBDD ) 小麦的变化,它在小麦的进化很重要在这研究被选择。盆栽试验在不同的水和滋养的条件(i)下面在小麦上被执行在 blomass ,收益,水使用效率( WUE ),和营养素理解差别( N , P 和 K )在在小麦的进化的 ploidies 之中的使用效率(举起和利用效率);(i i ) 使用效率在水和营养素上澄清水和滋养的条件的效果;并且(病) 在小麦的进化使用效率估计水和营养素的关系。我们的结果然后在小麦的进化期间从双 totetraploid 显示出那到六倍体,两根 blomass 并且未葬生物资源开始增加了然后减少。为蒸发的水消费显著地减少了,,与生长时期的衰落相关谷物产量,产量指数, WUE, N, P 和 K 举起效率,和 N, P andKutilization 效率显著地增加了。谷物产量,产量指数和 WUE 在一样的顺序减少了:T.vulgare > T。dicoccon > T。dicoccoides > Ae。tauschii > Ae。speltoides > T.boeoticum。水强调显著地减少的根生物资源,未葬为由 47-52% 的蒸发的生物资源,收益,和水消费,而是显著地增加的 WUE。增加滋养的供应增加了小麦未葬生物资源,谷物收益,产量指数,为在不同的水层次下面的蒸发和 WUE 的水消费,而是在干旱条件下面的减少的根生物资源。通常,水应力和低滋养的供应导致了小麦的更低的 nutrientuptakeefficiency。然而,水和滋养的申请没在 nutrientutilizationefficiency 上有重要效果,建议小麦营养素利用效率被遗传型主要控制。比作另外的二双小麦, Ae。squarrosa (DD ) 有重要更高的 WUEand 滋养的利用效率,显示 D 染色体可以带控制水和营养素的高有效的利用的基因。重要关系在 WUE andN, P 和 K 利用效率之间被发现。Ming-Li Huang Xi-Ping Deng Yu-Zong Zhao Sheng-Lu Zhou Shinobu Inanaga Satoshi Yamada Kiyoshi Tanaka 2007Journal of Integrative Plant Biology2007,49,5:8
3Survival of pathogenic bacteria in compost with special reference to Escherichia coli显示文摘Application of compost in agricultural practice could potentially cause contamination of foodstuffs with pathogenic bacteria such as Escherichia coli O157: H7 ( E. Coli O157). We investigated pathogenic bacteria in compost collected from the compost facilities, and evaluated the survival of E. coli K12 and O157 in laboratory experiments. Out of 19 compost product samples, coliform bacteria and salmonella were detected in 7 and 3 samples respectively. The number of coliform bacteria was 1.8 × 102 to 2.5 × 106 CFU/g dw and that of salmonella was 4.2 × 101 to 6.0 × 103 CFU/g dw. Moreover, coliform bacteria, fecal coliform, E. coli and salmonella were detected during composting at 54℃ to 67℃. The results indicated that moisture content was a very important factor to the heat sensitivity of pathogenic bacteria in compost, E. coli in compost of high moisture content was more sensitive than that in compost of low moisture content, cells harvested in logarithmic phase was more sensitive than these in stationary phase, and E. coli K12 was more sensitive than E. coli O157. Based on the D values, the lethal time of E. coli K12 and O157 from 108 to 100 CFU/g dw were 16.3 and 28.8 min, respectively, at 60℃ in compost with 40% moisture content. However, some E. coli cells survived in composting process at 54℃ to 67℃. Water potential (low moisture content) and physiological aspects of bacteria (stationary phase) could explain only in part of the prolonged survival of E. coli in compost, and there should be some other factors that are conducive to bacterial survival in compost.GONG Chun-ming Koichi Inoue Shunji Inanaga Takashi Someya 2005Journal of Environmental Sciences2005,17,5:7
4不同水肥条件下二倍体、四倍体和六倍体小麦养分吸收、利用效率的研究(英文)显示文摘试验选用了3个二倍体(Triticum boeoticum,AA;Aegilops speltoides,BB和Ae.tauschii,DD)、2个四倍体(T.dicoccoides,AABB和T.dicoccum,AABB)和1个六倍体(T.aestivum,AABBDD)的小麦进化材料,在不同水肥条件下研究小麦进化中养分效率的差异及水肥条件对小麦养分利用的影响。试验表明,随小麦的进化,养分(N、P和K)吸收量和吸收效率显著增加,但是籽粒养分含量却减少。水分胁迫和低肥处理减少小麦籽粒养分含量、(整株)养分吸收量和吸收效率。小麦的生物量养分利用效率和产量养分利用效率都存在显著的种间差异,而且后者的差异更大。随小麦的进化,生物量养分利用效率和产量养分利用效率均显著增加。6个小麦进化材料的生物量氮、磷利用效率(NUTEb和PUTEb)的大小顺序相同,均为:Ae.speltoides>T.dicoccum、T.dicoccoides、Ae.tauschii、T.boeoticum>T.aestivum,而生物量钾利用效率(KUTEb)是T.aestivum、Ae.tauschii、Ae.speltoides>T.dicoccoides>T.dicoccum>T.boeoticum。Ae.tauschii的产量养分利用效率显著高于其他两个二倍体小麦(AA和BB),表明D组染色体上存在有控制高效利用养分的基因。产量氮、磷、钾利用效率(NUTEg、PUTEg、KUTEg)和收获指数(HI)的大小排序均为:T.aestivum>T.dicoccum、T.dicoccoides、Ae.tauschii>T.boeoticum、Ae.speltoides。水分与养分对生物量养分利用效率有显著影响,而对产量养分利用效率的作用却不显著,说明小麦产量养分利用效率是较为稳定的特性,主要由基因型决定。水分胁迫有利于提高小麦生物量养分利用效率,但是增加施肥量却对其有负作用。黄明丽 邓西平 周生路 赵玉宗 Shinobu INANAGA 2007作物学报2007,33,5:4
5Neurotrophic function of conditioned medium from human amniotic epithelial cells 显示文摘Uchida S Inanaga Y Kobayashi K 2000Neurosci Res2000,62,4:1
6Optimizing irrigation schedul- ing for winter wheat in the North China Plain显示文摘Li J Inanaga S Ei Z H 2005Agricultural Water Management2005,76,1:1
7Neurotrophic function of conditioned medium from human Amniotic Epithelial Cells显示文摘Uchida S Inanaga Y Kobayashi M 0,,04:1
8A Facile Dimerization of Conjugated Acid Derivatives with Samarium Diiodide显示文摘Inanaga J Handa Y Tabuchi T 1991Tetrahedron Lett1991,32,45:1
9Application of silicon enhanced drought tolerance in Sorghum bicolor 显示文摘HATI'ORI T INANAGA S ARAKI H 2005Physiol Plant2005,123,:1
10Telmisartan downregulates angiotensin Ⅱ type 1 through activation of peroxisome proliferator-activated receptor gamma显示文摘Imayama I Ichiki T Inanaga K 2006Cardiovasc Res2006,72,2:1
11Resveratrol attenuates angiotensin II-induced interleukin-6 expression and perivascular fibrosis显示文摘Inanaga K Ichiki T Matsuura H 2009Hypertens Res2009,32,6:1
12Neu- rotrophic function of conditioned medium from human amniotic epithelial cells显示文摘UCHIDA S INANAGA Y KOBAYASHI M 2000J Neurosci Res2000,62,4:1
13Neurotrophic function of conditioned medium from human anmiotic epithelial cells 显示文摘Uchida S Inanaga Y Kobayashi M 2000Neurosci Res2000,62,:1
14A rapid esterification by means of mixed anhydride and its application to Largr-ring lactonization显示文摘Yasuhiro Kawanami Yuichiro Dainobu Junji Inanaga 1981Bull Chem Soc Jpn1981,54,:1
15Neurotrophic function of conditioned medium from human amniotic epithelial cells显示文摘Uchida S Inanaga Y Kobayashi M 2000J Neurosci Res2000,62,4:1
16Neurotrophic function of conditioned medium from human amniotic epithelial cells显示文摘Uchida S Inanaga Y Kobayashi M 2000J Neurosci Res2000,62,4:1
17Optimizing irrigation scheduling for winter wheat in the North China Plain显示文摘Li J M Inanaga S Li Z H 2005Agricultur- al Water Management2005,76,1:1
18Salt tolerance in two soybean cultivars 显示文摘Ping An Shinobu Inanaga 2002Journal of Plant Nutrition2002,25,3:1
19Molecular cloning and functional expression of eDNA encoding the cysteine pro- teinase inhibitor Sca from sunflower seeds显示文摘KOUZUMA Y TSUKIGATA K INANAGA H 2001Bioscience Biotechnology and Biochemistry2001,65,4:1
20Application of silicon enhanced drought tolerance in Sorghum bicolor显示文摘Hattori T Inanaga S Araki H 2005Physiologia Plantarum2005,123,:1
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