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96H198春小麦群体发育动态及产量构成因素的研究
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作者 董建力 张曦燕 +1 位作者 王敬东 任贤 《宁夏农林科技》 2002年第4期18-19,共2页
通过对多穗型春小麦新品系 96H198群体发育动态及产量构成因素进行相关及通径分析 ,结果表明 :在播种密度为4 5万粒 6 6 7m2 的相同条件下 ,96H198单位面积分蘖率、分蘖成穗率分别为 85 .8%和 5 .4 % ,比对照分别高 4 1.7%和 2 .5 % ;... 通过对多穗型春小麦新品系 96H198群体发育动态及产量构成因素进行相关及通径分析 ,结果表明 :在播种密度为4 5万粒 6 6 7m2 的相同条件下 ,96H198单位面积分蘖率、分蘖成穗率分别为 85 .8%和 5 .4 % ,比对照分别高 4 1.7%和 2 .5 % ;在播种密度为 5 0万粒 6 6 7m2 的条件下 ,96H198单位面积分蘖率、分蘖成穗率分别为 15 .8%和 13.7%。产量与穗数呈极显著相关 ,与千粒重呈显著相关 ,与穗粒数相关不显著 ;千粒重对产量的贡献最大 ,其次是穗数。分析认为 ,96H198不仅以穗多取胜 ,而且它的穗数、穗粒数、千粒重三者间协调得很好。另外 ,它的植株矮 ,株型紧凑 ,叶片小等构成了一个特有的多穗高产框架结构 ,这在宁夏灌区近 30年小麦高产育种中很少。生产实践表明 ,多穗型品系 (96H198)只要配套相应的栽培技术 ,也能夺取高产。根据宁夏灌区的环境条件 。 展开更多
关键词 96H198 春小麦 群体发育动态 产量构成因素
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遮阴与氮肥对冬小麦群体发育动态及产量的影响 被引量:2
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作者 艾孜孜.居来提 崔月 +4 位作者 赵奇 张宏芝 樊哲儒 李剑峰 王重 《新疆农业科学》 CAS CSCD 北大核心 2017年第5期785-794,共10页
【目的】不同程度的遮阴条件下,研究氮肥及其互作对冬小麦群体发育动态及产量的影响,为南疆果树-小麦间作模式下小麦高产栽培技术及氮高效管理提供理论依据。【方法】采用人工模拟遮阴方法,设不遮阴(S0)、拔节期遮阴10%-抽穗期遮阴25%(... 【目的】不同程度的遮阴条件下,研究氮肥及其互作对冬小麦群体发育动态及产量的影响,为南疆果树-小麦间作模式下小麦高产栽培技术及氮高效管理提供理论依据。【方法】采用人工模拟遮阴方法,设不遮阴(S0)、拔节期遮阴10%-抽穗期遮阴25%(S1)、拔节期遮阴20%-抽穗期遮阴50%(S2)和拔节期遮阴30%-抽穗期遮阴75%(S3)四个遮阴水平,设整个生育期不施肥(F0)、拔节期(遮阴后)追施纯氮103.5 kg/hm^2(F1)、138 kg/hm^2(F2)和172.5 kg/hm^2(F3)四个施肥水平,研究不同遮阴、氮肥及其互作对小麦群体发育动态和产量的调控效应。【结果】遮阴强度与氮肥用量的增加均推迟了小麦的生育进程。遮阴对成穗数、分蘖成穗率有显著影响(P<0.05),对最高茎数、分蘖穗比重和主茎穗比重影响不显著。同一遮阴条件下,施肥比不施肥显著提高了成穗数、最高茎数、分蘖成穗率和分蘖穗比重(P<0.05);随着施氮量的增加穗粒数先增加后降低、收获穗数增加、千粒重下降。同一施肥条件下,随着遮阴强度的增加收获穗数、穗粒数和千粒重均显著下降,进而导致产量显著降低(P<0.05)。在不遮阴(S0)条件下,产量以F2处理较高;在遮阴(S1、S2、S3)条件下,施肥处理间差异不明显。【结论】遮阴和氮肥处理对产量的影响存在显著的互作效应;氮肥对产量表现为正效应,遮阴对产量表现为负效应,并且遮阴效应大于氮肥效应,是影响产量的主导因子。遮阴与氮肥互作对穗粒数、千粒重和产量有显著影响。在不施肥条件下,适度遮阴对小麦产量形成有利,随着遮阴强度的增加,氮肥的调控效应减弱。 展开更多
关键词 冬小麦 氮素 遮阴 群体发育动态 产量
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Evolution of discocephalid ciliates:Molecular,morphological and ontogenetic data support a sister group of discocephalids and pseudoamphisiellids (Protozoa,Ciliophora) with establishment of a new suborder Pseudoamphisiellina subord.n. 被引量:2
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作者 MIAO Miao SHAO Chen +1 位作者 CHEN XuMiao SONG WeiBo 《Science China(Life Sciences)》 SCIE CAS 2011年第7期634-641,共8页
Discocephalids and pseudoamphisiellids are possibly two of the most confused groups among hypotrichous/euplotid ciliates regarding their systematic position and phylogenetic relationships.The former were often regarde... Discocephalids and pseudoamphisiellids are possibly two of the most confused groups among hypotrichous/euplotid ciliates regarding their systematic position and phylogenetic relationships.The former were often regarded as related to euplotids while the latter,in the absence of molecular data,were mostly assigned to the urostylid-like hypotrichs.In the present work,the small subunit rRNA genes of several rarely observed discocephalid and pseudoamphisiellid genera were analyzed to obtain insights into the phylogenetic relationships of these highly ambiguous Spirotrichea.Four different tree reconstruction algorithms yielded nearly identical topologies,which indicated both groups belong to the same assemblage.This assemblage is clearly isolated as a deep-branching clade and invariably positioned between Euplotida and Hypotricha.The sister group relationship of the Pseudoamphisiellidae and Discocephalidae supports the previous suggestion that they might represent an ordinal taxon,the Discocephalida.Both morphological and morphogenetic features indicate that the pseudoamphisiellids should be placed in the order Discocephalida but as a sister group to other typical discocephalids.Thus we propose establishing a new suborder,Pseudoamphisiellina subord.n.The new taxon is diagnosed by the following characteristics:(i) two distantly separated midventral rows that are morphogenetically formed with an urostylid mode;(ii) absence of the "frontoterminal row",which is formed from the posterior-most frontoventral-transverse cirral anlage in all other typical urostylids;(iii) numerous caudal cirri that derive from each of the dorsal kinety anlagen;(iv) right marginal row that has a unique de novo origin;and (v) inhabiting periphytic communities.The validity of the suborder Pseudoamphisiellina is firmly supported by molecular data. 展开更多
关键词 CILIOPHORA Discocephalida Pseudoamphisiellina subord n. new suborder phylogeny SSU rRNA gene
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