水稻OsSAE1a在磷氮養(yǎng)分利用中的功能研究
發(fā)布時間:2021-08-05 22:48
磷素和氮素既是植物生命活動過程中所必需的大量營養(yǎng)元素,對植物生長發(fā)育至關(guān)重要。然而土壤中磷的有效性和氮素濃度均很低,是限制植物生長發(fā)育的首要因素,更是農(nóng)業(yè)生產(chǎn)中提高作物產(chǎn)量的限制因子。SUMO(Small ubiquitin-like modifier,SUMO)化修飾是一種廣泛存在的翻譯后修飾形式,通過影響靶蛋白的活性、穩(wěn)固性及亞細(xì)胞定位等參與調(diào)控DNA修復(fù)、核轉(zhuǎn)運、轉(zhuǎn)錄調(diào)節(jié)、離子通道活性、養(yǎng)分響應(yīng)等多項生命活動過程。擬南芥PHR1經(jīng)過SUMO化修飾才能獲得轉(zhuǎn)錄因子活性,進而參與調(diào)控磷信號途徑中相關(guān)基因的表達(dá),SUMO化修飾能夠增強擬南芥硝酸還原酶活性,進而參與氮素同化。此外,水稻SUMO化基因OsSIZ1也參與植物對氮磷營養(yǎng)的響應(yīng)。本文以水稻SUMO化修飾基因OsSAE1a和OsSIZ2為研究對象。通過qRT-PCR等方法分析了OsSAE1a的表達(dá)模式;利用OsSAE1a的超表達(dá)和沉默轉(zhuǎn)基因材料研究了 OsSAE1a在水稻生長發(fā)育及對磷素和氮素營養(yǎng)的吸收、轉(zhuǎn)運再分配過程中的功能。此外,本文還利用ossiz2和OsSIZ2-Ri轉(zhuǎn)基因材料研究了OsSIZ2在氮素吸收、轉(zhuǎn)運再分配中的功...
【文章來源】:南京農(nóng)業(yè)大學(xué)江蘇省 211工程院校 教育部直屬院校
【文章頁數(shù)】:180 頁
【學(xué)位級別】:博士
【部分圖文】:
圖1-1植物缺磷脅迫下的適應(yīng)性機制(Scheibleetal.,2015)??Fig.?1-1?The?adaptive?mechanisms?in?crop?plants?under?Pi?starvation?(Scheible?et?al.,?2015)??植物主要是通過改變根系構(gòu)型、與菌根真菌形成互惠共生增加與土壤的接觸面積;增加根系有機酸的分泌加強??
2?WRKY75?bHLH32?MYB62?bHLH32?MYB62?ARP6?WRKYY6/42?c/s-NAT??.?,??PHR1?2AT6?PHR1?WRKY75?PHR1?MYB62?PHR1?WRKY7S?PHR1?.??AL6?OsARF12?ZAT6?ARP6?OSARF16?2AT6?ZAT6?AL6?ZAT6?I?\?J??OSARF16?OsARF12?,?I?^?V??AL6?ARPS?I?I?PHOI??土__1?_i丄+丄I丄士丄?備??圖1-2缺磷響應(yīng)的轉(zhuǎn)錄和轉(zhuǎn)錄后調(diào)控(Zhang?etal.,2014)??Fig.?1-2?Transcriptional?and?posttranscriptional?regulation?of?PSRs?(Zhang?et?al.,?2014)??缺磷條件下,磷素的吸收、改變根系構(gòu)型、磷饑餓響應(yīng)基因的誘導(dǎo)表達(dá)、花青素積累、蔗糖和淀粉的積累及磷??在木質(zhì)部的裝載和卸載等過程受一系列的轉(zhuǎn)錄因子基因、S/Z八染色質(zhì)組份和長的非編碼RNA等的轉(zhuǎn)錄和轉(zhuǎn)??錄后水平的調(diào)控??Under?-Pi?conditions,?Pi?uptake,?changes?in?root?system?architecture,?expression?of?PSI?genes,?anthocyanin??accumulation,?sugar?and?starch?accumulation?and?subsequent?xylem?loading?are?transcriptionally?and??posttranscriptionally?regulated?by?a?s
第一章文獻(xiàn)綜述??表達(dá)顯著上調(diào),包括?tMPiS7/2、w/croi?A^?(Hou?et?al.,?2005;?Zhou?et?al.,2008;?Lin?et?al.,??2010;?Wang?etal.,?2012);?OsSPXs?(Wang?et?al,?2009,?2012;?Liu?et?al.,?2010).?OsPTs,??(Zhouetal.,2008;Zhangetal.,?2011)等(圖?1-3)。其中?的上調(diào)表達(dá)是??導(dǎo)致超表達(dá)轉(zhuǎn)基因植株磷過量積累以致中毒的主要原因(Zhou?et?al.,?2008;??Liu?et?al.,?2010)。與擬南芥類似,在水稻中也存在戶/漢/調(diào)控如卯和如狀27相類??似的信號途徑(Zhou?et?al.,?2008;?Lin?et?al.,?2010;?Hu?et?al.,?2011;?Lin?et?al.,?2013;?Wu?et??al.,2013)(圖?1-3)。???????
【參考文獻(xiàn)】:
期刊論文
[1]水稻SUMO化E3連接酶SIZ1調(diào)控缺磷條件下根的發(fā)育和根構(gòu)型形成[J]. 周紅敏,王化敦,孫瑞,裴文霞,吳學(xué)能,曹越,孫雅菲,徐國華,孫淑斌. 中國水稻科學(xué). 2015(01)
[2]Regulation of OsSPX1 and OsSPX3 on Expression of OsSPX Domain Genes and Pi-starvation Signaling in Rice[J]. Zhiye Wang,Han Hu,Hongjie Huang,Ke Duan,Zhongchang Wu and Ping Wu(State Key Laboratory of Plant Physiology and Biochemistry,College of Life Sciences,Zhejiang University,Hangzhou 310058,China). Journal of Integrative Plant Biology. 2009(07)
[3]Gene Structure and Expression of the High-affinity Nitrate Transport System in Rice Roots[J]. Chao Cai1,2,3, Jun-Yi Wang1,3, Yong-Guan Zhu2, Qi-Rong Shen4, Bin Li1, Yi-Ping Tong1 and Zhen-Sheng Li1 (1State Key Laboratory of Plant Cell and Chromosome Engineering, Institute of Genetics and Developmental Biology, the Chinese Academy of Sciences, Beijing 100101, China; 2Research Center for Eco-environmental Sciences, the Chinese Academy of Sciences, Beijing 100085, China; 3Graduated University, the Chinese Academy of Sciences, Beijing 100049, China; 4College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing 210095, China). Journal of Integrative Plant Biology. 2008(04)
[4]植物對磷缺乏的適應(yīng)機理[J]. 王燕云,郭劍,陳小蘭. 云南民族大學(xué)學(xué)報(自然科學(xué)版). 2008(01)
[5]Nitrate Effect on Rice Growth and Nitrogen Absorption and Assimilation at Different Growth Stages[J]. DUAN Ying-Hua, ZHANG Ya-Li, SHEN Qi-Rong and WANG Song-Wei College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing 210095 (China).. Pedosphere. 2006(06)
[6]植物磷轉(zhuǎn)運蛋白基因及其表達(dá)調(diào)控的研究進展[J]. 王萍,陳愛群,余玲,徐國華. 植物營養(yǎng)與肥料學(xué)報. 2006(04)
[7]植物Pht1家族磷轉(zhuǎn)運子的分子生物學(xué)研究進展[J]. 楊存義,劉靈,沈宏,嚴(yán)小龍. 分子植物育種. 2006(02)
[8]植物根構(gòu)型特性與磷吸收效率[J]. 嚴(yán)小龍,廖紅,戈振揚,羅錫文. 植物學(xué)通報. 2000(06)
本文編號:3324596
【文章來源】:南京農(nóng)業(yè)大學(xué)江蘇省 211工程院校 教育部直屬院校
【文章頁數(shù)】:180 頁
【學(xué)位級別】:博士
【部分圖文】:
圖1-1植物缺磷脅迫下的適應(yīng)性機制(Scheibleetal.,2015)??Fig.?1-1?The?adaptive?mechanisms?in?crop?plants?under?Pi?starvation?(Scheible?et?al.,?2015)??植物主要是通過改變根系構(gòu)型、與菌根真菌形成互惠共生增加與土壤的接觸面積;增加根系有機酸的分泌加強??
2?WRKY75?bHLH32?MYB62?bHLH32?MYB62?ARP6?WRKYY6/42?c/s-NAT??.?,??PHR1?2AT6?PHR1?WRKY75?PHR1?MYB62?PHR1?WRKY7S?PHR1?.??AL6?OsARF12?ZAT6?ARP6?OSARF16?2AT6?ZAT6?AL6?ZAT6?I?\?J??OSARF16?OsARF12?,?I?^?V??AL6?ARPS?I?I?PHOI??土__1?_i丄+丄I丄士丄?備??圖1-2缺磷響應(yīng)的轉(zhuǎn)錄和轉(zhuǎn)錄后調(diào)控(Zhang?etal.,2014)??Fig.?1-2?Transcriptional?and?posttranscriptional?regulation?of?PSRs?(Zhang?et?al.,?2014)??缺磷條件下,磷素的吸收、改變根系構(gòu)型、磷饑餓響應(yīng)基因的誘導(dǎo)表達(dá)、花青素積累、蔗糖和淀粉的積累及磷??在木質(zhì)部的裝載和卸載等過程受一系列的轉(zhuǎn)錄因子基因、S/Z八染色質(zhì)組份和長的非編碼RNA等的轉(zhuǎn)錄和轉(zhuǎn)??錄后水平的調(diào)控??Under?-Pi?conditions,?Pi?uptake,?changes?in?root?system?architecture,?expression?of?PSI?genes,?anthocyanin??accumulation,?sugar?and?starch?accumulation?and?subsequent?xylem?loading?are?transcriptionally?and??posttranscriptionally?regulated?by?a?s
第一章文獻(xiàn)綜述??表達(dá)顯著上調(diào),包括?tMPiS7/2、w/croi?A^?(Hou?et?al.,?2005;?Zhou?et?al.,2008;?Lin?et?al.,??2010;?Wang?etal.,?2012);?OsSPXs?(Wang?et?al,?2009,?2012;?Liu?et?al.,?2010).?OsPTs,??(Zhouetal.,2008;Zhangetal.,?2011)等(圖?1-3)。其中?的上調(diào)表達(dá)是??導(dǎo)致超表達(dá)轉(zhuǎn)基因植株磷過量積累以致中毒的主要原因(Zhou?et?al.,?2008;??Liu?et?al.,?2010)。與擬南芥類似,在水稻中也存在戶/漢/調(diào)控如卯和如狀27相類??似的信號途徑(Zhou?et?al.,?2008;?Lin?et?al.,?2010;?Hu?et?al.,?2011;?Lin?et?al.,?2013;?Wu?et??al.,2013)(圖?1-3)。???????
【參考文獻(xiàn)】:
期刊論文
[1]水稻SUMO化E3連接酶SIZ1調(diào)控缺磷條件下根的發(fā)育和根構(gòu)型形成[J]. 周紅敏,王化敦,孫瑞,裴文霞,吳學(xué)能,曹越,孫雅菲,徐國華,孫淑斌. 中國水稻科學(xué). 2015(01)
[2]Regulation of OsSPX1 and OsSPX3 on Expression of OsSPX Domain Genes and Pi-starvation Signaling in Rice[J]. Zhiye Wang,Han Hu,Hongjie Huang,Ke Duan,Zhongchang Wu and Ping Wu(State Key Laboratory of Plant Physiology and Biochemistry,College of Life Sciences,Zhejiang University,Hangzhou 310058,China). Journal of Integrative Plant Biology. 2009(07)
[3]Gene Structure and Expression of the High-affinity Nitrate Transport System in Rice Roots[J]. Chao Cai1,2,3, Jun-Yi Wang1,3, Yong-Guan Zhu2, Qi-Rong Shen4, Bin Li1, Yi-Ping Tong1 and Zhen-Sheng Li1 (1State Key Laboratory of Plant Cell and Chromosome Engineering, Institute of Genetics and Developmental Biology, the Chinese Academy of Sciences, Beijing 100101, China; 2Research Center for Eco-environmental Sciences, the Chinese Academy of Sciences, Beijing 100085, China; 3Graduated University, the Chinese Academy of Sciences, Beijing 100049, China; 4College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing 210095, China). Journal of Integrative Plant Biology. 2008(04)
[4]植物對磷缺乏的適應(yīng)機理[J]. 王燕云,郭劍,陳小蘭. 云南民族大學(xué)學(xué)報(自然科學(xué)版). 2008(01)
[5]Nitrate Effect on Rice Growth and Nitrogen Absorption and Assimilation at Different Growth Stages[J]. DUAN Ying-Hua, ZHANG Ya-Li, SHEN Qi-Rong and WANG Song-Wei College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing 210095 (China).. Pedosphere. 2006(06)
[6]植物磷轉(zhuǎn)運蛋白基因及其表達(dá)調(diào)控的研究進展[J]. 王萍,陳愛群,余玲,徐國華. 植物營養(yǎng)與肥料學(xué)報. 2006(04)
[7]植物Pht1家族磷轉(zhuǎn)運子的分子生物學(xué)研究進展[J]. 楊存義,劉靈,沈宏,嚴(yán)小龍. 分子植物育種. 2006(02)
[8]植物根構(gòu)型特性與磷吸收效率[J]. 嚴(yán)小龍,廖紅,戈振揚,羅錫文. 植物學(xué)通報. 2000(06)
本文編號:3324596
本文鏈接:http://sikaile.net/nykjlw/nzwlw/3324596.html
最近更新
教材專著