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首页> 外文期刊>Crop & Pasture Science >Distribution, habitat, morphological diversity and genetic interrelations of native Vigna in the Pilbara, Western Australia
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Distribution, habitat, morphological diversity and genetic interrelations of native Vigna in the Pilbara, Western Australia

机译:西澳大利亚西澳洲天然豇豆的分布,栖息地,形态多样性和遗传相互关系

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摘要

A 2-week road trip was made through the Pilbara region to collect seed of native Vigna species. Thirty-two new accessions were collected, all of which were within what can be broadly described as the V. lanceolata Benth. complex. All 32 accessions were amphicarpic, rhizomatous, trailing or vining perennials. The largest and most widely distributed group of 21 accessions belonged to the Silverleaf morphotype and a further nine accessions belonged to the Central morphotype. Two accessions from the Karratha region were of a recently described diminutive species, V. triodiophila. The Silverleaf accessions were all collected from grassy woodlands on river levees and alluvial floodplains. The Central accessions were collected from a more diverse range of habitats, albeit again mostly in wetter or 'run-on' parts of the landscape. Measurements of selected traits on a subset of accessions grown for seed increase in Townsville indicated that the Pilbara Silverleaf and Central accessions were comparable with accessions of these morphotypes from elsewhere in northern Australia. Healthy, viable F1 hybrids were readily obtained from crosses between accessions from all three Vigna groups collected from the Pilbara, indicating that all belong to same primary gene pool. This includes V. triodiophila, notwithstanding its taxonomy. Healthy, viable and fertile F1 hybrids were also obtained between the Pilbara accessions of both the Silverleaf and Central morphotypes and respective accessions of these morphotypes from elsewhere in northern Australia. The F1 hybrids between V. triodiophila and both the Silverleaf and the Central accessions exhibited near-normal plant phenotype in terms of the size of their vegetative and reproductive structures, indicating that the diminutive size of V. triodiophila is a recessive trait. The most plausible explanation is that V. triodiophila is a dwarf variant of the Central morphotype, which it most closely resembles apart from its size. The fact that the F1 hybrids between V. triodiophila and two Pilbara Central accessions were fully self-fertile supports that conclusion, while the recovery of dwarf segregants from small numbers of F2 and backcross progeny from one of the crosses indicates that the dwarf trait may involve just a single gene. These 32 new accessions extend the range of climatic and edaphic environments, especially at the harsher end, from which accessions of V. lanceolata have been collected and seeds conserved.
机译:通过Pilbara地区制作了2周的公路旅行,以收集原生豇豆种的种子。收集了三十两条新的加入,所有这些都在广泛地描述为V. Lanceolata Benth中。复杂的。所有32种辅助都是Amphicarpic,根茎,尾随或血管多年生植物。最大和最广泛分布的21种附加组属于SilverLeaf Mor晶型,另一个九个含义属于Morphotype中央。来自Karratha Region的两种加入是最近描述的小型物种,V.TriodIophila。 Silverleaf Alless均从河堤和冲积洪泛平原的草地林地收集。中央进入从更多样化的栖息地收集,尽管在潮湿或“跑步”部分的景观中。针对城镇种子增长种植的所选性状的测量表明,Pilbara Silverleaf和中央摘录与来自澳大利亚北部其他地方的这些Mor型号的含量相当。健康的,可行的F1杂交物易于从从皮巴氏收集的所有三个Vigna基团之间的剖视之间的交叉获得,表明所有属于同一基因库。这包括V. TriodIophila,尽管有分类。在Silverleaf和中央Morothepes的Pilbara access and澳大利亚其他地方的其他地方的各种情况下,也可以在Silverleaf和中央Morothepes的各自涂抹之间获得健康,可行和肥沃的F1杂种。 V.Triodiophila和Silverleaf之间的F1杂种和中央释放物在其植物和生殖结构的大小方面表现出近似正常的植物表型,表明V.Tiodiophila的小尺寸是隐性性状。最合理的解释是V.Tridiophila是Mor晶型中央的矮种变体,它与其大小相比最为类似。 V. Triodiophila和两种皮尔巴拉中央加工之间的F1杂种是完全自我肥沃的结论,而结论的结论,而从少量F2和来自其中一个十字架的回复的矮种分离的回收表明矮化性状可能涉及只是一个基因。这32个新的加入延长了气候和仿护环境的范围,尤其是在Harsher End上,从中收集V.兰克塔的牧场和种子保守。

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