国产精品igao视频网网址不卡日韩,亚洲综合在线电影,亚洲婷婷丁香,黄色在线网站噜噜噜

相關鏈接
聯系方式
  • 通信地址:福建省福州市倉山區上三路32號
  • 郵編:350117
  • 電話:0591-22868205
  • 傳真:
  • Email:yhhan@fjnu.edu.cn
當前位置:> 首頁 > 論文著作 > 正文
Naming and functions of ACR2, arsenate reductase, and ACR3 arsenite efflux transporter in plants (correspondence on: Kumar, S., Dubey, R.S., Tripathi, R.D., Chakrabarty, D., Trivedi, P.K., 2015. Omics and biotechnology of arsenic stress and detoxification in plants: current updates and prospective. Environ Int. 74:221–230.)
作者:Chen, Y. S., Y. H. Han, B. Rathinasabapathi, and L. Q. Ma*
關鍵字:Comment
論文來源:期刊
具體來源:Environment International
發表時間:2015年

    Kumar et al. (2015)''''''''s review on arsenic (As) detoxification in plants and related biotechnology provides current updates about the As metabolism and recent developments in engineering As-tolerant and low-As plants. Although we agree with most of the viewpoints expressed in the review, we would like to clarify the naming and functions of ACR2, arsenate reductase, and ACR3 arsenite efflux transporter in plants.

    In the review, the authors incorrectly referred ACR3 as arsenate reductase (see Table 1, No. 18, 19 & 24); in addition, using “ACR” to represent “arsenate reductase” is inappropriate (Fig. 1 and Section 3.1: “Detailed analysis of this QTL suggested that this encodes a novel plant ACR.”). Arsenate reductases are enzymes with catalytic activities of reducing arsenate to arsenite and one class of such enzymes is represented by ACR2 proteins.

    The name “ACR” comes from yeast Saccharomyces cerevisiae, which is a model system to study As resistance in eukaryotes. Bobrowicz et al. (1997) found a 4.2 kb region from S. cerevisiae chromosome XVI, which confers strong arsenite (AsIII) resistance. Three ACR (Arsenic Compounds Resistance) genes were found in this 4.2 kb region, namely ACR1, ACR2, and ACR3. 

    ACR1 encodes a transcriptional factor that regulates ACR2 and ACR3 transcription, possibly by directly sensing cellular As levels. Disruption of the ACR1 gene confers arsenite and arsenate (AsV) hypersensitivity (Bobrowicz et al., 1997; Ghosh et al., 1999). ACR2 encodes an arsenate reductase protein, which is required for arsenate but not arsenite resistance (Mukhopadhyay and Rosen, 1998). ACR3 encodes a plasma membrane arsenite efflux transporter that exports arsenite out of the cell into the external medium (Wysocki et al., 1997). Thus, this gene cluster provides a mechanism for sensing, reduction and efflux of As in yeast (Ghosh et al., 1999).

    In plants, ACR2 represents arsenate reductase with sequence homology to yeast ACR2 (ScACR2), like AtACR2 from Arabidopsis thaliana (also named AtASR and AtCDC25) (Landrieu et al., 2004a, 2004b), PvACR2 from Pteris vittata (Ellis et al., 2006) and OsACR2.1 and OsACR2.3 from Oryza sativa (Duan et al., 2007). All these ACR2 enzymes contain the conserved HCX5R active site. However, not all arsenate reductases possess the conserved active site of the canonical ScACR2 and thus may not belong to the ACR2-like arsenate reductase. Rathinasabapathi et al. (2006) reported that a cTPI (cytosolic Triosephosphate Isomerase) from P. vittata increased arsenate resistance in an Escherichia coli strain defficient in arsenate reductase and suggested that this enzyme might function as an arsenate reductase. Recently, a quantitative trait locus that encodes a novel arsenate reductase critical for arsenic tolerance in plants was identified independently by two research groups. This arsenate reductase lacks HCX5R and was termed ATQ1 (Arsenate Tolerance QTL1) (also called ARQ1 for Arsenate Reductase QTL1) and HAC1 (High Arsenic Content 1), respectively (Chao et al., 2014; Sanchez-Bermejo et al., 2014). This arsenate-reducing enzyme controls arsenic accumulation in plants and keeps arsenic low in the shoots, which provides an important new resource to engineer low-As rice (Meadows, 2014).

    Compared to plant ACR2 or plant arsenate reductase, plant arsenite efflux transporter ACR3 has rarely been reported. This is mainly because ACR3 is missing in flowering plants (angiosperms), including Arabidopsis and O. sativa. ACR3 genes are found only in the genomes of bacteria, fungi, moss, ferns and gymnosperms (Indriolo et al., 2010). In the As hyperaccumulating fern P. vittata, PvACR3 localizes to the vacuolar membrane, indicating that it likely extrudes arsenite into vacuoles for sequestration (Indriolo et al., 2010). However, in model plant Arabidopsis, PvACR3 localizes to the plasma membrane and increases arsenite efflux into external medium (Chen et al., 2013). Actually, PvACR3 is the only plant ACR3 that has been well studied. However, the subcellular localization and function of PvACR3 are still unclear and merit further study. PvACR3;1 is another reported P. vittata ACR3, but it is not characterized and its function is unknown. Still, considering its effectiveness in eliminating As from plants, we envision that ACR3 has a great potential for engineering low-As crops for food safety.

国产精品igao视频网网址不卡日韩,亚洲综合在线电影,亚洲婷婷丁香,黄色在线网站噜噜噜
国产女优一区| 综合激情一区| 国产视频网站一区二区三区| 亚洲成人国产| 国产成人精品一区二区三区免费 | 亚洲一级大片| 99riav1国产精品视频| 亚洲福利免费| 国产精品88久久久久久| 欧美日韩在线二区| 激情婷婷亚洲| 亚洲一级网站| 伊人成人在线视频| 性一交一乱一区二区洋洋av| 亚洲免费一区二区| 蜜桃久久精品一区二区| 一区二区电影| 欧美日韩网址| 国产精品4hu.www| 精品成人18| 久久亚洲人体| 日本综合字幕| 亚洲性图久久| 免费久久99精品国产| 综合激情在线| 国产剧情在线观看一区| 国产精品2区| 成人在线观看免费视频| 97欧美在线视频| 精品国内亚洲2022精品成人| 人在线成免费视频| 亚洲精品一区二区在线看| 欧美成人日韩| 亚洲另类视频| 国产福利一区二区精品秒拍| 日韩电影免费网站| 亚洲女人av| 欧美日韩在线精品一区二区三区激情综合 | 欧美亚洲专区| 九九99久久精品在免费线bt| 国产精品字幕| 亚洲最新av| 麻豆精品少妇| 激情婷婷综合| 国产麻豆一区| 久久在线免费| 一区二区三区网站| 免费看久久久| 亚洲调教视频在线观看| 亚洲91在线| 久久精品一区| 亚洲经典在线| 国产亚洲精品美女久久| 国产69精品久久| 久久久久国产| 综合色一区二区| 精品视频一二| 国产农村妇女精品一区二区| 欧美国产极品| 夜夜精品视频| 国产日产精品_国产精品毛片| 四虎国产精品免费观看| 日韩视频一区| 欧美xxxx性| 视频一区在线播放| 黄色欧美在线| 亚洲综合五月| 天堂中文av在线资源库| 日韩在线网址| 国产a亚洲精品| 亚洲精品动态| 99久久九九| 国产九一精品| 美女精品网站| 中文字幕成在线观看| 亚洲精品字幕| 欧美中文字幕一区二区| 国产精品入口久久| 久久成人国产| 久久婷婷国产| 天堂va欧美ⅴa亚洲va一国产| 99精品美女| 美女视频黄免费的久久| 日本欧美在线看| 福利一区二区三区视频在线观看| 亚洲精品一区二区在线播放∴| 神马午夜久久| 精品视频一区二区三区在线观看 | 亚洲美女91| 欧美.日韩.国产.一区.二区 | 欧美国产视频| 日韩综合小视频| 亚洲欧美不卡| 99久久99视频只有精品| 麻豆精品久久| 日韩国产欧美在线视频| 99亚洲精品| 天堂а√在线最新版中文在线| 国产精品chinese| 欧美一级久久| 蜜臀精品久久久久久蜜臀 | 欧美激情视频一区二区三区免费 | 欧美精品91| 日本中文字幕一区二区| 亚洲尤物在线| 婷婷久久一区| 欧美日韩精品在线一区| 精品一区二区三区免费看| 欧美精品三级在线| 日韩中文字幕在线一区| 亚洲欧美日韩专区| 久久中文字幕二区| 日韩精品一区二区三区免费观影| 国产精品115| 国产精品高清一区二区| 久久激情五月婷婷| 日本精品久久| 日韩精品久久理论片| 一区二区国产精品| 日韩精品一卡二卡三卡四卡无卡| 亚洲精品极品少妇16p| 久久一区二区中文字幕| 麻豆精品蜜桃| 视频小说一区二区| 久久青草久久| 亚洲大片在线| 99久久精品费精品国产| 久久青草久久| 久久精品国语| 久久久影院免费| 欧美日韩一区二区综合| 欧美+日本+国产+在线a∨观看| 激情欧美丁香| 伊人久久婷婷| 免费在线欧美视频| 亚洲精品欧美| 欧美三区不卡| 麻豆中文一区二区| 国产91在线播放精品| 98精品久久久久久久| 高清一区二区| 欧洲亚洲一区二区三区| 一区二区三区视频免费观看| 99久久久久| 亚洲在线观看| 日韩在线成人| 久久国产三级精品| 免费在线观看一区| 久久影院午夜精品| 在线 亚洲欧美在线综合一区| 亚洲专区欧美专区| 天堂va在线高清一区| 久久99性xxx老妇胖精品| 麻豆视频在线看| 一区二区小说| 日韩精品一区二区三区中文| 国产精品xxxav免费视频| sm久久捆绑调教精品一区| 成人精品国产亚洲| 美女毛片一区二区三区四区| 免费在线观看视频一区| 欧美日韩伊人| 福利一区在线| 精品在线播放| 日本成人一区二区| a国产在线视频| 欧美日韩激情在线一区二区三区| 先锋影音久久久| 国产探花一区在线观看| 国产成年精品| 蜜桃tv一区二区三区| 日本91福利区| 国产不卡人人| 婷婷综合六月| 丝袜美腿一区二区三区| 久久av导航| 91精品二区| 日韩av资源网| 天堂√中文最新版在线| 蜜桃一区二区三区在线观看| 美女在线视频一区| 成人av动漫在线观看| 日本aⅴ亚洲精品中文乱码| 不卡专区在线| 午夜欧美精品久久久久久久| 日本不卡视频在线观看| 亚洲国产成人二区| 亚洲影视一区二区三区| 麻豆精品蜜桃视频网站| 最新日韩欧美| 欧美激情91| 久久国产66| 成人午夜网址| 日韩一区二区三区免费视频 | 久久激五月天综合精品| 高清不卡亚洲| 日韩在线观看中文字幕| 成人欧美一区二区三区的电影| 亚洲网址在线观看| 91亚洲国产高清|