利用内部转录间隔区和叶片形态评价印尼面包果的多样性和系统发育。

IF 3.6 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Dindin Hidayatul Mursyidin, Akbar Setiawan
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引用次数: 0

摘要

背景:面包果(Artocarpus spp.)是桑科植物的主要属,具有多种生态和经济效益,可作为食品原料、建筑材料、传统医药和天然杀虫剂等。然而,由于自然灾害和栖息地的退化,大多数特有的树已受到威胁。本研究的目的是利用内部转录间隔区(ITS)和叶片形态,确定印度尼西亚南婆罗洲地区特有的Artocarpus的遗传多样性和亲缘关系。结果:在形态学上,印尼南婆罗洲特有的Artocarpus具有不同的叶片形状,即窄倒卵形到宽椭圆形,从简单到深解剖。在ITS区域之后,该种质具有中等水平的核苷酸多样性(0.069)。系统发育分析表明,该类群分为4个主要分支,其中距离最近的是“Puyian”(Artocarpus rigidus)和“Binturung”(Artocarpus odoratissimus),差异系数为0.027,而距离最远的是“Kulur”(a . camansi)和“Tiwadak”(a . integer),差异系数为0.132。结论:印度尼西亚南婆罗洲一种特有的Artocarpus虽然具有中等水平的核苷酸多样性,但该种质也表现出独特的系统发育关系。因此,这一信息对于支持未来的鹿角树育种和保护计划具有迫切的意义,主要是为了使这一种质资源免遭威胁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Assessing diversity and phylogeny of Indonesian breadfruit (Artocarpus spp.) using internal transcribed spacer (ITS) region and leaf morphology.

Assessing diversity and phylogeny of Indonesian breadfruit (Artocarpus spp.) using internal transcribed spacer (ITS) region and leaf morphology.

Assessing diversity and phylogeny of Indonesian breadfruit (Artocarpus spp.) using internal transcribed spacer (ITS) region and leaf morphology.

Assessing diversity and phylogeny of Indonesian breadfruit (Artocarpus spp.) using internal transcribed spacer (ITS) region and leaf morphology.

Background: Breadfruit (Artocarpus spp.) is the main genus of Moraceae with multipurpose benefits, both ecologically and economically important, e.g., food ingredients, building materials, traditional medicine, and natural insecticides. However, most endemic Artocarpus have been threatened due to natural disasters and habitat degradation. The objective of our study was to determine the genetic diversity and relationships of endemic Artocarpus from South Borneo, Indonesia, using an internal transcribed spacer (ITS) region and leaf morphology.

Results: Morphologically, endemic Artocarpus endemic to South Borneo, Indonesia, has a different leaf shape, i.e., narrow-obovate to broad-elliptic, from simple to deeply dissected. Following the ITS region, this germplasm has a moderate level of nucleotide diversity (0.069). The phylogenetic analysis revealed Artocarpus into four (4) main clades, where the nearest is shown by the 'Puyian' (Artocarpus rigidus) and 'Binturung' (Artocarpus odoratissimus) at a coefficient divergence of 0.027, whereas the furthest by 'Kulur' (A. camansi) and 'Tiwadak' (A. integer) at a coefficient of 0.132.

Conclusion: In brief, although an endemic Artocarpus of South Borneo, Indonesia, has a moderate level of nucleotide diversity, this germplasm also shows a unique phylogenetic relationship. Thus, this information is urgent in supporting the future Artocarpus breeding and preservation programs, mainly to save this germplasm from being threatened.

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