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Primary Study on Floral Syndrome and Breeding System of Limonium chrysocomum(PDF)

《北方园艺》[ISSN:1001-0009/CN:23-1247/S]

Issue:
2014年21期
Page:
105-110
Research Field:
Publishing date:

Info

Title:
Primary Study on Floral Syndrome and Breeding System of Limonium chrysocomum
Author(s):
XU Xiao-yuanZHOU Ling-ling
College of Life Science,Shihezi University,Shihezi,Xinjiang 832000
Keywords:
Limonium chrysocomumfloral syndromebreeding system
PACS:
Q 945.4
DOI:
-
Abstract:
Taking wild Limonium chrysocomum as materials,Pollen/Ovule ratio(P/O),Outcrossing Index(OCI),emasculation and germination experiment were observed to address its flowering phenologies,breeding system and seed feature primarily.The results showed that the flower of this plant blooms from May to June and could last different time at different levels;the development of single flower could be divided into 4 stages and both of the pistil and stamen became mature at the second stage,existing the phenomenon of herkogamy;the overlap peak period of pollen viability and stigma receptivity was occurred at 15:00—17:00;the value of P/O,OCI and pollination experiments display that the breeding system of L.chrysocomum was facultative xenogamy,and self-compatible,however sometimes need pollinators;seed appendages inhibit the process of germinating,especially corolla,and it had a higher germinating rate after being storaged.L.chrysocomum was born in barren land,which was drought and changeable.It had evolved a special mode to product a certain number offsprings to avoid the declining of individuals in populations.

References:

[1]Harper J L.Population biology of plant[M].London:Academic Press,1997:216-230.
[2]张大勇.植物生活史进化与繁殖生态学[M].北京:科学出版社,2004.
[3]白伟宁,张大勇.雌雄同体植物的性别干扰及其进化意义[J].植物生态学报,2005(29):672-679.
[4]Wyatt R.Pollinator-plant interactions and the evolution of breeding systems.Read,L.ed.Pollination Biology[M].Orlando:Academic Press,1983:51-95.
[5]田福平,时永杰,陈子萱.我国补血草属野生植物资源的分布[J].草业与畜牧,2010(3):49-51.
[6]潘晓玲,买买提?伊明,高淑兰,等.新疆野生花卉资源植物调查及引种栽培的初步研究[J].干旱区资源与环境,1997,11(3):90-93.
[7]邓旺华,王雁.补血草属植物在城市绿化中的应用[J].资源利用,2006,4(2):58-60.
[8]魏友霞,王军宪,姚鸿萍.补血草属植物化学成分和药理作用研究进展[J].西北药学杂志,2007,22(4):222-224. [9]李盼盼,倪士峰,巩江,等.补血草属植物药学研究概况[J].安徽农业科学,2010,38(13):6714-6715.
[10]刘克彪.优良盐生牧草-大叶补血草的引种[J].草业科学,1993,10(2):31-33.
[11]李秀华.野生花卉二色补血草引种利用研究[J].中国园林,2003,19(10):78-80.
[12]刘小利.野生花卉星毛补血草的引种栽培试验研究[J].北方园艺,2007(2):113-114.
[13]徐美隆,李永华,吴建华.四种补血草组织培养的比较研究[J].北方园艺,2010(2):157-160.
[14]倪细炉,麻力,岳延峰,等.黄花补血草营养器官结构解剖学研究[J].中国农学通报,2012,28(22):71-75.
[15]师东,张爱勤.耳叶补血草花粉萌发及花粉管生长状况的荧光显微观察[J].新疆农业科学,2011,48(8):1549-1553.
[16]周玲玲,刘萍,陈芳.温度、盐分和干旱胁迫对簇枝补血草种子萌发的影响[J].种子,2006,25(10):48-50.
[17]黄云兰,安秀峰,师东,等.新疆荒漠植物耳叶补血草的爆发式开花式样与传粉模式[J].生物多样性,2012,20(3):368-375.
[18]Dafni A.Pollination ecology[M].New York:Oxfod University Press,1992:59-89.
[19]Williamson G B,Richardson D.Bioassays for allelopathy:measuring treatment responses with independent controls[J].Cheml Ecol,1988,14(1):181-187.
[20]Cruden R W.Pollen-ovule ratios:a conservative indicator of breeding systems in flowering plants[J].Evolution,1997,31:32-46.
[21]刘彤,祝建波,陈芳,等.新疆花卉的资源优势与开发前景(综述)[J].石河子大学学报,2000,4(1):82-85.
[22]Harder L D,Barrett S C H.Mating cost of large floral displays in hermaphrodite plants[J].Nature,1995,373:512-515.
[23]Morgan E R,Burge G K,Seelye J F.Limonium breeding:New options for a well know genus[J].Acta Hort,2001,552:39-42.
[24]黄双全,郭友好.传粉生物学的研究进展[J].科学通报,2000,45(3):223-237.
[25]Huang S Q.Studies on plant-pollinator interaction and its significances[J].Biodiversity Science,2007(15):569-575.

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Last Update: 2014-12-01