西北植物学报
西北植物學報
서북식물학보
ACTA BOTANICA BOREALI-OCCIDENTALIA SINICA
2010年
2期
350-356
,共7页
徐强%程智慧%卢涛%谢宝英
徐彊%程智慧%盧濤%謝寶英
서강%정지혜%로도%사보영
线辣椒%玉米%间作%根际%酸性磷酸酶%铁还原酶
線辣椒%玉米%間作%根際%痠性燐痠酶%鐵還原酶
선랄초%옥미%간작%근제%산성린산매%철환원매
capsicum%maize%intercropping%rhizosphere%acid phosphatase%ferric reductase
通过盆栽实验研究了线辣椒和玉米间作对其植株生长、矿质养分吸收、根际环境以及铁载体分泌的影响,以探索间作促进铁、磷等养分吸收利用的可能生理机制.结果表明:(1)与单作相比,间作线辣椒地上部干重降低23.0%,根系干重增加44.2%,玉米地上部和根系的干重分别增加8.7%和22.9%;间作线辣椒根冠比和根系活力分别显著提高86.4%和29.8%;间作线辣椒、玉米叶绿素含量分别显著提高12.6%和7.8%.(2)与单作相比,间作线辣椒的铁、锌、锰含量分别增加1.50倍、1.39倍和1.34%,而间作玉米则无显著变化;间作线辣椒和玉米的钙含量都显著低于相应单作,氮含量没有显著变化,但磷、钾含量显著增加.(3)间作线辣椒和玉米的根际土、非根际土的酸性磷酸酶活性及根系酸性磷酸酶活性都显著高于相应单作,而其根际土和非根际土的pH值无显著变化;间作玉米根系的铁载体分泌比单作减少32.8%,间作线辣椒根系的铁还原酶活性是单作的1.10倍.研究发现,线辣椒/玉米间作能通过影响根际生物学特征和化学过程提高植株的铁、锌、磷和钾养分水平,缓解养分胁迫,是一种很有推广价值的种植模式.
通過盆栽實驗研究瞭線辣椒和玉米間作對其植株生長、礦質養分吸收、根際環境以及鐵載體分泌的影響,以探索間作促進鐵、燐等養分吸收利用的可能生理機製.結果錶明:(1)與單作相比,間作線辣椒地上部榦重降低23.0%,根繫榦重增加44.2%,玉米地上部和根繫的榦重分彆增加8.7%和22.9%;間作線辣椒根冠比和根繫活力分彆顯著提高86.4%和29.8%;間作線辣椒、玉米葉綠素含量分彆顯著提高12.6%和7.8%.(2)與單作相比,間作線辣椒的鐵、鋅、錳含量分彆增加1.50倍、1.39倍和1.34%,而間作玉米則無顯著變化;間作線辣椒和玉米的鈣含量都顯著低于相應單作,氮含量沒有顯著變化,但燐、鉀含量顯著增加.(3)間作線辣椒和玉米的根際土、非根際土的痠性燐痠酶活性及根繫痠性燐痠酶活性都顯著高于相應單作,而其根際土和非根際土的pH值無顯著變化;間作玉米根繫的鐵載體分泌比單作減少32.8%,間作線辣椒根繫的鐵還原酶活性是單作的1.10倍.研究髮現,線辣椒/玉米間作能通過影響根際生物學特徵和化學過程提高植株的鐵、鋅、燐和鉀養分水平,緩解養分脅迫,是一種很有推廣價值的種植模式.
통과분재실험연구료선랄초화옥미간작대기식주생장、광질양분흡수、근제배경이급철재체분비적영향,이탐색간작촉진철、린등양분흡수이용적가능생리궤제.결과표명:(1)여단작상비,간작선랄초지상부간중강저23.0%,근계간중증가44.2%,옥미지상부화근계적간중분별증가8.7%화22.9%;간작선랄초근관비화근계활력분별현저제고86.4%화29.8%;간작선랄초、옥미협록소함량분별현저제고12.6%화7.8%.(2)여단작상비,간작선랄초적철、자、맹함량분별증가1.50배、1.39배화1.34%,이간작옥미칙무현저변화;간작선랄초화옥미적개함량도현저저우상응단작,담함량몰유현저변화,단린、갑함량현저증가.(3)간작선랄초화옥미적근제토、비근제토적산성린산매활성급근계산성린산매활성도현저고우상응단작,이기근제토화비근제토적pH치무현저변화;간작옥미근계적철재체분비비단작감소32.8%,간작선랄초근계적철환원매활성시단작적1.10배.연구발현,선랄초/옥미간작능통과영향근제생물학특정화화학과정제고식주적철、자、린화갑양분수평,완해양분협박,시일충흔유추엄개치적충식모식.
A greenhouse potted experiment was conducted to investigate the interspecific rhizosphere effects on iron(Fe),phosphorus(P),nitrogen(N),potassium(K),calcium(C),zinc(Z),and manganese(Mn)in capsicum(Capsicum annuum var.longunt) plants by intercropping them with maize(Zea mays L.).In addition,we studied plants growth character,the release of phytosiderophores and the ferric reductase activity of roots,pH and acid phosphatases activity in the rhizosphere and bulk soil,the secretion of acid phosphatases in roots,and the available N,P,K contents of rhizosphere soil.The results showed that shoot dry weight of capsicum plants intercropped with maize were decreased by 23.0%,root dry weight were increased by 44.2%;the dry weight of maize shoot and root were increased by 8.7%,22.9% respectively,as compared to monoculture plants.Growing capsicum plants in a mixture with maize,there were 86.4% and 29.8% increase in the ratio of root to shoot and root activities of capsicum respectively;In the case of maize,the ratio of root to shoot and root activities were not significantly affected by intercropping with capsicum.The chlorophyll contents of both capsicum and maize were also increased significantly by intercropping.The concentrations of Fe,Zn and Mn in intercropped capsicum increased by 1.50 fold,1.39 fold and 1.34%,respectively.While the concentrations of Fe,Zn and Mn in maize plants were not significantly affected by intercropping with capsicum.As far as the Ca concentrations of capsicum and maize plants were concerned,monoculture culture exceeded intercropping.Intercropping also improved significantly the K and P concentrations of capsicum and maize,while N concentrations of capsicum and maize were little affected by intercropping.In the intercropping of capsicum/maize,the acid phosphatase activities of the rhizosphere and bulk soil and root secreted acid phosphatase were significantly higher than that of monoculture capsicum and maize.In accordance,the P concentrations of capsicum and maize plants were much higher when they were intercropped with capsicum or maize,respectively.The rhizosphere and bulk soil pH values were not clearly affected by different cropping systems.As compared to their monoculture treatments,the secretion of phytosiderophore from maize roots decreased by 32.8%,but there was no significant difference between two treatments;the ferric reducing capacity of capsicum roots increased by 1.10 fold by the intercropping.The results indicate capsicum/maize intercropping pattern is a promising management practice,contributes to better nutrition of plants with Fe,Zn,P and K,most probably by affecting biological properties and chemical process in the rhizosphere.