Особенности трансгенных растений салата с геном интерферона-α2b, полученных путем Agrobacterium rhizogenes-опосредованной трансформации

С помощью метода Agrobacterium rhizogenes-опосредованной трансформации получена культура «бородатых» корней салата Lactuca sativa, из которой регенерированы трансгенные растения с геном интерферона α2b человека. По результатам ПЦР и ОТ-ПЦР анализов полученные растения имели транскрибируемый целевой...

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Datum:2012
Hauptverfasser: Матвеева, Н.А., Шаховский, А.М., Кучук, Н.В.
Format: Artikel
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Veröffentlicht: Інститут клітинної біології та генетичної інженерії НАН України 2012
Schriftenreihe:Цитология и генетика
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Zitieren:Особенности трансгенных растений салата с геном интерферона-α2b, полученных путем Agrobacterium rhizogenes-опосредованной трансформации / Н.А. Матвеева, А.М. Шаховский, Н.В. Кучук // Цитология и генетика. — 2012. — Т. 46, № 3. — С. 27-32. — Бібліогр.: 37 назв. — рос.

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Digital Library of Periodicals of National Academy of Sciences of Ukraine
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spelling nasplib_isofts_kiev_ua-123456789-1264682025-02-09T13:41:31Z Особенности трансгенных растений салата с геном интерферона-α2b, полученных путем Agrobacterium rhizogenes-опосредованной трансформации Особливості трансгенних рослин салату з геном інтерферону- α2b, отриманих шляхом Agrobacterium rhizogenesопосередкованої трансформації Features of lettuce transgenic plants with ifn-α2b gene regenerated after Agrobacterium rhizogenesmediated transformation Матвеева, Н.А. Шаховский, А.М. Кучук, Н.В. Оригинальные работы С помощью метода Agrobacterium rhizogenes-опосредованной трансформации получена культура «бородатых» корней салата Lactuca sativa, из которой регенерированы трансгенные растения с геном интерферона α2b человека. По результатам ПЦР и ОТ-ПЦР анализов полученные растения имели транскрибируемый целевой ген ifn-α2b и отличались от растений дикого типа удлиненными междоузлиями, ранним формированием цветоноса и пурпурной окраской листьев при культивировании в условиях искусственного освещения. За допомогою Agrobacterium rhizogenes-опосередкованої трансформації отримано культуру «бородатих» коренів салату Lactuca sativa, з яких регенеровано трансгенні рослини із геном інтерферону-α2b людини. За результатами ПЛР та зт-ПЛР аналізів отримані рослини мали цільовий ген ifn-α2b, що транскрибувався і відрізнялися від рослин дикого типу подовженими міжвузлями, раннім формуванням квітконосу та пурпурним забарвленням листків при культивуванні в умовах штучного освітлення. «Hairy» roots of lettuce Lactuca sativa and regenerated plants with interferon-α2b gene had been obtained via Agrobacterium rhizogenes-mediated transformation. According to the results of PCR and rt-PCR analyses the studied plants had ifn-α2b gene. The regenerated plants differed from the plants of wild type by elongated internodes, early flower-bearing stem formation and purple coloration of leaves in artificial illumination conditions. 2012 Article Особенности трансгенных растений салата с геном интерферона-α2b, полученных путем Agrobacterium rhizogenes-опосредованной трансформации / Н.А. Матвеева, А.М. Шаховский, Н.В. Кучук // Цитология и генетика. — 2012. — Т. 46, № 3. — С. 27-32. — Бібліогр.: 37 назв. — рос. 0564-3783 DOI: 10.3103/S0095452712030073 https://nasplib.isofts.kiev.ua/handle/123456789/126468 575.222.7:581.1 ru Цитология и генетика application/pdf Інститут клітинної біології та генетичної інженерії НАН України
institution Digital Library of Periodicals of National Academy of Sciences of Ukraine
collection DSpace DC
language Russian
topic Оригинальные работы
Оригинальные работы
spellingShingle Оригинальные работы
Оригинальные работы
Матвеева, Н.А.
Шаховский, А.М.
Кучук, Н.В.
Особенности трансгенных растений салата с геном интерферона-α2b, полученных путем Agrobacterium rhizogenes-опосредованной трансформации
Цитология и генетика
description С помощью метода Agrobacterium rhizogenes-опосредованной трансформации получена культура «бородатых» корней салата Lactuca sativa, из которой регенерированы трансгенные растения с геном интерферона α2b человека. По результатам ПЦР и ОТ-ПЦР анализов полученные растения имели транскрибируемый целевой ген ifn-α2b и отличались от растений дикого типа удлиненными междоузлиями, ранним формированием цветоноса и пурпурной окраской листьев при культивировании в условиях искусственного освещения.
format Article
author Матвеева, Н.А.
Шаховский, А.М.
Кучук, Н.В.
author_facet Матвеева, Н.А.
Шаховский, А.М.
Кучук, Н.В.
author_sort Матвеева, Н.А.
title Особенности трансгенных растений салата с геном интерферона-α2b, полученных путем Agrobacterium rhizogenes-опосредованной трансформации
title_short Особенности трансгенных растений салата с геном интерферона-α2b, полученных путем Agrobacterium rhizogenes-опосредованной трансформации
title_full Особенности трансгенных растений салата с геном интерферона-α2b, полученных путем Agrobacterium rhizogenes-опосредованной трансформации
title_fullStr Особенности трансгенных растений салата с геном интерферона-α2b, полученных путем Agrobacterium rhizogenes-опосредованной трансформации
title_full_unstemmed Особенности трансгенных растений салата с геном интерферона-α2b, полученных путем Agrobacterium rhizogenes-опосредованной трансформации
title_sort особенности трансгенных растений салата с геном интерферона-α2b, полученных путем agrobacterium rhizogenes-опосредованной трансформации
publisher Інститут клітинної біології та генетичної інженерії НАН України
publishDate 2012
topic_facet Оригинальные работы
url https://nasplib.isofts.kiev.ua/handle/123456789/126468
citation_txt Особенности трансгенных растений салата с геном интерферона-α2b, полученных путем Agrobacterium rhizogenes-опосредованной трансформации / Н.А. Матвеева, А.М. Шаховский, Н.В. Кучук // Цитология и генетика. — 2012. — Т. 46, № 3. — С. 27-32. — Бібліогр.: 37 назв. — рос.
series Цитология и генетика
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fulltext 27ISSN 0564–3783. Öèòîëîãèÿ è ãåíåòèêà. 2012. ¹ 3 © Í.À. ÌÀÒÂÅÅÂÀ, À.Ì. ØÀÕÎÂÑÊÈÉ, Í.Â. ÊÓ×ÓÊ, 2012 УДК 575.222.7:581.1 Н.А. МАТВЕЕВА, А.М. ШАХОВСКИЙ, Н.В. КУЧУК Институт клеточной биологии и генетической инженерии НАН Украины, Киев E-mail: joyna56@gmail.com ОСОБЕННОСТИ ТРАНСГЕННЫХ РАСТЕНИЙ САЛАТА С ГЕНОМ ИНТЕРФЕРОНА- 2b, ПОЛУЧЕННЫХ ПУТЕМ AGROBACTERIUM RHIZOGENES-ОПОСРЕДОВАННОЙ ТРАНСФОРМАЦИИ Ñ ïîìîùüþ ìåòîäà Agrobacterium rhizogenes-îïîñ- ðåäîâàííîé òðàíñôîðìàöèè ïîëó÷åíà êóëüòóðà «áî- ðîäàòûõ» êîðíåé ñàëàòà Lactuca sativa, èç êîòî- ðîé ðåãåíåðèðîâàíû òðàíñãåííûå ðàñòåíèÿ ñ ãåíîì èíòåðôåðîíà- 2b ÷åëîâåêà. Ïî ðåçóëüòàòàì ÏÖÐ è ÎÒ-ÏÖÐ àíàëèçîâ ïîëó÷åííûå ðàñòåíèÿ èìåëè òðàíñêðèáèðóåìûé öåëåâîé ãåí ifn- 2b è îòëè÷à- ëèñü îò ðàñòåíèé äèêîãî òèïà óäëèíåííûìè ìåæäî- óçëèÿìè, ðàííèì ôîðìèðîâàíèåì öâåòîíîñà è ïóð- ïóðíîé îêðàñêîé ëèñòüåâ ïðè êóëüòèâèðîâàíèè â óñëîâèÿõ èñêóññòâåííîãî îñâåùåíèÿ. Ââåäåíèå. Íà ïðîòÿæåíèè ïîñëåäíèõ 20– 30 ëåò àêòèâíî ðàçâèâàåòñÿ îäèí èç ìåòîäîâ áèîòåõíîëîãè÷åñêèõ èññëåäîâàíèé – ãåíåòè- ÷åñêàÿ èíæåíåðèÿ, ïðè èñïîëüçîâàíèè êîòî- ðîé ïîëó÷åíû íîâûå ðàñòåíèÿ ñ ìîäèôèöè- ðîâàííûì ãåíîìîì. Ðàçðàáîòàíû ñïîñîáû ââåäåíèÿ â ðàñòèòåëüíûå êëåòêè íîâûõ ãåíîâ, â òîì ÷èñëå òàêèõ, êîòîðûå îïðåäåëÿþò óñòîé- ÷èâîñòü ðàñòåíèé ê ïàòîãåíàì, ãåðáèöèäàì è äð. Èñòîðè÷åñêè ïåðâûì ìåòîäîì ãåíåòè÷åñ- êîé òðàíñôîðìàöèè ÿâëÿåòñÿ òàê íàçûâàåìàÿ àãðîáàêòåðèàëüíàÿ òðàíñôîðìàöèÿ. Èäåÿ ýòîãî ìåòîäà ñîñòîèò â èñïîëüçîâàíèè ïðèðîäíîé ñïîñîáíîñòè ïî÷âåííûõ áàêòåðèé Agrobacterium tumefaciens è A. rhizogenes ñåìåéñòâà Rhizobia- ceae èíôèöèðîâàòü äâóäîëüíûå ðàñòåíèÿ. Àãðîáàêòåðèè ñïîñîáíû ïåðåíîñèòü â ðàñòå- íèå íå òîëüêî ñîáñòâåííóþ Ò-ÄÍÊ, íî è Ò-ÄÍÊ áèíàðíûõ âåêòîðîâ ñ ñåëåêòèâíûìè è öåëåâûìè ãåíàìè [1, 2], ÷òî ïîçâîëÿåò èñïîëüçîâàòü èõ äëÿ ñîçäàíèÿ òðàíñãåííûõ ðàñòåíèé. Ñàëàò, øèðîêî ðàñïðîñòðàíåííàÿ çåëåíàÿ êóëüòóðà ñåìåéñòâà Àsteraceae, ÿâëÿåòñÿ îä- íèì èç îáúåêòîâ ãåíåòè÷åñêîé èíæåíåðèè, ÷òî ñâÿçàíî ïðåæäå âñåãî ñ äîñòàòî÷íî ïðîñ- òûì êóëüòèâèðîâàíèåì ýòîãî ðàñòåíèÿ in vitro è ðàçðàáîòêîé ýôôåêòèâíûõ ìåòîäèê ðåãåíåðàöèè [3]. Òðàíñãåííûå ðàñòåíèÿ ñàëàòà ðàçíûõ ñîðòîâ ïîëó÷åíû ñ èñïîëüçîâàíèåì A. tumefaciens [4–8], à òàêæå ñ ïîìîùüþ ýëåê- òðîïîðàöèè [9], ÏÝÃ-èíäóöèðîâàííîé òðàíñ- ôîðìàöèè [10] è áîìáàðäèðîâêè [11]. Åñëè öåëüþ ïåðâûõ ýêñïåðèìåíòîâ áûëî èçó÷åíèå ïðèíöèïèàëüíîé âîçìîæíîñòè òðàíñ- ôîðìèðîâàíèÿ ãåíîìà ñàëàòà, òî â äàëüíåé- øåì áûëè ïîëó÷åíû òðàíñãåííûå ðàñòåíèÿ ñ öåëåâûìè ãåíàìè, íàëè÷èå êîòîðûõ â ðàñòå- íèÿõ ïðåäñòàâëÿåò ïðàêòè÷åñêèé èíòåðåñ. Òàê, ñîçäàíû ðàñòåíèÿ ñ ãåíàìè ñóáúåäèíèöû  õîëåðíîãî òîêñèíà [12, 13], àíòèãåíà HBsAg âèðóñà ãåïàòèòà B [14, 15] è òóáåðêóëåçíûõ àíòèãåíîâ [16]. Ñ ïîìîùüþ A. tumefaciens òàêæå ïîëó÷åíû òðàíñãåííûå ðàñòåíèÿ ñàëàòà ñ ãå- íàìè, êîòîðûå ïîâûøàþò óñòîé÷èâîñòü ðàñòå- íèé ê ãåðáèöèäàì [17,18], áèîãåííûì [19] è àáèîãåííûì [20] ñòðåññîâûì ôàêòîðàì. Êðî- ìå òîãî, A. rhizogenes ìîæåò ñëóæèòü ñðåäñòâîì äëÿ ïåðåíåñåíèÿ ÷óæåðîäíûõ ãåíîâ â ðàñòè- òåëüíûé ãåíîì, â òîì ÷èñëå â ðàñòåíèÿ ñà- ëàòà [21, 22]. Ðàñòåíèÿ ñàëàòà èìåþò öåëåâûå ãåíû, ïðåäñòàâëÿþùèå ïðàêòè÷åñêèé èíòåðåñ, 28 ISSN 0564–3783. Öèòîëîãèÿ è ãåíåòèêà. 2012. ¹ 3 Í.À. Ìàòâååâà, À.Ì. Øàõîâñêèé, Í.Â. Êó÷óê íàïðèìåð ãåí èíòåðôåðîíà ÷åëîâåêà, è ìîãóò áûòü èñïîëüçîâàíû â êà÷åñòâå «ñúåäîáíûõ» âàê- öèí – ðàñòåíèé, ïðîäóöèðóþùèõ ñïåöèôè- ÷åñêèå áåëêè, êîòîðûå ïðèìåíÿþòñÿ äëÿ ïðî- ôèëàêòèêè è ëå÷åíèÿ çàáîëåâàíèé [23–25]. Ïîêàçàíà âîçìîæíîñòü ýêñïðåññèè ãåíà èíòåð- ôåðîíà â ðàñòåíèÿõ êàðòîôåëÿ [26], ðèñà [27], ñàëàòà [28] ïîñëå òðàíñôîðìàöèè ñ ïîìîùüþ A. tumefaciens.  òî æå âðåìÿ äî ñèõ ïîð ïóáëè- êàöèè, êàñàþùèåñÿ èñïîëüçîâàíèÿ A. rhizo- genes äëÿ ïîëó÷åíèÿ ðàñòåíèé ñàëàòà ñ òàêèìè öåëåâûìè ãåíàìè, îòñóòñòâóþò. Öåëüþ íàñòîÿùåé ðàáîòû áûëî èñïîëü- çîâàíèå A. rhizogenes äëÿ ïîëó÷åíèÿ êóëüòóðû «áîðîäàòûõ» êîðíåé L. sativa ñîðòà Ðóáèíî- âîå êðóæåâî è ðåãåíåðàöèÿ èç íèõ òðàíñãåííûõ ðàñòåíèé ñàëàòà ñ ãåíîì èíòåðôåðîíà- 2b (ifn- 2b) ÷åëîâåêà, êîòîðûå ìîãóò ñòàòü «ñúå- äîáíûìè» âàêöèíàìè, à òàêæå èçó÷åíèå îñî- áåííîñòåé ïîëó÷åííûõ òðàíñãåííûõ ðàñòåíèé. Ìàòåðèàëû è ìåòîäû. Èñõîäíûì ìàòåðèà- ëîì ñëóæèëè ñåìåíà ñàëàòà ñîðòà Ðóáèíîâîå êðóæåâî, êîòîðûå ñòåðèëèçîâàëè ïî ìåòîäèêå, îïèñàííîé íàìè ðàíåå [16]. Ñåìåíà ïðîðà- ùèâàëè â ÷àøêàõ Ïåòðè íà àãàðèçîâàííîé ñðåäå ÌÑ [29]. Äëÿ òðàíñôîðìàöèè èñïîëü- çîâàëè ñåìÿäîëè 7–10-äíåâíûõ ïðîðîñòêîâ. Òðàíñôîðìàöèþ îñóùåñòâëÿëè ïî ìåòîäèêå [16] ñ ïîìîùüþ A. rhizogenes À4 ñ âåêòîðîì ðÑÂ161, êîòîðûé ñîäåðæàë öåëåâîé ãåí ifn- 2b ïîä êîíòðîëåì êîðíåñïåöèôè÷åñêîãî ïðî- ìîòîðà Mll ñàõàðíîé ñâåêëû è ñåëåêòèâíûé ãåí íåîìèöèíôîñôîòðàíñôåðàçû II (nptII) ïîä êîíòðîëåì ïðîìîòîðà ãåíà íîïàëèíñèíòåòàçû [30]. Íàëè÷èå ãåíà nptII äàâàëî âîçìîæíîñòü îñóùåñòâëÿòü îòáîð òðàíñãåííûõ êîðíåé è ðàñòåíèé ïî ïðèçíàêó óñòîé÷èâîñòè ê êàíà- ìèöèíó. Ïîñëå òðàíñôîðìàöèè äëÿ ïîëó÷å- íèÿ «áîðîäàòûõ» êîðíåé ýêñïëàíòû êóëüòè- âèðîâàëè íà àãàðèçîâàííîé ñðåäå ÌÑ ñ 25 ìã/ë êàíàìèöèíà è 600 ìã/ë öåôîòàêñèìà. Äëÿ ðåãåíåðàöèè ðàñòåíèé êîðíè ïåðåíîñèëè íà òó æå ñðåäó ñ äîáàâëåíèåì 5 ìã/ë êèíåòèíà è 0,5 ìã/ë -íàôòèëóêñóñíîé êèñëîòû (ÍÓÊ). Ðàñòèòåëüíóþ ÄÍÊ è ÐÍÊ âûäåëÿëè ïî ìåòîäèêàì [31, 32]. Ïðèñóòñòâèå è òðàíñêðèï- öèþ ïåðåíåñåííûõ ãåíîâ îïðåäåëÿëè ñ ïîìî- ùüþ ÏÖÐ è ÎÒ-ÏÖÐ íà àìïëèôèêàòîðå Mas- tercycler personal 5332 («Eppendorf», Ãåðìàíèÿ). Äëÿ ïðîâåäåíèÿ ÏÖÐ ðåàêöèîííóþ ñìåñü ãî- òîâèëè èç îäíîêðàòíîãî ÏÖÐ-áóôåðà ñ ñóëü- ôàòîì àììîíèÿ, 0,25 ìêÌ ïðàéìåðîâ, 200 ìêÌ äåçîêñèíóêëåîçèäòðèôîñôàòîâ, 0,5 åä. Taq-ïî- ëèìåðàçû, 10–50 íã ÄÍÊ (îáùèé îáúåì ðåàê- öèîííîé ñìåñè 20 ìêë). Äëÿ àìïëèôèêàöèè èñïîëüçîâàëè ïðàéìåðû, ñïåöèôè÷íûå ê ãåíàì rolB, nptII è ifn- 2b (ñîîòâåòñòâåííî 5'-5'atg- gatcccaaattgctattccttccacga-3' è 5'-ttaggcttctttctt- caggtttactgcagc-3', 780 ï.í., 5'-cctgaatgaactccag- gacgaggca-3' è 5'-gctctagatccagagtcccgctcagaag-3', 622 ï.í., 5'-ttgatgctcctggcacag-3' è 5'-ttctgctctga- caacctc-3', 396 ï.í.). Óñëîâèÿ àìïëèôèêàöèè: ïåðâè÷íàÿ äåíàòóðàöèÿ – 94 °Ñ, ìèí, 30 öèê- ëîâ àìïëèôèêàöèè (94 °Ñ, 30 ñ – 62 °Ñ, 30 ñ – 72 °Ñ, 30 ñ. äëÿ ãåíîâ nptII è ifn- 2b è 94 °Ñ, 30 ñ – 56 °Ñ, 30 ñ – 72 °Ñ, 45 ñ äëÿ rolB), çàêëþ÷èòåëüíûé ñèíòåç – 72 °Ñ, 3 ìèí. Ïðåïàðàòû ñóììàðíîé ÐÍÊ, ïðåäâàðèòåëü- íî îáðàáîòàííûå ÄÍÊàçîé I, ñâîáîäíîé îò ÐÍÊàçû, èñïîëüçîâàëè â êà÷åñòâå ìàòðèöû Ðèñ. 1. Îáðàçîâàíèå «áîðîäàòûõ» êîðíåé (à) è ðå- ãåíåðàöèÿ ðàñòåíèé (á) ïîñëå òðàíñôîðìàöèè ñà- ëàòà ñ ïîìîùüþ A. rhizogenes À4 Âëèÿíèå ñîñòàâà ñðåäû íà ðîñò òðàíñãåííûõ êîðíåé ñàëàòà è ðåãåíåðàöèþ ðàñòåíèé ¹ ñðåäû Êîíöåíòðàöèÿ ðåãóëÿòîðîâ ðîñòà, ìã/ë Ðîñò Êèíå- òèí ÍÓÊ êîðíåé êàëëóñ- íîé òêàíè ïîáå- ãîâ 1 2 3 4 0,5 0,5 5 0 0,05 5 0,5 0 + – – + – + + – – – + – 29ISSN 0564–3783. Öèòîëîãèÿ è ãåíåòèêà. 2012. ¹ 3 Îñîáåííîñòè òðàíñãåííûõ ðàñòåíèé ñàëàòà ñ ãåíîì èíòåðôåðîíà äëÿ ñèíòåçà ïåðâîé öåïè êÄÍÊ. Ñèíòåç îñó- ùåñòâëÿëè ñ ïîìîùüþ íàáîðà ðåàêòèâîâ «Fer- mentas» (Ëèòâà) ïî èíñòðóêöèè ôèðìû-èçãî- òîâèòåëÿ. Äëÿ êàæäîé ïðîáû ÐÍÊ ïðîâîäèëè äâå ðåàêöèè – â ïðèñóòñòâèè è â îòñóòñòâèå îáðàòíîé òðàíñêðèïòàçû. Ðåçóëüòàòû èññëåäîâàíèé è èõ îáñóæäåíèå. Ðîñò êîðíåé íà áåçãîðìîíàëüíîé ñðåäå ñ ñåëåêòèâíûì àíòèáèîòèêîì íà÷èíàëñÿ óæå ÷å- ðåç 10–14 ñóò. ×àñòîòà îáðàçîâàíèÿ êîðíåé ñîñòàâëÿëà 43,4 %. Íà ëèñòüÿõ êîíòðîëü- íûõ ðàñòåíèé ïðè òåõ æå óñëîâèÿõ êóëüòè- âèðîâàíèÿ êîðíè íå îáðàçîâûâàëèñü. Ïîëó- ÷åííûå êîðíè îòäåëÿëè îò ýêñïëàíòîâ è ïåðåíîñèëè íà ñðåäó òîãî æå ñîñòàâà. Îíè èìå- ëè õàðàêòåðíûå äëÿ «áîðîäàòûõ» êîðíåé ïðèç- íàêè (ðèñ. 1, à): ãîðìîíîíåçàâèñèìûé ðîñò, îòñóòñòâèå ïîçèòèâíîãî ãåîòðîïèçìà, ñèëüíîå âåòâëåíèå, ÷òî îáóñëîâëåíî ïåðåíîñîì â ãåíîì TL ôðàãìåíòà Ò-ÄÍÊ ðRi-ïëàçìèäû. ÏÖÐ-àíà- ëèç ïîëó÷åííûõ ëèíèé ïîêàçàë ïðèñóòñòâèå êàê ñåëåêòèâíîãî, òàê è öåëåâîãî ãåíîâ (äàííûå íå ïðèâåäåíû). Ïîñêîëüêó ïðè êóëüòèâèðîâàíèè òðàíñãåí- íûõ êîðíåé íà ñðåäå áåç ðåãóëÿòîðîâ ðîñòà ðåãåíåðàöèÿ ïîáåãîâ íå íàáëþäàëàñü, äëÿ ïî- ëó÷åíèÿ òðàíñôîðìèðîâàííûõ ðàñòåíèé ê ñðå- äå ÌÑ äîáàâëÿëè êèíåòèí è ÍÓÊ â êîíöåí- òðàöèÿõ ñîîòâåòñòâåííî 0,5–5,0 è 0,05–5 ìã/ë (òàáëèöà). Íèçêèå êîíöåíòðàöèè êèíåòèíà è ÍÓÊ íå ïðèâîäèëè ê ðîñòó êàëëóñà èëè ïî- áåãîâ (ñðåäà ¹ 1), ïîâûøåíèå êîíöåíòðàöèè ÍÓÊ äî 5 ìã/ë òîðìîçèëî ðîñò êîðíåé è èíèöèèðîâàëî ðîñò êàëëóñíîé òêàíè. Íà ïè- òàòåëüíîé ñðåäå, ñîäåðæàùåé 5 ìã/ë êèíåòèíà è 0,5 ìã/ë ÍÓÊ (ñðåäà ¹ 3), ïðè îòñóòñòâèè ðîñòà êîðíåé íà÷èíàëñÿ ðîñò êàëëóñà, à ÷å- ðåç 20–30 ñóò – ðåãåíåðàöèÿ ïîáåãîâ (ðèñ. 1, á). Îáðàçîâàâøèåñÿ ðàñòåíèÿ ïåðåñàæèâàëè â ÷àøêè Ïåòðè íà áåçãîðìîíàëüíóþ ñðåäó ÌÑ ñ àíòèáèîòèêàìè äëÿ óêîðåíåíèÿ. Äëÿ ïîäòâåðæäåíèÿ ïðèñóòñòâèÿ ãåíîâ rolB, íåîìèöèíôîñôîòðàíñôåðàçû II è èíòåðôåðî- íà â ïîëó÷åííûõ ðàñòåíèÿõ èñïîëüçîâàëè ìåòîä ÏÖÐ. Ïðîàíàëèçèðîâàíî 8 ëèíèé êîðíåé, â êîòîðûõ äåòåêòèðîâàëè ãåí rolB (ðèñ. 2, à), à òàêæå öåëåâîé (ðèñ. 2, á) è ñåëåêòèâíûé (ðèñ. 2, â) ãåíû. Àíàëèç ÎÒ-ÏÖÐ ïîêàçàë, ÷òî âî âñåõ ëè- íèÿõ îáíàðóæåíà òðàíñêðèïöèÿ êàê ñåëåêòèâ- íîãî (ðèñ. 2, ã), òàê è öåëåâîãî (ðèñ. 2, ä) ãåíîâ. Ðèñ. 2. ÏÖÐ-àíàëèç òîòàëüíîé ÄÍÊ (à–â) è ÎÒ-ÏÖÐ (ã, ä): rolB (à), ifn- 2b (á, ä) è nptII (â, ã); à: 1 – ÄÍÊ êîíòðîëüíîãî ðàñòåíèÿ; 2–4 – ÄÍÊ òðàíñãåííûõ ðàñòåíèé; á, â: 1–3 – ÄÍÊ òðàíñãåííûõ ðàñòåíèé; 4 – ÄÍÊ êîíòðîëüíîãî ðàñòåíèÿ; 5 – ïëàçìèäíàÿ ÄÍÊ; ã, ä: 1–8 – ÄÍÊ òðàíñãåííûõ ðàñòåíèé; íå÷åòíûå òðåêè – ñèíòåç îáðàòíûõ òðàíñêðèïòîâ â ïðèñóòñòâèè ðåâåðòàçû, ÷åòíûå – ÎÒ-ÏÖÐ áåç ðåâåðòàçû; Ì – ìàðêåð (ðàçìåð ôðàãìåíòîâ, ï.í.) 30 ISSN 0564–3783. Öèòîëîãèÿ è ãåíåòèêà. 2012. ¹ 3 Í.À. Ìàòâååâà, À.Ì. Øàõîâñêèé, Í.Â. Êó÷óê Ðàñòåíèÿ, ïîëó÷àåìûå ïîñëå òðàíñôîðìà- öèè A. rhizogenes, êàê ïðàâèëî, èìåþò ñïåöè- ôè÷åñêèé ôåíîòèï. Ó íèõ ìîãóò áûòü ñìîð- ùåííûå ëèñòüÿ, óêîðî÷åííûå ìåæäîóçëèÿ, ðàç- âåòâëåííûå ñòåáëè, íàðóøåíî àïèêàëüíîå äî- ìèíèðîâàíèå, ñèëüíî ðàçâèòàÿ ïëàãèîòðîïíàÿ êîðíåâàÿ ñèñòåìà. Îäíàêî ìîãóò áûòü ïîëó- ÷åíû è ðàñòåíèÿ ñ íåáîëüøèìè íàðóøåíèÿìè ìîðôîëîãèè ëèáî âîîáùå áåç íèõ [33–36], ïðè- ÷åì âûðàæåííîñòü Ri-ôåíîòèïà òðàíñãåííûõ ðàñòåíèé îïðåäåëÿåòñÿ ýêñïðåññèåé rol-ãåíîâ; «ìîë÷àíèå» ýòèõ ãåíîâ ïðèâîäèò ê îáðàçîâà- íèþ ðàñòåíèé ñ ôåíîòèïîì äèêîãî òèïà. Âñå ïðîàíàëèçèðîâàííûå ëèíèè ñàëàòà èìå- ëè òðàíñêðèáèðóåìûé ãåí rol (ðèñ. 2, à, ã), îäíàêî èõ ôåíîòèï íå èìåë îñîáåííîñòåé, õàðàêòåðíûõ äëÿ A. rhizogenes-òðàíñôîðìèðî- âàííûõ ðàñòåíèé. Ïîëó÷åííûå íàìè òðàíñ- ãåííûå ðàñòåíèÿ óæå íà íà÷àëüíîì ýòàïå ðåãåíåðàöèè ïðè îäèíàêîâûõ óñëîâèÿõ êóëü- òèâèðîâàíèÿ (ñîñòàâ ñðåäû, òåìïåðàòóðà, îñ- âåùåíèå) îòëè÷àëèñü êàê îò êîíòðîëüíûõ, òàê è îò ðàñòåíèé òîãî æå ñîðòà, òðàíñôîð- ìèðîâàííûõ íàìè ðàíåå ñ ïîìîùüþ A. tume- faciens [16]. Äëÿ íèõ õàðàêòåðíûì áûëî áû- ñòðîå âûòÿãèâàíèå ñòåáëÿ â âûñîòó, óäëèíå- íèå ìåæäîóçëèé è ðàííåå ôîðìèðîâàíèå öâåòî- íîñà (ðèñ. 3, à), â òî âðåìÿ êàê êîíòðîëüíûå è ðàíåå ïîëó÷åííûå A. tumefaciens-òðàíñ- ôîðìèðîâàííûå ðàñòåíèÿ [16] èìåëè ðîçåòî÷- íóþ ôîðìó (ðèñ. 3, á). Àíàëîãè÷íûé èçìåíåí- íûé ôåíîòèï ìû ðàíåå íàáëþäàëè ó ðàñòåíèé öèêîðèÿ, òðàíñôîðìèðîâàííûõ A. tumefaciens ñ âåêòîðîì ðÑÂ124 (ãåí èíòåðôåðîíà- 2b ÷åëî- âåêà) [37]. Åùå îäíà îñîáåííîñòü ÷àñòè ðåãåíåðèðî- âàííûõ ðàñòåíèé ñàëàòà çàêëþ÷àëàñü â ñïåöè- ôè÷åñêîé îêðàñêå ëèñòüåâ.  ïðèðîäíûõ óñëî- âèÿõ ïðè åñòåñòâåííîì ñîëíå÷íîì îñâåùåíèè ëèñòüÿ ðàñòåíèé ýòîãî ñîðòà èìåþò ïóðïóð- íóþ îêðàñêó, ÷òî è äàëî íàçâàíèå ñîðòó – Ðóáèíîâîå êðóæåâî. Ïðè êóëüòèâèðîâàíèè â òåðìàëüíûõ êîìíàòàõ èëè òåïëèöå (èñêóññò- âåííîå îñâåùåíèå) îíè áûëè çåëåíûìè (ðèñ. 3, á, ã). Îêðàñêà ëèñòüåâ íåêîòîðûõ À. rhizo- genes-òðàíñôîðìèðîâàííûõ ëèíèé ïðè êóëüòè- âèðîâàíèè in vitro íàïîìèíàëà îêðàñêó ëèñ- òüåâ â åñòåñòâåííûõ óñëîâèÿõ (ðèñ. 3, â). Îáíàðóæåííûå îñîáåííîñòè, â ÷àñòíîñòè ðàííåå ôîðìèðîâàíèå öâåòîíîñà ó ïîëó÷åí- íûõ òðàíñãåííûõ ðàñòåíèé, ïðåäñòàâëÿþò èí- òåðåñ, à äëÿ âûÿâëåíèÿ ïðè÷èí òðåáóþòñÿ äî- ïîëíèòåëüíûå èññëåäîâàíèÿ. Òàêèì îáðàçîì, áàêòåðèè A. rhizogenes ñ âåêòîðîì, íåñóùèì ãåí èíòåðôåðîíà ÷åëîâåêà, ìîãóò áûòü ýôôåêòèâíî èñïîëüçîâàíû â êà- ÷åñòâå èíñòðóìåíòà äëÿ òðàíñôîðìàöèè ðàñòå- íèé ñàëàòà. ×àñòîòà òðàíñôîðìàöèè ðàñòåíèé ñîðòà Ðóáèíîâîå êðóæåâî ñîñòàâëÿëà 43 %. Òðàíñôîðìàöèÿ ïðèâåëà ê èçìåíåíèþ ôåíî- òèïà ðàñòåíèé, ðåãåíåðèðîâàííûõ èç êîðíåé; îíè îòëè÷àëèñü îò ðàñòåíèé äèêîãî òèïà óäëè- íåííûìè ìåæäîóçëèÿìè, ðàííèì ôîðìèðîâà- íèåì öâåòîíîñà, à íåêîòîðûå ëèíèè èìåëè ïóðïóðíóþ îêðàñêó ëèñòüåâ ïðè êóëüòèâèðî- Ðèñ. 3. Îñîáåííîñòè ðàñòåíèé ñàëàòà, ïîëó÷åííûõ ïîñëå òðàíñôîðìàöèè ñ ïîìîùüþ A. rhizogenes: à – òðàíñãåííîå ðàñòåíèå, ôîðìèðîâàíèå öâåòîíîñà; á – êîíòðîëüíîå ðàñòåíèå, ðîçåòî÷íàÿ ôîðìà; â, ã – äâà òèïà îêðàñêè ëèñòüåâ òðàíñãåííûõ ðàñòåíèé 31ISSN 0564–3783. Öèòîëîãèÿ è ãåíåòèêà. 2012. ¹ 3 Îñîáåííîñòè òðàíñãåííûõ ðàñòåíèé ñàëàòà ñ ãåíîì èíòåðôåðîíà âàíèè â óñëîâèÿõ èñêóññòâåííîãî îñâåùåíèÿ, ÷òî, âåðîÿòíî, ÿâëÿåòñÿ ñëåäñòâèåì ãåíåòè- ÷åñêîé òðàíñôîðìàöèè. A. rhizogenes ìîæåò áûòü èñïîëüçîâàíà äëÿ ïåðåíåñåíèÿ â ðàñòè- òåëüíûé ãåíîì ãåíîâ, ïðåäñòàâëÿþùèõ ïðàêòè- ÷åñêèé èíòåðåñ, ïîñêîëüêó òðàíñãåííûå êîðíè è ðåãåíåðèðîâàííûå èç íèõ ðàñòåíèÿ ñàëàòà ïî ðåçóëüòàòàì ÏÖÐ è ÎÒ-ÏÖÐ èìåëè öåëåâîé ãåí èíòåðôåðîíà, à ïîëó÷åííûå ðàñòåíèÿ, èìå- þùèå ãåí ifn- 2b, ïîñëå äîïîëíèòåëüíûõ àíà- ëèçîâ íà áèîëîãè÷åñêóþ àêòèâíîñòü èíòåð- ôåðîíà «ðàñòèòåëüíîãî» ïðîèñõîæäåíèÿ ìîãóò áûòü «ñúåäîáíûìè» âàêöèíàìè. N.A. Matvieieva, À.Ì. Shahovsky, Ì.V. Kuchuk FEATURES OF LETTUCE TRANSGENIC PLANTS WITH ifn- 2b GENE REGENERATED AFTER AGROBACTERIUM RHIZOGENES- MEDIATED TRANSFORMATION «Hairy» roots of lettuce Lactuca sativa and regener- ated plants with interferon- 2b gene had been obtained via Agrobacterium rhizogenes-mediated transformation. According to the results of PCR and rt-PCR analyses the studied plants had ifn- 2b gene. The regenerated plants differed from the plants of wild type by elon- gated internodes, early flower-bearing stem formation and purple coloration of leaves in artificial illumina- tion conditions. Í.À. Ìàò⺺âà, À.Ì. Øàõîâñüêèé, Ì.Â.Êó÷óê ÎÑÎÁËÈÂÎÑÒ² ÒÐÀÍÑÃÅÍÍÈÕ ÐÎÑËÈÍ ÑÀËÀÒÓ Ç ÃÅÍÎÌ ²ÍÒÅÐÔÅÐÎÍÓ- 2b, ÎÒÐÈÌÀÍÈÕ ØËßÕÎÌ AGROBACTERIUM RHIZOGENES- ÎÏÎÑÅÐÅÄÊÎÂÀÍί ÒÐÀÍÑÔÎÐÌÀÖ²¯ Çà äîïîìîãîþ Agrobacterium rhizogenes-îïîñåðåä- êîâàíî¿ òðàíñôîðìàö³¿ îòðèìàíî êóëüòóðó «áîðî- äàòèõ» êîðåí³â ñàëàòó Lactuca sativa, ç ÿêèõ ðåãåíå- ðîâàíî òðàíñãåíí³ ðîñëèíè ³ç ãåíîì ³íòåðôåðî- íó- 2b ëþäèíè. Çà ðåçóëüòàòàìè ÏËÐ òà çò-ÏËÐ àíàë³ç³â îòðèìàí³ ðîñëèíè ìàëè ö³ëüîâèé ãåí ifn- 2b, ùî òðàíñêðèáóâàâñÿ ³ â³äð³çíÿëèñÿ â³ä ðîñ- ëèí äèêîãî òèïó ïîäîâæåíèìè ì³æâóçëÿìè, ðàíí³ì ôîðìóâàííÿì êâ³òêîíîñó òà ïóðïóðíèì çàáàðâëåí- íÿì ëèñòê³â ïðè êóëüòèâóâàíí³ â óìîâàõ øòó÷íîãî îñâ³òëåííÿ. ÑÏÈÑÎÊ ËÈÒÅÐÀÒÓÐÛ 1. 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/HRV (Za stvaranje Adobe PDF dokumenata najpogodnijih za visokokvalitetni ispis prije tiskanja koristite ove postavke. 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