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1.
水直播条件下黑龙江省不同稻区稻瘟病菌致病性分析   总被引:1,自引:0,他引:1  
为明确水直播条件下黑龙江省不同稻区稻瘟病菌Magnaporthe oryzae的致病性分化情况,以24个抗瘟单基因系品种为寄主,来源于2017—2018年黑龙江省水直播稻田的242株稻瘟病菌菌株为接种体,采用离体划伤方法接种,记录病斑反应型,计算有效致病菌株率和抗性频率,并进行聚类分析。结果显示,在水直播条件下,2017年,黑龙江省南部和中东部稻区稻瘟病菌菌株对抗瘟单基因系品种的有效致病菌株率介于8.33%~95.83%和20.83%~95.83%之间,无毒基因出现频率分别为575次和622次;2018年,南部和中东部稻区稻瘟病菌菌株对鉴别体系的有效致病菌株率介于29.17%~95.83%和20.83%~91.67%之间,无毒基因出现频率分别为536次和571次。2017年,黑龙江省南部和中东部稻区稻瘟病菌菌株的致病性相似系数介于0.15~1.00和0.14~1.00之间,以致病性相似系数0.40为阈值,可将菌株分别划分为5个类群和6个类群;2018年,南部和中东部稻区菌株的致病性相似系数介于0.15~0.93和0.26~1.00之间,以致病性相似系数0.40为阈值,可将菌株分别划分为5个类群和4个类群。2017年,抗瘟单基因系品种对黑龙江省南部和中东部稻区稻瘟病菌菌株的抗性频率介于11.29%~88.71%和10.77%~86.15%之间,其中抗瘟单基因系品种IRBL9-W(Pi-9)和IRBLz5-CA(Pi-z5)抗性表现最好;2018年,抗瘟单基因系品种对南部和中东部稻区菌株的抗性频率介于10.34%~82.67%和15.79%~85.96%之间,其中抗瘟单基因系品种IRBL9-W(Pi-9)和IRBLz5-CA(Pi-z5)抗性表现最好。表明水直播条件下黑龙江省稻瘟病菌致病性分化剧烈,稻瘟病菌整体致病力较强,但仍有部分水稻种质抗性较好且相对稳定,基因聚合后抗性会得到进一步提升。  相似文献   

2.
为明确30个水稻抗瘟基因品系在江西水稻育种中的应用价值,利用2006—2012年分离自江西主要稻区的381个稻瘟病菌株,在抗瘟基因品系苗期喷雾接种,通过供试品系对稻瘟病菌的抗感反应来明确其抗病性。Pi-ztPi-kPi-11)、Pi-z5Pi-kC)、Pi-kpPi-9t)7个水稻抗瘟基因对江西省稻瘟病菌群体表现出较高的抗性频率,其值分别为85.11%、82.95%、71.12%、68.69%、63.53%、62.61%和61.09%,且这7个抗瘟基因对ZG1、ZC15和ZB31小种的稻瘟病菌株的抗性频率均比其它小种菌株高。将抗瘟品系与稻瘟病菌接种反应结果转化为“0-1”模式进行聚类分析,7个抗性频率较高的抗瘟基因被划分为Pi-ztPi-z5Pi-9t)和Pi-kPi-11)、Pi-kC)、Pi-kp两组不同的抗病类型品系。  相似文献   

3.
为明确水稻抗性基因Piz-t、PibPii的有效性,利用无毒基因AvrPiz-t、AvrPibAvr-Pii的特异性引物对自云南省6个水稻产区采集并分离获得的348株稻瘟病菌Magnaporthe oryzae菌株进行PCR扩增检测,并测定其对仅含Piz-t、PibPii基因的水稻抗性单基因系IRBLzt-T、IRBLb-B和IRBLi-F5品种的致病性,明确这3个无毒基因在云南省水稻产区组成及分布。结果表明,在348株稻瘟病菌菌株中,分别有51.7%、46.8%和15.8%的菌株含有无毒基因AvrPiz-t、AvrPibAvr-Pii,GT8、GT2、GT5、GT6、GT1、GT3、GT4和GT7基因型菌株检测频率分别为24.7%、21.8%、21.0%、16.7%、4.9%、4.0%、3.4%和3.4%;分别有4.9%、29.2%、41.1%和24.7%的菌株含有3、2、1和0个无毒基因;云南省稻瘟病菌群体总多样性指数水平较高,为2.81,其中滇中水稻产区的最高,为2.97;在348株稻瘟病菌菌株中,分别有89.1%、63.2%和38.5%的菌株对单基因系IRBLzt-T、IRBLb-B和IR‐BLi-F5表现为不致病,表明对Piz-t基因和Pib基因的抗性利用价值较Pii基因高;PT1、PT2、PT3、PT4、PT5、PT6、PT7和PT8致病型菌株检测频率分别为23.0%、30.2%、8.9%、2.0%、21.8%、5.2%、4.6%和4.3%,其中PT2、PT1和PT5为云南省稻瘟病菌的主要致病型。表明云南省6个水稻产区稻瘟病菌3个无毒基因的分布及组成差异较大,群体多样性水平较高。  相似文献   

4.
蜡质芽孢杆菌AR156防治水稻纹枯病机理初探   总被引:3,自引:0,他引:3  
蜡质芽孢杆菌AR156是一种防治多种土传病害的生物制剂,对水稻纹枯病具有较好的防治效果。本研究通过温室试验方面验证菌株 AR156的防病效果和促生作用,从细胞水平和基因水平初步揭示了菌株AR156防治水稻纹枯病的机理。结果表明,菌株AR156对水稻纹枯病的温室防效达73.06%,同时促进水稻生物量增加14.45%。菌株AR156处理提高了水稻植株SOD、PAL、POD和CAT等防御酶活性,增强了OsPR1b、OsPR10、OsNPR1和ZB8等防卫相关基因的表达。接种立枯丝核菌Rhizoctonia solani HNW-21之前用菌株AR156预处理的水稻植株,SOD和PAL分别提前4、2 d出现活性峰;防卫相关基因均提前表达,且表达时间延长,从而提高水稻对纹枯病的抗性。  相似文献   

5.
为西北农林科技大学小麦新育成品种(系)在黄淮麦区的大面积推广,该研究对83份西农新育成的小麦品种(系)进行苗期抗条锈病和白粉病鉴定,成株期抗条锈病、白粉病、叶锈病和赤霉病鉴定,并在田间自然环境下对其抗性进行鉴定及对相关抗病基因进行分子检测。结果显示,在苗期人工接种鉴定中,有63、29和16份小麦品种(系)分别对条锈菌Puccinia striiformis f.sp.tritici生理小种CYR32、CYR33和CYR34表现出抗性,9份小麦品种(系)对3个条锈菌生理小种均表现出抗性;有10、3和0份小麦品种(系)分别对白粉菌Blumeria graminis f.sp.tritici生理小种E15、E09和A13表现出抗性。在成株期人工接种鉴定中,有23、15、28和62份小麦品种(系)分别对条锈病、白粉病、叶锈病和赤霉病表现出抗性。在83份小麦品种(系)中有6份在苗期和成株期均对小麦条锈病表现出抗性。在田间抗性鉴定中,有57、6、65和40份小麦品种(系)分别对条锈病、白粉病、赤霉病及叶锈病表现出抗性。在83份小麦品种(系)中,3份含有Yr5基因,22份含有Yr9基因,3份含有Yr17基因,2份含有Pm24基因,14份含有Lr1基因,所占比例分别为3.6%、26.5%、3.6%、2.4%和16.8%。  相似文献   

6.
月季根癌病病原菌分离及抗病资源初步筛选   总被引:3,自引:0,他引:3  
从月季品种金玛丽、曼海姆、杏花村、梅郎口红的根部肿瘤组织中纯化了9株分离物,根据其在MW选择性培养基上的单菌落形态初步判断其为根癌土壤杆菌。以根癌土壤杆菌高度保守的virD2ipt基因的部分序列设计引物对分离的菌株进行PCR检测,其中有6株菌株能扩增出virD2和ipt基因片段,为根癌土壤杆菌毒性菌株。采用针刺涂抹法接种向日葵、荷花蔷薇幼茎,6株菌株均能在供试植株上形成肿瘤,一个月后肿瘤大小有显著差异,说明分离获得的根癌土壤杆菌株毒性有差异。以强毒性菌株J-5-1在田间接种了部分蔷薇属野生资源,以鉴定其对根癌病的抗性。根据发病率、肿瘤大小、肿瘤干质量以及感病后植株生长状况将植物的根癌病抗性分为高度抗病、中度抗病、中度感病、高度感病4个类型。  相似文献   

7.
为明确福建省玉米小斑病菌Cochliobolus heterostrophus对氟啶胺的敏感性及其与不同杀菌剂间的交互抗性,采用菌丝生长速率法测定了该省5个地区的73株玉米小斑病菌菌株对氟啶胺的敏感性。结果表明,供试73株玉米小斑病菌菌株对氟啶胺具有较高的敏感性,所有菌株的有效抑制中浓度EC50在0.0023~1.2863 μg/mL之间,平均值为0.2573 μg/mL,其敏感性频率呈连续单峰曲线分布,符合正态分布,因此可将EC50平均值0.2573 μg/mL作为福建省玉米小斑病菌对氟啶胺的敏感基线;5个地区的菌株群体对氟啶胺的敏感性差异不显著,但是不同地区的菌株个体间差异较大;氟啶胺与多菌灵、百菌清、丙环唑、烯唑醇、咪鲜胺和异菌脲之间均不存在交互抗性。  相似文献   

8.
为明确中国不同春麦区小麦地方种质对当前小麦生产上流行的条锈病菌Puccinia striiformis f.sp.tritic的抗性水平及其所含抗性基因,利用条锈病菌生理小种条中32(CYR32)和条中34(CYR34)及混合生理小种(致病类群)对来自5个春麦区的196份小麦地方种质进行苗期、成株期抗性鉴定,并通过6个已知条锈病抗性基因Yr9、Yr18、Yr26、Yr48、Yr65Yr67对其所含重要抗性基因进行分子标记检测。结果显示,在苗期,有11份小麦地方种质对CYR32表现出抗性,有12份对CYR34表现出抗性,分别占供试种质总数的5.61%和6.12%;有6份对CYR32和CYR34均表现出抗性;在成株期,有59份小麦地方种质在5个田间诱导环境下表现出稳定的抗性。有119份小麦地方种质检测到含抗性基因,其中有3份携带Yr9,有50份携带Yr18,有43份携带Yr48,有54份携带Yr65,所有供试种质均未检测到Yr26Yr67,抗性基因的组合分析发现,共有31份小麦地方种质携带4种抗性基因组合类型Yr9+Yr18、Yr18+Yr48、Yr18+Yr65Yr48+Yr65。表明来自中国5个春麦区的小麦地方种质条锈病抗性表型呈多样性,且携带目前在小麦抗病育种和生产上有效的条锈病抗性基因(组合),建议加大对小麦地方种质的保护和应用力度。  相似文献   

9.
为明确辽宁省水稻稻瘟病菌Magnaporthe oryzae对稻瘟灵的抗性水平及变化动态,本研究于2017—2019年自辽宁省6个市的6个稻区采集并分离获得187株稻瘟病菌,利用菌丝生长速率法测定这187株稻瘟病菌菌株对稻瘟灵的敏感性及抗性,并采用茎叶喷雾法测定稻瘟灵对水稻稻瘟病的田间防治效果以及该药剂与其它药剂的交互抗性。结果表明:供试187株稻瘟病菌菌株对稻瘟灵的EC50范围为0.94~34.96 μg/mL,左侧正态分布峰内EC50平均值为5.05 μg/mL,稻瘟病菌对稻瘟灵的敏感性分布频率不符合正态分布,表明菌群中已经出现对稻瘟灵敏感性下降的亚群体。187株稻瘟病菌菌株对稻瘟灵的平均抗性倍数为3.70,抗性菌株出现频率为55.61%,平均抗性指数为0.40,抗性水平呈逐年增加趋势。2017—2019年稻瘟灵对水稻叶瘟病的防治效果分别为82.97%、78.86%和81.36%,对水稻穗颈瘟的防治效果分别为79.81%、77.68%和80.20%,说明在现有防控手段下未产生高水平抗性群体。稻瘟灵与肟菌酯、戊唑醇之间无交互抗性。与不同药剂轮换使用的前提下,稻瘟灵仍可作为主要药剂防治稻瘟病。  相似文献   

10.
为明确球孢白僵菌Beauveria bassiana定殖对番茄植株抗病性的影响及作用机理,采用灌根法将球孢白僵菌芽生孢子悬浮液接种于番茄植株内,并通过人工接种灰霉菌Botrytis cinerea评价球孢白僵菌定殖后番茄对灰霉病的抗性水平;检测灰霉菌胁迫下番茄植株不同位置叶片内球孢白僵菌的相对含量;测定番茄叶片内草酸氧化酶(oxalate oxidase,OXO)、几丁质酶(chitinase,CHI)和ATP合成酶(ATP synthase,atpA)3种抗病相关基因的表达量。结果表明,球孢白僵菌定殖能够提高番茄植株对灰霉病的抗性,接种灰霉菌第5天,番茄植株发病率、病斑直径和病情指数分别下降了61.6%、41.4%和26.4%;在灰霉菌胁迫下番茄植株内球孢白僵菌偏好于在病原菌感染位置定向聚集,并且引起植物抗病基因OXOCHIatpA的表达量上调。表明球孢白僵菌能通过内生定殖与植物互作提高植物抗病性,在植物病害生物防治领域有较大应用潜力。  相似文献   

11.
Disease resistance mediated by the resistance gene Xa21 is developmentally controlled in rice. We examined the relationship between Pathogenesis Related (PR) defense gene expression and Xa21-mediated developmental disease resistance induced by Xanthomonas oryzae pv. oryzae (Xoo). OsPR1a, OsPR1b, and OsPR1c genes were cloned and their induction was analyzed, in addition to the OsPR10a gene, at the juvenile and adult stages in response to a wildtype Xoo strain that induces a resistance response (incompatible interaction) and an isogenic mutant Xoo strain that does not (compatible interaction). We found that the adult stage leaves are more competent to express these OsPR1 genes and that the Xa21 locus is required for the highest levels of induction.  相似文献   

12.
 WRKY是植物体内最大的转录因子家族之一, 其成员在植物生长发育和抗逆过程中发挥重要作用。为了解水稻WRKY的功能, 本研究利用蛋白质免疫印迹(western blotting, WB)技术, 检测了8个WRKY转录因子在水稻叶片生长和Xa21介导的抗白叶枯病过程中的表达丰度变化。结果表明:OsWRKY12、43、55和86在苗期表达量较低, 随叶片的生长表达逐步增加;OsWRKY50和84在苗期叶片中的表达量相对较高, 成熟期下降;未检测到OsWRKY40/64和52在叶片中的表达。在Xa21介导的白叶枯病抗性反应中, OsWRKY40/64、50和52受白叶枯病菌诱导表达, OsWRKY84受侵染后表达量上调, OsWRKY12、43、55和86在抗病过程中没有检测到表达丰度的变化。进一步比较这些转录因子在抗、感和对照(Mock)反应中的表达, 发现抗、感反应间蛋白质的表达变化是相似的。研究结果提示:OsWRKY12、43、55和86可能在叶片正常生长中发挥作用;OsWRKY40/64和52可能在水稻-白叶枯病菌互作过程中发挥作用;OsWRKY50和84则在叶片生长和抗白叶枯病过程中都有一定的功能。  相似文献   

13.
 水稻和稻瘟病菌互作是研究植物与病原菌互作的模式体系。本文利用3个水稻抗稻瘟病近等基因品系(CO39、C101LAC和C101A51)和2个特异性菌株(M209和M210)构成不同亲和程度的互作关系,研究了稻瘟病菌对3个水稻信号传导途径关键酶合成基因、5个防御反应病程相关蛋白基因和1个防御反应转录因子调控基因诱导表达的作用。结果表明:稻瘟病菌诱导了各种互作关系中水稻OsLOXOsAOSOsPAL酶合成基因的表达,水稻启动了茉莉酸和水杨酸防御反应信号传导途径。在不亲和的互作反应中,稻瘟病菌能不同程度地诱导水稻OsPR1aOsPR2OsPR3-1OsPR3-2OsPR4基因的表达,从而有效激活了防御反应系统,使水稻植株表现为抗病;而在亲和的互作反应中,多数OsPR基因的表达水平低、时间短或没有表达,水稻植株表现为感病。OsMyb基因在各种互作关系中有不同的诱导表达。说明这些防御相关基因的诱导表达可能与水稻抗稻瘟病性相关。  相似文献   

14.
A study was made of the biological interactions between an isolate of Peronospora parasitica compatible with Brassica juncea and two isolates of Albugo candida either incompatible or compatible with the host species. Prior inoculation with the incompatible isolate of A. candida induced resistance to subsequently inoculated P. parasitica. The degree of resistance was proportional to the zoosporangia concentration of the incompatible isolate and induced resistance was more marked in the cotyledon receiving the inducing inoculum compared to the opposite cotyledon and subsequently emerging true leaves that had not been pre-inoculated. Induction of resistance was also observed if the incompatible isolate of A. candida and P. parasitica were co-inoculated simultaneously. However, the effect was greater the longer the interval between inoculations, up to a period of 4 days. When the incompatible isolate of A. candida was inoculated 4h after P. parasitica, there was no marked effect on resistance to the latter. In contrast, prior inoculation with the compatible isolate of A. candida increased susceptibility to P. parasitica inoculated subsequently. However, pre- or co-inoculation with P. parasitica suppressed the development of the compatible isolate of A. candida. A spectrum of responses was observed when one cotyledon was inoculated simultaneously with both the incompatible and compatible isolates of A. candida and followed subsequently with P. parasitica after different time intervals. In such combinations, a transition was observed in the host response to P. parasitica from induced resistance/reduced susceptibility, which increased up to 24h following a simultaneous inoculation with incompatible + compatible isolates of A. candida to an almost neutral reaction after 72h to induced susceptibility after 96h. This range of altered responses appeared to reflect the outcome of the differing kinetics and counter-effects of resistance and susceptibility induction.  相似文献   

15.
Disease resistance mediated by the resistance gene Xa21 is developmentally controlled in rice. We examined the relationship between Pathogenesis Related (PR) defense gene expression and Xa21-mediated developmental disease resistance induced by Xanthomonas oryzae pv. oryzae (Xoo). OsPR1a, OsPR1b, and OsPR1c genes were cloned and their induction was analyzed, in addition to the OsPR10a gene, at the juvenile and adult stages in response to a wildtype Xoo strain that induces a resistance response (incompatible interaction) and an isogenic mutant Xoo strain that does not (compatible interaction). We found that the adult stage leaves are more competent to express these OsPR1 genes and that the Xa21 locus is required for the highest levels of induction.  相似文献   

16.
A metabolomics based approach has been used to study the infection of the Hwacheong rice cultivar (Oryza sativa L. cv. Hwacheong) with compatible (KJ201) and incompatible (KJ401) strains of the rice blast fungal pathogen Magnaporthe grisea. The metabolic response of the rice plants to each strain was assessed 0, 6, 12, 24, 36, and 48 h post inoculation. Nuclear Magnetic Resonance (NMR) spectroscopy and Gas and Liquid Chromatography Tandem Mass spectrometry (GC/LC-MS/MS) were used to study both aqueous and organic phase metabolites, collectively resulting in the identification of 93 compounds. Clear metabolic profiles were observed at each time point but there were no significant differences in the metabolic response elicited by each pathogen strain until 24 h post inoculation. The largest change was found to be in alanine, which was ~30% (±9%) higher in the leaves from the compatible, compared to the resistant, plants. Together with several other metabolites (malate, glutamine, proline, cinnamate and an unknown sugar) alanine exhibited a good correlation between time of fungal penetration into the leaf and the divergence of metabolite profiles in each interaction. The results indicate both that a wide range of metabolites can be identified in rice leaves and that metabolomics has potential for the study of biochemical changes in plant-pathogen interactions.  相似文献   

17.
A rapid resistance/susceptibility test for Peronospora parasitica (downy mildew) was established by inoculating leaf-disks of four Brassica oleracea accessions. Several conditions were tested: disk disinfection or not, agar medium with or without nutrients and with 50 or 100 ppm of benzimidazole. Using disinfected disks placed on agar (no nutrient and benzimidazole at 50 or 100 ppm), the responses of leaf-disks to four isolates were similar to those obtained using the classical cotyledon test, whereas undesired contaminations occurred in all other conditions. The possible effect of the particular leaf used for obtaining the disks was also studied. In each incompatible interaction tested, disks were resistant whatever the leaf used. In compatible interactions, susceptible phenotypes were observed on disks derived from the six lowest leaves, but disks from upper leaves were resistant. The genetic basis of resistance in a F1 hybrid broccoli was assessed, by testing six isolates on an F2 population derived from this hybrid. The cotyledon test only allows inoculation of two isolates per seedling, whereas many isolates can be tested on each plant by using leaf-disks. The segregation of the resistance to each of the six isolates was analysed: two dominant genes (tightly linked) control resistance to all isolates (one to five isolates; the other to only one isolate).  相似文献   

18.
华南籼稻稻瘟病菌致病型单基因鉴别寄主筛选   总被引:4,自引:1,他引:4  
采用35个单基因鉴别寄主、12个日本清泽鉴别寄主共47个具有已知基因的鉴别寄主,对147个籼稻稻瘟病菌株进行致病型鉴别研究.147个菌株被划分为28个不同的致病类型.优势致病型为I-04、I-02和I-01,这3个致病型的菌株数占参试菌株的74.8%,而且与其他致病型比较,它们的致病谱较广.研究结果表明,F80-1(Pi-k)、IRBL7(Pi-kp)、IRBL16(Pi-sh(1))、IRBL21(Pi-7(t))、IRBL3(Pi-i)、IRBL9(Pi-z)、IRBL19(Pi-3)、IRBL10(Pi-z5)、IRBL11(Pi-zt)、IRBL18(Pi-1)、IRBL10(Pi-2)、F128-1(Pi-ta2)、F145-2(Pi-b)和IRBL22(Pi-9(t))等14个单基因鉴别寄主对以广东为主的华南籼稻区稻瘟病菌具有较好的鉴别能力,其中尤以F80-1(Pi-k)、IRBL7(Pi-kp)、IRBL16(Pi-sh(1))、IRBL21(Pi-7(t))、IRBL3(Pi-i)、IRBL9(Pi-z)、IRBL19(Pi-3)和IRBL10(Pi-z5)等8个单基因鉴别寄主的鉴别能力最强,IRBL11(Pi-zt)、IRBL18(Pi-1)、IRBL10(Pi-2)、F128-1(Pi-ta2)、F145-2(Pi-b)和IRBL22(Pi-9(t))等6个单基因鉴别寄主可鉴别抗性反应表现型较相似的致病型,并可用于细分致病型.3个优势致病型I-04、I-02和I-01对F80-1(Pi-k)等上述8个单基因鉴别寄主的抗性反应表现型依次为RRSRSSSMR、SSSSSSSS和SSRSSSSR.  相似文献   

19.
 为探讨活性氧和细胞质钙离子在小麦抗条锈病反应中的作用,以小麦品种洛夫林13与具有不同致病力的单孢锈菌CY29、CY25的互作体系为平台,对锈菌侵染后小麦叶片中活性氧(ROS)积累、保护酶系(SOD、CAT和APX)活性变化动态、细胞质膜的透性改变及细胞质钙离子浓度变化做了研究。结果表明,不亲和锈菌CY25侵染可引起小麦叶片内2次ROS的爆发,第1次出现在接种后前期(接种后第2天),强度较小,第2次出现在接种后期(接种后第5天),强度较大;亲和锈菌CY29侵染只引起1次ROS爆发,出现在接种后期(接种后第5和第6天之间),但强度极大。过敏性坏死反应HR只出现在不亲和互作小麦叶片上前期ROS爆发之后,表明前期ROS爆发与HR的产生有关。伴随着后期小麦叶片中强度极高的ROS的爆发,叶片细胞原生质膜遭到了破坏,细胞内物质外渗,细胞不久便死亡,表明高强度的ROS爆发会导致细胞死亡。根据不同互作体系ROS爆发时期SOD、CAT和APX等保护酶的活性变化分析,不亲和互作体系前期强度较小的ROS爆发主要成分是H2O2,后期强度较高的ROS爆发主要成分是O2-·和H2O2;亲和互作体系强度极高的ROS爆发主要成分是O2-·和H2O2。由此说明H2O2是引起小麦抗病反应HR发生的因素,而O2-·则是引起细胞死亡的因素。细胞质钙离子浓度变化研究表明,HR的发生与细胞质钙离子浓度增加相关。细胞质钙离子浓度的降低推迟了HR的发生,这说明小麦叶片细胞内细胞质钙离子浓度的增加是HR的必要条件,同时也说明Ca2+是植物HR的胞内第二信使参与植物抗病防卫反应。  相似文献   

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