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Sysmex Partec 倍性分析儀在植物種子研究上的應(yīng)用---木薯原生質(zhì)體電融合植株再生

Sysmex Partec 倍性分析儀在植物種子研究上的應(yīng)用---木薯原生質(zhì)體電融合植株再生

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標(biāo)題:Sysmex Partec 倍性分析儀在植物種子研究上的應(yīng)用---木薯原生質(zhì)體電融合植株再生

 

Abstract

Protoplast electrofusion between callus protoplasts of cultivar TMS60444 and mesophyll protoplasts of cultivar SC8 was performed as an approach for the genetic improvement of cassava. The fusion products were subsequently cultured in protoplast culture medium (TM2G) with gradual dilution for approximately 1–2 months. Then the protoplast-derived compact calli were transferred to suspension culture medium (SH) for suspension culture. The cultured products developed successively into embryos, mature embryos, and shoots on somatic embryo emerging medium (MSN), embryo maturation medium (CMM), and shoot elongation medium (CEM), respectively. And the shoots were then rooted on Murashige and Skoog (1962) medium (MS). Sixty-six cell lines were obtained and 12 of them developed into plantlets. Based on assessment of ploidy level and chromosome counting, four of these plantlets were tetraploid and the remaining eight were diploid. Based on assessment of ploidy level and simple sequence repeat (SSR) analysis, nine tetraploid cell lines, one diploid variant plant line and nine variant cell lines were obtained. The diploid variant plant line and the nine variant cell lines all showed partial loss of genetic material compared to that of the parent TMS60444, based on SSR patterns. These results showed that some new germplasm of cassava were created. In this study, a protocol for protoplast electrofusion was developed and validated. Another important conclusion from this work is the confirmation of a viable protocol for the regeneration of plants from cassava protoplasts. Going forward, we hope to provide technical guidance for cassava tissue culture, and

also provide some useful inspiration and reference for further genetic improvement of cassava.

 

摘要:

TMS60444品種的愈傷組織原生質(zhì)體與SC8品種的葉肉原生質(zhì)體進(jìn)行原生質(zhì)體電融合,作為木薯遺傳改良的一種方法。隨后將融合產(chǎn)物在原生質(zhì)體培養(yǎng)基(TM2G)中逐漸稀釋培養(yǎng)約1-2個(gè)月。然后將原生質(zhì)體衍生的緊密愈傷組織轉(zhuǎn)移到懸浮培養(yǎng)基(SH)中進(jìn)行懸浮培養(yǎng)。培養(yǎng)產(chǎn)物分別在體細(xì)胞胚胎發(fā)生培養(yǎng)基(MSN)、胚胎成熟培養(yǎng)基(CMM)和芽伸長(zhǎng)培養(yǎng)基(CEM)上發(fā)育成胚胎、成熟胚胎和芽。然后將芽在MurashigeSkoog1962)培養(yǎng)基(MS)上生根。獲得了66個(gè)細(xì)胞系,其中12個(gè)發(fā)育成小植株。根據(jù)倍性水平和染色體計(jì)數(shù)的評(píng)估,其中4株為四倍體,其余8株為二倍體。基于倍性水平評(píng)估和簡(jiǎn)單序列重復(fù)(SSR)分析,獲得了9個(gè)四倍體細(xì)胞系、1個(gè)二倍體變異植株系和9個(gè)變異細(xì)胞系。基于SSR圖譜,與親本TMS60444相比,二倍體變異植物系和九個(gè)變異細(xì)胞系都顯示出部分遺傳物質(zhì)損失。這些結(jié)果表明,木薯創(chuàng)造了一些新的種質(zhì)資源。在這項(xiàng)研究中,開發(fā)并驗(yàn)證了原生質(zhì)體電融合的方案。這項(xiàng)工作的另一個(gè)重要結(jié)論是確認(rèn)了木薯原生質(zhì)體再生植物的可行方案。展望未來,我們希望為木薯組織培養(yǎng)提供技術(shù)指導(dǎo),也為木薯的進(jìn)一步遺傳改良提供一些有益的啟示和參考。

 

關(guān)鍵詞:

Sysmex Partec 倍性分析儀多倍體誘導(dǎo)儀CyFlow Ploidy Analyser 流式細(xì)胞儀,組織培養(yǎng)、染色體計(jì)數(shù)、DNA丟失、ploidy analysis 倍性分析


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