°</sup>C/8<sup>°</sup>C,80μmol?m<sup>-2</sup>?s<sup>-1</sup>, low temperatureand low light,LL)下,叢枝菌根真菌(Arbuscular mycorrhizal fungi,AMF)和宛氏擬青霉(Paecilomyces variotii)提取物智能聰(ZNC)對黃瓜和番茄幼苗生長及其抗氧化系統(tǒng)活性的影響。幼苗兩葉一心時LL處理7d,LL下根施基質(zhì)重量比1% AMF(LL+AMF)和噴施 10mL10ng?mL<sup>-1</sup> ZNC(LL+ZNC),以正常溫光為對照 <img src="/qkimages/dc46/dc46202502/dc4620250214-1-l.jpg" with="266px" style="vertical-align: middle;"> )。結(jié)果表明,與CK相比,LL顯著降低黃瓜和番茄壯苗指數(shù)和根系活力,抑制植株生長,且黃瓜和番茄幼苗SOD、POD活性及可溶性糖和蛋白含量增加,說明LL引起植株膜脂過氧化。LL下施用AMF和ZNC顯著提高黃瓜和番茄的可溶性糖含量以及POD和CAT活性。其中,LL下施用AMF和ZNC黃瓜的壯苗指數(shù)顯著提高,較LL分別提高 19.4% 和11.1% ;LL+AMF和LL+ZNC番茄幼苗根系活力及可溶性糖含量較LL分別提高 22.7%.14.8% 和 31.9%.26.9% 。綜上所述,本試驗(yàn)條件下AMF和ZNC可通過提高黃瓜和番茄幼苗抗氧化酶活性以及滲透調(diào)節(jié)能力,減輕低溫弱光造成的植株膜脂過氧化水平,進(jìn)而緩解對黃瓜和番茄幼苗的生長抑制。-龍源期刊網(wǎng)" />

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AMF和ZNC對黃瓜和番茄幼苗生長以及耐低溫弱光能力的影響

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Abstract:This studyused cucumber'Xintai Mici'and tomato'D2856'as test materials toinvestigate the effectsof Arbuscular mycorhizal fungi(AMF)andtheextractof Paecilomycesvariotii,known as Zhineng Cong (ZNC),onthe growth and antioxidant system activity of cucumber and tomato seedlings under low temperature and low light conditions 15°C/8°C , 80μmol?m-2?s-1 ,LL).Seedlingswere treated withLL for7daysat two leaves stage,and rootapplied substrate weight ratio of 1% AMF LL+AMF )and sprayed with 10mL of 10ng?mL-1 ZNC LL+ZNC )under LL,with normal temperature and light as the control ( 28°C/18°C , 600μmol?m-2?s-1 , CK). The results showed that LL significantlyreducedtheseedling index androot activityofcucumberand tomato,inhibitedplant growth,and increased the activities of SOD andPOD and the content of soluble sugar and protein in cucumber and tomato seedlings, indicating that LL caused membrane lipid peroxidation in plants.The application of AMFand ZNC under LL significantly increased the soluble sugar content as well as POD and CAT activities of cucumber and tomato.Among them,the strong seedling index of cucumber was significantly increased by 19.4% and 11.1% with AMF and ZNC, respectively,compared with that ofLL; the root vigor and soluble sugar content of tomato seedlings were increased by 22.7% and 14.8% , 31.9% and 26.9% . In summary,under the conditions of this experiment,AMF and ZNC could alleviate the membrane lipid peroxidationcaused by low temperature and low light stressin cucumberand tomato sedlings by enhancing their antioxidant enzyme activities and osmotic adjustmentcapacity,thereby mitigating the growth inhibition induced by low temperature and low light.

Keywords: Cucumber; Tomato; low temperature and low light; arbuscular mycorrhizal fungi; Zhineng Cong

低溫弱光在冬春季設(shè)施蔬菜生產(chǎn)中時常發(fā)生,且往往同時形成復(fù)合逆境,其往往改變蔬菜生物膜透性,造成代謝紊亂,破壞葉綠素合成,降低光合效率,抑制葉綠體發(fā)育,使植物生長發(fā)育受阻[1-3]。(剩余7324字)

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