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您(nin)當(dang)前(qian)的(de)位(wei)置:首(shou)頁 > 技(ji)術(shu)文章 > 微藻溫室氣(qi)體(ti)固定(ding)技(ji)術研究 -2種(zhong)淡水(shui)綠藻(zao)對(dui)高(gao)CO2和(he)NO的(de)生(sheng)理響(xiang)應(ying)微藻(zao)溫室氣(qi)體(ti)固定(ding)技(ji)術研究 -2種(zhong)淡水(shui)綠藻(zao)對(dui)高(gao)CO2和(he)NO的(de)生(sheng)理響(xiang)應(ying)
發布時間: 2022-04-12 點(dian)擊次(ci)數(shu): 2183次(ci)微(wei)藻(zao)作(zuo)為固(gu)碳(tan)生(sheng)物(wu)之壹,每年固(gu)定(ding)的(de)CO2占全球(qiu)CO2固(gu)定(ding)量(liang)的(de)40%以(yi)上,在碳(tan)達峰(feng)、碳(tan)中和(he)中起(qi)到(dao)了舉足輕(qing)重(zhong)的(de)作(zuo)用(yong)。Varshney等(deng)(2020)對(dui)2種(zhong)淡水(shui)藻Asterarcys quadricellulare 和(he)Chlorella sorokiniana通(tong)過(guo)多(duo)通(tong)道(dao)培(pei)養和(he)在(zai)線(xian)監(jian)測,控制(zhi)培(pei)養溫度37℃、光強250μmol photons m−2 s−1,並按(an)照(zhao)14h(光照(zhao)):10h(黑(hei)暗)的(de)正(zheng)弦(xian)周(zhou)期(qi)培(pei)養,培(pei)養期間PH不(bu)做(zuo)控制(zhi),在(zai)線(xian)監(jian)測OD(光密度(du))值(zhi),利(li)用(yong)葉(ye)綠(lv)素(su)熒光測量(liang)技(ji)術測量(liang)分析(xi)快(kuai)速光響(xiang)應(ying)曲線(xian)(RLCs)、非(fei)光化熒光淬滅(NPQ)、飽(bao)和(he)光閃葉綠(lv)素熒光誘導(dao)曲(qu)線(xian)(FFI)及OJIP,研(yan)究(jiu)了2種(zhong)綠藻(zao)對(dui)高(gao)CO2和(he)NO煙(yan)氣(qi)的(de)生(sheng)理響(xiang)應(ying),結(jie)果表(biao)明:
1.在(zai)高(gao)CO2濃度(du)下,二(er)者的(de)光系統Ⅱ性(xing)能(neng)得(de)到(dao)增(zeng)強;高(gao)濃度(du)CO2刺激(ji)了C.sorokiniana的(de)NPQ,而A.quadricellulare則(ze)相反(fan)。在(zai)10% CO2濃度下,二(er)者的(de)最(zui)大凈(jing)光合速率(lv)(Pmax)最(zui)高(gao)

2.不同濃度(du)NO對(dui)PSⅡ沒(mei)有負面影響(xiang)
3.OJIP快(kuai)速熒光動力(li)學曲(qu)線(xian)表(biao)明,當(dang)CO2濃(nong)度(du)為15%時(shi),C.sorokiniana PSⅡ間(jian)的(de)連通(tong)性(xing)降(jiang)低,而對(dui)A.quadricellulare而言(yan),即(ji)使(shi)在(zai)10% CO2濃(nong)度(du)下,下降也(ye)很明顯(xian)

4.雖(sui)然(ran)2種(zhong)綠(lv)藻的(de)光合調(tiao)控(kong)不(bu)同,但在(zai)較(jiao)高(gao)濃度(du)CO2和(he)NO下(xia),二者的(de)光系統Ⅱ性(xing)能(neng)都(dou)有(you)所(suo)增(zeng)強,是固定(ding)CO2和(he)NO的(de)潛(qian)在候(hou)選者。
易科泰生(sheng)態(tai)技術(shu)公司為藻(zao)類碳(tan)固(gu)定(ding)、溫室氣(qi)體(ti)固定(ding)技(ji)術研究提(ti)供(gong)全面(mian)解決方案:
1.藻(zao)類培(pei)養與(yu)在(zai)線(xian)監(jian)測技術,多(duo)通(tong)道(dao)或(huo)單(dan)通(tong)道(dao),控(kong)光(不同波段、不同強度(du))控溫,pH調(tiao)控(kong)監(jian)測(ce),光密度(du)調(tiao)控(kong)監(jian)測(ce),葉綠素(su)熒光監測(ce),CO2、O2在(zai)線(xian)監(jian)測
2.雙(shuang)調(tiao)制(zhi)葉(ye)綠(lv)素(su)熒光測量(liang)技(ji)術,FFI、OJIP、多(duo)周(zhou)轉(zhuan)飽(bao)和(he)光閃葉綠(lv)素誘(you)導(dao)曲線(xian),多(duo)激(ji)發光(可選(xuan)配(pei)不同波長(chang)不(bu)同顏(yan)色光源)
3.高(gao)通(tong)量(liang)藻(zao)類表(biao)型分(fen)析(xi)技術(shu),葉綠素熒光成像技術(shu),高(gao)光譜(pu)成(cheng)像技術(shu)等(deng)

參考文獻:
1. Varshney P, et al. 2020. Effect of elevated carbon dioxide and nitric oxide on the physiological responses of two green algae, Asterarcys quadricellulare and Chlorella sorokiniana. Journal of Applied Phycology 32(1): 189-204.
2. Barera S. et al. 2021. Effect of lhcsr gene dosage on oxidative stress and light use efficiency by chlamydomonas reinhardtii cultures. Journal of Biotechnology 328:12-22.






