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In order to catch up with the step of internationalization, to continually publicize the ARF-pioneered sustainable building formula GB + Symbiosis = SB and symbiotic concept, and to share with the world the achievements of sustainable building promotion in Taiwan, we formed a delegation of 27 members with TSSBE that were founded by the ARF to participate in the triennial World Sustainable Building Conference held at Melbourne (SB08Melbourne) after participating in the SB meeting in 1998, 2000, 2002, and 2005 and the iiSBE Prague Meeting in 2006. Members of the delegation led by Secretary General Huang Chin-ying, also the president of TSSBE, include ex-CPAMI Director Lin Chin-rong, ABRI Director Ho Ming-chin, Chiu Chiung-yu PhD, Archilife Environ-Control Research Center Supervisor Prof. Chiang Che-ming, Archilife Living Research Center Supervisor Prof. Su Ching-hua, and Assistant Cheng Wei-ning; research project principal investigators Mr. Li Yen-yi; Mr. Chou Po-cheng; Miss Tang Shu-chen; Mr. Wang Wen-an; Mr. Chen Tai-an; Mr. Lin Fang-ming; Mr. Chung Sung-chin; Mr. Lin De-en; Mr. Luo Yang-ching; Mr. Chung Cheng-hsin; Mr. Chen Nien-tsu; and members of TSSBE and participants of SB07 Taipei, including Mr. Lee Chuang-yuan, Miss Chang Kuei-feng, Mr. Chung Po-ren, Mr. Hsiao Ruey-lin, Mr. Cheng cheng-li, Mr. Liu Kuang-sheng, Miss Kuo Yi-chun, and Miss Chen Chiu-yu, the assistant.

为贯彻祐国际化的脚步、持续宣导首创之永续建筑公式GB+Symbiosis=SB与共化理念,并向全世界分享台湾推动永续建筑之成果,继组团参与1998、2000、2002、2005之永续建筑系列国际性会议及2006年iiSBE布拉格会议后,2008年由本会参与设立的社团法人台湾永续建筑环境促进会及祐组团共27人前往澳洲墨尔本参加三年一度的永续建筑国际会议SB08Melbourne,并由身兼社团法人台湾永续建筑环境促进会理事长的黄晋英秘书长担任团长,团员包括:前内政部营建署林钦荣署长、内政部建研所何明锦所长与邱琼玉博士、祐环控研究中心指导教授江哲铭教授、祐活研究中心指导教授苏庆华教授、助理郑玮宁小姐、奖助研究案主持人李彦颐先、周伯丞先、汤淑贞小姐、王文安先、陈泰安先、林芳铭先、钟松晋先、戴永禔先、林得恩先、罗阳青先、钟政勋先、陈念祖先及社团法人台湾永续建筑环境促进会号召之会员与曾参与SB07 Taipei国际会议之人士,如李创源先、张桂凤小姐、钟博任先、萧睿麟先、郑政利先、刘光盛先、郭怡君小姐及团长助理陈秋玉小姐等。

LFY-like genes play important role in plant development, when they were first isolated from mutants of Antirrhinum and Arabidopsis, they were thought to be "SAM-specific-determinating-genes", regulating the transition from inflorescence to flower meristem. However, further research revealed that LFY-like

LFY类基因在植物形态建成过程中具有重要作用,根据其突变体的特征,曾一度被认为是在花分组织和花序分组织中特异表达的"分组织特征决定基因",控制花序分组织向花分组织的转变。

Some new characters were first reported in this paper, these new characters were as follows: Sedum drymarioides was not annual but biennial plant; the shape and arrangement modes of the basal leaves and stem leaves were different; bulbil could be grown on the leaf axil; the anther was red.

首次修正了该物种是2年草本而非1年草本植物,基叶和茎叶的形状和排列方式均不相同,并首次发现茎上可腋芽,花药呈红色。

Petals [3 or]4 or 5[-8], fascicles each with many to few stamens with filaments almost free to completely united, or ± completely connate , with anthers 1, 2, 4 or many-celled, basifixed or variously united; fasciclodes 4 or 5, antisepalous and free or ± united or absent; pistillode present or absent.

花瓣 [3或者 ]4或5 [-8],每束簇具很多到少数花丝几乎离到完全合的雄蕊,或花丝多少完全合的,具花药1,2,4或很多,基着或各种地合;下位腺体4或者5,对萼和离或者多少合或无;退化雌蕊宿存或无。

Leaves alternate, distichous or spirally arranged, sessile or petiolate; leaf sheath prominent, open or closed; leaf blade simple, entire. Inflorescence usually of cincinni in panicles or solitary, sometimes shortened into heads, sometimes sessile with flowers fascicled, sometimes axillary and penetrating enveloping leaf sheath, rarely flowers solitary and terminal or axillary.

叶互,二列或者螺旋状排列,无柄或者有柄;叶鞘显著,开放或者闭合;单叶,全缘;花序通常为蝎尾状圆锥花序或者单花,有时缩短常为头状花序,有时无梗,花簇,有时腋,贯穿叶鞘,很少花单,顶或腋

It was found that the fungus 1403 resembles pathogenic F. verticillioides (teleomophy Gibberella moniliforme) in the production of false head or chains and abundant microconidia on the aerial mycelium, but different in the occasional formation of polyphialides with relatively long as well as short monophialides, in its typical coiled hyphae and mycelia fusion.

基于1403在形态学方面具有以下特征:产小型分孢子的分孢子梗较长,小型分孢子呈椭圆形,大型分孢子线形或略微弯曲,本文将它与有类似形态特征的镰刀菌进行了比较,发现1403与植物病原菌Fusarium verticillioides(有性态为Gibberella moniliforme)表面上很相似,气菌丝均可产大量假头状或链状的小型分孢子,但深入的研究却发现1403与F。

Express as a result that the study area gets close to hydrocarbon generation center, have high-quality coal measures hydrocarbon source rock along with big hydrocarbon generation intensity, so it has abundant gas source and the material foundation to form large scale natural gas reservoir; Evaporitic tidal flat facies of the Ordovician Majiagou Formation in this area is situated in the austral expanded range of the karstification zone, and is the optimum natural gas prospecting targets of the lower-Paleozoic; In the south of study area, there are well-developed delta deposition system sand bodies of Shanxi Formation and Xiashijezi Formation, hence this area becoming the most beneficial Neopaleozoic natural gas enriched region; In this area, the Paleozoic develop various concealed non-structured traps, the natural gas migration and accumulation process is very beneficial and both the cover and the conservancy condition are also very good.

结果表明:研究区紧邻上古烃中心,发育优质煤系烃源岩,烃潜力大,气源充足,具备形成大型天然气藏的物质基础;区内奥陶系马家沟组发育有蒸发潮坪相沉积,位于北部古潜台的向南延伸带上,是下古界天然气的有利勘探目标;南部山西组和下石盒子组发育三角洲沉积体系砂体,是有利的上古界天然气富集区;研究区古界发育各种隐蔽性非构造型圈闭,天然气运聚成藏过程非常有利,封盖和保存条件也很好。

The testis index, testis volumes were same as the annual changes of testis mass. The curves of annual variation were all unimodality.2 The spermatogenetic cycle of Myospalax cansus comprises seven stages with significant features: Stage I , from February to April, the testis were at the stage of spermatogonia proliferation. In this period, testis index and the number of spermatogonia began to rise. Other spermatogenic cells had not yet formed; Stage II to III, from March to April, primary spermatocyte meiosis period. The testis index was highest in this stage, and spermatogenic cells were in spermatocyte stage, the primary spermatocyte meiosis generated to secondary spermatocyte; Stage IV, from April to May, spermatocytes continued to split, germ cells appeared in seminiferous tubules; Stage V, in May, sperm formation, spermatids of seminiferous tubules were transformed to spermatozoa, a large number of sperms existed in the lumen; Stage VI, spermatozoa emission period, from May to June, testis index were a significant drop and mature spermatozoa excluded gradually; VII, the testicular activity ceased basically from July to September, November to January of the following year, the spermatogenic activity ceased completely. Therefore, Myospalax cansus are animals of seasonal reproduction, spermatogenesis cycle is discontinuous type.

睾丸系数、体积和重量的年周期变化规律一致,变化曲线呈现单峰型。2甘肃鼢鼠雄性殖腺的年周期活动由7个特征明显的时期构成:Ⅰ期,2~3月份,精原细胞增殖期,睾丸系数开始上升,精原细胞进行有丝分裂,其他精细胞尚未形成;3~4月份为Ⅱ~Ⅲ期,初级精母细胞成熟分裂期,睾丸系数达到最大,精细胞大多处于精母细胞阶段,初级精母细胞减数分裂成次级精母细胞;Ⅳ期,4~5月份精母细胞继续进行分裂,精细胞在精小管内出现;Ⅴ期,5月份,精子形成期,曲细精管中精细胞变态成精子,在管腔中存在大量的精子;Ⅵ期,精子排放期,5~6月份,睾丸系数显著下降,成熟精子从精小管上脱离,逐渐排除;Ⅶ期,精原细胞停滞期,7~9月份睾丸精活动基本停滞,11~翌年1月,精活动完全停止。

Reefs, reef-mounds and lime mud mounds are all carbonate buildups, and the reefs and banks are important targets for petroleum exploration The reefs, banks and mounds should be divided from each other not only in theory, but also in exploration practice, because of so many differences in sedimentary compositions, fabrics, environments, distribution in time and space, and the characteristics of petroleum geology If the original reef or bank itself was fine reservoir rocks, then it would become a better reservoir after the reservoirconstructive diagenesis The formation of a high quality carbonate reservoir is controlled by two factors: the sedimentary microfacies and the reservoirconstructive diagenesis The first is the basis for the formation of a high quality reservoir, and with the high energy reefbank facies as the best; the latter includes the cataclasis, the dolomitization and the karstification The dolomitization and karstification are the best for the formation of a high quality reservoir The karstification has the widest distribution, profoundest effect, and plays a vital role in the high quality reservoir forming The karst types are quite rich in the limestone reef or bank reservoir, including synsedimentary karst, penesedimentary karst, supergene karst and hydrothermal karst, and so does the dolomitization reef or bank reservoir The formation mechanism of synsedimentary karst and penesedimentary karst is related to the short time exposing and leaching of the cyclical highfrequency shallowupward sequence when the reefs or banks are forming The supergene karst is controlled by the exposing and leaching of tertiary cyclic sequence type I interface after the reefs or banks forming Thus, there developed a great deal of secondary corrosion pores, corrosion fractures and huge caves besides some original pores remained in the reef and bank reservoir Scarcely there are any original effective pores in reefmounds and lime mud mounds, especially in senkes among mounds, but secondary pores could be formed by karstification, and there would likely develop source rocks with high organic abundance

礁、礁丘、丘同属碳酸盐建隆,礁、滩是重要勘探目的层。但各自在沉积组分、组构、环境和时空分布,以及油气地质条件上迥然不同,因而无论从理论还是勘探实践上,都有必要将其各成体系划分开来。礁滩自身为好储集岩,当建设性成岩作用叠加后可形成好的储层。碳酸盐岩优质储层形成,主要受沉积微相与建设性成岩作用两大因素控制。前者是基础,并以高能的礁滩相带为最好;后者主要包括破裂、白云石化和溶蚀三大类,并以白云石化或溶蚀为最优,其中的溶蚀分布最广泛、影响最深刻而对优质储层形成起决定性作用。礁滩储层中的古岩溶类型最为丰富多彩,包括同期、准同期、表期和埋藏期热流体岩溶的所有类型,白云岩化礁滩体也不例外。其中,同准同期岩溶的形成机制与礁滩沉积时高频层序旋回向上变浅序列的短暂暴露淋溶有关,表期岩溶则受控于礁滩沉积后三级层序旋回Ⅰ型界面的暴露淋溶。由此,导致礁滩储层中除了可以也是唯一保存原孔隙外,还发育了次溶蚀孔洞缝和大型溶洞。礁丘、灰泥丘尤其是丘间洼地中发育高有机质丰度烃源岩;它们自身没有有效的原孔隙,但岩溶作用可以形成次孔隙。

In wetter habitats, hygromeso-and hygrophytes were more abundant and accounted for the majority of aboveground biomass, whereas xero-and mesoxerophytes became more important in dryer habitats; the mean δ〓C values of xerophytes was the highest, and those of meso-, hygromeso-and hygrophytes the lowest; From xerophytes to hygrophytes, their proline content markedly increased.

3依照植物的水分态类群,将锡林河流域主要植物种划分为六个植物功能群:旱植物、中旱植物、旱中植物、中植物、湿中植物和湿植物。

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从有历史以来,英国,在此地早期居住的是凯尔特人,已经被征服了三次。

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